Motion capture device reveals a quick learning curve in vascular anastomosis training

被引:0
作者
Shota Tsuyuki
Kazuhiro Miyahara
Katsuyuki Hoshina
Takuya Kawahara
Masamitsu Suhara
Yasuaki Mochizuki
Ryosuke Taniguchi
Toshio Takayama
机构
[1] The University of Tokyo,Department of Vascular Surgery, Graduate School of Medicine
[2] The University of Tokyo Hospital,Clinical Research Promotion Center
来源
Surgery Today | 2024年 / 54卷
关键词
Suturing; Vascular anastomosis; Off-the-job training system; Education; Leap Motion Controller;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
页码:275 / 281
页数:6
相关论文
共 61 条
[1]  
Larson JL(2005)Feasibility, reliability and validity of an operative performance rating system for evaluating surgery residents Surgery 138 640-647
[2]  
Williams RG(2012)A controlled study to determine measurement conditions necessary for a reliable and valid operative performance assessment: a controlled prospective observational study Ann Surg 256 177-187
[3]  
Ketchum J(2009)Tools for direct observation and assessment of clinical skills of medical trainees: a systematic review JAMA 302 1316-1326
[4]  
Boehler ML(2018)Original homebuilt off-the-job training system for vascular surgeons: system analysis and assessment Ann Vasc Dis 11 525-530
[5]  
Dunnington GL(2021)Comparison of the performance of the Leap Motion Controller Sensors (Basel) 21 1750-55
[6]  
Williams RG(2021) with a standard marker-based motion capture system Sensors (Basel) 21 1199-168
[7]  
Sanfey H(2022)Hand motion capture from a 3D Leap Motion Controller for a musculoskeletal dynamic simulation Sci Prog 105 368504221103777-844
[8]  
Chen XP(2020)Motion analysis of suturing technique with Leap Motion Controller Ann Vasc Dis 13 52-2165
[9]  
Dunnington GL(2022). Proof-of-concept Ann Vasc Surg 84 163-485
[10]  
Kogan JR(2002)Development of a web application that evaluates suture performance in off-the-job training Arch Surg 137 841-undefined