Cha Y J
Department of occupational therapy, Semyung university, 65, Semyung-ro, 27136 Jecheon, Chungbuk, Republic of Korea.
Hand Surg Rehabil. 2018 Feb;37(1):38-42. doi: 10.1016/j.hansur.2017.09.007. Epub 2017 Dec 8.
The study was conducted to provide basic data to develop a system that distributes pressure over a broader area by measuring and analyzing pressures in various wrist angles and hand positions while wearing a wrist splint. With 0, 15, 30, and 45 degrees of wrist extension, full-finger extension and finger flexion, pressure distribution changes were measured three times. Average peak pressure was analyzed and mean value picture (MVP) in zones 3-5 was calculated. A one-way Anova was conducted to identify changes in pressure distribution by wrist angle and hand position. Mean peak pressure values (kPa) in zones 3-5 changed depending on the wrist angle. Peak pressures (kPa) changed significantly in 15, 30, and 45 degrees wrist extension, depending on the hand position. Since pressure distributions differ depending the wrist angle and hand position (finger flexion), it is necessary to consider how pressure varies in each wrist position and to provide information on postures that should be avoided during tasks and occupational activities based on various wrist angles or hand positions.
本研究旨在通过测量和分析佩戴腕部夹板时不同腕部角度和手部位置的压力,为开发一种能在更广泛区域分散压力的系统提供基础数据。在腕部伸展0度、15度、30度和45度,手指完全伸展和屈曲的情况下,对压力分布变化进行了三次测量。分析了平均峰值压力,并计算了3-5区的平均值图片(MVP)。进行单因素方差分析以确定腕部角度和手部位置引起的压力分布变化。3-5区的平均峰值压力值(kPa)随腕部角度而变化。根据手部位置,在腕部伸展15度、30度和45度时,峰值压力(kPa)有显著变化。由于压力分布因腕部角度和手部位置(手指屈曲)而异,因此有必要考虑每个腕部位置的压力变化情况,并提供基于各种腕部角度或手部位置在任务和职业活动中应避免的姿势信息。