DOI: 10.25881/20728255_2025_20_2_4

Authors

Schevchenko Yu.L., Karpov O.E., Vetshev P.S., Politova A.K., Maksimenkov A.V., Khanaliev B.V., Ablitsov A.Yu., Zuev A.A., Pimanchev O.V., Daminov V.D.

Pirogov National Medical and Surgical Center, Moscow

Abstract

The article examines the role of robot-assisted technologies in modern surgery and medical rehabilitation. Their integration into clinical practice has led to changes in the spectrum of surgical interventions, the development of new types of operations and rehabilitation protocols, and has also influenced the conceptual framework and clinical rhetoric used by specialists.

Keywords: robot-assisted surgery, robotic surgical complex, robot-assisted operations, medical rehabilitation, medical robots.

References

1. Shevchenko YuL, Karpov OE, editors. Robot-assistirovannaya endovideochirurgia. Moscow: DPK Press. 2019; 380p. (In Russ.)

2. Tkachenko PV, Daminov VD. Zero-Gravity Robotic-Assisted Locomotion Simulator in Rehabilitation: a Prospective Randomized Clinical Study of 30 Spinal Trauma Sequelae Patients. Bulletin of Rehabilitation Medicine. 2022; 21(5): 87-95. doi: 10.38025/2078-1962-2022-21-5-87-95.

3. Hanaliev BV, Gusarov VG, Kosarev EI. Robot-assisted prostatvesiculectomy in a patient with bladder stones. Bulletin of Pirogov National Medical & Surgical Center. 2021; 16(3): 101-103. (In Russ.)

4. Khanaliev BV, Aliev T-AA, Aliev UA, et al. The effect of large prostate volume on functional results after robot-assisted prostatectomy. Bulletin of the Medical Institute of Continuing Education. 2024; 14(4): 86-90. (In Russ.)

5. Politova AK, Alexandrova AD, Vershinina YuA, et al. Robot-assisted (Da Vinci) operations in the treatment of infiltrative endometriosis. Russian Bulletin of obstetrician-gynecologist. 2022; 22(5): 62-67. (In Russ.) doi: 10.17650/1994-4098-2024-20-3-78-85.

6. Politova AK, Rokhlina MI, Rokhlina EV, et al. The first experience of using fluorescence imaging technology in laparoscopic treatment of infiltrative genital endometriosis. Obstetrics and Gynecology. 2024; 12(4b): 43-50. (In Russ.) doi: 10.33029/2303-9698-2024-12-4-43-50.

7. Karpov OE, Maksimenkov AV, Stepanyuk IV, et al. Laparoscopic and robotic technologies in the treatment of patients with rectal cancer. Bulletin of Pirogov National Medical & Surgical Center. 2016; 11(2): 49-53. (In Russ.)

8. Shevchenko YuL, Karpov OE, Vetshev PS, et al. Results of video-assisted technologies in colorectal surgery. Pirogov Russian Journal of Surgery. 2018; 2: 66‑73. (In Russ.) doi: 10.17116/hirurgia2018266-73.

9. SHevchenko YUL, Ablicov AYU, et al. Robot-assistirovannaya timektomiya v lechenii generalizovannoj miastenii. Bulletin of Pirogov National Medical & Surgical Center. 2017; 12(1): 15-21. (In Russ.)

10. Vetshev PS, Ablitsov YuA, Ablitsov AYu, et al. Modern view on surgical treatment of thymoma. Bulletin of Pirogov National Medical & Surgical Center. 2017; 12(2): 89-94. (In Russ.)

11. Zuev AA, Golovteev AL, Pedyash NV, et al. Possibilities for surgical treatment of the pharmacoresistant form of epilepsy using robot-assisted implantation of deep electrodes for invasive stereoelectroencephalography. Russian journal of neurosurgery. 2020; 22(1): 12-20. (In Russ.) doi: 10.17650/1683-3295-2020-22-1-12-20.

12. Alekseev IM, Pekov ZhZh, Pedyash NV, et al. Safety of robot-assisted implantation of deep electrodes for invasive stereo-EEG monitoring. Burdenko's Journal of Neurosurgery. 2024; 88(1): 28‑38. (In Russ., In Engl.)

For citation

Schevchenko Yu.L., Karpov O.E., Vetshev P.S., Politova A.K., Maksimenkov A.V., Khanaliev B.V., Ablitsov A.Yu., Zuev A.A., Pimanchev O.V., Daminov V.D. Pirogov center – the hub of robot-assisted surgery and rehabilitation. Bulletin of Pirogov National Medical & Surgical Center. 2025;20(2):4-10. (In Russ.) https://doi.org/10.25881/20728255_2025_20_2_4