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新皮层体感区和运动区突触可塑性的不同形式。

Different forms of synaptic plasticity in somatosensory and motor areas of the neocortex.

作者信息

Castro-Alamancos M A, Donoghue J P, Connors B W

机构信息

Department of Neuroscience, Brown University, Providence, Rhode Island 02912, USA.

出版信息

J Neurosci. 1995 Jul;15(7 Pt 2):5324-33. doi: 10.1523/JNEUROSCI.15-07-05324.1995.

Abstract

We have studied vertical synaptic pathways in two cytoarchitectonically distinct areas of rat neocortex--the granular primary somatosensory (SI) area and the agranular primary motor (MI) area--and tested their propensity to generate long-term potentiation (LTP), long-term depression (LTD), and related forms of synaptic plasticity. Extracellular and intracellular responses were recorded in layer II/III of slices in vitro while stimulating in middle cortical layers (in or around layer IV). Under control conditions, 5 Hz theta-burst stimulation produced LTP in the granular area, but not in the agranular area. Agranular cortex did generate short-term potentiation that decayed within 20 min. Varying the inter-burst frequency from 2 Hz to 10 Hz reliably yielded LTP of 21-34% above control levels in granular cortex, but no lasting changes were induced in agranular cortex. However, the agranular cortex was capable of generating LTP if a GABAA receptor antagonist was applied locally at the recording site during the induction phase. In contrast to LTP, an identical form of homosynaptic LTD could be induced in both granular and agranular areas by applying low frequency stimulation (1 Hz for 15 min) to the middle layers. Under control conditions, both LTP and LTD were synapse-specific; theta-burst or low-frequency stimulation in the vertical pathway did not induce changes in responses to stimulation of a layer II/III horizontal pathway. Application of the NMDA receptor antagonist D-2-amino-5-phosphonovaleric acid (AP5) blocked the induction of both LTP and LTD in granular and agranular cortex. In the presence of AP5, low-frequency conditioning stimuli yielded a short-term depression in both areas that decayed within 10-15 min. Nifedipine, which blocks L-type, voltage-sensitive calcium channels, slightly depressed the magnitudes of LTP and LTD but did not abolish them. Synaptic responses evoked during theta-burst stimulation were strikingly different in granular and agranular areas. Responses in granular cortex were progressively facilitated during each sequence of 10 theta-bursts, and from sequence-to-sequence; in contrast, responses in agranular cortex were stable during an entire theta-burst tetanus. The results suggest that vertical pathways in primary somatosensory cortex and primary motor cortex express several forms of synaptic plasticity. They were equally capable of generating LTD, but the pathways in somatosensory cortex much more reliably generated LTP, unless inhibition was reduced. LTP may be more easily produced in sensory cortex because of the pronounced synaptic facilitation that occurs there during repetitive stimulation of the induction phase.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

我们研究了大鼠新皮层两个细胞结构不同的区域——颗粒状的初级体感(SI)区和无颗粒状的初级运动(MI)区——的垂直突触通路,并测试了它们产生长时程增强(LTP)、长时程抑制(LTD)及相关形式突触可塑性的倾向。在体外切片的II/III层记录细胞外和细胞内反应,同时在皮质中层(IV层或其周围)进行刺激。在对照条件下,5 Hz的theta爆发式刺激在颗粒状区域产生LTP,但在无颗粒状区域则不产生。无颗粒状皮质确实产生了在20分钟内衰减的短时程增强。将爆发间频率从2 Hz改变到10 Hz能可靠地在颗粒状皮质产生比对照水平高21 - 34%的LTP,但在无颗粒状皮质未诱导出持久变化。然而,如果在诱导期在记录部位局部应用GABAA受体拮抗剂,无颗粒状皮质能够产生LTP。与LTP相反,通过对中层施加低频刺激(1 Hz,持续15分钟),在颗粒状和无颗粒状区域均可诱导出相同形式的同突触LTD。在对照条件下,LTP和LTD都是突触特异性的;垂直通路中的theta爆发式或低频刺激未诱导对II/III层水平通路刺激反应的变化。应用NMDA受体拮抗剂D - 2 - 氨基 - 5 - 膦酰基戊酸(AP5)可阻断颗粒状和无颗粒状皮质中LTP和LTD的诱导。在AP5存在的情况下,低频条件刺激在两个区域均产生在10 - 15分钟内衰减的短时程抑制。硝苯地平可阻断L型电压敏感性钙通道,它略微降低了LTP及LTD的幅度,但并未消除它们。在theta爆发式刺激期间诱发的突触反应在颗粒状和无颗粒状区域显著不同。在颗粒状皮质中,在每10次theta爆发的序列中以及序列之间,反应逐渐增强;相反,在无颗粒状皮质中,在整个theta爆发强直刺激期间反应是稳定的。结果表明,初级体感皮质和初级运动皮质中的垂直通路表达多种形式的突触可塑性。它们同样能够产生LTD,但体感皮质中的通路更可靠地产生LTP,除非抑制作用减弱。由于在诱导期重复刺激期间感觉皮质中发生明显的突触易化,LTP可能在感觉皮质中更容易产生。(摘要截断于400字)

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