Fine frequency tuning in monkey auditory cortex and thalamus

被引:35
作者
Bartlett, Edward L. [1 ]
Sadagopan, Srivatsun [1 ,2 ]
Wang, Xiaoqin [1 ]
机构
[1] Johns Hopkins Univ, Dept Biomed Engn, Baltimore, MD 21205 USA
[2] Johns Hopkins Univ, Dept Neurosci, Baltimore, MD 21205 USA
关键词
medial geniculate; thalamocortical dynamics; bandwidth; marmoset; MEDIAL GENICULATE-BODY; SINGLE-UNIT RESPONSES; INFERIOR COLLICULUS; FUNCTIONAL-ORGANIZATION; RECEPTIVE-FIELDS; NEURAL REPRESENTATIONS; LATERAL LEMNISCUS; COMMON MARMOSET; NEURONS; AWAKE;
D O I
10.1152/jn.00559.2010
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Bartlett EL, Sadagopan S, Wang X. Fine frequency tuning in monkey auditory cortex and thalamus. J Neurophysiol 106: 849-859, 2011. First published May 25, 2011; doi:10.1152/jn.00559.2010.-The frequency resolution of neurons throughout the ascending auditory pathway is important for understanding how sounds are processed. In many animal studies, the frequency tuning widths are about 1/5th octave wide in auditory nerve fibers and much wider in auditory cortex neurons. Psychophysical studies show that humans are capable of discriminating far finer frequency differences. A recent study suggested that this is perhaps attributable to fine frequency tuning of neurons in human auditory cortex (Bitterman Y, Mukamel R, Malach R, Fried I, Nelken I. Nature 451: 197-201, 2008). We investigated whether such fine frequency tuning was restricted to human auditory cortex by examining the frequency tuning width in the awake common marmoset monkey. We show that 27% of neurons in the primary auditory cortex exhibit frequency tuning that is finer than the typical frequency tuning of the auditory nerve and substantially finer than previously reported cortical data obtained from anesthetized animals. Fine frequency tuning is also present in 76% of neurons of the auditory thalamus in awake marmosets. Frequency tuning was narrower during the sustained response compared to the onset response in auditory cortex neurons but not in thalamic neurons, suggesting that thalamocortical or intracortical dynamics shape time-dependent frequency tuning in cortex. These findings challenge the notion that the fine frequency tuning of auditory cortex is unique to human auditory cortex and that it is a de novo cortical property, suggesting that the broader tuning observed in previous animal studies may arise from the use of anesthesia during physiological recordings or from species differences.
引用
收藏
页码:849 / 859
页数:11
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