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应用微电极阵列记录技术研究抑郁大鼠整体心脏心肌电生理特性 被引量:3
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作者 刘政疆 侯月梅 +2 位作者 马晓洁 孙娟 热依兰 《中国心脏起搏与心电生理杂志》 北大核心 2009年第3期233-236,共4页
目的研究慢性应激对抑郁大鼠心房、心室场电位时程(FAPD)的影响。方法随机将20只大鼠分为对照组、抑郁组,对抑郁组大鼠进行连续21天的慢性应激。应用微电极阵列技术(MEA)记录心房、心室肌场电位波形、心房、心室FAPD。结果抑郁组大鼠慢... 目的研究慢性应激对抑郁大鼠心房、心室场电位时程(FAPD)的影响。方法随机将20只大鼠分为对照组、抑郁组,对抑郁组大鼠进行连续21天的慢性应激。应用微电极阵列技术(MEA)记录心房、心室肌场电位波形、心房、心室FAPD。结果抑郁组大鼠慢性应激后的糖水消耗试验、自主活动得分均明显低于对照组(P<0.01)。MEA记录技术可以记录到60个位点心房、心室肌FAPD不同的波形;抑郁组大鼠心房FAPD高于对照组(83.14±4.61msvs45.76±3.66ms,P<0.05)。两组心室肌FAPD无差异。结论慢性应激所致的抑郁可明显延长大鼠心房FAPD,这可能是抑郁导致心律失常的机制之一。 展开更多
关键词 电生理学 微电极阵记录技术 心室肌场电位时程 抑郁 动物模型
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Neural circuits and temporal plasticity in hindlimb representation of rat primary somatosensory cortex:revisited by multi-electrode array on brain slices 被引量:1
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作者 王丹丹 李震 +7 位作者 常颖 王蕊蕊 陈雪峰 赵振宇 曹发乐 金建慧 刘明刚 陈军 《Neuroscience Bulletin》 SCIE CAS CSCD 2010年第3期175-187,共13页
Objective The well-established planar multi-electrode array recording technique was used to investigate neural circuits and temporal plasticity in the hindlimb representation of the rat primary somatosensory cortex (... Objective The well-established planar multi-electrode array recording technique was used to investigate neural circuits and temporal plasticity in the hindlimb representation of the rat primary somatosensory cortex (S1 area) . Methods Freshly dissociated acute brain slices of rats were subject to constant perfusion with oxygenated artificial cerebrospinal fluid (95% O2 and 5% CO2) , and were mounted on a Med64 probe (64 electrodes, 8×8 array) for simultaneous multi-site electrophysiological recordings. Current sources and sinks across all the 64 electrodes were transformed into two-dimensional current source density images by bilinear interpolation at each point of the 64 electrodes. Results The local intracortical connection, which is involved in mediation of downward information flow across layers II-VI, was identified by electrical stimulation (ES) at layers II-III. The thalamocortical connection, which is mainly involved in mediation of upward information flow across layers II-IV, was also characterized by ES at layer IV. The thalamocortical afferent projections were likely to make more synaptic contacts with S1 neurons than the intracortical connections did. Moreover, the S1 area was shown to be more easily activated and more intensively innervated by the thalamocortical afferent projections than by the intracortical connections. Finally, bursting conditioning stimulus (CS) applied within layer IV of the S1 area could success-fully induce long-term potentiation (LTP) in 5 of the 6 slices (83.3%) , while the same CS application at layers II-III induced no LTP in any of the 6 tested slices. Conclusion The rat hindlimb representation of S1 area is likely to have at least 2 patterns of neural circuits on brain slices: one is the intracortical circuit (ICC) formed by interlaminar connections from layers II-III, and the other is the thalamocortical circuit (TCC) mediated by afferent connections from layer IV. Besides, ICC of the S1 area is spatially limited, with less plasticity, while TCC is spatially extensive and exhibits a better plasticity in response to somatosensory afferent stimulation. The present data provide a useful experimental model for further studying microcircuit properties in S1 cortex at the network level in vitro. 展开更多
关键词 planar multi-electrode array two-dimensional current source density imaging primary somatosensory cortex neural circuits long-term potentiation
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Differential effects of long and short train theta burst stimulation on LTP induction in rat anterior cingulate cortex slices:Multi-electrode array recordings
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作者 何莹 刘明刚 +1 位作者 巩克瑞 陈军 《Neuroscience Bulletin》 SCIE CAS CSCD 2009年第5期309-318,共10页
Objective There is substantial evidence supporting the notion that the anterior cingulate cortex (ACC) is an important limbic structure involved in multiple brain functions such as sensory perception, motor conflict... Objective There is substantial evidence supporting the notion that the anterior cingulate cortex (ACC) is an important limbic structure involved in multiple brain functions such as sensory perception, motor conflict monitoring, memory, emotion and cognition. It has been shown that long term potentiation (LTP) is an important synaptic model of neural plasticity in the ACC, however, little is known about the spatiotemporal properties of ACC at network level. The present study was designed to see the LTP induction effects across different layers of the ACC by using different conditioning stimuli (CS) protocols. Methods A unique multi-electrode array recording technique was used in the acutely-dissociated ACC slices of rats. Long and short train theta burst stimulation (TBS) paradigms were applied in layer V-VI as the CS and the LTP induction effects were compared across different layers of the ACC. Briefly, both long and short train TBS are composed of bursts (4 pulses at 100 Hz) with a 200 ms interval, however, the former (TBS1) was with 10 trains and the latter (TBS2) was with 5 trains. After test stimulation at layer V-VI in the ACC, network field potentials (FPs) could be simultaneously recorded across all layers of the ACC. Results The waveforms of FPs were different across different layers. Namely, positive-going waveforms were recorded in layer I and negative-going waveforms were recorded in layers V-VI, in contrast, complex waveforms were localized mainly in layers II-III. Following application of two CS protocols, the induction rate of LTP was significantly different between TBS 1 and TBS2 regardless of the spatial properties. TBS1 had more than 60% success, while TBS2 was less than 25% in induction of LTP. Moreover, both the 2 CS protocols could induce LTP in layers II-III and layers V-VI without layer-related difference. However, no LTP was inducible in layer I. Conclusion The present findings indicate that stimulation protocols may, at least in part, account for a large portion of variations among previous LTP studies, and hence highlight the importance of selecting the best LTP induction protocol when designing such experiments. Moreover, the present results demonstrate the prominent superiority of multi-electrode array recording in revealing the network properties of synaptic activities in the ACC, especially in comparing the spatiotemporal characteristics between different layers of this structure. 展开更多
关键词 long term potentiation anterior cingulate cortex theta burst stimulation multi-electrode array recordings RAT
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