Публикации лаборатории
Монографии и учебные пособия
1. L. Oliveira, V.V. Tuchin. The Optical Clearing Method: A New Tool for Clinical Practice and Biomedical Engineering. Springer Nature Switzerland, 2019. 188 p. Ссылка.
2. V.V. Tuchin, J. Popp, V.P. Zakharov (Eds.). Multimodal Optical Diagnostics of Cancer. Springer Nature Switzerland, 2020. 600 p. Ссылка.
3. Тучин В.В. Лазеры и волоконная оптика в биомедицинских исследованиях. Москва: Ай Пи Ар Медиа, 2021. 495 с. DOI: 10.23682/103652.
4. Тучин В.В. Оптика биологических тканей. Методы рассеяния света в медицинской диагностике. Москва: Ай Пи Ар Медиа, 2021. 802 с. DOI: 10.23682/103653.
5. Тучин В.В. Оптическая биомедицинская диагностика. Т. 1. Москва: Ай Пи Ар Медиа, 2021. 549 с. DOI: 10.23682/103654.
6. Тучин В.В. Оптическая биомедицинская диагностика. Т. 2. Москва: Ай Пи Ар Медиа, 2021. 463 с. DOI: 10.23682/103655.
7. V.V. Tuchin, D. Zhu, E.A. Genina (Eds.). Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging. Boca Raton: CRC Press, 2022. 688 p. Ссылка.
8. A.V. Dunaev, V.V. Tuchin (Eds.). Biomedical Photonics for Diabetes Research. Boca Raton: CRC Press, 2022. 278 p. DOI: 10.1201/9781003112099.
9. V.V. Tuchin, T. Novikova, L.V. Wang, D.A. Zimnyakov, H. Ma, M.V. Alonova, J. Wan. Optical Polarization in Biomedical Applications. 2nd ed. Springer Series in Biophysics, vol. 28. Cham: Springer, 2026. 444 p. DOI: 10.1007/978-3-032-16073-7.
Главы в монографиях
10. A.B. Bucharskaya, G.N. Maslyakova, G.S. Terentyuk, N.A. Navolokin, A.N. Bashkatov, E.A. Genina, B.N. Khlebtsov, N.G. Khlebtsov, V.V. Tuchin, Gold nanoparticle-based technologies in photothermal/photodynamic treatment: the challenges and prospects, D.P. Nikolelis, G.-P. Nikoleli (Eds.), Nanotechnology and Biosensors, Elsevier Inc. 2018, pp. 151–173.
11. M. Jędrzejewska-Szczerska, D. Majchrowicz, M. Hirsch, P. Struk, R. Bogdanowicz, M. Bechelany, V. Tuchin, Nanolayers in fiber optic biosensing, D.P. Nikolelis, G.-P. Nikoleli (Eds.), Nanotechnology and Biosensors, Elsevier Inc. 2018, pp. 395–426.
12. A.N. Bashkatov, V.P. Zakharov, A.B. Bucharskaya, E.G. Borisova, Yu. A. Khristoforova, E.A. Genina, and V.V. Tuchin, “Malignant Tissue Optical Properties, ” Chapter 1, in Multimodal optical diagnostics of cancer, V.V. Tuchin, J. Popp, and V.P. Zakharov (Eds.), Basel: Springer Nature Switzerland AG, 2020, pp. 3–106. Ссылка.
13. E.A. Genina, L.M. C. Oliveira, A.N. Bashkatov, and V.V. Tuchin, “Optical Clearing of Biological Tissues: Prospects of Application for Multimodal Malignancy Diagnostics, ” Chapter 2, in Multimodal optical diagnostics of cancer, V.V. Tuchin, J. Popp, and V.P. Zakharov (Eds.), Basel: Springer Nature Switzerland AG, 2020, pp. 108–132. Ссылка.
14. O. Semyachkina-Glushkovskaya, M. Klimova, T. Iskra, D. Bragin, Abdurashitov A., Dubrovsky A., Khorovodov A., Terskov A., Blokhina I., Lezhnev N., Vinnik V., Agranovich I., Mamedova A., Shirokov A., Navolokin N., Khlebsov B., Tuchin V., Kurths J. Transcranial Photobiomodulation of Clearance of Beta-Amyloid from the Mouse Brain: Effects on the Meningeal Lymphatic Drainage and Blood Oxygen Saturation of the Brain. In: Nemoto E.M., Harrison E.M., Pias S.C., Bragin D.E., Harrison D.K., LaManna J.C. (eds) Oxygen Transport to Tissue XLII. Advances in Experimental Medicine and Biology, vol 1269. Springer, Cham. (2021), pp. 57–61. DOI: 10.1007/978-3-030-48238-1_9.
15. O. Semyachkina-Glushkovskaya, D. Bragin, O. Bragina, Y. Yang, A. Abdurashitov, A. Esmat, A. Khorovodov, A. Terskov, M. Klimova, I. Agranovich, I. Blokhina, A. Shirokov, N. Navolokin, V. Tuchin, J. Kurths, Mechanisms of Sound-Induced Opening of the Blood-Brain Barrier. In: Nemoto E.M., Harrison E.M., Pias S.C., Bragin D.E., Harrison D.K., LaManna J.C. (eds) Oxygen Transport to Tissue XLII. Advances in Experimental Medicine and Biology, vol 1269. Springer, Cham. (2021), pp. 197–202. DOI: 10.1007/978-3-030-48238-1_31.
16. T. Yu, D. Zhu, L. Oliveira, E.A. Genina, A.N. Bashkatov, and V.V. Tuchin, Tissue optical clearing mechanisms, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 3–30. Ссылка.
17. N. Zeng, H. He, V.V. Tuchin, and H. Ma, Tissue optical clearing for Mueller matrix microscopy, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 31–66. Ссылка.
18. E.A. Genina, V.D. Genin, J. Zhu, A.N. Bashkatov, D. Zhu, and V.V. Tuchin, Traditional and innovative optical clearing agents, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 67–92. Ссылка.
19. D. Zhu, Y. Liang, X. Li, and V.V. Tuchin, Chemical enhancers for improving tissue optical clearing efficacy, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 93–108. Ссылка.
20. W. Blondel, M. Amouroux, S.M. Zaytsev, E.A. Genina, V. Colas, C. Daul, A.B. Pravdin, and V.V. Tuchin, Human skin autofluorescence and optical clearing, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 109–126. Ссылка.
21. K.V. Berezin, K.N. Dvoretskiy, M.L. Chernavina, A.M. Likhter, and V.V. Tuchin, Molecular modeling of post-diffusion phase of optical clearing of biological tissues, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 127–140. Ссылка.
22. E.N. Lazareva, L. Oliveira, I.Yu. Yanina, N.V. Chernomyrdin, G.R. Musina, D.K. Tuchina, A.N. Bashkatov, K.I. Zaytsev, and V.V. Tuchin, Refractive index measurements of tissue and blood components and OCAs in a wide spectral range, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 141–166. Ссылка.
23. A.Yu. Sdobnov, J. Schleusener, J. Lademann, V.V. Tuchin, and M.E. Darvin, Water migration at skin optical clearing, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 167–184. Ссылка.
24. Yu. M. Alexandrovskaya, O.I. Baum, V.Yu. Zaitsev, A.A. Sovetsky, A.L. Matveyev, L.A. Matveev, K.V. Larin, E.N. Sobol, and V.V. Tuchin, Optical and mechanical properties of cartilage during optical clearing, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 185–198. Ссылка.
25. E.A. Genina, A.N. Bashkatov, V.P. Zharov, and V.V. Tuchin, In vivo skin optical clearing in humans, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 369–382. Ссылка.
26. O.S. Zhernovaya, E.A. Genina, V.V. Tuchin, and A.N. Bashkatov, Optical clearing of blood and tissues using blood components, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 383–392. Ссылка.
27. P.A. Dyachenko (Timoshina), A.S. Abdurashitov, O.V. Semyachkina-Glushkovskaya, and V.V. Tuchin, Blood and lymph flow imaging at optical clearing, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 393–408. Ссылка.
28. Ju. Cvjetinovic, D.V. Nozdriukhin, M. Mokrousov, A. Novikov, M.V. Novoselova, V.V. Tuchin, and D.A. Gorin, Enhancement of contrast in photoacoustic – fluorescence tomography and cytometry using optical clearing and contrast agents, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 419–444. Ссылка.
29. O.A. Smolyanskaya, K.I. Zaytsev, I.N. Dolganova, G.R. Musina, D.K. Tuchina, M.M. Nazarov, A.P. Shkurinov, and V.V. Tuchin, Tissue optical clearing in the terahertz range, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 445–458. Ссылка.
30. A.A. Bogdanov Jr., N.I. Kazachkina, V.V. Zherdeva, I.G. Meerovich, D.K. Tuchina, I.D. Solovyev, A.P. Savitsky, and V.V. Tuchin, Magnetic resonance imaging study of diamagnetic and paramagnetic agents for optical clearing of tumor-specific fluorescent signal in vivo, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 459–470. Ссылка.
