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听神经的逆向复合动作电位。

The antidromic compound action potential of the auditory nerve.

作者信息

Brown M C

机构信息

Department of Cellular and Molecular Physiology, Harvard Medical School, Boston, Massachusetts.

出版信息

J Neurophysiol. 1994 May;71(5):1826-34. doi: 10.1152/jn.1994.71.5.1826.

DOI:10.1152/jn.1994.71.5.1826
PMID:8064350
Abstract
  1. The antidromic compound action potential (ACAP) of the auditory nerve was evoked by shocks to the auditory nerve root and recorded at the round window of the cochlea in anesthetized guinea pigs. The goal of this study was to determine the characteristics of the ACAP and compare these characteristics with those of the orthodromic, sound-evoked compound action potential (CAP). 2. The ACAP consists of an initial complex of a positive peak (p1) followed by a negative peak (n1). In contrast, the CAP consists of a negative peak (N1) followed by a positive peak (P1). These differences in waveform are likely due to the differences in conduction direction, antidromic for the ACAP vs. orthodromic for the CAP. 3. After the initial complex, the ACAP has a second complex of peaks (p2, n2) at a latency of approximately 1 ms; this complex is much smaller in amplitude than the initial complex (p1, n1). It is likely that the initial ACAP complex reflects firing of auditory-nerve fibers whereas the second complex reflects firing of neurons further centrally, perhaps in the cochlear nucleus, that are activated by orthodromic firing of auditory-nerve fibers. 4. Experiments with shock pairs are consistent with the idea that for auditory nerve fibers, the absolute refractory period is < 0.5 ms, and the relative refractory period is between 0.5 and at least 5 ms. 5. Experiments with click-shock pairs indicate that a shock interferes with the response to a click when the click and shock are given at about the same time.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 在麻醉的豚鼠中,通过刺激听神经根诱发听神经的逆向复合动作电位(ACAP),并在耳蜗圆窗处记录。本研究的目的是确定ACAP的特征,并将这些特征与正向的、声音诱发的复合动作电位(CAP)的特征进行比较。2. ACAP由一个正向峰(p1) followed by a negative peak (n1)组成。相反,CAP由一个负向峰(N1) followed by a positive peak (P1)组成。这些波形差异可能是由于传导方向的差异,ACAP是逆向传导,而CAP是正向传导。3. 在初始复合波之后,ACAP在约1毫秒的潜伏期有第二个峰复合波(p2,n2);这个复合波的幅度比初始复合波(p1,n1)小得多。初始ACAP复合波可能反映了听神经纤维的放电,而第二个复合波可能反映了更中枢部位神经元的放电,可能是在耳蜗核中,这些神经元由听神经纤维的正向放电激活。4. 成对电刺激实验与以下观点一致,即对于听神经纤维,绝对不应期<0.5毫秒,相对不应期在0.5至至少5毫秒之间。5. 点击-电刺激对实验表明,当点击和电刺激同时给予时,电刺激会干扰对点击的反应。(摘要截短于250字)

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