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Ultrastructure of nerve terminals and muscle fibers in denervated crayfish muscle.

作者信息

Atwood H L, Govind C K, Bittner G D

出版信息

Z Zellforsch Mikrosk Anat. 1973 Dec 31;146(2):155-65. doi: 10.1007/BF00307344.

DOI:10.1007/BF00307344
PMID:4785982
Abstract
摘要

相似文献

1
Ultrastructure of nerve terminals and muscle fibers in denervated crayfish muscle.去神经支配的小龙虾肌肉中神经末梢和肌纤维的超微结构
Z Zellforsch Mikrosk Anat. 1973 Dec 31;146(2):155-65. doi: 10.1007/BF00307344.
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Innervation and vascular supply of the crayfish opener muscle: scanning and transmission electron microscopy.小龙虾开肌的神经支配与血管供应:扫描电镜与透射电镜观察
Z Zellforsch Mikrosk Anat. 1972;127(2):189-200. doi: 10.1007/BF00306801.
3
Correlated electrophysiological and ultrastructural studies of a crustacean motor unit.对甲壳类动物运动单位的相关电生理和超微结构研究。
J Gen Physiol. 1972 May;59(5):586-615. doi: 10.1085/jgp.59.5.586.
4
Regenerated synaptic terminals on a crayfish slow muscle identify with transplanted phasic or tonic axons.小龙虾慢肌上再生的突触终末可与移植的相位性或紧张性轴突相识别。
J Neurobiol. 2000 Nov 15;45(3):185-93. doi: 10.1002/1097-4695(20001115)45:3<185::aid-neu6>3.0.co;2-g.
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Regeneration of phasic synapses on a crayfish slow muscle following allotransplantation of a mixed phasic-tonic nerve.混合性快-慢神经同种异体移植后小龙虾慢肌上相位性突触的再生
J Neurocytol. 2001 Mar;30(3):231-41. doi: 10.1023/a:1012701824528.
6
Ultrastructural correlates of motor nerve regeneration in crayfish.小龙虾运动神经再生的超微结构关联
Cell Tissue Res. 1974 Mar 29;148(1):97-110. doi: 10.1007/BF00224321.
7
Electron microscopy of severed motor fibers in the crayfish.小龙虾中切断的运动纤维的电子显微镜检查。
Z Zellforsch Mikrosk Anat. 1972;126(2):157-81. doi: 10.1007/BF00307214.
8
Electron microscopic study of terminal nerves, motor end-plates and sarcoplasmic structures in denervated skeletal muscle.失神经支配骨骼肌中终末神经、运动终板和肌浆结构的电子显微镜研究。
J Neuropathol Exp Neurol. 1968 Jan;27(1):108-9.
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The sensitivity to glutamate of denervated muscles of the crayfish.小龙虾去神经肌肉对谷氨酸的敏感性。
J Physiol. 1974 Oct;242(2):371-82. doi: 10.1113/jphysiol.1974.sp010712.
10
A central role for denervated tissues in causing nerve sprouting.失神经支配组织在导致神经芽生过程中起核心作用。
Nature. 1979 Dec 13;282(5740):724-6. doi: 10.1038/282724a0.

引用本文的文献

1
Ultrastructural studies of severed medial giant and other CNS axons in crayfish.小龙虾中切断的内侧巨轴突及其他中枢神经系统轴突的超微结构研究。
Cell Tissue Res. 1980;208(1):123-33. doi: 10.1007/BF00234178.
2
Regeneration of motor axons in crayfish limbs: distal stump activation followed by synaptic reformation.小龙虾肢体运动轴突的再生:远端残端激活后进行突触重塑。
Cell Tissue Res. 1981;219(2):379-92. doi: 10.1007/BF00210156.
3
The sensitivity to glutamate of denervated muscles of the crayfish.小龙虾去神经肌肉对谷氨酸的敏感性。