31. I.Yu. Yanina, Y. Tanikawa, D.K. Tuchina, P.A. Dyachenko (Timoshina), Y. Iga, S. Takimoto, E.A. Genina, A.N. Bashkatov, G.S. Terentyuk, N.A. Navolokin, A.B. Bucharskaya, G.N. Maslyakova, and V.V. Tuchin, Optical clearing of adipose tissue, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 471–516. Ссылка.
32. D.K. Tuchina and V.V. Tuchin, Diabetes mellitus-induced alterations of tissue optical properties, optical clearing efficiency, and molecular diffusivity, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 517–538. Ссылка.
33. D. Li, W. Feng, R. Shi, V.V. Tuchin, and D. Zhu, Tissue optical clearing for in vivo detection and imaging diabetes induced changes in cells, vascular structure, and function, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 539–556. Ссылка.
34. L.M. Oliveira and V.V. Tuchin, Optical clearing for cancer diagnostics and monitoring, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 597–606. Ссылка.
35. M.A. Ansari and V.V. Tuchin, Measurement of the dermal beta-carotene in the context of multimodal optical clearing, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 619–628. Ссылка.
36. A.A. Selifonov and V.V. Tuchin, Optical clearing and molecular diffusivity of hard and soft oral tissues, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 629–646. Ссылка.
37. Q. Lin, E.N. Lazareva, V.I. Kochubey, Y. Duan, and V.V. Tuchin, Optical clearing and Raman spectroscopy: In vivo applications, in Handbook of Tissue Optical Clearing: New Prospects in Optical Imaging, V.V. Tuchin, D. Zhu, E.A. Genina (Eds.), CRC Press, Boca Raton, FL (2022), pp. 647–654. Ссылка.
38. Valeria V. Telnova, Alexander I. Dubrovsky, Andrey V. Terskov, Anna S. Tsven, Oxana V. Semyachkina-Glushkovskaya, Valery V. Tuchin, Photodynamic therapy of brain diseases, In: Advances in Brain Imaging Techniques, Nirmal Mazumder, Gireesh G, Yury Kistenev (Eds.) Springer, 2022, pp. 125–145. Ссылка.
39. D.K. Tuchina, A.B. Bucharskaya, P.A. Dyachenko (Timoshina), N.I. Dikht, G.S. Terentyuk, V.V. Tuchin, Optical and structural properties of biological tissues under simulated diabetes mellitus, Chapter 1 in Biomedical Photonics for Diabetes Research, Eds. Andrey Dunaev, Valery Tuchin, CRC Press, Boca Raton, FL, 2022, pp. 1–31. Ссылка.
40. A.N. Yakunin, S.V. Zarkov, Y.A. Avetisyan, G.G. Akchurin, V.V. Tuchin, Nanomaterials in Matrix X-ray Sensors for Computed Tomography, Chapter 3, Nanosensors, eds. D. Nikolelis, G.P. Nikoleli, CRC Press, 2023, pp. 69–89. DOI: 10.1201/9780367822286-3.
41. P. Listewnik, V.V. Tuchin, M. Szczerska, Fiber-optic Sensors with Microsphere, Chapter 7, Nanosensors, eds. D. Nikolelis, G.P. Nikoleli, CRC Press, 2023, pp. 159–172. DOI: 10.1201/9780367822286-7.
42. Merdalimova A., Vorobev V., Zanishevskaya A., Perevoschikov S., Aleksandrov A., Rudakovskaya P., Skibina Y., Tuchin V., Gorin D. Hollow-core microstructured optical fibers and their applications for biosensing, Chapter in: Specialty Optical Fibers, eds. Mário F.S. Ferreira and Mukul Chandra Paul, Woodhead Publishing, 2024, pp. 431–473. DOI: 10.1016/B978-0-443-18495-6.00012-3.
43. A.G. Gyulkhandanyan, M.H. Paronyan, A.G. Gyulkhandanyan, K.R. Ghazaryan, M.V. Parkhats, B.M. Dzhagarov, M.V. Korchenova, E.N. Lazareva, E.S. Tuchina, G.V. Gyulkhandanyan and V.V. Tuchin, Meso-Substituted Cationic 3- and 4-N-Pyridylporphyrins and their Zn(II) Derivatives for Antibacterial Photodynamic Therapy, Chapter 8 in: Enhanced Photodynamic Therapy, Volume 1: Basics and Technical Developments: Volume 2: Biology and Advancements to Clinical Translation, Eds. Buhong Li and Lothar Lilge, 2024, pp. 118–148. DOI: 10.1142/13853-vol1.
44. M. Kozintseva, V. Kochubey, J. Konyukhova and V. Tuchin, Varying of Up-Conversion Nanoparticles Luminescence from the Muscle Tissue Depth During the Compression, Chapter 17 in: Enhanced Photodynamic Therapy, Volume 1: Basics and Technical Developments: Volume 2: Biology and Advancements to Clinical Translation, Eds. Buhong Li and Lothar Lilge, 2024, pp. 329–344. DOI: 10.1142/13853-vol1.
45. Tuchina, E.S., Tuchin, V.V. (2026). Advantages and Prospects of aPDT at Tissue Optical Clearing. In: Hamblin, M.R. (ed.) Handbook of Antimicrobial Photoinactivation. Springer, Cham. DOI: 10.1007/978-3-031-55858-0_81-1.
Статьи
2026
46. Weiran Pang, Tianting Zhong, Yize Gao, Xiazi Huang, Wu Yuan, Di Mei, Xingde Li, Kenneth K.Y. Wong, Xin Dong, Qiuqiang Zhan, Rui Pu, Zhenhua Hu, Daifa Wang, Di Wu, Changhui Li, Liulin He, Qinrong Zhang, Yuecheng Shen, Shian Zhang, Jiamiao Yang, Chunxu Ding, Lei Gong, Jinghan Zhuang, Qing Yang, Quanzhi Li, Liangcai Cao, Jiachen Wu, Pengcheng Li, Jiachi Hong, Tingting Yu, Chao Zuo, Haigang Ma, Yingying Zhou, Honglin Liu, Xuyu Zhang, Dan Zhu, Valery V. Tuchin, Jie Tian, Cheng Ma, Puxiang Lai, Deep-tissue optics: Multidisciplinary innovations and emerging frontiers—A comprehensive review, PhotoniX Life, 1(2), 2026. DOI: 10.3724/PXLIFE.2025-0009.
47. A. Pramod, S. Pavithran M, V.V. Tuchin, S. Chidangil, C.S. Suchand Sandeep, Advances in deep-tissue fluorescence imaging through optical clearing: A review, VIEW. 2026, 70178. DOI: 10.1002/viw2.70178.
48. A. Jaafar, T. Vaczi, N. Tarcea, D. Akimov, T. Meyer-Zedler, M. Schmitt, J. Popp, V.V. Tuchin, M. Veres, Impact of glycerol solution on myocardium tissue –Ex vivo deep-UV Raman spectroscopy study, Frontiers of Optoelectronics 19 (1), 1–13 (2026). DOI: 10.15302/foe.2026.0001.
49. P.A. Timoshina, D.K. Tuchina, Yu.A. Zhavoronkov, S.V. Ul’yanov, V.L. Kuzmin, V.V. Tuchin, Transmission of NIR Radiation Through Multi-layer Mouse Head at Scalp Skin Optical Clearing, Acad Radiol 33:1748–1759 (2026). DOI: 10.1016/j.acra.2025.10.033.
50. A.R. Guerra, L.R. Oliveira, G.O. Rodrigues, M.R. Pinheiro, M.I. Carvalho, V.V. Tuchin, L.M. Oliveira, Assessment of tartrazine diffusion properties in skeletal muscle, IEEE Journal of Selected Topics in Quantum Electronics 32(4), 7200808 (2026). DOI: 10.1109/JSTQE.2025.3640959.
51. Y.I. Surkov, I.A. Serebryakova, A.P. Fashchevskiy, P.A. Timoshina, E.A. Genina, V.V. Tuchin. PCA-LSCT: Software-Implemented Laser Speckle Contrast Tomography for Depth-Resolved Blood-Flow Mapping. IEEE Journal of Selected Topics in Quantum Electronics, 2026, 32(4), 7100409. DOI: 10.1109/JSTQE.2025.3647224.
52. Irina Y. Yanina, Maxim E. Darvin, Jürgen Lademann, Valery V. Tuchin, Johannes Schleusener; Biophysical Alterations of the Stratum Corneum Induced by Optical Clearing Agents: Implications for Efficiency and Safety Optimization. Skin Pharmacol Physiol 2026. DOI: 10.1159/000550614.
53. YI Surkov, IA Serebryakova, SM Zaytsev, EA Genina, VV Tuchin, YI Svenskaya, Optical Coherence Tomography Mapping of the Scattering Coefficient to Study the Skin Hydration Process under Optical Clearing, Skin Pharmacology and Physiology, 2026. DOI: 10.1159/000551016.
54. Il'enkova DR, Rybnikov DD, Alekseeva AI, Kucheryavenko AS, Garnov SV, Yurchenko SO, Tuchin VV, Zaytsev KI, Chernomyrdin NV. Heterogeneity and Birefringence of Soft Tissues Probed by the Polarization-Sensitive Terahertz Solid Immersion Microscopy. J Biophotonics. 2026 Jan;19(1):e70232. DOI: 10.1002/jbio.70232.
