Complex cells increase their phase sensitivity at low contrasts and following adaptation
Complex cells increase their phase sensitivity at low contrasts and following adaptation
复制标题
DOI:
10.1152/jn.00433.2007
复制
发表时间:
2007-09-01
影响因子:
2.5
通讯作者:
Ibbotson, M. R.
中科院分区:
文献类型:
--
作者:
Crowder, N. A.;Van Kleef, J.;Ibbotson, M. R.
One of the best-known dichotomies in neuroscience is the division of neurons in the mammalian primary visual cortex into simple and complex cells. Simple cells have receptive fields with separate ON and OFF subregions and give phase-sensitive responses to moving gratings, whereas complex cells have uniform receptive fields and are phase invariant. The phase sensitivity of a cell is calculated as the ratio of the first Fourier coefficient (F-1) to the mean time-average (F-0) of the response to moving sinusoidal gratings at 100% contrast. Cells are then classified as simple (F-1/F-0 >1) or complex (F-1/F-0 1 at low contrasts and after adaptation (particularly in layer 4). The results are consistent with the spike-threshold hypothesis, which suggests that the division of cells into two types arises from the nonlinear interaction of spike threshold with membrane potential responses.