Zhou Xiaoming, Jen Philip H-S, Seburn Kevin L, Frankel Wayne N, Zheng Qing Y
College of Life Sciences, East China Normal University, Shanghai 200062, PR China.
Brain Res. 2006 May 26;1091(1):16-26. doi: 10.1016/j.brainres.2006.01.107. Epub 2006 Mar 3.
The auditory brainstem response (ABR) is an evoked potential response of auditory activity in the auditory nerve and subsequent fiber tracts and nuclei within the auditory brainstem pathways. The threshold, amplitude, and latency analysis of the ABR provides information on the peripheral hearing status and the integrity of brainstem pathways. In this study, we compared the threshold, amplitude, and latency of ABRs recorded from 149 mice of 10 commonly used inbred strains (BALB/cJ, C3HeB/FeJ, C3H/HeJ, CAST/EiJ, CBA/CaJ, CBA/J, FVB/NJ, MRL/MpJ, NZB/BlNJ, and SJL/J) using clicks of different intensities. The ABR thresholds of these strains ranged from 32 to 43 dB SPL. The amplitude of both waves I and IV of ABRs, which increased monotonically with click intensity in most strains, differed significantly among different strains at each intensity tested. Moreover, the amplitude of both waves was inversely correlated with the body weight of each strain at most intensities tested. In general, the amplitude of wave IV was smaller than that of wave I resulting in the IV/I amplitude ratio of <1.0 in all strains. The peak latency of both waves I and IV decreased significantly with click intensity in each strain. However, this intensity-dependent decrease was greater for wave IV than for wave I such that the wave I-IV inter-peak latency also decreased significantly with increasing intensity. I-IV inter-peak latencies for MRL/MpJ, C3HeB/FeJ, NZB/BlNJ, and C3H/HeJ strains are longer than FVB/NJ, SJL/J, or CAST/EiJ. This work is the first step to study the genetic basis underlying strain-related differences in auditory pathway.
听性脑干反应(ABR)是听神经以及听脑干通路中后续纤维束和神经核团听觉活动的诱发电位反应。ABR的阈值、波幅和潜伏期分析可提供有关外周听力状态和脑干通路完整性的信息。在本研究中,我们比较了10种常用近交系小鼠(BALB/cJ、C3HeB/FeJ、C3H/HeJ、CAST/EiJ、CBA/CaJ、CBA/J、FVB/NJ、MRL/MpJ、NZB/BlNJ和SJL/J)的149只小鼠在不同强度短声刺激下记录的ABR阈值、波幅和潜伏期。这些品系的ABR阈值范围为32至43 dB SPL。在大多数品系中,ABR的波I和波IV波幅均随短声强度单调增加,在每个测试强度下,不同品系之间差异显著。此外,在大多数测试强度下,两波的波幅与各品系的体重呈负相关。一般来说,波IV的波幅小于波I,导致所有品系的IV/I波幅比均<1.0。在每个品系中,波I和波IV的峰潜伏期均随短声强度显著缩短。然而,波IV的这种强度依赖性缩短比波I更大,使得波I-IV峰间潜伏期也随强度增加而显著缩短。MRL/MpJ、C3HeB/FeJ、NZB/BlNJ和C3H/HeJ品系的I-IV峰间潜伏期比FVB/NJ、SJL/J或CAST/EiJ品系更长。这项工作是研究听觉通路中品系相关差异潜在遗传基础的第一步。