55. Arseniy P. Fashchevskiy, Yuriy I. Surkov, Isabella A. Serebryakova, Arsen K. Zotov, Kirill I. Zaytsev, Gleb M. Katyba, Anna S. Kycheryavenko, Vladimir M. Masalov & Valery V. Tuchin, Optical clearing of synthetic opals: a fluid kinetics study using optical coherence tomography. Appl. Phys. B 132, 45 (2026). DOI: 10.1007/s00340-026-08649-6.
56. Anna A. Zakoyan, Baghish A. Harutyunyan, Angelina A. Sayadyan, Vigen B. Goginyan, Valery V. Tuchin, Olga A. Inozemtseva. Spectral Studies of a Novel Photosensitizer Complex for Photodynamic Therapy. Current Pharmaceutical Biotechnology, 2026. DOI: 10.2174/0113892010396201251119094629.
57. Мусаелян А.Г., Алипов В.В., Ефимова Е.С., Грицай У.О., Шарабарина Т.В., Тучин В.В., Тучина Е.С. Фотодинамическое воздействие с использованием светодиодного красного (660 нм) и лазерного инфракрасного (808 нм) излучения для лечения моделированных абсцессов брюшной полости у лабораторных животных // Известия Саратовского университета. Новая серия. Серия: Химия. Биология. Экология. 2026. Т. 26, вып. 1. С. 63–75. DOI: 10.18500/1816-9775-2026-26-1-63-75.
58. S.S. Khatami, M.A. Ansari, B.S. B.K., and V.V. Tuchin, Computational and experimental investigation of nanoparticle effects on tissue optical properties and optical coherence tomography imaging, Biomed. Opt. Express 17 (6), 2979–2998 (2026). Ссылка.
59. Ю.И. Сурков, И.А. Серебрякова, М.Е. Лобанов, М.С. Савельева, Э.А. Генина, В.В. Тучин, Ю.И. Свенская, Текстурный анализ цифровых изображений кожи для оценки выраженности клинических проявлений дерматозов, Оптика и спектроскопия 134 (5), 548–557 (2026).
60. Irina Yanina, Kirill Berezin, Daria Tuchina, Natalia Shushunova, Elena Stepanovich, Alla Bucharskaya, Artyom Mylnikov, Nikita Navolokin, Valery Tuchin, Modulation of optical properties of adipose tissue in diabetes mellitus associated with its glycation and hydration. Appl. Phys. B 132, 90 (2026). DOI: 10.1007/s00340-026-08700-6.
2025
61. A.P. Rytik, V.V. Tuchin, The effect of terahertz radiation on cells and cellular structures, Front. Optoelectron. 18, 2, 1–31(2025). DOI: 10.1007/s12200-024-00146-y.
62. Gleb M. Katyba, Nikita V. Chernomyrdin, Irina N. Dolganova, AnnaS. Kucheryavenko, Qiwu Shi, Polina V. Aleksandrova, Dmitry S. Ponomarev, SergeyV. Garnov, Igor V. Reshetov, Valery V. Tuchin, Vladimir N. Kurlov, Maksim Skorobogatiy, and Kirill I. Zaytsev. Terahertz endoscopy of hard-to-access objects in the context of neoplasms diagnosis–A review. Light: Advanced Manufacturing 2025. DOI: 10.37188/lam.2025.058.
63. V.V. Tuchin, T. Dai, L.M. Oliveira, Optical technologies in monitoring mobility and delivery of drugs and metabolic agents, Advanced Drug Delivery Reviews 226, 115699, 2025. DOI: 10.1016/j.addr.2025.115699.
64. M. Chen, J. Zhou, K. Guo, V.V. Tuchin, and X. Wei, “Next-generation biomedical sensing through photoacoustic–electrochemical synergy, ” Medical Review. 2025. DOI: 10.1515/mr-2025-0071.
65. S.S. Khatami, M.A. Ansari, B.S. Bein Kalaee, V.V. Tuchin, Optical coherence tomography with enhanced contrast using oriented magnetic nanorods. Front. Optoelectron. 18, 24 (2025). DOI: 10.1007/s12200-025-00167-1.
66. И.В. Меглинский, В.В. Тучин, Скрытая когерентная структура и фазовые корреляции неполяризованного света при многократном рассеянии, Доклады Российской академии наук. Физика, технические науки 524 (1), 23–32 (2025). I.V. Meglinski, V.V. Tuchin, Hidden coherent structure and phase correlations of unpolarized light in multiple scattering, Doklady Physics. - 2025. - 524 (1), 23–32 (2025). DOI: 10.7868/S3034508125050044.
67. S. Liu, J. Huang, Y. Du, Q. Yang, V.V. Tuchin, D. Li, and D. Zhu, “Optical clearing imaging for evaluating cumulative effects of DM duration on post-stroke vascular structure/function and urokinase thrombolysis efficacy, ” Proc. SPIE 13721, Optics in Health Care and Biomedical Optics XV, 137212M (17 November 2025). DOI: 10.1117/12.3076475.
68. Y. Surkov, P. Timoshina, I. Uvakin, N. Shushunova, A. Konovalov, I. Kozlov, G. Piavchenko, D. Telyshev, I. Meglinski, S. Kuznetsov and V. Tuchin, Computer-guided optical clearing for transcranial laser speckle imaging of cortical blood flow through synergistic tartrazine-induced cranial bone transparency, Journal of Innovative Optical Health Sciences 2540002 (2025). DOI: 10.1142/S1793545825400024.
69. A. Jaafar, A. Albarazanchi, M.J. Kadhim, M.E. Darvin, T. Vaczi, V.V. Tuchin, M. Veres, Impact of e-cigarette liquid on porcine lung tissue—Ex vivo confocal Raman micro-spectroscopy study, J. Biophotonics 18(12), e202300336 (2025). DOI: 10.1002/jbio.202300336.
70. P.A. Moldon, P.B. Ermolinskiy, A.E. Lugovtsov, P.A. Timoshina, E.N. Lazareva, Yu. I. Surkov, Y.I. Gurfinkel, V.V. Tuchin, A.V. Priezzhev, Influence of optical clearing agents on the scattering properties of human nail bed and blood microrheological properties: In vivo and in vitro study, J. Biophotonics 18(12), e202300524 (2025). DOI: 10.1002/jbio.202300524.
71. M.R. Pinheiro, V.V. Tuchin, L.M. Oliveira, Analysis of the experimental absorption spectrum of the rabbit lung and identification of its components, J. Biophotonics 18(12), e202300494 (2025). DOI: 10.1002/jbio.202300494.
72. M.R. Pinheiro, L.E. Fernandes, I.C. Carneiro, S.D. Carvalho, R.M. Henrique, V.V. Tuchin, H.P. Oliveira, L.M. Oliveira, Optimized reconstruction of the absorption spectra of kidney tissues from the spectra of tissue components using the least squares method, J. Biophotonics18(12), e202300466 (2025). DOI: 10.1002/jbio.202300466.
73. Gusliakova O.I., Mikhailova L.V., Inozemtseva O.A., Pidenko P., Presnyakov K., Shushunova N.A., Gulinyan V., Mayorova O.A., Sindeeva O.A., Khlebtsov B.N., Durymanov M.O., Zyuzin M.V., Sukhorukov G.B. Light‑directed reprogramming of tumor‑associated macrophages via STING agonist delivery. Biomaterials Advances, 2025, 181, 214632. DOI: 10.1016/j.bioadv.2025.214632.
74. Du F., Wu H., Xue J., Yao S., Li R., Zhang J., Wang H., Cheng Q., Zhao F., Huang Y., Zhou Z., Liang F., Gu X., Tuchin V.V., et al. Long‑term investigation of 3D tissue detailed structure and multiparametric vascular network properties using OCT/OCTA for guiding atopic dermatitis theranostics. Journal of Translational Medicine, 2025, 23, 687. DOI: 10.1186/s12967-025-06228-5.
75. Fedorova O.V., Ovchinnikova I.G., Rusinova G.L., Avdeeva V.V., Zhdanov A.P., Zhizhin K.Yu., Kuznetsov N.T., Zakharova L.Ya., Kuznetsova D.A., Razuvaeva Yu.S., Zhiltsova E.P., Sinyashin O.G., Alekseeva A.S., Vodovozova E.L., Abdrakhmanova I.I., Ibrahim A., Solovyeva V.V., Maltsev A.V., Fisenko V.P., Bachurin S.O., Mikhailov Yu.M., Aleksandrova Yu.I., Shurpik D.N., Stoikov I.I., Ziganshina A.Y., Solovieva S.E., Antipin I.S., Agafonov M.A., Terekhova I.V., Ilicheva P.M., Pidenko P.S., Burmistrova N.A., Moustafine R.I., Timergalieva V.R., Zabolotnaya Y.N., Khutoryanskiy V.V., Demin A.M., Levit G.L., Charushin V.N., Krasnov V.P., Goryacheva O.A., Mayorova O.A., Mesheryakova S.M., Goryacheva I.Yu., Ayupova A.I., Fattakhova A.A., Rizvanov A.A., Inozemtseva O.A., Guslyakova O.I., Gorin D.A., Gerasimov A.V., Zubaidullina L.S., Ziganshin M.A., Valiulin S.V., Onischuk A.A., Bezrukov A.N., Galyametdinov Yu.G., Padnya P.L., Nazarova A.A., Sultanova E.D., Burilov V.A. Modern strategies of drug therapy: multi‑target drug delivery, bioimaging, diagnostics. Russian Journal of General Chemistry, 2025, 95(Suppl. 1).
