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猫初级听觉皮层对电耳蜗刺激的神经元反应:IV. 正弦刺激的激活模式。

Neuronal responses in cat primary auditory cortex to electrical cochlear stimulation: IV. Activation pattern for sinusoidal stimulation.

作者信息

Raggio Marcia W, Schreiner Christoph E

机构信息

Epstein Laboratory, Coleman Laboratory, Department of Otolaryngology, University of California at San Francisco, 94143-0732, USA.

出版信息

J Neurophysiol. 2003 Jun;89(6):3190-204. doi: 10.1152/jn.00341.2002.

Abstract

Patterns of threshold distributions for single-cycle sinusoidal electrical stimulation and single pulse electrical stimulation were compared in primary auditory cortex of the adult cat. Furthermore, the effects of auditory deprivation on these distributions were evaluated and compared across three groups of adult cats. Threshold distributions for single and multiple unit responses from the middle cortical layers were obtained on the ectosylvian gyrus in an acutely implanted animal; 2 wk after deafening and implantation (short-term group); and neonatally deafened animals implanted following 2-5 yr of deafness (long-term group). For all three cases, we observed similar patterns of circumscribed regions of low response thresholds in the region of primary auditory cortex (AI). A dorsal and a ventral region of low response thresholds were found separated by a narrow, anterior-posterior strip of elevated thresholds. The ventral low-threshold regions in the short-term group were cochleotopically arranged. By contrast, the dorsal region in the short-term animals and both low-threshold regions in long-term deafened animals maintained only weak cochleotopicity. Analysis of the spatial extent of the low-threshold regions revealed that the activated area for sinusoidal stimulation was smaller and more circumscribed than for pulsatile stimulation for both dorsal and ventral AI. The width of the high-threshold ridge that separated the dorsal and ventral low-threshold regions was greater for sinusoidal stimulation. Sinusoidal and pulsatile threshold behavior differed significantly for electrode configurations with low and high minimum thresholds. Differences in threshold behavior and cortical response distributions between the sinusoidal and pulsatile stimulation suggest that stimulus shape plays a significant role in the activation of cortical activity. Differences in the activation pattern for short-term and long-term deafness reflect deafness-induced reorganizational changes based on factors such as differences in excitatory and inhibitory balance that are affected by the stimulation parameters.

摘要

在成年猫的初级听觉皮层中,比较了单周期正弦电刺激和单脉冲电刺激的阈值分布模式。此外,评估并比较了三组成年猫中听觉剥夺对这些分布的影响。在急性植入动物的外侧薛氏回上,获取了来自皮层中层的单单位和多单位反应的阈值分布;致聋并植入后2周(短期组);以及在致聋2 - 5年后植入的新生期致聋动物(长期组)。对于所有这三种情况,我们在初级听觉皮层(AI)区域观察到了类似的低反应阈值限定区域模式。发现一个背侧和一个腹侧低反应阈值区域被一条狭窄的、前后方向的高阈值带分隔开。短期组中的腹侧低阈值区域呈耳蜗拓扑排列。相比之下,短期动物中的背侧区域以及长期致聋动物中的两个低阈值区域仅保持较弱的耳蜗拓扑性。对低阈值区域空间范围的分析表明,对于背侧和腹侧AI,正弦刺激的激活区域比脉冲刺激的更小且更具限定性。分隔背侧和腹侧低阈值区域的高阈值脊的宽度对于正弦刺激更大。对于具有低和高最小阈值的电极配置,正弦和脉冲阈值行为存在显著差异。正弦刺激和脉冲刺激之间阈值行为和皮层反应分布的差异表明,刺激形状在皮层活动的激活中起重要作用。短期和长期耳聋激活模式的差异反映了基于诸如受刺激参数影响的兴奋性和抑制性平衡差异等因素的耳聋诱导的重组变化。

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