内窥镜脊柱手术中的低成本增强现实系统:外科医生人体工程学分析,感知工作量和逐步实施指南。

IF 2.6 3区 医学 Q2 CLINICAL NEUROLOGY
Facundo Van Isseldyk, Piya Chavalparit, Julio Bassani, Lisandro Rodriguez Sattler, Marcus Serra, Jefferson Leal, Cristian Correa Valencia, Alberto Gotfryd, Jeronimo Milano, Alfredo Guiroy, Jin Sung Kim
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引用次数: 0

摘要

研究设计前瞻性对照研究。目的评估增强现实(AR)可视化系统在内镜脊柱手术中对外科医生工作量和人体工程学的影响,并与传统显示器进行比较。方法10名经验丰富的内窥镜脊柱外科医生(5名神经外科医生和5名骨科医生;平均年龄54岁)每人进行20次手术:前10次使用传统显示器,后10次使用新型AR系统。提供了AR系统设置和使用的分步指南。使用NASA任务负荷指数(NASA- tlx)评估工作量,并在每次手术后使用快速上肢评估(RULA)评分评估人体工程学。配对t检验或Wilcoxon符号秩检验用于比较传统系统和AR系统,并通过Shapiro-Wilk检验评估正态性。结果AR系统的使用显著降低了NASA-TLX评分,特别是在体力需求、努力和表现方面(P < 0.001)。RULA得分显著提高,从传统显示器的平均6.0分下降到AR的平均3.0分(P < 0.001),表明改善了符合人体工程学的姿势。所有外科医生在使用AR系统时均表现出可感知的工作量和人体工程学风险的持续减少。结论与传统显示相比,在内镜脊柱手术中集成AR可视化系统可显著减少认知负荷并改善人体工程学姿势。这些发现表明,AR技术可以提高手术效率,促进外科医生的健康,并支持微创脊柱手术的长期可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Cost Augmented Reality System in Endoscopic Spine Surgery: Analysis of Surgeon Ergonomics, Perceived Workload and A Step-by-Step Guide for Implementation.

Study DesignProspective controlled study.ObjectivesTo evaluate the impact of an augmented reality (AR) visualization system on surgeon workload and ergonomics during endoscopic spine surgery, compared to conventional display monitors.MethodsTen experienced endoscopic spine surgeons (five neurosurgeons and five orthopedic surgeons; mean age 54 years) each performed 20 surgeries: the first 10 using traditional displays and the following 10 with a novel AR system. A step-by-step guide for AR system setup and utilization is provided. Workload was assessed using the NASA Task Load Index (NASA-TLX), and ergonomics were evaluated using the Rapid Upper Limb Assessment (RULA) score after each procedure. Paired t-tests or Wilcoxon signed-rank tests were used to compare traditional and AR systems, with normality assessed via the Shapiro-Wilk test.ResultsUse of the AR system resulted in significantly lower NASA-TLX scores, particularly in physical demand, effort, and performance domains (P < 0.001). RULA scores improved substantially, decreasing from a mean of 6.0 with traditional displays to 3.0 with AR (P < 0.001), indicating improved ergonomic posture. All surgeons demonstrated consistent reductions in perceived workload and ergonomic risk when utilizing the AR system.ConclusionsIntegration of an AR visualization system in endoscopic spine surgery significantly reduces cognitive workload and improves ergonomic posture compared to traditional displays. These findings suggest that AR technology may enhance surgical efficiency, promote surgeon well-being, and support the long-term sustainability of minimally invasive spinal procedures.

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来源期刊
Global Spine Journal
Global Spine Journal Medicine-Surgery
CiteScore
6.20
自引率
8.30%
发文量
278
审稿时长
8 weeks
期刊介绍: Global Spine Journal (GSJ) is the official scientific publication of AOSpine. A peer-reviewed, open access journal, devoted to the study and treatment of spinal disorders, including diagnosis, operative and non-operative treatment options, surgical techniques, and emerging research and clinical developments.GSJ is indexed in PubMedCentral, SCOPUS, and Emerging Sources Citation Index (ESCI).
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