76. Timoshina P.A., Surkov Y.I., Lugovtsov A.E., Priezzhev A.V., Tuchin V.V. Transmission laser speckle contrast imaging combined with optical clearing using magnetic resonance contrast agents. Lasers in Surgery and Medicine, 2025, 57(7), 625–636. DOI: 10.1002/lsm.70051.
77. Konnova S.S., Lepilin P.A., Zanishevskaya A.A., Gryaznov A.Y., Kosheleva N.A., Ilinskaya V.P., Skibina J.S., Tuchin V.V. Microstructured waveguide sensors for point‑of‑care health screening. Photonics, 2025, 12, 399. DOI: 10.3390/photonics12040399.
78. Лазарева Е.Н., Бучарская А.Б., Захаревич А.М., Наволокин Н.А., Шушунова Н.А., Тучин В.В. Структурные изменения кожи и мышечной ткани крыс при модельном сахарном диабете. Оптика и спектроскопия, 2025, 133(5), 511–515.
79. Liu S., Hao J., Yu T., Tuchin V.V., Li J., Li D., Zhu D. Diabetes mellitus impairs blood‑brain barrier integrality and microglial reactivity. Journal of Biophotonics, 2025, 18(12), e202400482. DOI: 10.1002/jbio.202400482.
2024
80. Hao Lin, Dongyu Li, Jingtan Zhu, Shaojun Liu, Jingting Li, Tingting Yu, Valery V. Tuchin, Oxana Semyachkina-Glushkovskaya, Dan Zhu, Transcranial photobiomodulation for brain diseases: review of animal and human studies including mechanisms and emerging trends, Neurophoton. 11(1), 010601 (2024). DOI: 10.1117/1.NPh.11.1.010601.
81. A.S. Shanshool, S. Ziaee, M.A. Ansari, V.V. Tuchin, Advances in the transport of laser radiation to the brain with optical clearing: From simulation to reality, Progress in Quantum Electronics 94, 100506, March 2024. DOI: 10.1016/j.pquantelec.2024.100506.
82. D. Zhu, V.V. Tuchin, Tissue optical clearing imaging from ex vivo toward in vivo. BME Front. 5, 0058 (2024). DOI: 10.34133/bmef.0058.
83. T. Yu, X. Zhong, D. Li, J. Zhu, V.V. Tuchin, D. Zhu, Delivery and kinetics of immersion optical clearing agents in tissues: Optical imaging from ex vivo to in vivo, Advanced Drug Delivery Reviews 215, 115470 (2024). DOI: 10.1016/j.addr.2024.115470.
84. Belyaev I.B., Zelepukin I.V., Kotelnikova P.A., Tikhonowski G.V., Popov A.A., Kapitannikova A.Y., Barman J., Kopylov A.N., Bratashov D.N., Prikhozhdenko E.S., Kabashin A.V., Deyev S.M., Zvyagin A.V. Laser‑synthesized germanium nanoparticles as biodegradable material for near‑infrared photoacoustic imaging and cancer phototherapy. Advanced Science, 2024, 11, 2307060. DOI: 10.1002/advs.202307060.
85. Yanina I.Y., Genina E.A., Tuchina D.K., Timoshina P.A., Navolokin N.A., Bucharskaya A.B., Maslyakova G.N., Tuchin V.V. Optical clearing of ex vivo adipose tissue. Lasers in Surgery and Medicine, 2024, 56(10), 829–835. DOI: 10.1002/lsm.23860.
86. Platonova A.A., Aleksandrova P.V., Alekseeva A.I., Kudryavtseva S.P., Zotov A.K., Zaytsev K.I., Dolganov K.B., Reshetov I.V., Kurlov V.N., Dolganova I.N. Feasibility of monitoring tissue properties during microcirculation disorder using a compact fiber‑based probe with sapphire tip. Journal of Biophotonics, 2024, 17(11), e202400368. DOI: 10.1002/jbio.202400368.
87. Mkrtchyan L., Seferyan T., Parkhats M., Lepeshkevich S., Dzhagarov B., Shmavonyan G., Tuchina E., Tuchin V., Gyulkhandanyan G. The role of singlet oxygen and hydroxyl radical in the photobleaching of meso‑substituted cationic pyridylporphyrins in the presence of folic acid. Journal of Innovative Optical Health Sciences, 2024, 17(05). DOI: 10.1142/S1793545824400029.
88. Pearl W.G., Selvam R., Karmenyan A.V., Perevedentseva E.V., Hung S.-C., Chang H.-H., Shushunova N., Prikhozhdenko E.S., Bratashov D., Tuchin V.V., Cheng C.-L. Berberine mediated fluorescent gold nanoclusters in biomimetic erythrocyte ghosts as a nanocarrier for enhanced photodynamic treatment. RSC Advances, 2024, 14(5), 3321–3334. DOI: 10.1039/d3ra08299g.
89. Svetlitsyna N., Semenova N., Tuchin V.V. Conditions of acceleration and deceleration of the cancer cell growth under osmotic pressure. Chaos, 2024, 34(2), 021102. DOI: 10.1063/5.0189550.
2023
90. N.V. Chernomyrdin, G.R. Musina, P.V. Nikitin, I.N. Dolganova, A.S. Kucheryavenko, A.I. Alekseeva, Y. Wang, D. Xu, Q. Shi, V.V. Tuchin, K.I. Zaytsev, Terahertz technology in intraoperative neurodiagnostics: A review. Opto-Electron Adv 6, (5) 220071 (2023). DOI: 10.29026/oea.2023.220071.
91. I.S. Martins, H.F. Silva, E.N. Lazareva, N.V. Chernomyrdin, K.I. Zaytsev, L.M. Oliveira, and V.V. Tuchin, Measurement of tissue optical properties in a wide spectral range: a review, Biomedical Optics Express, 14 (1), 249–298 (2023). DOI: 10.1364/BOE.479320.
92. A.Y. Sdobnov, J. Lademann, V.V. Tuchin, M. Darvin, Nonlinear Optics of Skin: Enhancement of Autofluorescence and Second Harmonic Generation Signals by Immersion Optical Clearing, Journal of Biomedical Photonics & Engineering 2023, 9(3), 030201. DOI: 10.18287/JBPE23.09.030201.
93. Рытик А.П., Тучин В.В. Эффекты воздействия терагерцевого излучения на живые клетки // Биомедицинская радиоэлектроника. 2023. T. 26. № 6. С. 33−46. DOI: 10.18127/j15604136-202306-05.
94. Perkov S., Makhortov M., Grishin O., Perevoschikov S., Prikhozhdenko E.S., Bratashov D., Gorin D. Optoacoustic monitoring of bilirubin photodegradation. Journal of Biophotonics, 2023, 16(11), e202200339. DOI: 10.1002/jbio.202200339.
95. Khanadeev V.A., Simonenko A.V., Grishin O.V., Khlebtsov N.G. One‑shot laser‑pulse modification of bare and silica‑coated gold nanoparticles of various morphologies. Nanomaterials, 2023, 13, 1312. DOI: 10.3390/nano13081312.
96. Grishin O.V., Shushunova N.A., Bratashov D.N., Prikhozhdenko E.S., Verkhovskii R.A., Kozlova A.A., Abdurashitov A.S., Sindeeva O.A., Karavaev A.S., Kulminskiy D.D., Shashkov E.V., Inozemtseva O.A., Tuchin V.V. Effect of pulsed laser parameters on photoacoustic flow cytometry efficiency in vitro and in vivo. Cytometry A, 2023, 103(11), 868–880. DOI: 10.1002/cyto.a.24778.
97. Bratashov D., Sindeeva O., Grishin O., Prikhozhdenko E., Guslyakova O. The peculiarities of photoacoustic signals from CTCs, tumors and blood vessels of immunocompetent mice. In: Сборник трудов конференции «International Conference on Advanced Laser Technologies (ALT)», 2023.
2022
98. V.V. Tuchin, E.A. Genina, E.S. Tuchina, A.V. Svetlakova, Y.I. Svenskaya, Optical clearing of tissues: issues of antimicrobial phototherapy and drug delivery, Advanced Drug Delivery Reviews 180 (1), 114037 (2022). DOI: 10.1016/j.addr.2021.114037.
99. Е.В. Наумова, Ю.А. Владимиров, В.В. Тучин, В.А. Намиот, И.В. Володяев, Методы исследования сверхслабого свечения биологических объектов. III. Физические методы, Биофизика 67(1), 37–72 (2022). E.V. Naumova, Yu.A. Vladimirov, V.V. Tuchin, V.A. Namiot, and I.V. Volodyaev, Methods of Studying Ultraweak Photon Emission from Biological Objects: III. Physical Methods, Biophysics 67(1), 27–58 (2022). DOI: 10.1134/S0006350922010109.
