Brain and Mind Institute, Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, University of Western Ontario, London, Ontario N6A 5C1, Canada.
J Neurosci. 2013 Jan 9;33(2):776-89. doi: 10.1523/JNEUROSCI.1784-12.2013.
In contrast to numerous studies of transcallosal communication in visual and somatosensory cortices, the functional properties of interhemispheric connections between auditory cortical fields have not been widely scrutinized. Therefore, the purpose of the present investigation was to measure the magnitude and type (inhibitory/excitatory) of modulatory properties of core auditory fields on contralateral primary auditory cortex (A1) activity. We combined single-unit neuronal recordings with reversible cooling deactivation techniques to measure variations in contralateral A1 response levels during A1, anterior auditory field (AAF), or simultaneous A1 and AAF neuronal discharge suppression epochs in cat auditory cortex. Cortical activity was evoked by presentation of pure tones, noise bursts, and frequency-modulated (FM) sweeps before, during, and after cortical deactivation periods. Comparisons of neuronal response changes before and during neuronal silencing revealed three major findings. First, deactivation of A1 and AAF-induced significant peak response reductions in contralateral A1 activity during simple (tonal) and complex (noise bursts and FM sweeps) acoustic exposure. Second, decreases in A1 neuronal activity appear to be in agreement with anatomical laminar termination patterns emanating from contralateral auditory cortex fields. Third, modulatory properties of core auditory areas lack hemispheric lateralization. These findings demonstrate that during periods of acoustic exposure, callosal projections emanating from core auditory areas modulate A1 neuronal activity via excitatory inputs.
与众多关于视觉和躯体感觉皮层间胼胝体通讯的研究相反,听觉皮层区域之间的半球间连接的功能特性尚未得到广泛研究。因此,本研究的目的是测量核心听觉区域对对侧初级听觉皮层(A1)活动的调制性质和类型(抑制/兴奋)的幅度。我们结合了单细胞神经元记录和可逆冷却失活技术,以测量在猫听觉皮层中 A1、前听觉场(AAF)或同时 A1 和 AAF 神经元放电抑制期间 A1 对侧反应水平的变化。在皮质失活期之前、期间和之后,通过呈现纯音、噪声突发和调频(FM)扫频来诱发皮质活动。在神经元沉默前后比较神经元反应变化揭示了三个主要发现。首先,A1 和 AAF 的失活导致在简单(音调)和复杂(噪声突发和 FM 扫频)声暴露期间对侧 A1 活动的峰响应显著降低。其次,A1 神经元活动的减少似乎与来自对侧听觉皮层区域的解剖层状终止模式一致。第三,核心听觉区域的调制性质缺乏半球侧化。这些发现表明,在声暴露期间,来自核心听觉区域的胼胝体投射通过兴奋性输入调节 A1 神经元活动。