Chitwood R A, Jaffe D B
Division of Life Sciences, University of Texas at San Antonio, San Antonio, Texas 78249, USA.
J Neurophysiol. 1998 Aug;80(2):983-8. doi: 10.1152/jn.1998.80.2.983.
Interneurons of the hippocampal formation are traditionally identified electrophysiologically as those cells that fire trains of weakly accommodating action potentials in response to depolarizing current injection. We studied the firing properties of nonpyramidal neurons in the five substrata of the CA3b region of hippocampus. With the use of whole cell recording methods we found that nonpyramidal neurons fired in a range from weak to strong spike-frequency accommodation (SFA) that was calcium dependent. Slow afterhyperpolarizations were not associated with strong SFA. In addition a subset of interneurons ( approximately 20%) fired with an irregular firing pattern that was generally calcium independent. These results suggest a calcium-dependent mechanism for SFA in nonpyramidal neurons that is distinct from pyramidal cells and further demonstrates the heterogeneity of hippocampal interneurons.
传统上,海马结构的中间神经元在电生理上被定义为那些在接受去极化电流注入时,能产生一系列弱适应性动作电位的细胞。我们研究了海马CA3b区五个亚层中非锥体神经元的放电特性。通过全细胞记录方法,我们发现非锥体神经元的放电频率适应范围从弱到强,且这种适应是钙依赖性的。缓慢的超极化后电位与强烈的频率适应无关。此外,一部分中间神经元(约20%)以不规则的放电模式放电,这种模式通常与钙无关。这些结果表明,非锥体神经元中存在一种与锥体细胞不同的、依赖于钙的频率适应机制,进一步证明了海马中间神经元的异质性。