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成年大鼠的肌肉本体感受器:脊髓中的机械感觉信号传导与突触分布

Muscle proprioceptors in adult rat: mechanosensory signaling and synapse distribution in spinal cord.

作者信息

Vincent Jacob A, Gabriel Hanna M, Deardorff Adam S, Nardelli Paul, Fyffe Robert E W, Burkholder Thomas, Cope Timothy C

机构信息

Department of Neuroscience, Cell Biology, and Physiology, Wright State University, Dayton, Ohio.

School of Biological Sciences, Georgia Institute of Technology, Atlanta, Georgia; and.

出版信息

J Neurophysiol. 2017 Nov 1;118(5):2687-2701. doi: 10.1152/jn.00497.2017. Epub 2017 Aug 16.

Abstract

The characteristic signaling and intraspinal projections of muscle proprioceptors best described in the cat are often generalized across mammalian species. However, species-dependent adaptations within this system seem necessary to accommodate asymmetric scaling of length, velocity, and force information required by the physics of movement. In the present study we report mechanosensory responses and intraspinal destinations of three classes of muscle proprioceptors. Proprioceptors from triceps surae muscles in adult female Wistar rats anesthetized with isoflurane were physiologically classified as muscle spindle group Ia or II or as tendon organ group Ib afferents, studied for their firing responses to passive-muscle stretch, and in some cases labeled and imaged for axon projections and varicosities in spinal segments. Afferent projections and the laminar distributions of provisional synapses in rats closely resembled those found in the cat. Afferent signaling of muscle kinematics was also similar to reports in the cat, but rat Ib afferents fired robustly during passive-muscle stretch and Ia afferents displayed an exaggerated dynamic response, even after locomotor scaling was accounted for. These differences in mechanosensory signaling by muscle proprioceptors may represent adaptations for movement control in different animal species. Muscle sensory neurons signal information necessary for controlling limb movements. The information encoded and transmitted by muscle proprioceptors to networks in the spinal cord is known in detail only for the cat, but differences in size and behavior of other species challenge the presumed generalizability. This report presents the first findings detailing specializations in mechanosensory signaling and intraspinal targets for functionally identified subtypes of muscle proprioceptors in the rat.

摘要

在猫身上得到最佳描述的肌肉本体感受器的特征性信号传导和脊髓内投射,通常被推广到所有哺乳动物物种。然而,该系统内依赖物种的适应性变化似乎是必要的,以适应运动物理学所要求的长度、速度和力信息的不对称缩放。在本研究中,我们报告了三类肌肉本体感受器的机械感觉反应和脊髓内投射目的地。用异氟烷麻醉的成年雌性Wistar大鼠的腓肠肌本体感受器在生理上被分类为肌梭Ia或II组或腱器官Ib组传入纤维,研究它们对被动肌肉拉伸的放电反应,在某些情况下,对其轴突投射和脊髓节段中的曲张体进行标记和成像。大鼠的传入投射和临时突触的层状分布与猫的非常相似。肌肉运动学的传入信号也与猫的报道相似,但即使在考虑了运动缩放后,大鼠的Ib传入纤维在被动肌肉拉伸期间仍强烈放电,而Ia传入纤维表现出夸张的动态反应。肌肉本体感受器在机械感觉信号传导方面的这些差异可能代表了不同动物物种在运动控制方面的适应性变化。肌肉感觉神经元发出控制肢体运动所需的信息。肌肉本体感受器编码并传递到脊髓网络的信息,目前仅在猫身上有详细了解,但其他物种在体型和行为上的差异对这种假定的普遍性提出了挑战。本报告首次详细介绍了大鼠中功能确定的肌肉本体感受器亚型在机械感觉信号传导和脊髓内靶点方面的特化情况。

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