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Interaction of synaptic modification rules within populations of neurons.

机译:神经元群体中突触修饰规则的相互作用。

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摘要

A theoretical account is given for long- and short-term changes in populations of neurons subject to independent rules for pre- and postsynaptic modification. The postsynaptic rule proposes that coactivated heterosynaptic inputs to a neuron alter the states of ion channels at a given synapse, thereby changing the susceptibility of these channels to local biochemical alterations. The resultant change in the population distribution of local channel states affects the postsynaptic potential produced at the synapse by subsequent inputs. This postsynaptic rule applies, in general, to short-term changes at specific individual synapses. In contrast, the presynaptic rule applies in general to long-term changes in the whole neuron, resulting in an altered probability of transmitter release. Because of neuroanatomical constraints, the presynaptic rule affects large numbers of synapses defined by the connectivity of that neuron and distributed nonspecifically over the population. We show that the combined action of the two independent rules upon populations of neurons arrayed in interconnected neuronal groups leads to consistent alterations of the probability of firing of certain circuits while maintaining variability in the response of the population to novel input. This "dual rules" model fulfills the requirements of the theory of neuronal group selection.
机译:对于突触前后修饰的独立规则,对神经元群体的长期和短期变化给出了理论解释。突触后规则建议,神经元的共激活异突触输入会改变给定突触处离子通道的状态,从而改变这些通道对局部生化改变的敏感性。局部通道状态的种群分布的最终变化会影响后续输入在突触处产生的突触后电位。突触后规则通常适用于特定个体突触的短期变化。相反,突触前规则通常适用于整个神经元的长期变化,从而导致递质释放的可能性改变。由于神经解剖学上的限制,突触前规则会影响由该神经元的连通性定义且在人群中非特异性分布的大量突触。我们表明,两个独立规则对相互连接的神经元组中排列的神经元群体的联合作用会导致某些电路触发的概率发生持续变化,同时保持群体对新输入的响应的可变性。这种“双重规则”模型满足了神经元组选择理论的要求。

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