Suppr超能文献

腕部肌肉活动随前臂姿势的变化:对感觉运动转换研究的启示。

Changes in wrist muscle activity with forearm posture: implications for the study of sensorimotor transformations.

机构信息

Centre for Sensorimotor Neuroscience, School of Human Movement Studies, The University of Queensland, Brisbane, Queensland, Australia.

出版信息

J Neurophysiol. 2012 Dec;108(11):2884-95. doi: 10.1152/jn.00130.2012. Epub 2012 Sep 12.

Abstract

The primate wrist is an ideal model system for studying the reference frames in which movements are coded within the central nervous system, as a simple rotation of the forearm allows dissociation between extrinsic and body-referenced coordinates. Important information regarding coordinate frame transformations has been obtained using this system, particularly from studies involving extracellular cortical and spinal recordings from monkeys. Because preferred directions of muscle use were reported to rotate by less than half of the joint rotation, the system was considered to dissociate three reference frames: extrinsic (direction of movement in space), muscle (activity of muscles), and joint (angle of the wrist joint). However, given the relatively minor changes in reported muscle biomechanics with human forearm rotation, the reported distinction between joint space and muscle space is surprisingly large. Here, we reassessed patterns of wrist muscle activity with changes in forearm posture in humans, during an isometric force-aiming task with a device that enabled stringent control of the musculoskeletal configuration. Results show that the preferred directions for wrist muscle activation closely follow forearm orientation (i.e., by 88%). Control experiments confirmed this, whether the hand was clamped passively by a device or grasped a handle. Furthermore, the remaining 12% discrepancy between intended changes in wrist orientation and muscle use also occurred for muscle-pulling directions obtained by intramuscular electrical stimulation. The findings prompt reconsideration of data based on the previously reported dissociation between joint space and muscle space and have critical implications for future investigations of sensorimotor transformations and their adaptation using the wrist.

摘要

灵长类动物的手腕是研究运动在中枢神经系统中编码的参照系的理想模型系统,因为前臂的简单旋转可以使外在参照系和身体参照系的坐标分离。通过使用该系统,特别是从涉及猴子的细胞外皮质和脊髓记录的研究中,获得了有关坐标框架转换的重要信息。由于肌肉的优先运动方向据报道旋转不到关节旋转的一半,因此该系统被认为可以分离三个参照系:外在(空间运动方向)、肌肉(肌肉活动)和关节(手腕关节角度)。然而,鉴于人类前臂旋转时报告的肌肉生物力学变化相对较小,报告的关节空间和肌肉空间之间的区别非常大。在这里,我们在人类中使用一种设备重新评估了前臂姿势变化时手腕肌肉活动的模式,该设备可以严格控制肌肉骨骼结构。结果表明,手腕肌肉激活的首选方向与前臂方向密切相关(即,相差 88%)。无论是通过设备被动地夹住手还是握住手柄,控制实验都证实了这一点。此外,在通过肌肉内电刺激获得的肌肉拉动方向上,意图改变手腕方向和肌肉使用之间的 12%差异仍然存在。这些发现促使我们重新考虑基于先前报道的关节空间和肌肉空间之间分离的数据,并对未来使用手腕进行感觉运动转换及其适应的研究具有关键意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验