Godey Benoit, Atencio Craig A, Bonham Ben H, Schreiner Christoph E, Cheung Steven W
Laboratoire IDM, UPRES-EA 3192, Université de Rennes 1, Rennes, France.
J Neurophysiol. 2005 Aug;94(2):1299-311. doi: 10.1152/jn.00950.2004.
The squirrel monkey twitter call is an exemplar of a broad class of species-specific vocalizations that contain naturally voiced frequency-modulated (FM) sweeps. To investigate how this prominent communication call element is represented in primary auditory cortex (AI), neuronal receptive field properties to pure-tone and synthetic, logarithmically spaced FM-sweep stimuli in 3 barbiturate-anesthetized squirrel monkeys are studied. Responses to pure tones are assessed by using standard measures of frequency response areas, whereas responses to FM sweeps are classified according to direction selectivity, best speed, and speed tuning preferences. Most neuronal clusters respond to FM sweeps in both directions and over a range of FM speeds. Center frequencies calculated from the average of high and low trigger frequency edges of FM response profiles are highly correlated with pure-tone characteristic frequencies (CFs). However, bandwidth estimates are only weakly correlated with their pure-tone counterparts. CF and direction selectivity are negatively correlated. Best speed maps reveal idiosyncratically positioned spatial aggregation of similar values. In contrast, direction selectivity maps show unambiguous spatial organization. Neuronal clusters selective for upward-directed FM sweeps are located in ventral-caudal AI, where CFs range from 0.5 to 1 kHz. Combinations of pure-tone and FM response parameters form 2 significant factors to account for response variations. These results are interpreted in the context of earlier FM investigations and neuronal encoding of dynamic sounds.
松鼠猴的叽叽喳喳叫声是一类广泛的物种特异性发声的典型例子,这类发声包含自然发声的调频(FM)扫描。为了研究这个突出的通信呼叫元素在初级听觉皮层(AI)中是如何被表征的,我们研究了3只巴比妥酸盐麻醉的松鼠猴对纯音和合成的、对数间隔的FM扫描刺激的神经元感受野特性。对纯音的反应通过频率反应区域的标准测量来评估,而对FM扫描的反应则根据方向选择性、最佳速度和速度调谐偏好进行分类。大多数神经元簇对两个方向的FM扫描以及一系列FM速度都有反应。从FM反应曲线的高、低触发频率边缘的平均值计算出的中心频率与纯音特征频率(CFs)高度相关。然而,带宽估计与它们的纯音对应物只有微弱的相关性。CF和方向选择性呈负相关。最佳速度图揭示了相似值的特殊定位空间聚集。相比之下,方向选择性图显示出明确的空间组织。对向上定向的FM扫描有选择性的神经元簇位于腹侧尾侧AI,其CF范围为0.5至1千赫。纯音和FM反应参数的组合形成了两个重要因素来解释反应变化。这些结果在早期FM研究和动态声音的神经元编码的背景下进行了解释。