Feasibility of respiratory synchronization for laser lithotripsy using a robotic retrograde intrarenal surgery system Zamenix™ in an in-vitro model.

IF 2.8 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Joonhwan Kim, Chinnakhet Ketsuwan, Kyu-Seob Song, Jae-Chul Kim, Joonyeong Kim, Hyeji Park, Dong-Soo Kwon, Joo Yong Lee, Sung Yong Cho
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Abstract

Objectives: This study aims to investigate the improvement of stone fragmentation efficiency and safety in robotic-assisted retrograde intrarenal surgery (RIRS) that implements the respiratory motion synchronization using an in vitro model.

Materials and methods: Laser lithotripsy was performed in three groups: manual procedure (group M), robotic procedures without respiratory synchronization (group RNR), and robotic procedures with respiratory synchronization (group RR). The study assessed fragmentation time, laser time, number of mucosal contacts, and total energy used. Two surgeons having different experience of conventional RIRS (> 2500 and < 500) were participated.

Results: In overall results of the two surgeons, the fragmentation time significantly decreased to 74.8% in group RNR (P = 0.012) and 65.0% in group RR (P = 0.001), compared to group M. The laser time was significantly shorter in group RR compared to the group M (P = 0.003). The number of mucosal contacts was significantly reduced to 37.4% in group RNR (P = 0.048) and it was 34.0% in group RR, compared to group M. The total energy significantly decreased in group RR compared to group M (P = 0.011). There were no significant differences between group RR and RNR across all outcomes in the overall results of the two surgeons. For less experienced surgeon, the fragmentation time was significantly shorter in group RR compared to group RNR (P = 0.013).

Conclusions: Robotic-assisted RIRS resulted in reduced fragmentation time, laser time, mucosal contacts, and total energy compared to manual RIRS during laser lithotripsy. The incorporation of respiratory synchronization in robotic-assisted RIRS reduced laser time compared to manual RIRS and shortened the fragmentation time compared to the robotic-assisted RIRS without respiratory synchronization, particularly for less experienced surgeon. These initial results demonstrated the feasibility of robotic-assisted RIRS with respiratory synchronization, highlighting its potential to improve procedural efficiency and safety.

在体外模型中使用机器人逆行肾内手术系统 Zamenix™ 进行呼吸同步激光碎石的可行性。
目的:本研究旨在通过体外模型探讨实现呼吸运动同步的机器人辅助逆行肾内手术(RIRS)中结石碎裂效率和安全性的提高。材料和方法:激光碎石分为三组:手动操作(M组)、无呼吸同步机器人操作(RNR组)和有呼吸同步机器人操作(RR组)。研究评估了碎裂时间、激光时间、粘膜接触次数和使用的总能量。两名手术经验不同的外科医生(> 2500,结果:两名外科医生的总体结果中,RNR组的碎裂时间较M组显著降低,分别为74.8% (P = 0.012)和65.0% (P = 0.001), RR组激光时间较M组显著缩短(P = 0.003)。与M组相比,RNR组的粘膜接触次数显著降低,为37.4% (P = 0.048), RR组为34.0%,总能量显著降低(P = 0.011)。RR组和RNR组在两名外科医生的所有结果中没有显著差异。对于经验不足的外科医生,RR组骨折时间明显短于RNR组(P = 0.013)。结论:与手动RIRS相比,机器人辅助RIRS在激光碎石过程中减少了碎裂时间、激光时间、粘膜接触和总能量。与手动RIRS相比,在机器人辅助RIRS中加入呼吸同步减少了激光时间,与没有呼吸同步的机器人辅助RIRS相比,缩短了碎片时间,特别是对于经验不足的外科医生。这些初步结果证明了机器人辅助RIRS与呼吸同步的可行性,突出了其提高手术效率和安全性的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European Journal of Medical Research
European Journal of Medical Research 医学-医学:研究与实验
CiteScore
3.20
自引率
0.00%
发文量
247
审稿时长
>12 weeks
期刊介绍: European Journal of Medical Research publishes translational and clinical research of international interest across all medical disciplines, enabling clinicians and other researchers to learn about developments and innovations within these disciplines and across the boundaries between disciplines. The journal publishes high quality research and reviews and aims to ensure that the results of all well-conducted research are published, regardless of their outcome.
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