机器人辅助腹腔镜远程手术与量子密码通信在泌尿外科的创新整合:临床应用和初步经验

IF 2.3 3区 医学 Q2 SURGERY
Guangdi Chu, Xuecheng Yang, Xin Zhang, Bo Guan, Jianchang Zhao, Yuan Gao, Yi Yuan, Yuxuan Cao, Shuxin Wang, Jianmin Li, Haitao Niu
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引用次数: 0

摘要

远程外科的出现引起了全球的关注,安全的网络传输被认为是其成功的关键决定因素。本研究旨在评估量子密码通信在远程部分肾切除术中的安全性和可行性。方法外科医生通过遥控手术机器人在超过260公里的距离对患者进行手术。远程手术过程的关键评估指标包括成功率、并发症发生率、网络延迟和数据包丢失。结果患者平均BMI为29.4 kg/m2,平均热缺血时间为26 min,丢包率为0%。随访结果显示,术后患者恢复良好。结论:我们提出了一种基于量子密码通信的远程肾部分切除术的新模式。前沿技术的应用为患者提供了更安全的远程医疗选择,促进了远程手术的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Integration of Robotic-Assisted Laparoscopic Telesurgery and Quantum Cryptography Communication in Urology: Clinical Application and Initial Experience

Background

The emergence of telesurgery has received global interest, with secure network transmission identified as a crucial determinant of its success. This study aimed to evaluate the safety and viability of employing quantum cryptography communication in remote partial nephrectomy.

Methods

The surgeon operated on the patient from a distance of over 260 km using remote control of a surgical robot. Key evaluation metrics for the telesurgery procedure included success rate, incidence of complications, network latency, and packet loss.

Results

The average BMI of these patients was 29.4 kg/m2, the average warm ischaemia time was 26 min, and the packet loss rate was 0%. Postoperative patient recovery, as indicated by follow-up results, was favourable.

Conclusions

We introduced a novel telesurgical paradigm for partial nephrectomy based on quantum cryptography communication. The application of pioneering technology provides patients with a safer choice for telemedical treatment and promotes the application of telesurgery.

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来源期刊
CiteScore
4.50
自引率
12.00%
发文量
131
审稿时长
6-12 weeks
期刊介绍: The International Journal of Medical Robotics and Computer Assisted Surgery provides a cross-disciplinary platform for presenting the latest developments in robotics and computer assisted technologies for medical applications. The journal publishes cutting-edge papers and expert reviews, complemented by commentaries, correspondence and conference highlights that stimulate discussion and exchange of ideas. Areas of interest include robotic surgery aids and systems, operative planning tools, medical imaging and visualisation, simulation and navigation, virtual reality, intuitive command and control systems, haptics and sensor technologies. In addition to research and surgical planning studies, the journal welcomes papers detailing clinical trials and applications of computer-assisted workflows and robotic systems in neurosurgery, urology, paediatric, orthopaedic, craniofacial, cardiovascular, thoraco-abdominal, musculoskeletal and visceral surgery. Articles providing critical analysis of clinical trials, assessment of the benefits and risks of the application of these technologies, commenting on ease of use, or addressing surgical education and training issues are also encouraged. The journal aims to foster a community that encompasses medical practitioners, researchers, and engineers and computer scientists developing robotic systems and computational tools in academic and commercial environments, with the intention of promoting and developing these exciting areas of medical technology.
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