100. A. Bucharskaya, N. Khlebtsov, B. Khlebtsov, G. Maslyakova, N. Navolokin, V. Genin, E. Genina, V. Tuchin, “Photothermal and photodynamic therapy of tumors with plasmonic nanoparticles: Challenges and prospects, ” Materials 15, 1606 (2022). DOI: 10.3390/ma15041606.
101. A. Shirkavand, V.V. Tuchin, F. Jahangiri, E. Mohajerani, A review on terahertz non-destructive applications for wound and diabetic foot screening, Optical and Quantum Electronics 54 (8), 1–20 (2022).
102. NV Chernomyrdin, M Skorobogatiy, DS Ponomarev, VV Bukin, VV Tuchin, KI Zaytsev, Terahertz solid immersion microscopy: Recent achievements and challenges, Applied Physics Letters 120 (11), 110501 (2022).
103. Y.V. Kistenev, A. Das, N. Mazumder, O.P. Cherkasova, A.I. Knyazkova, A.P. Shkurinov, V.V. Tuchin, I.K. Lednev, Label-free laser spectroscopy for respiratory virus detection: A review, J. Biophotonics 2022, e202200100. DOI: 10.1002/jbio.202200100.
104. A.B. Bucharskaya, I.Yu. Yanina, S.V. Atsigeida, V.D. Genin, E.N. Lazareva, N.A. Navolokin, P.A. Dyachenko, D.K. Tuchina, E.S. Tuchina, E.A. Genina, Yu.V. Kistenev, V.V. Tuchin, Optical clearing and testing of lung tissue using inhalation aerosols: prospects for monitoring the action of viral infections, Biophysical Reviews 14, 1005–1022 (2022). DOI: 10.1007/s12551-022-00991-1.
105. Mordovina E.A., Plastun V.O., Abdurashitov A.S., Proshin P.I., Raikova S.V., Bratashov D.N., Inozemtseva O.A., Goryacheva I.Y., Sukhorukov G.B., Sindeeva O.A. “Smart” polylactic acid films with ceftriaxone loaded microchamber arrays for personalized antibiotic therapy. Pharmaceutics, 2022, 14, 42. DOI: 10.3390/pharmaceutics14010042.
106. Novoselova M., Chernyshev V., Schulga A., Konovalova E., Chuprov‑Netochin R., Abakumova T., German S., Shipunova V., Mokrousov M., Prikhozhdenko E., Bratashov D., Nozdriukhin D., Bogorodskiy A., Grishin O., Kosolobov S., Khlebtsov B., Inozemtseva O., Zatsepin T., Deyev S., Gorin D. Effect of surface modification of multifunctional nanocomposite drug delivery carriers with DARPin on their biodistribution in vitro and in vivo. Applied Bio Materials, 2022, 5(6), 2976–2989. DOI: 10.1021/acsami.6b15811.
2021
107. Kozlova A., Bratashov D., Inozemtseva O., Grishin O., Abdurashitov A., Prikhozhdenko E., Verkhovskii R., Shashkov E., Zharov V.P. Dynamic blood flow phantom for in vivo liquid biopsy standardization. Scientific Reports, 2021, 11, 1185. DOI: 10.1038/s41598-020-80487-8.
108. Dyachenko (Timoshina) P.A., Dolotov L.E., Lazareva E.N., Kozlova A.A., Inozemtseva O.A., Verkhovskii R.A., Afanaseva G.A., Shushunova N.A., Tuchin V.V., Galanzha E.I., Zharov V.P. Detection of melanoma cells in whole blood samples using spectral imaging and optical clearing. IEEE Journal of Selected Topics in Quantum Electronics, 2021, 27(4), 7200711. DOI: 10.1109/JSTQE.2020.3047437.
109. O. Semyachkina-Glushkovskaya, D. Postnov, A. Lavrova, I. Fedosov, E. Borisova, V. Nikolenko, T. Penzel, J. Kurths, and V. Tuchin, Biophotonic Strategies of Measurement and Stimulation of the Cranial and the Extracranial Lymphatic Drainage Function, IEEE Journal of Selected Topics in Quantum Electronics 27(4), July/August 2021, 7400313.
110. Alaa Shanshool and Valery V. Tuchin "Improved optical access of laser radiation to the brain using optical clearing and transparent cranial implants: review", Proc. SPIE 11845, Saratov Fall Meeting 2020: Optical and Nanotechnologies for Biology and Medicine, 118450W (4 May 2021). DOI: 10.1117/12.2593090.
111. L. Fernandes, H. Silva, I. Martins, S. Carvalho, I. Carneiro, R. Henrique, V.V. Tuchin, and L.M. Oliveira, Tissue Spectroscopy and Optical Clearing of Colorectal Mucosa in the Pursuit of New Cancer Diagnostic Approaches, J of Biomedical Photonics & Eng 7(4) 040302–1–16 (2021). DOI: 10.18287/JBPE21.07.040302.
112. Е.В. Наумова, Ю.А. Владимиров, Л.В. Белоусов, В.В. Тучин, И.В. Володяев, Методы исследования сверхслабого свечения биологических объектов. I. История, фундаментальное и прикладное значение исследований сверхслабого свечения, его типы и свойства, Биофизика 66(5), 900–916 (2021); E.V. Naumova, Yu. A. Vladimirov, L.V. Beloussov, V.V. Tuchin, and I.V. Volodyaev, Methods of Studying Ultraweak Photon Emission from Biological Objects: I. History, Types and Properties, Fundamental and Application Significance, Biophysics 66 (5), 764–778 (2021). DOI: 10.31857/S0006302921050082.
113. O.P. Cherkasova, D.S. Serdyukov, E.F. Nemova, A.S. Ratushnyak, A.S. Kucheryavenko, I.N. Dolganova, G. Xu, M. Skorobogatiy, I.V. Reshetov, P.S. Timashev, I.E. Spektor, K.I. Zaytsev, V.V. Tuchin, Cellular effects of terahertz waves, J. Biomed. Opt. 26(9), 090902 (2021).
114. Semenova N., Tuchin V.V. 3D models of the dynamics of cancer cells under external pressure. Chaos, 2021, 31, 083122. DOI: 10.1063/5.0056764.
115. Mokrousov M.D., Thompson W., Ermilov S.A., Abakumova T., Novoselova M.V., Inozemtseva O.A., Zatsepin T.S., Zharov V.P., Galanzha E.I., Gorin D.A. Indocyanine green dye based bimodal contrast agent tested by photoacoustic/fluorescence tomography setup. Biomedical Optics Express, 2021, 12, 3181. DOI: 10.1364/BOE.419461.
116. Sindeeva O.A., Prikhozhdenko E.S., Schurov I., Sedykh N., Goriainov S., Karamyan A., Mordovina E.A., Inozemtseva O.A., Kudryavtseva V., Shchesnyak L.E., et al. Patterned drug‑eluting coatings for tracheal stents based on PLA, PLGA, and PCL for the granulation formation reduction: in vivo studies. Pharmaceutics, 2021, 13, 1437. DOI: 10.3390/pharmaceutics13091437.
117. Nikelshparg E.I., Prikhozhdenko E.S., Verkhovskii R.A., Atkin V.S., Khanadeev V.A., Khlebtsov B.N., Bratashov D.N. Live cell poration by Au nanostars to probe intracellular molecular composition with SERS. Nanomaterials, 2021, 11, 2588. DOI: 10.3390/nano11102588.
2020
118. K.I. Zaytsev, I.N. Dolganova, N.V. Chernomyrdin, G.M. Katyba, A.A. Gavdush, O.P. Cherkasova, G.A. Komandin, M.A. Shchedrina, A.N. Khodan, D.S. Ponomarev, I.V. Reshetov, V.E. Karasik, M.A Skorobogatiy, V.N. Kurlov, and V.V. Tuchin, The progress and perspectives of terahertz technology for diagnosis of neoplasms: A review, Journal of Optics, 22(1), 013001 (2020). DOI: 10.1088/2040-8986/ab4dc3.
119. A. Abdurashitov, V. Tuchin and O. Semyachkina-Glushkovskaya, Photodynamic therapy of brain tumors and novel optical coherence tomography strategies for in vivo monitoring of cerebral fluid dynamics, J. Innov. Opt. Health Sci. 13 (2), 2030004 (2020). DOI: 10.1142/S1793545820300049.
120. G.R. Musina, P.V. Nikitin, N.V. Chernomyrdin, I.N. Dolganova, A.A. Gavdush, G.A. Komandin, D.S. Ponomarev, A.A. Potapov, I.V. Reshetov, V.V. Tuchin, and K.I. Zaytsev, Prospects of terahertz technology in diagnosis of human brain tumors – A review, J. Biomed. Photonics & Eng. 6(2), 020201–1–11, 28 Jun 2020. DOI: 10.18287/JBPE20.06.020201.
