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豚鼠海马切片中体外培养的颗粒细胞动作电位的起始与传播。

Initiation and spread of action potentials in granule cells maintained in vitro in slices of guinea-pig hippocampus.

作者信息

Jefferys J G

出版信息

J Physiol. 1979 Apr;289:375-88. doi: 10.1113/jphysiol.1979.sp012742.

Abstract
  1. Laminar field potentials due to the synchronous activation of granule cells were studied in slices of guinea-pig hippocampus maintained in vitro. 2. Extracellular recordings confirmed that stimulation of afferent laminae in the molecular layer caused excitatory synaptic current to enter the granule cell dendrites. If large enough this current initiated action potentials at, or near to, the somata 100--200 micrometers away. 3. After a population spike had been initiated via excitatory synapses or via antidromic invasion, the lcoation of inward membrane current (sink) appeared to move from the cell body layer into the dendrites at a velocity of 0.08-0.12 m/sec, for a distance of up to 250 micrometers. 4. The sink movement into the dendrites was blocked by tetrodotoxin and not by agents that blocked synaptic activation. Together with other observations these results led to the conclusion that granule cell dendrites were invaded by action potentials from the cell body region. There was no evidence of dendritic action potentials from the cell body region. There was no evidence of dendritic action potentials preceding the cell body spike initiated by synaptic inputs. Possible functions of this dendritic invasion are discussed.
摘要
  1. 在体外培养的豚鼠海马切片中研究了颗粒细胞同步激活所产生的层流场电位。2. 细胞外记录证实,刺激分子层中的传入层会使兴奋性突触电流进入颗粒细胞树突。如果电流足够大,就会在距离胞体100 - 200微米处或其附近引发动作电位。3. 通过兴奋性突触或逆向入侵引发群体峰电位后,内向膜电流(电穴)的位置似乎以0.08 - 0.12米/秒的速度从细胞体层移入树突,移动距离可达250微米。4. 电穴向树突的移动被河豚毒素阻断,而未被阻断突触激活的药物阻断。结合其他观察结果,这些结果得出结论:颗粒细胞树突被来自细胞体区域的动作电位侵入。没有证据表明在由突触输入引发的细胞体峰电位之前存在树突动作电位。讨论了这种树突入侵的可能功能。

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