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海马CA1锥体层神经元的穿通通路激活:直接通路的电生理证据

Perforant pathway activation of hippocampal CA1 stratum pyramidale neurons: electrophysiological evidence for a direct pathway.

作者信息

Doller H J, Weight F F

出版信息

Brain Res. 1982 Apr 8;237(1):1-13. doi: 10.1016/0006-8993(82)90553-4.

Abstract

Electrophysiological techniques were used to investigate the effect of stimulating the perforant pathway (PP) on pyramidal neurons in the CA1 region of the hippocampal slice. Stimulation of the PP evoked both field potentials and single unit discharges in the pyramidal cell layer of the CA1 region. Several lines of experimental evidence suggest that the CA1 response does not involve granule or CA3 neurons: (i) movement of the recording electrode in the CA1 region away from the site of stimulation in the PP and closer to the CA3 region increased the latency of the evoked potential; (ii) the sum of latencies of the individual pathways in a trisynaptic circuit - from the PP to granule cells to CA3 neurons to CA1 neurons - was 2-3 times longer than the latency of the PP evoked response recorded in the CA1 region: (iii) lesioning the mossy fiber pathway or excising the CA3 region did not inhibit the CA1 response to PP stimulation. Other experimental results suggest that the PP activation of CA1 pyramidal neurons involves a direct synaptic pathway: (i) PP stimulation evoked potentials with similar latencies in the dentate gyrus and the CA1 region; (ii) the CA1 response was abolished in a Krebs' solution containing low calcium/high magnesium; (iii) excising a portion of the CA1 region between the stimulating electrode in the PP and the CA1 recording electrode, but sparing the PP, did not abolish the CA1 response; (iv) electrolytic lesions of the PP abolished the CA1 response to PP stimulation, but did not affect the CA1 response to stimulation of the CA3 region. The data suggest that fibers in the PP make direct synaptic connection with pyramidal neurons in the CA1 region of the hippocampus.

摘要

采用电生理技术研究刺激穿通通路(PP)对海马脑片CA1区锥体细胞的影响。刺激PP可在CA1区锥体细胞层诱发场电位和单个神经元放电。多条实验证据表明,CA1区的反应不涉及颗粒细胞或CA3神经元:(i)将记录电极在CA1区内从PP的刺激位点移开并靠近CA3区,可增加诱发电位的潜伏期;(ii)在三突触回路中,从PP到颗粒细胞再到CA3神经元最后到CA1神经元的各个通路潜伏期总和比在CA1区记录到的PP诱发反应潜伏期长2 - 3倍;(iii)损伤苔藓纤维通路或切除CA3区并不抑制CA1区对PP刺激的反应。其他实验结果表明,PP对CA1锥体细胞的激活涉及一条直接的突触通路:(i)PP刺激在齿状回和CA1区诱发潜伏期相似的电位;(ii)在低钙/高镁的Krebs溶液中,CA1区的反应消失;(iii)切除PP刺激电极与CA1记录电极之间的部分CA1区,但保留PP,并不消除CA1区的反应;(iv)PP的电解损伤消除了CA1区对PP刺激的反应,但不影响CA1区对CA3区刺激的反应。这些数据表明,PP中的纤维与海马CA1区的锥体细胞形成直接的突触连接。

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