121. T. Ermatov, J.S. Skibina, V.V. Tuchin, and D.A. Gorin, Functionalized Microstructured Optical Fibers: Materials, Methods, Applications, Materials, 13(4), 921 (2020). DOI: 10.3390/ma13040921.
122. E.V. Lengert, E.E. Talnikova, V.V. Tuchin, Yu. I. Svenskaya, Prospective Nanotechnology-Based Strategies for Enhanced Intra- and Transdermal Delivery of Antifungal Drugs, Skin Pharmacol. Physiol. 33, 261–269 (2020). DOI: 10.1159/000511038.
123. J.T. Sheridan, R.K. Kostuk, A.F. Gil, Y. Wang, W. Lu, H. Zhong, Y. Tomita, C. Neipp, J. Franc´es, S. Gallego, I. Pascual, V. Marinova, S.-H. Lin, K.-Y. Hsu, F. Bruder, S. Hansen, C. Manecke, R. Meisenheimer, C. Rewitz, T. Rölle, S. Odinokov, O. Matoba, M. Kumar, X. Quan, Y. Awatsuji, P.W. Wachulak, A.V. Gorelaya, A.A. Sevryugin, E.V. Shalymov, V. Yu. Venediktov, R. Chmelik, M.A. Ferrara, G. Coppola, A. M´arquez, A. Bel´endez, W. Yang, R. Yuste, A. Bianco, A. Zanutta, C. Falldorf, J.J. Healy, X. Fan, B.M. Hennelly, I. Zhurminsky, M. Schnieper, R. Ferrini, S. Fricke, G. Situ, H. Wang, A.S. Abdurashitov, V.V. Tuchin, N.V. Petrov, T. Nomura, D.R. Morim and K. Saravanamuttu, Roadmap on holography, J. Opt. 22 (2020) 123002. DOI: 10.1088/2040-8986/abb3a4.
124. О.П. Черкасова, Д.С. Сердюков, А.С. Ратушняк, Е.Ф. Немова, Е.Н. Козлов, Ю.В. Шидловский, К.И. Зайцев, В.В. Тучин, Механизмы влияния терагерцового излучения на клетки (обзор), Оптика и спектроскопия 128(6), 852–864, 2020. DOI: 10.21883/OS.2020.06.49420.51-20.
125. Alaa Sabeeh Shanshool, Valery V. Tuchin, Recent Advances in the Laser Radiation Transport through the Head Tissues of Humans and Animals – A Review, J. Biomed. Photonics & Eng. 6(4) 040201–1–29 (2020). DOI: 10.18287/JBPE20.06.040201.
126. Genina E.A., Surkov Y.I., Serebryakova I.A., Bashkatov A.N., Tuchin V.V., Zharov V.P. Rapid ultrasound optical clearing of human light and dark skin. IEEE Transactions on Medical Imaging, 2020. DOI: 10.1109/TMI.2020.2989079.
127. Novoselova M.V., Abakumova T.O., Khlebtsov B.N., Zatsepina T.S., Lazareva E.N., Tuchin V.V., Zharov V.P., Gorin D.A., Galanzha E.I. Optical clearing for photoacoustic lympho‑ and angiography beyond conventional depth limit in vivo. Photoacoustics, 2020, 20, 100186.
128. Nozdriukhin D., Besedina N., Chernyshev V., Efimova O., Rudakovskaya P., Novoselova M., Bratashov D., Chuprov‑Netochin R., Kamyshinsky R., Vasiliev A., Chermoshentsev D., Dyakov S., Zharov V., Gippius N., Gorin D., Yashchenok A. Gold nanoparticle‑carbon nanotube multilayers on silica microspheres: optoacoustic‑Raman enhancement and potential bioapplications. Materials Science & Engineering C, 2020. DOI: 10.1016/j.msec.2020.111736.
129. Ishbulatov Y.M., Skazkina V.V., Karavaev A.S., Inozemtseva O.A., Bratashov D.N., Abdurashitov A.S., Grishin O.V., Hramkov A.N., Zharov V.P. Comparing the spectral properties of the laser‑induced acoustic responses from blood and cancer cells in vitro. Russian Open Medical Journal, 2020, 9. DOI: 10.15275/rusomj.2020.0209.
130. Ishbulatov Y.M., Skazkina V.V., Karavaev A.S., Inozemtseva O.A., Bratashov D.N., Abdurashitov A.S., Grishin O.V., Hramkov A.N., Zharov V.P. Applicability of correlation analysis for dynamic detection of single cancer cells with photoacoustic technique. In: 4th Scientific School on Dynamics of Complex Networks and their Application in Intellectual Robotics (DCNAIR), Innopolis, Russia, 2020, 110–111. DOI: 10.1109/DCNAIR50402.2020.9216923.
2019
131. О.А. Смолянская, Е.Н. Лазарева, С.С. Налегаев, Н.В. Петров, К.И. Зайцев, П.А. Тимошина, Д.К. Тучина, Я.Г. Торопова, О.В. Корнюшин, А.Ю. Бабенко, Ж.-П. Гийе, В.В. Тучин, Мультимодальная оптическая диагностика гликированных биологических тканей, Успехи биологической химии, т. 59, 2019, с. 253–294. (O.A. Smolyanskaya, E.N. Lazareva, S.S. Nalegaev, N.V. Petrov, K.I. Zaytsev, P.A. Timoshina, D.K. Tuchina, Ya. G. Toropova, O.V. Kornyushin, A.Yu. Babenko, J.-P. Guillet, V.V. Tuchin, Multimodal Optical Diagnostics of Glycated Biological Tissues, Biochemistry (Moscow) 84, Suppl. 1, S124-S143, 2019). DOI: 10.1134/S0006297919140086.
132. A.Ю. Сдобнов, Ю. Ладеманн, М.Е. Дарвин, В.В. Тучин, Методы молекулярной оптической визуализации в дерматологии при оптическом просветлении кожи, Успехи биологической химии, т. 59, 2019, с. 295–322. (A. Yu. Sdobnov, J. Lademann, M.E. Darvin, V.V. Tuchin, Methods for Optical Skin Clearing in Molecular Optical Imaging in Dermatology, Biochemistry (Moscow) 84, Suppl. 1, S144-S158, 2019). DOI: 10.1134/S0006297919140098.
133. К.И. Зайцев, И.Н. Долганова, Н.В. Черномырдин, Г.А. Командин, Д.В. Лаврухин, И.В. Решетов, В.Н. Курлов, Д.С. Пономарев, В.В. Тучин, И.Е. Спектор, В.Е. Карасик, “Применение терагерцовых технологий в биофотонике. Часть 1: методы терагерцовой спектроскопии и визуализации тканей, ” Фотоника 13(7), 1–8 (2019). DOI: 10.22184/FRos.2019.13.5.462.46.
134. Novoselova M.V., Bratashov D.N., Sarimollaoglu M., Nedosekin D.A., Harrington W., Watts J.A., Han M., Khlebtsov B.N., Galanzha E.I., Gorin D.A., Zharov V.P. Photoacoustic and fluorescent effects in multilayer plasmon‑dye interfaces. Journal of Biophotonics, 2019, 12(4), e201800265. DOI: 10.1002/jbio.201800265.
135. Nima Z.A., Vang K.B., Nedosekin D., Kannardy G., Saini V., Bourdo S., Majeed W., Watanabe F., Darrigues E., Alghazali K.M., Alawajji R.A., Petibone D., Ali S., Biris A.R., Casciano D., Ghosh A., Salamo G., Zharov V., Biris A.S. Quantification of intracellular graphene and induced surface receptor responses. Nanoscale, 2019, 11(3), 932–944. DOI: 10.1039/c8nr06847j.
136. Galanzha E.I., Menyaev Y.A., Yadem A.C., Sarimollaoglu M., Juratli M.A., Nedosekin D.A., Foster S.R., Jamshidi‑Parsian A., Siegel E.R., Makhoul I., Hutchins L.F., Suen J.Y., Zharov V.P. In vivo liquid biopsy using Cytophone platform for photoacoustic detection of circulating tumor cells in patients with melanoma. Science Translational Medicine, 2019, 11, eaat5857. DOI: 10.1126/scitranslmed.aat5857.
137. Steenbergen W., Zharov V.P. Estimating the addressed blood volume in theranostic in vivo flow cytometry towards reaching the total blood volume by in vivo flow cytometry and theranostics. Cytometry Part A, 2019, 95, 1223. DOI: 10.1002/cyto.a.23916.
138. Sindeeva O.A., Verkhovskii R.A., Sarimollaoglu M., Afanaseva G.A., Fedonnikov A.S., Osintsev E.Yu., Kurochkina E.N., Gorin D.A., Deyev S.M., Zharov V.P., Galanzha E.I. New frontiers in diagnosis and therapy of circulating tumor markers in cerebrospinal fluid in vitro and in vivo. Cells, 2019, 8, 1195. DOI: 10.3390/cells8101195.
139. Mokrousov M.D., Novoselova M.V., Nolan J., Harrington W., Rudakovskaya P., Bratashov D.N., Galanzha E.I., Fuenzalida‑Werner J.P., Yakimov B.P., Nazarikov G., Drachev V.P., Shirshin E.A., Ntziachristos V., Stiel A.C., Zharov V.P., Gorin D.A. Amplification of photoacoustic effect in bimodal polymer particles by self‑quenching of indocyanine green. Biomedical Optics Express, 2019, 10, 4775. DOI: 10.1364/BOE.10.004775.
