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Somatotopically organized inputs from fore- and hindlimb areas of sensorimotor cortex to cerebellar Purkynĕ cells.

作者信息

Allen G I, Azzena G B, Ohno T

出版信息

Exp Brain Res. 1974;20(3):255-72. doi: 10.1007/BF00238316.

DOI:10.1007/BF00238316
PMID:4372079
Abstract
摘要

相似文献

1
Somatotopically organized inputs from fore- and hindlimb areas of sensorimotor cortex to cerebellar Purkynĕ cells.从感觉运动皮层的前肢和后肢区域到小脑浦肯野细胞的躯体定位组织输入。
Exp Brain Res. 1974;20(3):255-72. doi: 10.1007/BF00238316.
2
Cerebellar Purkynĕ cell responses to inputs from sensorimotor cortex.小脑浦肯野细胞对来自感觉运动皮层输入的反应。
Exp Brain Res. 1974;20(3):239-54. doi: 10.1007/BF00238315.
3
The inhibitory effect of climbing fiber activation on cerebellar purkinje cells.攀缘纤维激活对小脑浦肯野细胞的抑制作用。
Brain Res. 1970 May 4;19(3):486-90. doi: 10.1016/0006-8993(70)90391-4.
4
Electrogenesis of cerebellar Purkinje cell responses in cats.猫小脑浦肯野细胞反应的电发生
J Neurophysiol. 1971 May;34(3):348-56. doi: 10.1152/jn.1971.34.3.348.
5
Analysis of electrical potentials evoked in the cerebellar anterior lobe by stimulation of hindlimb and forelimb nerves.通过刺激后肢和前肢神经对小脑前叶诱发的电位进行分析。
Exp Brain Res. 1968;6(3):171-94. doi: 10.1007/BF00235123.
6
Responses of neurones of interpositus nucleus to stimulation of the sensorimotor cortex.间位核神经元对感觉运动皮层刺激的反应。
Brain Res. 1972 Oct 27;45(2):585-9. doi: 10.1016/0006-8993(72)90487-8.
7
Investigations on integration of mossy fiber inputs to Purkynè cells in the anterior lobe.关于前叶苔藓纤维输入至浦肯野细胞整合的研究。
Exp Brain Res. 1971 Jul 26;13(1):54-77.
8
Afferent volleys in limb nerves influencing impulse discharges in cerebellar cortex. II. In Purkynè cells.肢体神经的传入冲动对小脑皮质冲动发放的影响。II. 浦肯野细胞。
Exp Brain Res. 1971 Jul 26;13(1):36-53.
9
Cortical and peripheral modification of cerebellar climbing fibre activity arising from cutaneous mechanoreceptors.源于皮肤机械感受器的小脑攀缘纤维活动的皮质和外周调制。
J Physiol. 1973 Feb;228(3):619-35. doi: 10.1113/jphysiol.1973.sp010103.
10
Somatotopic studies on cerebellar fastigial cells.
Exp Brain Res. 1974 Jan 22;19(1):100-18. doi: 10.1007/BF00233397.

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Effect of spinal cord injury on neural encoding of spontaneous postural perturbations in the hindlimb sensorimotor cortex.脊髓损伤对后肢感觉运动皮层中自发性姿势扰动的神经编码的影响。
J Neurophysiol. 2021 Nov 1;126(5):1555-1567. doi: 10.1152/jn.00727.2020. Epub 2021 Aug 11.
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Multiple signals evoked by unisensory stimulation converge onto cerebellar granule and Purkinje cells in mice.单感觉刺激诱发的多种信号汇聚到小鼠的小脑颗粒细胞和浦肯野细胞上。
Commun Biol. 2020 Jul 15;3(1):381. doi: 10.1038/s42003-020-1110-2.
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Electrophysiological mapping of novel prefrontal - cerebellar pathways.

