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Two-channel recording of auditory-evoked potentials to detect age-related deficits in temporal processing

机译:检测时间处理中与年龄相关缺陷的双通道记录

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摘要

Auditory brainstem responses (ABRs), and envelope and frequency following responses (EFRs and FFRs) are widely used to study aberrant auditory processing in conditions such as aging. We have previously reported age-related deficits in auditory processing for rapid amplitude modulation (AM) frequencies using EFRs recorded from a single channel. However sensitive testing of EFRs along a wide range of modulation frequencies is required to gain a more complete understanding of the auditory processing deficits. In this study, ABRs and EFRs were recorded simultaneously from two electrode configurations in young and old Fischer-344 rats, a common auditory aging model. Analysis shows that the two channels respond most sensitively to complementary AM frequencies. Channel 1, recorded from Fz to mastoid, responds better to faster AM frequencies in the 100–700 Hz range of frequencies, while Channel 2, recorded from the inter-aural line to the mastoid, responds better to slower AM frequencies in the 16–100 Hz range. Simultaneous recording of channels 1 and 2 using AM stimuli with varying sound levels and modulation depths show that age related deficits in temporal processing are not present at slower AM frequencies but only at more rapid ones, which would not have been apparent recording from either channel alone. Comparison of EFRs between unanesthetized and isoflurane anesthetized recordings in young animals, as well as comparison with previously published ABR waveforms, suggests that the generators of Channel 1 may emphasize more caudal brainstem structures while those of Channel 2 may emphasize more rostral auditory nuclei including the inferior colliculus and the forebrain, with the boundary of separation potentially along the cochlear nucleus/superior olivary complex. Simultaneous two channel recording of EFRs help to give a more complete understanding of the properties of auditory temporal processing over a wide range of modulation frequencies which is useful in understanding neural representations of sound stimuli in normal, developmental or pathological conditions
机译:在响应(EFR和FFR)之后,听觉脑干响应(ABR)和信封和频率被广泛用于研究老化等条件下的异常听觉处理。我们之前报道了在使用从单个通道记录的EFRS的快速幅度调制(AM)频率的听觉处理中有关的缺陷。然而,需要沿着各种调制频率的EFRS对EFRS进行敏感性测试,以便更完全了解听觉处理缺陷。在本研究中,来自常见听觉老化模型的年轻和旧的Fischer-344大鼠的两个电极配置,同时记录ABR和EFRS。分析表明,两个通道最敏感地响应互补的AM频率。从FZ记录到Mastoid的通道1,更好地响应100-700Hz范围内的频率更快,而从颈部间线上记录的通道2更好地响应16-较慢的AM频率。 100 Hz系列。同时使用具有不同声级和调制深度的AM刺激的通道1和2的通道1和2表明,时间处理中的年龄相关缺陷不存在于较慢的AM频率,但仅在更快速的频率下,这对于单独的任何通道都没有明显记录。非团结和异叶醛的叶片之间的EFRS比较幼小动物的麻醉录音以及先前公布的ABR波形的比较,表明通道1的发电机可以强调更多尾部脑干结构,而频道2可以强调包括劣等的更多的讲台听觉核小子和前脑,沿着耳蜗核/优质寡糖的分离边界。同时两种通道记录EFRS有助于更完全了解在广泛的调制频率上对听觉时间处理的性质,这对于了解正常,发育或病理条件的声音刺激的神经表示

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