Carrasco Andres, Lomber Stephen G
Graduate Program in Neuroscience, University of Western Ontario, London, Ontario N6A 5B8, Canada.
J Neurosci. 2009 Jul 1;29(26):8350-62. doi: 10.1523/JNEUROSCI.6001-08.2009.
Neuroanatomical studies have revealed a vast network of corticocortical connections among the various fields that form cat auditory cortex. However, few studies have explored the functional communicative properties of these connections. The purpose of the present study was to examine the bidirectional processing contributions between the primary auditory cortex (A1) and the nonprimary anterior auditory field (AAF). Using acute recording techniques, multiunit neuronal activity was collected from the right hemisphere of nine mature cats. Cortical maps were generated, and the precise location of A1 and AAF was identified. Subsequently, the synaptic activity of A1 or AAF was suppressed with reversible thermal deactivation procedures while the neuronal response to tonal stimuli of the non-inactivated area (A1 or AAF) was measured. We examined response strength and latency, characteristic frequency, bandwidth, and neuronal threshold of A1 and AAF receptive fields before and during epochs of deactivation. Three major changes in A1 response properties were observed during AAF neuronal suppression: a decrease in response strength, an increase in neuronal thresholds, and a sharpening of receptive field bandwidths. In contrast, A1 deactivation did not produce any discernible changes in AAF neuronal responses. Collectively, these results suggest that the modulation of acoustic information between A1 and AAF in cat auditory cortex is dominated by a unidirectional AAF to A1 pathway.
神经解剖学研究揭示了构成猫听觉皮层的各个区域之间存在广泛的皮质-皮质连接网络。然而,很少有研究探讨这些连接的功能交流特性。本研究的目的是检验初级听觉皮层(A1)和非初级前听觉区(AAF)之间的双向处理贡献。使用急性记录技术,从9只成年猫的右半球收集多单元神经元活动。生成了皮质图谱,并确定了A1和AAF的精确位置。随后,通过可逆热失活程序抑制A1或AAF的突触活动,同时测量未失活区域(A1或AAF)对音调刺激的神经元反应。我们在失活期之前和期间检查了A1和AAF感受野的反应强度、潜伏期、特征频率、带宽和神经元阈值。在AAF神经元抑制期间,观察到A1反应特性的三个主要变化:反应强度降低、神经元阈值增加以及感受野带宽变窄。相比之下,A1失活并未在AAF神经元反应中产生任何可察觉的变化。总体而言,这些结果表明,猫听觉皮层中A1和AAF之间的声学信息调制主要由从AAF到A1的单向通路主导。