Mendelson J R, Schreiner C E, Sutter M L
Coleman Laboratory, Keck Center for Integrative Neuroscience, University of California at San Francisco 94143-0732, USA.
J Comp Physiol A. 1997 Dec;181(6):615-33. doi: 10.1007/s003590050145.
Minimum onset latency (Lmin) of single- and multiple-unit responses were mapped in the primary auditory cortex (AI) of barbiturate-anesthetized cats. Contralateral Lmin for multiple units was non-homogeneously distributed along the dorso-ventral/isofrequency axis of the AI. Responses with shorter latencies were more often located in the central, more sharply tuned region while longer latencies were more frequently encountered in the dorsal and ventral portions of the AI. For single units, a large scatter of Lmin values was found throughout the extent of the AI including cortical depth. The relationship between Lmin and previously reported spectral, intensity and temporal parameters was analyzed and revealed statistically significant correlations between minimum onset latency and the following response properties in some but not all studied animals: sharpness of tuning of a frequency response area 10 dB above threshold, broadband transient response, strongest response level, monotonicity of rate/level functions, dynamic range, and preferred frequency modulation sweep direction. This analysis suggests that Lmin is determined by several independent factors and that the prediction of Lmin based on relationships with other spectral and temporal response properties is inherently weak. The spatial distribution and the functional relationship between these response parameters may provide an important aspect of the time-based cortical representation of specific features in the animal's natural environment.
在巴比妥类麻醉猫的初级听觉皮层(AI)中绘制了单单位和多单位反应的最小起始潜伏期(Lmin)。多单位的对侧Lmin沿AI的背腹/等频率轴呈非均匀分布。潜伏期较短的反应更常位于中央、调谐更尖锐的区域,而较长潜伏期则更频繁地出现在AI的背侧和腹侧部分。对于单单位,在整个AI范围内(包括皮层深度)发现Lmin值有很大的离散度。分析了Lmin与先前报道的频谱、强度和时间参数之间的关系,发现在一些但并非所有研究动物中,最小起始潜伏期与以下反应特性之间存在统计学上的显著相关性:高于阈值10 dB的频率反应区域的调谐锐度、宽带瞬态反应、最强反应水平、速率/水平函数的单调性、动态范围和偏好的频率调制扫描方向。该分析表明,Lmin由几个独立因素决定,并且基于与其他频谱和时间反应特性的关系对Lmin进行预测本质上是薄弱的。这些反应参数之间的空间分布和功能关系可能为动物自然环境中特定特征的基于时间的皮层表征提供一个重要方面。