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Design and validation of transducers to measure interface force distribution in a spinal orthosis

机译:用于测量矫形器中界面力分布的换能器的设计和验证

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摘要

Scoliosis is a spinal deformity that affects millions of adolescents in the United States. Bracing is the most common non-surgical treatment method for scoliosis, but the biomechanics of such treatment is unclear. The objective of this study is to develop and validate a force logging system that can record forces at multiple locations inside a brace, as well as brace strap tension, and correlate these forces with different body positions. The force logging system can be used to investigate the biomechanics function of a brace to treat scoliosis during the treatment period. Two phases were completed in this study: design phase, involving custom development and calibration of strap tension transducers and modifications of in-brace force transducers; and validation phase, including preliminary testing on a subject with different postures. In-brace force load cell and tension transducer were tested and validated. Their sensitivities were 193.5 ± 4.9. mV/N and 35.5 ± 0.2. mV/N, respectively, with both linear correlation coefficients were 0.99, reflecting high repeatability and linearity. Qualitative validation was also completed, allowing general relationships to be found between subject posture and force distribution. This study shows an excellent functionality and utility of the developed system.
机译:脊柱侧弯是一种脊柱畸形,在美国影响着数百万的青少年。支撑是脊柱侧弯最常见的非手术治疗方法,但是这种治疗的生物力学尚不清楚。这项研究的目的是开发和验证一种测力系统,该系统可以记录支架内部多个位置的力以及支架带的张力,并将这些力与不同的身体位置相关联。测力系统可用于研究在治疗期间支架治疗脊柱侧弯的生物力学功能。这项研究完成了两个阶段:设计阶段,涉及皮带张力传感器的定制开发和校准,以及支架内力传感器的修改。验证阶段,包括对具有不同姿势的对象进行初步测试。支架内测力传感器和张力传感器经过测试和验证。他们的敏感性为193.5±4.9。 mV / N和35.5±0.2。两个线性相关系数的mV / N分别为0.99,反映了高重复性和线性。定性验证也已完成,从而可以在主体姿势和力量分布之间找到一般关系。这项研究显示了开发系统的出色功能和实用性。

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