Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
ТЕХНОЛОГИЯ ДОПОЛНЕННОЙ РЕАЛЬНОСТИ В ХИРУРГИЧЕСКОМ ЛЕЧЕНИИ НОВООБРАЗОВАНИЙ ПОДЖЕЛУДОЧНОЙ ЖЕЛЕЗЫ. / Трофимова, Татьяна Николаевна; Завражнов , Анатолий Анатольевич; Кащенко, Виктор Анатольевич; Артемьева, Д. А. ; Иванов, Владимир Михайлович; Синегуб, Андрей Владимирович.
в: АННАЛЫ ХИРУРГИЧЕСКОЙ ГЕПАТОЛОГИИ, Том 31, № 1, 26.03.2026, стр. 84-92.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - ТЕХНОЛОГИЯ ДОПОЛНЕННОЙ РЕАЛЬНОСТИ В ХИРУРГИЧЕСКОМ ЛЕЧЕНИИ НОВООБРАЗОВАНИЙ ПОДЖЕЛУДОЧНОЙ ЖЕЛЕЗЫ
AU - Трофимова, Татьяна Николаевна
AU - Завражнов , Анатолий Анатольевич
AU - Кащенко, Виктор Анатольевич
AU - Артемьева, Д. А.
AU - Иванов, Владимир Михайлович
AU - Синегуб, Андрей Владимирович
PY - 2026/3/26
Y1 - 2026/3/26
N2 - Objective. Analysis of the possibility and effectiveness of integrating intraoperative augmented reality into pancreatic surgery. Materials and methods. A search and selection of publications was conducted in peer-reviewed databases using the key phrases “augmented reality”, “3D modeling”, “surgical visualization”, and “intraoperative technology”. The search was limited to peer-reviewed publications in the English language. The analysis was supplemented by the authors’ own clinical observations of a mucinous cystadenoma of the tail of the pancreas with malignancy. During surgery, the technology of augmented reality with data recording in the Medgital Vision software and hardware complex was used. Results. Intraoperative augmented reality ensures the possibility of creating a “transparent” anatomy by forming 3D models of the pancreas, neoplasms, and vascular structures in real time. According to most authors, the use of augmented reality improves the visualization of the vascular bed in the surgical field. However, it does not significantly affect the duration of the operation and the amount of blood loss in all situations, which is confirmed by the results of the authors’ own observations. Conclusion. In order to increase the informative value of augmented reality technology and ensure its widespread application in surgical practice, studies involving large groups of patients are required for selecting markers for accurate spatial registration of 3D models. Augmented reality should be considered an important component of the emerging set of technologies for safe and accurate operations.
AB - Objective. Analysis of the possibility and effectiveness of integrating intraoperative augmented reality into pancreatic surgery. Materials and methods. A search and selection of publications was conducted in peer-reviewed databases using the key phrases “augmented reality”, “3D modeling”, “surgical visualization”, and “intraoperative technology”. The search was limited to peer-reviewed publications in the English language. The analysis was supplemented by the authors’ own clinical observations of a mucinous cystadenoma of the tail of the pancreas with malignancy. During surgery, the technology of augmented reality with data recording in the Medgital Vision software and hardware complex was used. Results. Intraoperative augmented reality ensures the possibility of creating a “transparent” anatomy by forming 3D models of the pancreas, neoplasms, and vascular structures in real time. According to most authors, the use of augmented reality improves the visualization of the vascular bed in the surgical field. However, it does not significantly affect the duration of the operation and the amount of blood loss in all situations, which is confirmed by the results of the authors’ own observations. Conclusion. In order to increase the informative value of augmented reality technology and ensure its widespread application in surgical practice, studies involving large groups of patients are required for selecting markers for accurate spatial registration of 3D models. Augmented reality should be considered an important component of the emerging set of technologies for safe and accurate operations.
KW - ДОПОЛНЕННАЯ РЕАЛЬНОСТЬ
KW - резекция поджелудочной железы
KW - хирургическая визуализация
KW - 3D-Моделирование
KW - интраоперационные технологии
KW - сосудистая анатомия
KW - 3D modeling
KW - augmented reality
KW - intraoperative technologies
KW - pancreatic resection
KW - surgical visualization
KW - vascular anatomy
UR - https://elibrary.ru/zpozxg
UR - https://www.mendeley.com/catalogue/fb8ae9a7-8656-3f99-8f90-d8d96e80560e/
U2 - 10.16931/1995-5464.2026-1-84-92
DO - 10.16931/1995-5464.2026-1-84-92
M3 - статья
VL - 31
SP - 84
EP - 92
JO - АННАЛЫ ХИРУРГИЧЕСКОЙ ГЕПАТОЛОГИИ
JF - АННАЛЫ ХИРУРГИЧЕСКОЙ ГЕПАТОЛОГИИ
SN - 1995-5464
IS - 1
ER -
ID: 153809807