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Somatosensory properties of cuneocerebellar neurones in the main cuneate nucleus of the rat.大鼠主要楔束核中楔小脑神经元的躯体感觉特性
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Signalling of static and dynamic features of muscle spindle input by external cuneate neurones in the cat.猫的楔外神经元对肌梭传入的静态和动态特征的信号传递。
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本文引用的文献

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Nerve endings in mammalian muscle.哺乳动物肌肉中的神经末梢。
J Physiol. 1933 Apr 13;78(1):1-53. doi: 10.1113/jphysiol.1933.sp002984.
2
Selective adequate activation of large afferents from muscle spindles and Golgi tendon organs.选择性充分激活来自肌梭和高尔基腱器官的大传入纤维。
Acta Physiol Scand. 1960 Jul 15;49:155-64. doi: 10.1111/j.1748-1716.1960.tb01939.x.
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MECHANISMS OF SYNAPTIC TRANSMISSION IN THE CUNEATE NUCLEUS.楔束核内突触传递的机制
J Neurophysiol. 1964 Nov;27:1096-116. doi: 10.1152/jn.1964.27.6.1096.
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DUAL ORGANIZATION OF THE EXTEROCEPTIVE COMPONENTS OF THE CAT'S GRACILE NUCLEUS.猫薄束核外感受性成分的双重组织
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FUNCTIONAL ORGANIZATION IN THE TRIGEMINAL MAIN SENSORY AND ROSTRAL SPINAL NUCLEI OF THE CAT.猫三叉神经主要感觉核和延髓吻侧脊髓核的功能组织
J Physiol. 1963 Aug;168(1):129-46. doi: 10.1113/jphysiol.1963.sp007182.
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The response to vibration of the end organs of mammalian muscle spindles.哺乳动物肌梭终末器官对振动的反应。
J Neurophysiol. 1963 Jan;26:177-90. doi: 10.1152/jn.1963.26.1.177.
7
The responses of the primary and secondary endings of muscle spindles with intact motor innervation during applied stretch.在施加牵张时,具有完整运动神经支配的肌梭初级和次级末梢的反应。
Q J Exp Physiol Cogn Med Sci. 1961 Oct;46:389-98. doi: 10.1113/expphysiol.1961.sp001558.
8
Central projection of proprioceptive information from the wrist joint via a forearm 'muscle' nerve in the cat.猫中来自腕关节的本体感觉信息经前臂“肌肉”神经的中枢投射
J Physiol. 1998 Jul 1;510 ( Pt 1)(Pt 1):261-7. doi: 10.1111/j.1469-7793.1998.261bz.x.
9
An intact peripheral nerve preparation for monitoring inputs from single muscle afferent fibres.一种用于监测单根肌肉传入纤维输入的完整外周神经制备方法。
Exp Brain Res. 1997 Jan;113(1):186-8. doi: 10.1007/BF02454157.
10
Synaptic transmission between single slowly adapting type I fibres and their cuneate target neurones in cat.猫的单个慢适应性I型纤维与其楔状核靶神经元之间的突触传递。
J Physiol. 1994 Feb 1;474(3):379-92. doi: 10.1113/jphysiol.1994.sp020030.

猫楔状神经元对肌梭传入的静态和动态特征的信号传导。

Signalling of static and dynamic features of muscle spindle input by cuneate neurones in the cat.

作者信息

Mackie P D, Morley J W, Zhang H Q, Murray G M, Rowe M J

机构信息

School of Physiology and Pharmacology, The University of New South Wales, Sydney 2052, Australia.

出版信息

J Physiol. 1998 Aug 1;510 ( Pt 3)(Pt 3):923-39. doi: 10.1111/j.1469-7793.1998.923bj.x.

DOI:10.1111/j.1469-7793.1998.923bj.x
PMID:9660903
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2231082/
Abstract
  1. The capacity of cuneate neurones to signal information derived from muscle spindle afferent fibres about static stretch or vibration of forearm extensor muscles was examined electrophysiologically in anaesthetized cats. 2. Static stretch (>= 2 mm in amplitude) and sinusoidal vibration (at frequencies of 50-800 Hz) were applied longitudinally to individual muscle tendons by means of a feedback controlled mechanical stimulator, and responses were recorded from individual cuneate neurones and from individual spindle afferent fibres. 3. Cuneate neurones sampled were located caudal to the obex and displayed a sensitivity to both vibration and static stretch of forearm muscles that was consistent with their input arising from primary spindle endings. In response to static muscle stretch, they displayed graded and approximately linear stimulus-response relations, and a stability of response level at fixed lengths that was consistent with these neurones contributing discriminative information about static muscle stretch. 4. In response to sinusoidal muscle vibration the cuneate neurones also showed graded stimulus-response relations (in contrast to spindle afferents which at low vibration amplitudes attain a plateau response level corresponding to a discharge of 1 impulse on each vibration cycle). Lowest thresholds were at 100-300 Hz and bandwidths of vibration sensitivity extended up to approximately 800 Hz. 5. Temporal precision in cuneate responses to muscle vibration was assessed by constructing phase scatter and cycle histograms from which measures of vector strength could be calculated. Cuneate responses displayed somewhat poorer phase locking (and lower vector strengths) than spindle afferent responses to vibration (a reflection of uncertainties associated with synaptic transmission). Nevertheless, the remarkable feature of cuneate responses to muscle vibration is the preservation of tight phase locking at frequencies up to 400-500 Hz, which presumably enables these central neurones to contribute accurate temporal information for the kinaesthetic sense in a variety of circumstances involving dynamic perturbations to skeletal muscle.
摘要
  1. 在麻醉猫身上用电生理学方法研究了楔束神经元传递来自前臂伸肌肌梭传入纤维有关静态伸展或振动信息的能力。2. 通过反馈控制的机械刺激器对单个肌腱纵向施加静态伸展(幅度≥2毫米)和正弦振动(频率为50 - 800赫兹),并记录单个楔束神经元和单个肌梭传入纤维的反应。3. 所采样的楔束神经元位于闩尾侧,对前臂肌肉的振动和静态伸展均表现出敏感性,这与其来自初级肌梭末梢的输入一致。对静态肌肉伸展的反应中,它们表现出分级且近似线性的刺激 - 反应关系,以及在固定长度下反应水平的稳定性,这与这些神经元提供有关静态肌肉伸展的辨别信息一致。4. 对正弦肌肉振动的反应中,楔束神经元也表现出分级的刺激 - 反应关系(与肌梭传入纤维不同,后者在低振动幅度时达到对应于每个振动周期1次冲动发放的平台反应水平)。最低阈值在100 - 300赫兹,振动敏感性带宽扩展至约800赫兹。5. 通过构建相位散布图和周期直方图来评估楔束对肌肉振动反应的时间精度,从中可以计算矢量强度指标。楔束反应显示出比肌梭传入纤维对振动的反应稍差的锁相(和较低的矢量强度)(这反映了与突触传递相关的不确定性)。然而,楔束对肌肉振动反应的显著特征是在高达400 - 500赫兹的频率下仍保持紧密锁相,这大概使这些中枢神经元能够在涉及骨骼肌动态扰动的各种情况下为动觉提供准确的时间信息。