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Sitting with adjustable ischial and back supports: biomechanical changes.

机译:坐姿可调节坐骨和背部支撑:生物力学变化。

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STUDY DESIGN: The seat and back contact force, pressure distribution, lumbar lordosis, and low back muscle activities associated with a new seat design with adjustable ischial support and backrest were investigated using kinematic, kinetic, electromyographic, and radiographic measurements. OBJECTIVES: To investigate the biomechanical effects of adjusting ischial and backrest supports during sitting. SUMMARY OF THE BACKGROUND DATA: Sitting may induce posterior rotation of the pelvis, reduction of lumbar lordosis, and increases in muscle tension, disc pressure, and pressure on the ischium and coccyx, which may be associated with low back pain. A device that reduces the ischial load and maintains lumbar lordosis may help increase seating comfort and reduce low back pain. METHODS: Fifteen office workers with no known low back pain history were tested. Contact pressure distributions, reaction forces between the buttock-thighs and seat and between the back and backrest, load carried by the seat pan and backrest, sacral inclination, lumbar lordosis, intervertebral space of lumbar spine, and muscular activity in stabilizing the trunk were measured for sitting with and without ischial support and with adjustable back support. RESULTS: When the ischial support was relieved, the center of the force on the seat and on the legs of the chair, and the peak center of pressure on the seat, were significantly (P < 0.002) shifted forward toward the thighs. The total contact area on the seat pan and on the backrest was significantly decreased and increased, respectively (P < 0.001). The sacral inclination, total and segmental lumbar lordosis, and lumbar spine disc height were significantly increased for sitting upright with backrest, with the lumbar curve close to that during standing. CONCLUSIONS: Sitting with reduced ischial support and fitted backrest to the lower spine altered the contact area, reduced peak pressure under the ischia, reduced muscular activity, maintained total and segmental lumbar lordosis, rotated the sacrum forward, and increased lumbar intervertebral disc heights, which could potentially reduce low back pain.
机译:研究设计:使用运动学,动力学,肌电图和射线照相术测量,研究了与具有可调节的坐骨支撑和靠背的新型座椅设计相关的座椅和背部接触力,压力分布,腰椎前凸和下背部肌肉活动。目的:研究在坐着时调整坐骨和靠背支撑的生物力学效果。背景数据总结:坐着可能会导致骨盆向后旋转,减少腰椎前凸,并增加肌肉张力,椎间盘压力以及对坐骨和尾骨的压力,这可能与下背痛有关。减少坐骨负荷并保持腰椎前凸的设备可能有助于增加坐姿舒适性并减轻腰背痛。方法:测试了十五名没有下腰痛史的上班族。测量了接触压力分布,臀部大腿与座椅之间以及靠背与靠背之间的反作用力,座椅底板和靠背所承受的负荷,骨倾角,腰椎前凸,腰椎椎间隙以及稳定躯干的肌肉活动适用于有坐骨支撑和无坐骨支撑以及可调节背部支撑的坐姿。结果:当坐骨支撑得到缓解时,座椅和椅子腿上的力中心以及座椅上的峰值压力中心显着(P <0.002)移向大腿。座盘和靠背上的总接触面积分别显着减少和增加(P <0.001)。靠背坐直时,骨倾斜度,整体和节段性腰椎前凸和腰椎间盘高度显着增加,腰部曲线接近站立时的曲线。结论:坐骨坐骨支撑的减少和靠背下部脊柱的安装改变了接触面积,降低了坐骨的峰值压力,减少了肌肉活动,保持了全部和节段性腰椎前凸,,骨向前旋转,并增加了腰椎间盘高度可能会减轻腰痛。

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