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从高尔基腱器官集合体进行力估计。

Force estimation from ensembles of Golgi tendon organs.

作者信息

Mileusnic M P, Loeb G E

机构信息

Department of Biomedical Engineering, Alfred E. Mann Institute for Biomedical Engineering, University of Southern California, Los Angeles, CA, USA.

出版信息

J Neural Eng. 2009 Jun;6(3):036001. doi: 10.1088/1741-2560/6/3/036001. Epub 2009 Apr 15.

Abstract

Golgi tendon organs (GTOs) located in the skeletal muscles provide the central nervous system with information about muscle tension. The ensemble firing of all GTO receptors in the muscle has been hypothesized to represent a reliable measure of the whole muscle force but the precision and accuracy of that information are largely unknown because it is impossible to record activity simultaneously from all GTOs in a muscle. In this study, we combined a new mathematical model of force sampling and transduction in individual GTOs with various models of motor unit (MU) organization and recruitment simulating various normal, pathological and neural prosthetic conditions. Our study suggests that in the intact muscle the ensemble GTO activity accurately encodes force information according to a nonlinear, monotonic relationship that has its steepest slope for low force levels and tends to saturate at the highest force levels. The relationship between the aggregate GTO activity and whole muscle tension under some pathological conditions is similar to one seen in the intact muscle during rapidly modulated, phasic excitation of the motor pool (typical for many natural movements) but quite different when the muscle is activated slowly or held at a given force level. Substantial deviations were also observed during simulated functional electrical stimulation.

摘要

位于骨骼肌中的高尔基腱器官(GTOs)为中枢神经系统提供有关肌肉张力的信息。肌肉中所有GTO感受器的整体放电被认为是整个肌肉力量的可靠指标,但该信息的精度和准确性在很大程度上尚不清楚,因为不可能同时记录肌肉中所有GTO的活动。在本研究中,我们将单个GTO中力采样和转导的新数学模型与运动单位(MU)组织和募集的各种模型相结合,模拟了各种正常、病理和神经假体条件。我们的研究表明,在完整肌肉中,GTO整体活动根据非线性单调关系准确编码力信息,该关系在低力水平时斜率最陡,在最高力水平时趋于饱和。在某些病理条件下,GTO总活动与全肌肉张力之间的关系类似于在运动池快速调制、相位性兴奋期间(许多自然运动的典型情况)完整肌肉中观察到的关系,但当肌肉缓慢激活或保持在给定力水平时则有很大不同。在模拟功能性电刺激期间也观察到了显著偏差。

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