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Climbing fiber receptive fields-organizational and functional aspects and relationship to limb coordination.攀爬纤维感受野——组织与功能方面及其与肢体协调的关系。
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10
Prolonged depolarization elicited in Purkinje cell dendrites by climbing fibre impulses in the cat.猫的攀缘纤维冲动在浦肯野细胞树突中引发的长时间去极化。
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Termination of spinal afferents to inferior olive in cat.猫脊髓传入纤维至下橄榄核的终止
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Two ascending spinal pathways in the ventral part of the cord.脊髓腹侧部的两条上行脊髓通路。
Acta Physiol Scand. 1962 Mar-Apr;54:270-86. doi: 10.1111/j.1748-1716.1962.tb02351.x.
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FUNCTIONAL ORGANIZATION OF THE SPINO- AND CUNEOCEREBELLAR TRACTS.脊髓小脑束和楔小脑束的功能组织
Physiol Rev. 1965 Jul;45:495-522. doi: 10.1152/physrev.1965.45.3.495.
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DIFFERENTIAL COURSE AND ORGANIZATION OF UNCROSSED AND CROSSED LONG ASCENDING SPINAL TRACTS.未交叉和交叉的长脊髓上行束的差异进程与组织
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EFFECTS FROM THE SENSORIMOTOR CORTEX ON ASCENDING SPINAL PATHWAYS.感觉运动皮层对脊髓上行通路的影响。
Acta Physiol Scand. 1963 Dec;59:462-73. doi: 10.1111/j.1748-1716.1963.tb02762.x.
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Functional organization of the cuneocrebellar tract in the cat.猫楔小脑束的功能组织
Acta Physiol Scand. 1963 Jun-Jul;58:216-35. doi: 10.1111/j.1748-1716.1963.tb02643.x.
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Projection of the external cuneate nucleus onto the cerebellum in the cat: an experimental study using silver methods.猫的楔外核向小脑的投射:一项使用银染法的实验研究
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Intracellular recording from cells of the ventral spinocerebellar tract.从腹侧脊髓小脑束细胞进行细胞内记录。
J Physiol. 1961 Oct;158(3):486-516. doi: 10.1113/jphysiol.1961.sp006782.
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Supraspinal control of interneurones mediating spinal reflexes.介导脊髓反射的中间神经元的脊髓上控制
J Physiol. 1959 Oct;147(3):565-84. doi: 10.1113/jphysiol.1959.sp006262.
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Responses of the inferior olive to peripheral stimuli and the spinal pathways involved.下橄榄核对外周刺激的反应及相关的脊髓通路。
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腹侧脊髓-橄榄小脑通路的终止与功能组织

Termination and functional organization of the ventral spino-olivocerebellar path.

作者信息

Oscarsson O

出版信息

J Physiol. 1968 May;196(2):453-78. doi: 10.1113/jphysiol.1968.sp008518.

DOI:10.1113/jphysiol.1968.sp008518
PMID:4297417
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1351723/
Abstract
  1. The spino-olivocerebellar path ascending through the ventral funiculus (VF-SOCP) was investigated in decerebrate cats with the cord transected in the third cervical segment except for the left ventral funiculus. The climbing fibre responses evoked in Purkinje cells were studied by recording from single cells and by recording the mass activity at the cerebellar surface or in the molecular layer.2. In the spinal cord the forelimb component of the VF-SOCP occupies a medial part and the hind limb component a lateral part of the ventral funiculus.3. The main projection of the limb nerves through the VF-SOCP is to the lateral two thirds of the vermis of the anterior lobe. The projection area consists of three sagittally arranged bands: a lateral band receiving olivary axons activated exclusively from the ipsilateral hind limb, an intermediate band receiving olivary axons activated bilaterally from the hind limbs, and a medial band receiving olivary axons activated bilaterally from the forelimbs. Some olivary neurones are activated from all four limbs.4. The latency of the climbing fibre responses was about 22 msec on stimulation of ipsilateral hind limb nerves and about 20 msec on stimulation of ipsilateral forelimb nerves. The responses evoked from contralateral nerves had a latency which was about 3 msec longer than the latency of the corresponding ipsilateral responses.5. The olivary neurones were usually activated from all tested muscle and skin nerves in the limb(s) constituting the receptive field. Cutaneous afferents and groups II and III muscle afferents were responsible for the excitation elicited by single shock stimulation of the nerves. Brief repetitive stimulation revealed additional activation from mainly Ib, but also Ia, afferents in ipsilateral hind limb nerves.6. Natural stimulation of receptors evoked responses in about half of the olivary neurones tested. The responses were elicited by strong pressure against deep structures. Inhibitory effects were seldom observed.
摘要
  1. 在第三颈段脊髓横断(仅保留左侧腹侧索)的去大脑猫中,对经腹侧索上行的脊髓橄榄小脑通路(VF - SOCP)进行了研究。通过单细胞记录以及小脑表面或分子层的群体活动记录,研究了浦肯野细胞诱发的攀爬纤维反应。

  2. 在脊髓中,VF - SOCP的前肢成分占据腹侧索的内侧部分,而后肢成分占据腹侧索的外侧部分。

  3. 肢体神经经VF - SOCP的主要投射至前叶蚓部的外侧三分之二。投射区域由三条矢状排列的带组成:外侧带接收仅由同侧后肢激活的橄榄轴突,中间带接收由后肢双侧激活的橄榄轴突,内侧带接收由前肢双侧激活的橄榄轴突。一些橄榄神经元可由四肢全部激活。

  4. 刺激同侧后肢神经时,攀爬纤维反应的潜伏期约为22毫秒,刺激同侧前肢神经时约为20毫秒。对侧神经诱发的反应潜伏期比相应同侧反应的潜伏期长约3毫秒。

  5. 橄榄神经元通常由构成感受野的肢体中所有测试的肌肉和皮肤神经激活。皮肤传入纤维以及Ⅱ类和Ⅲ类肌肉传入纤维负责神经单次电击刺激引发的兴奋。短暂重复刺激显示,同侧后肢神经中主要是Ib传入纤维,但也有Ia传入纤维产生额外激活。

  6. 对约一半测试的橄榄神经元进行感受器自然刺激时可诱发反应。这些反应由对深部结构的强压力引发。很少观察到抑制作用。