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本文引用的文献

1
On the Union of Cranial Autonomic (Visceral) Fibres with the Nerve Cells of the Superior Cervical Ganglion.关于颅部自主(内脏)纤维与颈上神经节神经细胞的联合
J Physiol. 1898 Jul 26;23(3):240-70. doi: 10.1113/jphysiol.1898.sp000726.
2
On the Regeneration of Pre-Ganglionic and of Post-Ganglionic Visceral Nerve Fibres.关于节前和节后内脏神经纤维的再生
J Physiol. 1897 Nov 20;22(3):215-30. doi: 10.1113/jphysiol.1897.sp000688.
3
Effects of nerve cross-union on fast-twitch and slow-graded muscle fibres in the toad.神经交叉联合对蟾蜍快肌和慢分级肌纤维的影响。
J Physiol. 1968 Sep;198(1):103-25. doi: 10.1113/jphysiol.1968.sp008596.
4
AN ANALYSIS OF ELECTRICAL COUPLING AT SYNAPSES IN THE AVIAN CILIARY GANGLION.鸟类睫状神经节突触电耦合的分析
J Physiol. 1964 Jun;171(3):454-75. doi: 10.1113/jphysiol.1964.sp007390.
5
DUAL MODE OF SYNAPTIC TRANSMISSION IN THE AVIAN CILIARY GANGLION.鸟类睫状神经节中的双重突触传递模式
J Physiol. 1963 Sep;168(2):443-63. doi: 10.1113/jphysiol.1963.sp007202.
6
Nonselectivity in establishment of neuromuscular connections following nerve regeneration in the rat.大鼠神经再生后神经肌肉连接建立过程中的非选择性
Exp Neurol. 1961 Sep;4:262-75. doi: 10.1016/0014-4886(61)90047-4.
7
Selectivity in the re-establishment of synapses in the superior cervical sympathetic ganglion of the cat.猫颈上神经节中突触重建的选择性
Exp Neurol. 1961 Jul;4:59-69. doi: 10.1016/0014-4886(61)90078-4.
8
Reinnervation of nictitating membrane of cat by cholinergic fibers.胆碱能纤维对猫瞬膜的再支配
J Neurophysiol. 1957 Jul;20(4):365-73. doi: 10.1152/jn.1957.20.4.365.
9
Regeneration of axons in the vertebrate central nervous system.脊椎动物中枢神经系统中轴突的再生。
Physiol Rev. 1956 Oct;36(4):427-40. doi: 10.1152/physrev.1956.36.4.427.
10
Mechanical responses of the pigeon iris muscle fibres.鸽子虹膜肌纤维的力学反应。
Comp Biochem Physiol. 1969 Apr;29(1):73-87. doi: 10.1016/0010-406x(69)91726-5.

成年鸽睫状神经节中两个细胞群的选择性再支配。

Selective reinnervation of two cell populations in the adult pigeon ciliary ganglion.

作者信息

Landmesser L, Pilar G

出版信息

J Physiol. 1970 Nov;211(1):203-16. doi: 10.1113/jphysiol.1970.sp009275.

DOI:10.1113/jphysiol.1970.sp009275
PMID:5500994
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1395587/
Abstract
  1. Presynaptic fibres innervating the adult pigeon ciliary ganglion were cut 2 mm proximal to the ganglion. The modification of transmission in the ciliary and choroid cell populations was studied after periods of 6 hr-100 days.2. Transmission failed after 2 days and for the next 10 days there was no transmission through the ganglion. Long latency responses in both ciliary and choroid nerves were first observed at 13-15 days, and the latency decreased toward control values in 40 days. Electrical transmission reappeared in the ciliary population in about 26 days.3. Presynaptic fibres innervating the ciliary population have higher conduction velocities and lower electrical thresholds than those innervating the choroid group. This relation was maintained throughout the reinnervation process. Fibres innervating the extraocular muscles also regenerated and achieved conduction velocities similar to their control values.4. In two experiments out of seventeen, a few fast conducting, low threshold fibres, presumably stray ciliary fibres, innervated choroid cells and induced electrical transmission.5. It is concluded that each group of cells, ciliary and choroid, was reinnervated in a highly selective manner by its original class of presynaptic fibres, and that the presynaptic ciliary elements cause the specializations necessary for electrical transmission.
摘要
  1. 将支配成年鸽睫状神经节的突触前纤维在神经节近端2毫米处切断。在6小时至100天的时间段后,研究睫状和脉络膜细胞群中传递的变化。

  2. 2天后传递失败,在接下来的10天里,没有通过神经节的传递。睫状神经和脉络膜神经的长潜伏期反应首次在13 - 15天观察到,潜伏期在40天内朝对照值降低。电传递在约26天在睫状细胞群中重新出现。

  3. 支配睫状细胞群的突触前纤维比支配脉络膜组的纤维具有更高的传导速度和更低的电阈值。这种关系在整个再支配过程中得以维持。支配眼外肌的纤维也再生并达到与其对照值相似的传导速度。

  4. 在17个实验中的2个实验中,一些传导快、阈值低的纤维,可能是迷路的睫状纤维,支配脉络膜细胞并诱导电传递。

  5. 得出的结论是,睫状和脉络膜每组细胞都由其原来的突触前纤维类别以高度选择性的方式重新支配,并且突触前睫状元件引起电传递所需的特化。