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Musculoskeletal model of trunk and hips for development of seated-posture-control neuroprosthesis

机译:坐姿控制神经假体发育的躯干和臀部的肌肉骨骼模型

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摘要

The paralysis resulting from spinal cord injury severely limits voluntary seated-posture control and increases predisposition to a number of health risks. We developed and verified a musculoskeletal model of the hips and lumbar spine using published data. We then used the model to select the optimal muscles for—and evaluate the likely functional recovery benefit of—an 8-channel seated-posture-control neuroprosthesis based on functional electrical stimulation (FES). We found that the model-predicted optimal muscle set included the erector spinae, oblique abdominals, gluteus maximus, and iliopsoas. We mapped muscle excitations to seated trunk posture so that the required excitations at any posture could be approximated using a static map. Using the optimal muscle set, the model predicted a maximum stimulated range of motion of 49° flexion, 9° extension, and 16° lateral bend. In the nominal upright posture, the modeled user could hold almost 15 kg with arms at sides and elbows bent. We discuss in this article the practicality of using FES with the oblique abdominals. A seated-posture-control neuroprosthesis would increase the user’s bimanual work space and include several secondary benefits.
机译:脊髓损伤引起的瘫痪严重限制了主动坐姿控制,并增加了许多健康风险。我们使用公开的数据开发并验证了臀部和腰椎的肌肉骨骼模型。然后,我们使用该模型为基于功能性电刺激(FES)的8通道坐姿控制神经假体选择最佳肌肉,并评估其可能的功能恢复益处。我们发现,模型预测的最佳肌肉群包括竖脊肌,腹斜肌,臀大肌和肌。我们将肌肉激励映射到坐着的躯干姿势,以便可以使用静态映射来近似任何姿势下所需的激励。使用最佳肌肉设置,该模型预测了49°屈曲,9°伸展和16°横向弯曲的最大刺激运动范围。以名义上的直立姿势,模拟用户可以握住近15公斤的身体,手臂在侧面并且肘部弯曲。我们将在本文中讨论将FES与斜腹肌一起使用的实用性。坐姿控制神经假体将增加用户的双手工作空间,并包括若干次要好处。

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