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Age reduces response latency of mouse inferior colliculus neurons to AM sounds

机译:年龄减少了小鼠下丘神经元对AM声音的反应潜伏期

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摘要

Age and stimulus rise time (RT) effects on response latency were investigated for inferior colliculus (IC) neurons in young-adult and old CBA mice. Single-unit responses were recorded to unmodulated and sinusoidal amplitude modulated (SAM) broadband noise carriers, presented at 35 to 80 dB SPL. Data from 63 young-adult and 76 old phasic units were analyzed to identify the time interval between stimulus onset and driven-response onset (latency). When controlling for stimulus sound level and AM frequency, significant age-related changes in latency were identified. Absolute latency decreased with age at all stimulus AM frequencies, significantly so for equivalent rise times (RT)≤12.5 ms. The linear correlation of latency with AM stimulus RT was significant for both young-adult and old units, and increased significantly with age. It is likely that both the decrease in absolute latency and the increase in latency/RT correlation with age are consistent with a reduction of inhibitory drive with age in the IC. These latency changes will result in age-related timing variations in brainstem responses to stimulus onsets, and therefore affect the encoding of complex sounds.
机译:研究了成年和老年CBA小鼠的下丘脑(IC)神经元的年龄和刺激物上升时间(RT)对反应潜伏期的影响。记录了对未调制和正弦幅度调制(SAM)宽带噪声载波的单单元响应,呈现为35至80 dB SPL。分析了来自63个年轻人和76个年龄阶段的数据,以确定刺激发作和驱动反应发作之间的时间间隔(潜伏期)。当控制刺激声水平和AM频率时,可以发现潜伏期与年龄相关的显着变化。在所有刺激性AM频率下,绝对潜伏期均随着年龄的增长而降低,因此当等效上升时间(RT)≤12.5ms时,显着降低。潜伏期与AM刺激RT的线性相关性在年轻人和老年人单位中均显着,并随年龄显着增加。随着年龄的增长,绝对潜伏期的减少和潜伏期/ RT相关性的增加很可能与IC的抑制性驱动力随年龄的降低而一致。这些潜伏期的变化将导致脑干对刺激发作的反应中与年龄相关的时间变化,从而影响复杂声音的编码。

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