Wang C, Waleszczyk W J, Burke W, Dreher B
Discipline of Anatomy and Histology, School of Medical Sciences and Bosch Institute (F13), The University of Sydney, Sydney, NSW 2006, Australia.
Exp Brain Res. 2007 Oct;182(4):479-90. doi: 10.1007/s00221-007-1014-0. Epub 2007 Jul 14.
We have studied the contribution of feedback signals originating from one of the "form-processing" extrastriate cortical areas, area 21a (A21a), to orientation selectivity of single neurons in the ipsilateral area 17 (A17). Consistent with previous findings, reversible inactivation (cooling to 5-10 degrees C) of area 21a resulted in a substantial reduction in the magnitude of the maximum response (R (max)) of A17 cells accompanied by some changes in the half-width at half-height of the R (max) (HWHH). By fitting model functions to the neurons' response profiles we found that in the vast majority of orientation-tuned A17 cells tested (30/39, 77%), inactivation of A21a resulted in a "flattening" of their orientation-tuning curves. It is characterised by a substantial reduction in the R (max) associated with either a broadening of the orientation-tuning curves (17 cells) or a relatively small reduction (12 cells) or no change (1 cell) in the HWHH. When the "flattening" effect was quantified using a simple ratio index or R/W, defined as R (max)/HWHH, we found that R/W was significantly reduced during inactivation of A21a. The change in R/W is strongly correlated with the change in the maximum slope of the orientation-tuning curves. Furthermore, analysis of response variability indicates that "signal-to-noise" ratio of the responses of A17 neurons decreases during inactivation of A21a. Our results suggest that the predominately excitatory feedback signals originating from A21a play a role in enhancing orientation selectivity of A17 neurons and hence are likely to improve overall orientation discriminability.
我们研究了源自“形状处理”纹外皮质区域之一的21a区(A21a)的反馈信号对同侧17区(A17)单个神经元方向选择性的贡献。与先前的研究结果一致,21a区的可逆性失活(冷却至5 - 10摄氏度)导致A17细胞最大反应幅度(R(max))大幅降低,同时R(max)半高宽(HWHH)也有一些变化。通过将模型函数拟合到神经元的反应曲线,我们发现,在绝大多数接受测试的方向调谐A17细胞(30/39,77%)中,A21a失活导致其方向调谐曲线“变平”。其特征是与方向调谐曲线变宽(17个细胞)、HWHH相对小幅降低(12个细胞)或无变化(1个细胞)相关的R(max)大幅降低。当使用简单的比率指数或R/W(定义为R(max)/HWHH)对“变平”效应进行量化时,我们发现A21a失活期间R/W显著降低。R/W的变化与方向调谐曲线最大斜率的变化密切相关。此外,对反应变异性的分析表明,A21a失活期间A17神经元反应的“信噪比”降低。我们的结果表明,源自A21a的主要兴奋性反馈信号在增强A17神经元的方向选择性方面发挥作用,因此可能会提高整体方向辨别能力。