本文引用的文献

1
Spinal course and somatotopically localized termination of the spinocerebellar tracts. An experimental study in the cat.脊髓小脑束的脊髓走行及躯体定位性终末。猫的实验研究。
Acta Physiol Scand Suppl. 1962;56(193):1-61.
2
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
Exp Neurol. 1962 Mar;5:179-95. doi: 10.1016/0014-4886(62)90032-8.
3
Afferent impulses to the cerebellar hemispheres from the cerebral cortex and certain subcortical nuclei; an electroanatomical study in the cat.
新型前额叶-小脑通路的电生理学定位。
Front Integr Neurosci. 2009 Aug 11;3:18. doi: 10.3389/neuro.07.018.2009. eCollection 2009.
4
The linear computational algorithm of cerebellar Purkinje cells.小脑浦肯野细胞的线性计算算法。
J Neurosci. 2006 Dec 13;26(50):12861-72. doi: 10.1523/JNEUROSCI.4507-05.2006.
5
A novel site of synaptic relay for climbing fibre pathways relaying signals from the motor cortex to the cerebellar cortical C1 zone.一种用于攀爬纤维通路的新型突触中继位点,该通路将信号从运动皮层传递至小脑皮质C1区。
J Physiol. 2006 Oct 15;576(Pt 2):503-18. doi: 10.1113/jphysiol.2006.114215. Epub 2006 Aug 3.
6
Contribution of somatosensory cortex to responses in the rat cerebellar granule cell layer following peripheral tactile stimulation.体感皮层对大鼠外周触觉刺激后小脑颗粒细胞层反应的贡献。
Exp Brain Res. 1996 May;109(2):240-50. doi: 10.1007/BF00231784.
7
Spinal, trigeminal, and cortical climbing fibre paths to the lateral vermis of the cerebellar anterior lobe in the cat.猫小脑前叶外侧蚓部的脊髓、三叉神经及皮质攀缘纤维通路。
Exp Brain Res. 1981;44(1):71-81. doi: 10.1007/BF00238750.
8
Origin and sagittal termination areas of cerebro-cerebellar climbing fibre paths in the cat.猫脑-小脑攀缘纤维通路的起源及矢状终末区域
J Physiol. 1983 Apr;337:257-85. doi: 10.1113/jphysiol.1983.sp014623.
9
Visual cortical projections to the paraflocculus in the rat. An electrophysiologic study.大鼠视皮层向旁绒球的投射:一项电生理研究。
Exp Brain Res. 1983;49(1):55-67. doi: 10.1007/BF00235541.
10
Zonal termination of the tecto-olivocerebellar pathway in the cat.猫中顶盖-橄榄小脑通路的分区终止
Exp Brain Res. 1983;49(3):353-62. doi: 10.1007/BF00238777.
来自大脑皮层和某些皮层下核团向小脑半球的传入冲动;猫的电解剖学研究。
Acta Physiol Scand Suppl. 1957;41(143):1-99.
4
Laminar microelectrode studies of specific somatosensory cortical potentials.特定躯体感觉皮层电位的层流微电极研究。
J Neurophysiol. 1956 Mar;19(2):111-30. doi: 10.1152/jn.1956.19.2.111.
5
Functional localization in the cerebellum. II. Somatotopic organization in cortex and nuclei.小脑的功能定位。II. 皮质和核团的躯体定位组织
AMA Arch Neurol Psychiatry. 1955 Dec;74(6):653-80. doi: 10.1001/archneurpsyc.1955.02330180071008.
6
Functional localization in the cerebellum. I. Organization in longitudinal cortico-nuclear zones and their contribution to the control of posture, both extrapyramidal and pyramidal.小脑的功能定位。I. 纵向皮质-核区的组织及其对姿势控制的贡献,包括锥体外系和锥体系。
J Comp Neurol. 1955 Aug;103(1):105-29. doi: 10.1002/cne.901030107.
7
Projections of the motor, somatic sensory, auditory and visual cortices in cats.
Prog Brain Res. 1966;21:292-322. doi: 10.1016/s0079-6123(08)62982-9.
8
Projection and convergence patterns in climbing fibre paths to cerebellar anterior lobe activated from cerebral cortex and spinal cord.从大脑皮层和脊髓激活的攀缘纤维通路至小脑前叶的投射和汇聚模式。
Brain Res. 1969 Jun;14(1):230-3. doi: 10.1016/0006-8993(69)90045-6.
9
The corticopontine projection in the cat. I. Demonstration of a somatotopically organized projection from the primary sensorimotor cortex.猫的皮质脑桥投射。I. 初级感觉运动皮层躯体定位组织投射的证明。
Exp Brain Res. 1968;5(3):210-34.
10
Mossy and climbing fibre organization on the anterior lobe of the cerebellum activated by forelimb and hindlimb areas of the sensorimotor cortex.由感觉运动皮层的前肢和后肢区域激活的小脑前叶上的苔藓纤维和攀缘纤维组织。
Exp Brain Res. 1968;6(3):216-33. doi: 10.1007/BF00235125.