本文引用的文献

1
The use of lead citrate at high pH as an electron-opaque stain in electron microscopy.在电子显微镜检查中,将高pH值的柠檬酸铅用作电子不透明染色剂。
J Cell Biol. 1963 Apr;17(1):208-12. doi: 10.1083/jcb.17.1.208.
2
Physiological and structural changes at the amphibian myoneural junction, in the course of nerve degeneration.神经变性过程中两栖动物肌神经接头处的生理和结构变化。
J Physiol. 1960 Jan;150(1):145-68. doi: 10.1113/jphysiol.1960.sp006379.
3
Z and T tubules in stomach muscles of the spiny lobster.多刺龙虾胃部肌肉中的Z线和T小管。
J Physiol. 1974 Oct;242(2):371-82. doi: 10.1113/jphysiol.1974.sp010712.
4
Long-term persistence of GAD activity in injured crayfish CNS tissue.损伤小龙虾中枢神经系统组织中谷氨酸脱羧酶(GAD)活性的长期持续存在。
Neurochem Res. 1987 Nov;12(11):977-83. doi: 10.1007/BF00970926.
5
Stress protein synthesis by crayfish CNS tissue in vitro.
Neurochem Res. 1991 May;16(5):533-42. doi: 10.1007/BF00974871.
6
Synaptoid profiles in regenerating crustacean peripheral nerves.再生甲壳类动物外周神经中的类突触结构
Cell Tissue Res. 1976 Feb 27;166(4):445-60. doi: 10.1007/BF00225910.
7
Ultrastructural studies on neuromuscular contacts and the formation of junctions in the flight muscle of Antheraea polyphemus (Lep.). II. Changes after motor nerve section.大透目天蚕蛾(鳞翅目)飞行肌中神经肌肉接触及连接形成的超微结构研究。II. 运动神经切断后的变化。
Cell Tissue Res. 1975 Dec 10;164(3):331-55. doi: 10.1007/BF00223013.
8
Differential survival of isolated portions of crayfish axons.小龙虾轴突分离部分的差异存活情况。
Cell Tissue Res. 1976 Jun 28;169(3):301-11. doi: 10.1007/BF00219603.
9
Neuronal and non-neuronal control of the neurosecretory caudo-dorsal cells of the freshwater snail Lymnaea stagnalis (L.).淡水蜗牛椎实螺(Lymnaea stagnalis,L.)神经分泌性尾背细胞的神经元和非神经元控制
Cell Tissue Res. 1976 Apr 28;168(1):11-31. doi: 10.1007/BF00219720.
J Cell Biol. 1971 Jul;50(1):264-8. doi: 10.1083/jcb.50.1.264.
4
On the degeneration of rat neuromuscular junctions after nerve section.大鼠神经切断后神经肌肉接头的退变
J Physiol. 1970 Apr;207(2):507-28. doi: 10.1113/jphysiol.1970.sp009076.
5
Quantitative aspects of transmitter release.递质释放的定量研究
J Cell Biol. 1970 Dec;47(3):585-92. doi: 10.1083/jcb.47.3.585.
6
Neuromuscular and axoaxonal synapses of the crayish opener muscle.小龙虾开肌的神经肌肉突触和轴突-轴突突触。
J Ultrastruct Res. 1970 Aug;32(3):351-69. doi: 10.1016/s0022-5320(70)80015-6.
7
Degeneration and regeneration in abdominal flexor motor neurons in the crayfish.小龙虾腹部屈肌运动神经元的退化与再生
J Exp Zool. 1969 Oct;172(2):219-32. doi: 10.1002/jez.1401720207.
8
Synaptic vesicles: selective depletion in crayfish excitatory and inhibitory axons.突触小泡:小龙虾兴奋性和抑制性轴突中的选择性消耗。
Science. 1972 Jun 23;176(4041):1353-5. doi: 10.1126/science.176.4041.1353.
9
Innervation and vascular supply of the crayfish opener muscle: scanning and transmission electron microscopy.小龙虾开肌的神经支配与血管供应:扫描电镜与透射电镜观察
Z Zellforsch Mikrosk Anat. 1972;127(2):189-200. doi: 10.1007/BF00306801.
10
Effects of temperature on the ultrastructure of severed crayfish motor axons.温度对切断的小龙虾运动轴突超微结构的影响。
J Exp Zool. 1973 Jun;184(3):289-302. doi: 10.1002/jez.1401840302.