140. Harrington W.N., Novoselova M.V., Bratashov D.N., Khlebtsov B.N., Gorin D.A., Galanzha E.I., Zharov V.P. Photoswitchable spasers with a plasmonic core and photoswitchable fluorescent proteins. Scientific Reports, 2019, 9, 1. DOI: 10.1038/s41598-019-48335-6.
141. Дубровский В.А., Дворецкий К.Н., Марков С.В., Карпочева Е.П., Тучин В.В. Оптическая цифровая регистрация седиментации эритроцитов и ее моделирование в форме коллективного процесса. Оптика и спектроскопия, 2019, 126(5).
142. Carneiro I., Carvalho S., Henrique R., Oliveira L., Tuchin V.V. Clearing kinetics of optical properties of muscle during optical clearing. IEEE Journal of Selected Topics in Quantum Electronics, 2019, 25(1). DOI: 10.1109/JSTQE.2018.2840346.
2018
143. Sun RW, Tuchin VV, Zharov VP, Galanzha EI, Richter GT. Current status, pitfalls and future directions in the diagnosis and therapy of lymphatic malformation. J. Biophotonics 11(8), e201700124 (2018). DOI: 10.1002/jbio.201700124.
144. A.Yu. Sdobnov, M.E. Darvin, E.A. Genina, A.N. Bashkatov, J. Lademann, V.V. Tuchin, Recent progress in tissue optical clearing for spectroscopic application, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 197, 216–229 (2018). DOI: 10.1016/j.saa.2018.01.085.
145. Daria K. Tuchina and Valery V. Tuchin, Optical and structural properties of biological tissues under diabetes mellitus, Journal of Biomedical Photonics & Engineering 4 (2) 020201–1–22 (2018). DOI: 10.18287/JBPE18.04.020201.
146. A.N. Bashkatov, K.V. Berezin, K.N. Dvoretskiy, M.L. Chernavina, E.A. Genina, V.D. Genin, V.I. Kochubey, E.N. Lazareva, A.B. Pravdin, M.E. Shvachkina, P.A. Timoshina, D.K. Tuchina, D.D. Yakovlev, D.A. Yakovlev, I. Yu. Yanina, O.S. Zhernovaya, V.V. Tuchin, Measurement of tissue optical properties in the context of tissue optical clearing, J. Biomed. Opt. 23(9), 091416 (2018). DOI: 10.1117/1.JBO.23.9.091416.
147. O.A. Smolyanskaya, N.V. Chernomyrdin, A.A. Konovko, K.I. Zaytsev, I.A. Ozheredov, O.P. Cherkasova, M.M. Nazarov, J.-P. Guillet, S.A. Kozlov, Yu.V. Kistenev, J.-L. Coutaz, P. Mounaix, V.L. Vaks, J.-H. Son, H. Cheon, V.P. Wallace, Yu. Feldman, I. Popov, A.N. Yaroslavsky, A.P. Shkurinov, V.V. Tuchin, Terahertz biophotonics as a tool for studies of dielectric and spectral properties of biological tissues and liquids, Progress in Quantum Electronics, 62, November 2018, pp. 1–77. Ссылка.
148. Tuchin V.V., Zharov V.P., Galanzha E.I. Biophotonics for lymphatic theranostics in animals and humans. Journal of Biophotonics, 2018, 11(8), e201811001. DOI: 10.1002/jbio.201811001.
149. Jawad J.H., Sarimollaoglu M., Biris A.S., Zharov V.P. Dynamic blood flow phantom with negative and positive photoacoustic contrasts. Biomedical Optics Express, 2018, 9, 4702–4713. DOI: 10.1364/BOE.9.004702.
150. Juratli M.A., Menyaev Y.A., Sarimollaoglu M., Siegel E., Nedosekin D.A., Culp W.C., Suen J.Y., Galanzha E.I., Zharov V.P. Noninvasive label-free detection of circulating white and red blood clots in deep vessels with focused photoacoustic probe. Biomedical Optics Express, 2018, 9, 5667–5677. DOI: 10.1364/BOE.9.005667.
151. Nolan J., Nedosekin D.A., Galanzha E.I., Zharov V.P. Detection of apoptotic circulating tumor cells using in vivo fluorescence flow cytometry. Cytometry Part A, 2018, 95(6), 664–671. DOI: 10.1002/cyto.a.23642.
152. Nima Z.A., Watanabe F., Jamshidi‑Arsian A., Sarimollaoglu M., Nedosekin D.A., Watts J.A., Han M., Biris A.S., Zharov V.P., Galanzha E.I. Bioinspired magnetic nanoparticles as multimodal photoacoustic, photothermal, and photomechanical contrast agents. Scientific Reports, 2018, 8, 887. DOI: 10.1038/s41598-018-37353-5.
153. Usoltseva L.O., Volkov D.S., Nedosekin D.A., Korobov M.V., Proskurnin M.A., Zharov V.P. Absorption spectra of nanodiamond aqueous dispersions by optical absorption and optoacoustic spectroscopies. Photoacoustics, 2018, 12, 55–66. DOI: 10.1016/j.pacs.2018.10.003.
Патенты
154. Урсзула Забарыло, Олаф Минет, Артюшенко В.Г., Тучина Д.К., Тучин В.В. Способ получения оптического изображения межфаланговых суставов и оптический сенсор для его реализации. Патент РФ № 2697594 от 15.08.2019.
155. Свенская Ю.И., Генина Э.А., Гуслякова О.И., Горин Д.А., Сухоруков Г.Б., Тучин В.В., Тальникова Е.Е., Утц С.Р. Способ фотохимиотерапии витилиго. Патент РФ № 2698871 C1 от 30.08.2019.
156. О.В. Семячкина-Глушковская, Ю.Г. Куртц, Э.У. Рафаилов, В.В. Тучин, Д.Е. Брагин, А.Б. Салмина, В.В. Салмин, А.А. Широков, Н.А. Наволокин, Е.Г. Борисова, М.В. Уланова, А.В. Моргун, А.А. Бодрова, А.П. Хороводов, А.А. Шушунова, А.Э. Шариф, М.М. Климова, А.В. Терсков, Дубровский А.А. Способ неинвазивного повышения проницаемости гематоэнцефалического барьера. Патент РФ № 2688013 C1. Опубликован 17.05.2019.
157. V.V. Tuchin, A.N. Bashkatov, P.A. Timoshina, D.K. Tuchina, E.A. Genina, V.I. Kochubei, A.S. Abdurashitov, O.V. Semyachkina-Glushkovskaya. Method for laser biomodulation and increasing blood-brain barrier permeability. WO 2021/133233 A1, 01.07.2021.
158. Свенская Ю.И., Ленгерт Е.В., Савельева М.С., Тучин В.В., Терентюк Г.С., Тальникова Е.Е., Бучарская А.Б., Васильева Н.В., Босак И.А., Выборнова И.В., Чилина Г.А., Крылова Е.В. Способ терапии поверхностных микозов. Патент РФ № 2749481.
159. Семячкина-Глушковская О.В., Курц Ю.Г., Широков А.А., Хороводов А.П., Терсков А.В., Дубровский А.И., Тучин В.В., Федосов И.В., Башкатов А.Н., Генина Э.А., Мамедова А.Т. К., Климова М.М., Блохина И.А., Лежнёв Н.Д. Способ стимуляции очистительной функции лимфатической системы мозга. Патент РФ № 2766527 C1 от 15.03.2022.
160. Якунин А.Н., Зарьков С.В., Аветисян Ю.А., Акчурин Г.Г., Акчурин Г.Г., Тучин В.В. Способ управляемой лазерной локальной гипертермии клеток или микроорганизмов. Патент РФ № 2731813 C1. Опубликован 08.09.2020.
161. В.В. Тучин, Д.К. Тучина, А.П. Савицкий, А.А. Богданов мл. Способ визуализации биологических тканей и/или органов. Патент РФ № 2735463. Опубликован 03.09.2020.
162. Тучин В.В., Башкатов А.Н., Тимошина П.А., Тучина Д.К., Генина Э.А., Кочубей В.И., Абдурашитов А.С., Семячкина-Глушковская О.В. Способ лазерной биомодуляции и повышения проницаемости гематоэнцефалического барьера. Патент РФ № 2740123.
163. Тучин В.В., Оливейра Л.М. К., Хенрик Р.М. Ф., Де Карвалхо С.И. Д., Карнейро И.К. С. Способ создания оптических окон прозрачности биологических тканей для диагностики и лечения в ультрафиолетовой области. Патент РФ № 2745614 C1.
164. Тучин В.В., Селифонов А.А. Способ фототерапии хронического рецидивирующего афтозного стоматита. Патент РФ № 2768593 от 24.03.2022.
165. Тучин В.В., Селифонов А.А. Способ оптического просветления слизистой полости рта. Патент РФ № 2768584 от 24.03.2022.
