Christison-Lagay Kate L, Bennur Sharath, Cohen Yale E
Department of Otorhinolaryngology, University of Pennsylvania, Philadelphia, Pennsylvania.
Department of Otorhinolaryngology, University of Pennsylvania, Philadelphia, Pennsylvania;
J Neurophysiol. 2017 Dec 1;118(6):3118-3131. doi: 10.1152/jn.00521.2017. Epub 2017 Aug 30.
A fundamental problem in hearing is detecting a "target" stimulus (e.g., a friend's voice) that is presented with a noisy background (e.g., the din of a crowded restaurant). Despite its importance to hearing, a relationship between spiking activity and behavioral performance during such a "detection-in-noise" task has yet to be fully elucidated. In this study, we recorded spiking activity in primary auditory cortex (A1) while rhesus monkeys detected a target stimulus that was presented with a noise background. Although some neurons were modulated, the response of the typical A1 neuron was not modulated by the stimulus- and task-related parameters of our task. In contrast, we found more robust representations of these parameters in population-level activity: small populations of neurons matched the monkeys' behavioral sensitivity. Overall, these findings are consistent with the hypothesis that the sensory evidence, which is needed to solve such detection-in-noise tasks, is represented in population-level A1 activity and may be available to be read out by downstream neurons that are involved in mediating this task. This study examines the contribution of A1 to detecting a sound that is presented with a noisy background. We found that population-level A1 activity, but not single neurons, could provide the evidence needed to make this perceptual decision.
听力中的一个基本问题是,在存在嘈杂背景(如拥挤餐厅的喧闹声)的情况下检测“目标”刺激(如朋友的声音)。尽管这对听力很重要,但在这种“噪声中检测”任务期间,神经元放电活动与行为表现之间的关系尚未完全阐明。在本研究中,我们记录了恒河猴在检测存在噪声背景的目标刺激时初级听觉皮层(A1)中的神经元放电活动。虽然一些神经元受到了调制,但典型的A1神经元的反应并未受到我们任务中与刺激和任务相关参数的调制。相比之下,我们在群体水平活动中发现了这些参数更可靠的表征:少量神经元群体与猴子的行为敏感性相匹配。总体而言,这些发现与以下假设一致,即解决此类噪声中检测任务所需的感觉证据以群体水平的A1活动形式存在,并且可能可供参与介导该任务的下游神经元读取。本研究考察了A1在检测存在噪声背景的声音中的作用。我们发现,是群体水平的A1活动而非单个神经元能够提供做出这种感知决策所需的证据。