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首页> 外文期刊>The Journal of Physiology >Different requirements for action potentials in the induction of different forms of long-term potentiation.
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Different requirements for action potentials in the induction of different forms of long-term potentiation.

机译:在诱导不同形式的长期增强中对动作电位的不同要求。

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The role of postsynaptic action potentials (APs) in the induction of long-term potentiation (LTP) remains unclear, but has important implications for theories of associative learning in the brain. In area CA1 of hippocampus, at least three discrete forms of LTP coexist, each displaying unique decay kinetics and involving different signalling and effector systems. The present work investigates whether these forms of LTP also differ in their requirement for postsynaptic APs. Inhibition of APs during theta-burst stimulation (TBS) had no effect on the persistence of short-lasting LTP (LTP 1), but reduced the persistence of more durable forms (LTP 2 and 3). Calcium imaging revealed different requirements for APs in generating calcium signals in spines, dendrites, and somata, consistent with their known roles in the induction of each form of LTP. Finally, short-lasting LTP was endowed with dramatically enhanced persistence by the presentation of TBS-patterned APs alone. These data reveal that the requirement for APs in LTP induction is dependent on the form of LTP under investigation, supporting the contention that different neuronal learning mechanisms coexist in hippocampal area CA1.
机译:突触后动作电位(APs)在诱导长时程增强(LTP)中的作用尚不清楚,但对大脑中联想学习的理论具有重要意义。在海马区CA1中,至少存在三种离散形式的LTP,每种形式表现出独特的衰变动力学,并涉及不同的信号和效应系统。目前的工作调查这些形式的LTP是否也对突触后AP的要求有所不同。在Theta-burst刺激(TBS)期间抑制AP对短时LTP(LTP 1)的持久性没有影响,但是减少了更持久形式(LTP 2和3)的持久性。钙成像揭示了AP在棘突,树突和躯体中生成钙信号的不同要求,这与它们在每种形式的LTP诱导中的已知作用一致。最后,仅通过使用TBS模式的AP即可实现持久LTP的持久性显着增强。这些数据表明,在LTP诱导中对AP的需求取决于所研究的LTP的形式,从而支持在海马区CA1中共存不同神经元学习机制的观点。

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