166. Якунин А.Н., Акчурин Гар.Г., Акчурин Ге.Г., Аветисян Ю.А., Зарьков С.В., Абаньшин Н.П., Тучин В.В. Фотоэмиттерный матричный источник рентгеновского излучения. Патент РФ № 2774675. Опубликован 21.06.2022.
167. Генин В.Д., Генина Э.А., Тучин В.В., Бучарская А.Б., Терентюк Г.С., Наволокин Н.А., Хлебцов Н.Г. Способ лазерной гипертермии опухолей при введении плазмонно-резонансных наночастиц с применением техники иммерсионного оптического просветления. Патент РФ № 2800156.
168. Л.М. Оливейра, В.В. Тучин, Р.М. Ф. Энрике, С.И. Д. де Карвалью, И.К. С. Карнейро. Способ создания окон прозрачности в непрозрачных материалах в области среднего и глубокого ультрафиолета. Патент Португалии PT 115371 A. Опубликован 13.09.2023.
169. Селифонов А.А., Селифонова Е.И., Тучин В.В. Способ цветовой диагностики фазы цикла яичников. Патент РФ № 2819522 от 05.12.2023.
170. Селифонов А.А., Селифонова Е.И., Тучин В.В. Способ консервации яичников. Патент РФ № 2822518 C1 от 08.07.2024.
171. Селифонов А.А., Селифонова Е.И., Тучин В.В. Способ определения фазы цикла яичников. Патент РФ № 2826570 C1 от 12.09.2024.
172. Кузинова Я.К., Капралов С.В., Конопацкова О.М., Тучин В.В., Генина Э.А., Серебрякова И.А., Сурков Ю.И. Способ дифференциальной диагностики формы базальноклеточного рака кожи. Патент РФ № 2834804 от 14.02.2025.
Специальные выпуски журналов
173. E.I. Galanzha, V.P. Zharov, V.V. Tuchin, “Photonics meets Lymphatics, ” J. Biophoton. 10 (2018).
174. Mikhail Yu. Kirillin, Kirill V. Larin, Ilya V. Turchin, Valery V. Tuchin, “Topical Problems of Biophotonics: from Optical Bioimaging to Clinical Biophotonics, ” J. Biomed. Opt. 23(9) (2018). DOI: 10.1117/1.JBO.23.9.091401.
175. E.I. Galanzha, D.A. Gorin, V.V. Tuchin (Eds.), Years in Optoacoustics: 70-th Anniversary of Prof. Vladimir P. Zharov, J of Biomedical Photonics & Eng 5(1) (2019).
176. А.В. Приезжев, В.В. Тучин, А.Е. Луговцов, М.Ю. Кириллин, «Лазерная биофотоника», Квантовая электроника, 49, № 1 (2019).
177. К.И. Зайцев, И.Н. Долганова, В.В. Тучин, Специальный выпуск секции «Биофотоника» The 22nd Annual Conference Saratov Fall Meeting 2018 (SFM'18): VI International Symposium "Optics and Biophotonics" and XXII International School for Junior Scientists and Students on Optics, Laser Physics & Biophotonics, Оптика и спектроскопия, 2019, 126 (5). Ссылка.
178. К.И. Зайцев, И.Н. Долганова, В.В. Тучин, Специальный выпуск секции «Биофотоника» The 22nd Annual Conference Saratov Fall Meeting 2018 (SFM'18): VI International Symposium "Optics and Biophotonics" and XXII International School for Junior Scientists and Students on Optics, Laser Physics & Biophotonics, Оптика и спектроскопия, 2019, 126 (6). Ссылка.
179. А.В. Приезжев, А.Е. Луговцов, М.Ю. Кириллин, В.В. Тучин, Актуальные проблемы биофотоники, Квантовая электроника, 50, № 1, 1 (2020).
180. Н.В. Черномырдин, К.И. Зайцев, И.Н. Долганова, П.С. Тимашев и В.В. Тучин, Специальный выпуск секции «Биофотоника», Оптика и спектроскопия, 2020, 128 (6). Ссылка.
181. Н.В. Черномырдин, К.И. Зайцев, И.Н. Долганова, П.С. Тимашев и В.В. Тучин, Специальный выпуск секции «Биофотоника», Оптика и спектроскопия, 2020, 128 (7). Ссылка.
182. Kirill I. Zaytsev, Irina N. Dolganova, Valery V. Tuchin, Vladimir N. Kurlov (Eds.), Terahertz and Infrared Optics: Towards Biophotonics, Optical Engineering 2020, 59 (6). Ссылка.
183. Irina N. Dolganova, Dmitry S. Ponomarev, Igor E. Spektor, Peter S. Timashev, Michael S. Shur, Valery V. Tuchin (Eds.), Advances in Terahertz and Infrared Optoelectronics, Optical Engineering 2021, 60 (8).
184. Kirill I. Zaytsev, Vladimir N. Kurlov, Maksim Skorobogatiy, Igor V. Reshetov, Valery V. Tuchin (Eds.), Advances in Terahertz Biomedical Science and Applications, Journal of Biomedical Optics, 2021.
185. P. Dyachenko, T.Yu, D. Zhu, and V.V. Tuchin (Eds.), Special Issue on Advances in Biophotonics and Biomedical Optics, J. Innov. Opt. Health Sci. 14 (5), 2102003–1–2 (2021). DOI: 10.1142/S179354582102003X.
186. Tuchin, V.V.; Szczerska, M. Special Issue "Advanced Materials for Biophotonics Applications" Materials 14, (2020–2023). Ссылка.
187. А.В. Приезжев, А.Е. Луговцов, М.Ю. Кириллин, В.В. Тучин, “Лазерная биофотоника”, Квантовая электроника, 51:1 (2021), 1 [Quantum Electron. 51(1), 1(2021)].
188. А.В. Приезжев, В.В. Тучин, А.Е. Луговцов, М.Ю. Кириллин, Специальный выпуск по лазерной биофотонике, Квантовая электроника, том 52 (1), 1 (2022); [Quantum Electronics, 2022, 52:1, 1].
189. Walter Blondel, Dan Zhu, and Valery V. Tuchin (Guest Editors), Special Issue "Tissue Optics", MDPI Photonics, 8/9, 2021/2022. Ссылка.
190. Valery V. Tuchin, Special Issue on Feature Paper in Optical and Photonic Materials, MDPI Materials, 2021–2023. Ссылка.
191. P Xi, X Wei, J Qu, VV Tuchin (Eds.), Shedding Light on Biology and Healthcare, special issue on Biomedical Optics, Light: Science & Applications 11 (1), 1–3 (2022).
192. A.A. Tsygankov, G.Y. Riznichenko, A.B. Rubin, A.E. Solovchenko, V.V. Tuchin (Eds.). 9th Congress of the Russian Society for Photobiology. Biophysical Reviews, 2022, 14(4). Ссылка.
193. L.M. Oliveira, I. Meglinski, V.V. Tuchin, 1st Spring Biophotonics Conference in Porto, Journal of Biophotonics, e202380001(2022). DOI: 10.1002/jbio.202380001.
194. P. Dyachenko, T. Yu, D. Zhu, V.V. Tuchin, Special Issue on Advances in Biophotonics and Biomedical Optics: Part II, Journal of Innovative Optical Health Sciences 15 (1), 2202001(2022). DOI: 10.1142/S1793545822020011.
195. Q. Luo, V.V. Tuchin, L.Wang (Eds.), The special issue on celebrating the 15th anniversary of JIOHS and the 70th anniversary of HUST, Journal of Innovative Optical Health Sciences 16(1), 2302001 (2023). DOI: 10.1142/S1793545823020017.
196. Jürgen Kurths, Thomas Penzel, Valery Tuchin, Teemu Myllylä, Ruikang Wang, Oxana Semyachkina-Glushkovskaya, Editorial on the focus point on breakthrough optics- and complex systems-based technologies of modulation of drainage and clearing functions of the brain, Eur. Phys. J. Plus (2023) 138:226. DOI: 10.1140/epjp/s13360-023-03777-w.
197. Valery V. Tuchin, Special Issue, The 15th Anniversary of Materials—Recent Advances in Optical and Photonic Materials, MDPI Materials, 2023–2024. Ссылка.
198. Szczerska, M.; Tuchin, V.V. Special Issue "Advanced Materials for Biophotonics Applications" Materials (Volume II) MDPI Materials, 2024. Ссылка.
199. L.M. Oliveira, I. Meglinski, I. Gannot, V.V. Tuchin, 2nd Spring Biophotonics Conference in Porto. J. Biophotonics 18(12) e202480001 (2025). DOI: 10.1002/jbio.202480001.
200. Цыганков А.А., Борисова-Мубаракшина М.М., Высоцкий Е.С., Соловченко А.Е., Суворов Н.В., Тучин В.В, X Съезд Российского фотобиологического общества с конференцией «Современные проблемы фотобиологии», Биофизика, 2024.
201. T. Yu, D. Zhu, V.V. Tuchin, Special Issue on Chinese—Russian Workshop on Biophotonics and Biomedical Optics 2025, Journal of Innovative Optical Health Sciences 2026, 19(05), 2603001. DOI: 10.1142/S179354582603001X.