Brezina V, Weiss K R
Dept of Physiology and Biophysics, Mount Sinai School of Medicine, New York, NY 10029, USA.
Trends Neurosci. 1997 Nov;20(11):538-43. doi: 10.1016/s0166-2236(97)01120-x.
Neurons and other cells are regulated by a great multiplicity of neurotransmitters, modulators, hormones and other chemical messengers, which, through complex networks of extensively diverging and converging pathways, exert a multiplicity of effects. How do we analyze the functioning of such a complex network? If the effects of a transmitter depend on the presence of many other transmitters, how can we predict what they will be? If multiple transmitters act through the same network, how can their actions be specific? If they converge on the same effects, are some of the transmitters redundant? Why are there so many transmitters? Such questions can be addressed using an analytical approach that examines, qualitatively or quantitatively, how the operation of the network globally maps a multidimensional input space of transmitters to a multidimensional output space of effects.
神经元和其他细胞受到多种神经递质、调质、激素及其他化学信使的调节,这些信使通过广泛发散和汇聚的复杂网络途径,发挥多种作用。我们如何分析这样一个复杂网络的功能呢?如果一种递质的作用取决于许多其他递质的存在,我们如何预测其作用效果呢?如果多种递质通过同一网络起作用,它们的作用如何具有特异性呢?如果它们产生相同的效应,其中一些递质是否是多余的呢?为什么会有这么多递质呢?可以使用一种分析方法来解决这些问题,该方法定性或定量地研究网络的运作如何将递质的多维输入空间全局映射到效应的多维输出空间。