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采用 Hugo™ RAS 系统的机器人手术柯隆人体工程学测量(CEMRobSurg)。

Cologne ergonomic measurement for robotic surgery (CEMRobSurg) using the Hugo™ RAS System.

机构信息

Department of General, Visceral, Cancer and Transplant Surgery, University Hospital of Cologne, 50937, Cologne, Germany.

Faculty of Medicine, University of Cologne, 50923, Cologne, Germany.

出版信息

Surg Endosc. 2024 Oct;38(10):6128-6138. doi: 10.1007/s00464-024-11129-7. Epub 2024 Aug 26.

Abstract

BACKGROUND

The ergonomic advantages and potential challenges that robotic surgery poses to the well-being of surgeons are mainly unexplored. The most recent surgical robot introduced on the European market is the Hugo™ RAS System by Medtronic. This study aims to evaluate the ergonomic benefits of the Hugo™ RAS System, which is available in our training laboratory, CeMIT (Center for Medical Innovation and Technology Cologne).

METHODS AND PROCEDURES

Using the previously established Cologne Ergonomic Measurement Setup for Robotic Surgery (CEMRobSurg), we measured three parameters related to ergonomic posture from subjects with different levels of surgical expertise (laypeople, medical students, surgical residents, and expert robotic surgeons). The heart rate was measured continuously using a polar band. The noise level was measured while using the Hugo™ RAS System, and automated photographs using our locally developed methodology were captured of the participant every 2 s to assess body posture. The ergonomic measurements were conducted while the subject performed the same standardized robotic training exercises (Peg Board, Rope Walk, and Ring Walk).

RESULTS

A total of 53 participants were enrolled in this study. The average noise level during all measurements was 54.87 dB. The highest stress level was measured in surgical residents with a sympathetic nervous system index (SNS index) of 1.15 (min - 1.43, max 3.56). The lowest stress level was measured in robotic experts with an SNS index of 0.23 (min - 0.18, max 0.91). We observed a risk-prone positioning of the neck and elbow in medical students (mean 39.6° and 129.48°, respectively). Robotic experts showed a risk positioning in the knee and hip region (mean 107.89° and 90.31°, respectively).

CONCLUSION

This is the first study to analyze and objectify the ergonomic posture of medical students, surgical trainees, surgeons, and laypeople using the open console, modular Hugo™ RAS System. Our findings offer recommendations for operating surgeons and allow for a comparative analysis between the different robotic systems. Further evaluations in real-time operative scenarios will follow.

摘要

背景

机器人手术对手术医生的舒适度所带来的人体工程学优势和潜在挑战在很大程度上尚未得到探索。最近在欧洲市场推出的手术机器人是美敦力的 Hugo™ RAS 系统。本研究旨在评估 Hugo™ RAS 系统的人体工程学优势,该系统可在我们的培训实验室 CeMIT(科隆医疗创新与技术中心)中使用。

方法和程序

使用先前建立的科隆机器人手术人体工程学测量设置(CEMRobSurg),我们从不同手术经验水平的受试者(非专业人士、医学生、外科住院医师和熟练的机器人外科医生)中测量了与人体工程学姿势相关的三个参数。使用 Polar 腕带连续测量心率。使用 Hugo™ RAS 系统测量噪声水平,并使用我们本地开发的方法自动拍摄参与者每 2 秒的身体姿势照片。在受试者进行相同的标准化机器人训练练习(钉板、绳索行走和指环行走)时进行人体工程学测量。

结果

本研究共纳入 53 名参与者。所有测量的平均噪声水平为 54.87dB。在外科住院医师中测量到的应激水平最高,交感神经系统指数(SNS 指数)为 1.15(min-1.43,max 3.56)。在机器人专家中测量到的应激水平最低,SNS 指数为 0.23(min-0.18,max 0.91)。我们观察到医学生的颈部和肘部存在易受伤的位置(分别为平均 39.6°和 129.48°)。机器人专家的膝关节和髋关节区域存在易受伤的位置(分别为平均 107.89°和 90.31°)。

结论

这是第一项使用开放式控制台、模块化 Hugo™ RAS 系统分析和客观化医学生、外科受训者、外科医生和非专业人士人体工程学姿势的研究。我们的研究结果为手术医生提供了建议,并允许对不同的机器人系统进行比较分析。未来将在实时手术场景中进行进一步评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb06/11458657/6baedacebd99/464_2024_11129_Fig1_HTML.jpg

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