High Spectral and Temporal Acuity in Primary Auditory Cortex of Awake Cats.

John C Middlebrooks, Lauren K Javier-Tolentino, Akshat Arneja, Matthew L Richardson
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Abstract

Most accounts of single- and multi-unit responses in auditory cortex under anesthetized conditions have emphasized V-shaped frequency tuning curves and low-pass sensitivity to rates of repeated sounds. In contrast, single-unit recordings in awake marmosets also show I-shaped and O-shaped response areas having restricted tuning to frequency and (for O units) sound level. That preparation also demonstrates synchrony to moderate click rates and representation of higher click rates by spike rates of non-synchronized tonic responses, neither of which are commonly seen in anesthetized conditions. The spectral and temporal representation observed in the marmoset might reflect special adaptations of that species, might be due to single- rather than multi-unit recording, or might indicate characteristics of awake-versus-anesthetized recording conditions. We studied spectral and temporal representation in the primary auditory cortex of alert cats. We observed V-, I-, and O-shaped response areas like those demonstrated in awake marmosets. Neurons could synchronize to click trains at rates about an octave higher than is usually seen with anesthesia. Representations of click rates by rates of non-synchronized tonic responses exhibited dynamic ranges that covered the entire range of tested click rates. The observation of these spectral and temporal representations in cats demonstrates that they are not unique to primates and, indeed, might be widespread among mammalian species. Moreover, we observed no significant difference in stimulus representation between single- and multi-unit recordings. It appears that the principal factor that has hindered observations of high spectral and temporal acuity in the auditory cortex has been the use of general anesthesia.

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清醒猫初级听觉皮层的高频谱和时间敏锐度。
大多数关于麻醉条件下听觉皮层单单元和多单元反应的描述都强调v形频率调谐曲线和对重复声音率的低通灵敏度。相比之下,在清醒的狨猴中,单单元记录也显示出i形和O形的响应区域,它们对频率和(对于O单元)声级的调节受到限制。这种准备也证明了中等点击率的同步性,以及非同步张力反应的尖峰率代表了更高的点击率,这两种情况在麻醉状态下都不常见。在狨猴身上观察到的光谱和时间表征可能反映了该物种的特殊适应,可能是由于单单元记录而不是多单元记录,或者可能表明清醒与麻醉记录条件的特征。我们研究了警觉猫初级听觉皮层的频谱和时间表征。我们观察到V形,I形和o形的反应区域,就像在清醒的狨猴中所表现的那样。神经元可以以比通常麻醉时高一个八度的速度同步“咔哒列车”。用非同步的紧张性反应率表示的点击率显示了覆盖整个测试点击率范围的动态范围。对猫的这些光谱和时间表征的观察表明,它们并不是灵长类动物所特有的,实际上,可能在哺乳动物物种中广泛存在。此外,我们观察到单单元和多单元记录在刺激表征上没有显著差异。看来,阻碍观察高频谱和时间敏锐度在听觉皮层的主要因素是使用全身麻醉。
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来源期刊
CiteScore
4.10
自引率
12.50%
发文量
57
审稿时长
6-12 weeks
期刊介绍: JARO is a peer-reviewed journal that publishes research findings from disciplines related to otolaryngology and communications sciences, including hearing, balance, speech and voice. JARO welcomes submissions describing experimental research that investigates the mechanisms underlying problems of basic and/or clinical significance. Authors are encouraged to familiarize themselves with the kinds of papers carried by JARO by looking at past issues. Clinical case studies and pharmaceutical screens are not likely to be considered unless they reveal underlying mechanisms. Methods papers are not encouraged unless they include significant new findings as well. Reviews will be published at the discretion of the editorial board; consult the editor-in-chief before submitting.
期刊最新文献
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