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受X射线照射的大鼠新皮层中对触须有反应的锥体神经元顶树突干的过早分支。

Premature bifurcation of the apical dendritic trunk of vibrissa-responding pyramidal neurones of X-irradiated rat neocortex.

作者信息

Ito M, Kato M, Kawabata M

机构信息

Physiology Laboratory, Institute for Developmental Research, Aichi Human Service Center, Kasugai 480-03, Japan.

出版信息

J Physiol. 1998 Oct 15;512 ( Pt 2)(Pt 2):543-53. doi: 10.1111/j.1469-7793.1998.543be.x.

Abstract
  1. Electrophysiological and morphological experiments were performed on the pyramidal neurones of the somatosensory neocortex of the adult rat that had been exposed in utero to 200 rad of X-irradiation. Under urethane anaesthesia, evoked gross potentials, extracellular and intracellular neuronal responses, and laminar field potentials were recorded. The evoked epicortical potential to deflection of a single whisker was a long-lasting positive wave which contrasted with a biphasic positive-negative complex in unirradiated controls. Neurones were initially tested during extracellular recording for responses to whisker deflections. This was followed by intracellular injection with horseradish peroxidase (HRP), and the HRP-stained neuronal elements were visualized using diaminobenzidine as a chromagen. 2. Fifty neurones were recorded and stained through the soma. The mean response latency was 15.1 ms. Of these, thirty-six showed premature bifurcation of the apical dendrite. The angle of bifurcation of the apical dendrite was measured in the coronal plane and was found to be a function of the depth at which the soma was located and the distance between the soma and bifurcation point. It was suggested that the apical dendrites of these neurones underwent premature bifurcation due to an imbalance between the growth of neurones and skull. 3. Fifteen neurones were recorded and stained through the presumed apical dendritic shaft. The mean response latency was 19.5 ms. The electrode track left in the histological specimen pointed to the stained apical dendrite. Dendritic elements distal to the entry point were preferentially filled with HRP. In no cases were somata stained. There was, in turn, no evidence of recording from dendritic elements distal to the bifurcation since no electrode track was found to point to these elements. That dendritic spike responses may not travel beyond the bifurcation was further substantiated by laminar analysis of field potentials.
摘要
  1. 对成年大鼠体感新皮层的锥体神经元进行了电生理和形态学实验,这些大鼠在子宫内曾接受200拉德的X射线照射。在氨基甲酸乙酯麻醉下,记录诱发的总体电位、细胞外和细胞内神经元反应以及层流场电位。对单根触须偏转的诱发皮层电位是一个持久的正波,这与未照射对照组中的双相正负复合波形成对比。最初在细胞外记录期间测试神经元对触须偏转的反应。随后进行辣根过氧化物酶(HRP)的细胞内注射,并使用二氨基联苯胺作为显色剂观察HRP染色的神经元成分。2. 通过胞体记录并染色了50个神经元。平均反应潜伏期为15.1毫秒。其中,36个显示顶树突过早分支。在冠状平面测量顶树突的分支角度,发现其是胞体所在深度以及胞体与分支点之间距离的函数。有人认为,这些神经元的顶树突由于神经元生长与颅骨之间的不平衡而发生过早分支。3. 通过假定的顶树突轴记录并染色了15个神经元。平均反应潜伏期为19.5毫秒。组织学标本中留下的电极轨迹指向染色的顶树突。进入点远端的树突成分优先被HRP填充。在任何情况下胞体都未被染色。反过来,由于未发现电极轨迹指向分支远端的树突成分,因此没有证据表明记录到了这些成分的活动。场电位的层流分析进一步证实了树突棘反应可能不会传播到分支之外。

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