[从足底压力分布测量计算功能动力学参数]。

J Mitternacht, R Lampe
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引用次数: 20

摘要

目的:本研究的目的是开发一种简单的程序,从足底压力分布测量中计算功能动力学参数,这在许多骨科实践和诊所中被用作标准测量装置。其特殊目的是比较手术前后的数据集之间的功能参数,例如拇外翻矫正。方法:在步态实验室记录健康受试者和不同足部疾病患者的压力分布。测试对象赤脚走过集成在舷梯上的测量板。该设备记录下脚部展开时压力分布的“电影”。每秒拍摄72张压力分布图。将各分段面积上的压力积分,即压力分布图为压力分布图,计算总地面力的时间进展。通过对足部某一部位的压力进行积分,就可以计算出对该解剖结构的地作用力,例如对该解剖结构的地反作用力。考虑杠杆与踝关节轴线的距离,通过积分相同节段区域上的压力,可以计算关节外力矩。为此,小腿的肌肉组织必须产生一个内部力矩,正好补偿外部力矩。结果:在拇外翻矫正的情况下,可以测量上踝关节的总外力矩的百分比,这些力矩由拇和跖骨1承担,这使我们能够通过手术治疗验证功能的改善。对于脚部和踝关节单侧损伤后的患者,可以通过比较侧面来量化治疗的功能成功,例如,跟骨骨折后。结论:从压力分布测量中确定踝关节肌肉力矩,提高了在评估不同骨科或外科干预措施对足和踝关节的功能成功时的客观性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Calculation of functional kinetic parameters from the plantar pressure distribution measurement].

Purpose: The aim of this study was the development of a simple procedure to calculate functional kinetic parameters from the plantar pressure distribution measurement which is used in many orthopaedic practices and clinics as a standard measurement device. The special purpose is the comparison of functional parameters between datasets taken before and after a surgical operation, for example the correction of a hallux valgus.

Method: In the gait laboratory, pressure distribution measurements were recorded from healthy test subjects and patients with different foot diseases. The test subjects walked barefoot over the measurement plate which is integrated in a gangway. The device records a "movie" of the pressure distribution in the unrolling of the foot. It takes 72 pressure distribution pictures per second. By integrating the pressure over all segmental areas, i. e., pressure distribution picture for pressure distribution picture, the temporal progress of the total ground force can be calculated. By integration of the pressure only over a certain part of the foot, the ground force on that certain anatomic structure can be calculated, for example, the ground reaction force upon then hallux. By integration of the pressure over the same segmental areas considering their lever distance to the axes of the ankle joint, the external joint moment can be calculated. For this, the musculature of the lower leg must generate an internal moment, which exactly compensates the external moment.

Results: In the case of a correction of a hallux valgus, the percentage of the total external moment with regard to the upper ankle joint can be measured which is taken on by the hallux and metatarsal I. This allows us to verify a functional improvement through the operative treatment. With patients after one-sided injuries of the foot and ankle joints, the functional success of a treatment can be quantified by means of a comparison of sides, for example, after a fracture of the calcaneus.

Conclusion: The determination of muscular ankle joint moments from the pressure distribution measurement improves the objectivity when reviewing the functional success of a therapy in different orthopaedic or surgical interventions at the foot and ankle joint.

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