Prinz Astrid A, Bucher Dirk, Marder Eve
Volen Center and Biology Department, Brandeis University, Mail Stop 013, 415 South Street, Waltham, Massachusetts 02454-9110, USA.
Nat Neurosci. 2004 Dec;7(12):1345-52. doi: 10.1038/nn1352. Epub 2004 Nov 21.
It is often assumed that cellular and synaptic properties need to be regulated to specific values to allow a neuronal network to function properly. To determine how tightly neuronal properties and synaptic strengths need to be tuned to produce a given network output, we simulated more than 20 million versions of a three-cell model of the pyloric network of the crustacean stomatogastric ganglion using different combinations of synapse strengths and neuron properties. We found that virtually indistinguishable network activity can arise from widely disparate sets of underlying mechanisms, suggesting that there could be considerable animal-to-animal variability in many of the parameters that control network activity, and that many different combinations of synaptic strengths and intrinsic membrane properties can be consistent with appropriate network performance.
人们通常认为,细胞和突触特性需要被调节到特定值,以使神经网络正常运作。为了确定神经元特性和突触强度需要精确调整到何种程度才能产生给定的网络输出,我们使用不同的突触强度和神经元特性组合,模拟了超过2000万个版本的甲壳类动物口胃神经节幽门网络的三细胞模型。我们发现,几乎无法区分的网络活动可能源自广泛不同的潜在机制,这表明在控制网络活动的许多参数中,动物个体之间可能存在相当大的差异,并且许多不同的突触强度和内在膜特性组合都可能与适当的网络性能相一致。