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The virtual haptic back: A simulation for training in palpatory diagnosis

机译:虚拟触觉背部:触诊诊断训练的模拟

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Background Models and simulations are finding increased roles in medical education. The Virtual Haptic Back (VHB) is a virtual reality simulation of the mechanical properties of the human back designed as an aid to teaching clinical palpatory diagnosis. Methods Eighty-nine first year medical students of the Ohio University College of Osteopathic Medicine carried out six, 15-minute practice sessions with the VHB, plus tests before and after the sessions in order to monitor progress in identifying regions of simulated abnormal tissue compliance. Students palpated with two digits, fingers or thumbs, by placing them in gimbaled thimbles at the ends of PHANToM 3.0? haptic interface arms. The interface simulated the contours and compliance of the back surface by the action of electric motors. The motors limited the compression of the virtual tissues induced by the palpating fingers, by generating counterforces. Users could see the position of their fingers with respect to the back on a video monitor just behind the plane of the haptic back. The abnormal region varied randomly among 12 locations between trials. During the practice sessions student users received immediate feedback following each trial, indicating either a correct choice or the actual location of the abnormality if an incorrect choice had been made. This allowed the user to feel the actual abnormality before going on to the next trial. Changes in accuracy, speed and Weber fraction across practice sessions were analyzed using a repeated measures analysis of variance. Results Students improved in accuracy and speed of diagnosis with practice. The smallest difference in simulated tissue compliance users were able to detect improved from 28% (SD = 9.5%) to 14% (SD = 4.4%) during the practice sessions while average detection time decreased from 39 (SD = 19.8) to 17 (SD = 11.7) seconds. When asked in anonymous evaluation questionnaires if they judged the VHB practice to be helpful to them in the clinical palpation and manual medicine laboratory, 41% said yes, 51% said maybe, and 8% said no. Conclusion The VHB has potential value as a teaching aid for students in the initial phases of learning palpatory diagnosis.
机译:背景技术模型和模拟正在医学教育中发挥越来越重要的作用。虚拟触觉背部(VHB)是对人体背部机械特性的虚拟现实仿真,旨在帮助教授临床触诊诊断。方法俄亥俄州大学整骨医学学院的89名一年级医学生对VHB进行了6、15分钟的练习,并在练习前后进行了测试,以监测识别模拟异常组织顺应性区域的进展。学生将两个手指,拇指或手指放在PHANToM 3.0 的万向节顶针中触摸吗? 触觉界面臂。该界面通过电动机的作用模拟了背面的轮廓和柔度。电机通过产生反作用力来限制由触诊手指引起的虚拟组织的压缩。用户可以在触觉背部平面后面的视频监视器上看到手指相对于背部的位置。在试验之间的12个位置之间,异常区域随机变化。在练习期间,每次试验后,学生用户都会立即收到反馈,指出做出正确选择或异常的实际位置(如果做出了错误选择)。这使用户可以在进行下一次试验之前感觉到实际的异常。使用方差的重复测量分析来分析练习期间准确性,速度和韦伯分数的变化。结果通过实践,学生提高了诊断的准确性和速度。在练习期间,模拟组织顺应性用户的最小差异能够从28%(SD = 9.5%)提高到14%(SD = 4.4%),而平均检测时间从39(SD = 19.8)降低到17(SD SD = 11.7)秒。当在匿名评估问卷中被问到他们是否认为VHB做法对临床触诊和手动医学实验室有帮助时,有41%的人同意,有51%的人同意,有8%的人拒绝。结论VHB在触诊诊断的初始阶段具有潜在的教学价值。

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