Versteeg Christopher, Chowdhury Raeed H, Miller Lee E
Department of Biomedical Engineering, McCormick School of Engineering, Northwestern 7 University, Evanston, IL, USA.
Department of Bioengineering, Swanson School of Engineering, University of Pittsburgh, 10 Pittsburgh, PA, USA.
Curr Opin Physiol. 2021 Apr;20:206-215. doi: 10.1016/j.cophys.2021.02.004. Epub 2021 Feb 27.
Much remains unknown about the transformation of proprioceptive afferent input from the periphery to the cortex. Until recently, the only recordings from neurons in the cuneate nucleus (CN) were from anesthetized animals. We are beginning to learn more about how the sense of proprioception is transformed as it propagates centrally. Recent recordings from microelectrode arrays chronically implanted in CN have revealed that CN neurons with muscle-like properties have a greater sensitivity to active reaching movements than to passive limb displacement, and we find that these neurons have receptive fields that resemble single muscles. In this review, we focus on the varied uses of proprioceptive input and the possible role of CN in processing this information.
关于本体感觉传入信息从外周向皮层的转换,仍有许多未知之处。直到最近,楔束核(CN)中神经元的唯一记录来自麻醉动物。我们开始更多地了解本体感觉在向中枢传播过程中是如何转换的。最近对长期植入CN的微电极阵列的记录显示,具有类似肌肉特性的CN神经元对主动伸展运动的敏感性高于对被动肢体位移的敏感性,并且我们发现这些神经元的感受野类似于单个肌肉。在这篇综述中,我们重点关注本体感觉输入的各种用途以及CN在处理这些信息中可能发挥的作用。