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新生猫橄榄耳蜗束切断术的长期影响。

Long-term effects of sectioning the olivocochlear bundle in neonatal cats.

作者信息

Walsh E J, McGee J, McFadden S L, Liberman M C

机构信息

Boys Town National Research Hospital, Omaha, Nebraska 68131, USA.

出版信息

J Neurosci. 1998 May 15;18(10):3859-69. doi: 10.1523/JNEUROSCI.18-10-03859.1998.

Abstract

The olivocochlear bundle (OCB) was cut in neonatal cats to evaluate its role in the development of normal cochlear function. Approximately 1 year after deefferentation, acute auditory nerve fiber (ANF) recordings were made from lesioned animals, lesion shams, and normal controls. The degree of deefferentation was quantified via light microscopic evaluation of the density of OCB fascicles in the tunnel of Corti, and selected cases were analyzed via electron microscopy. In the most successful cases, the deefferentation was virtually complete. ANFs from successfully lesioned animals exhibited significant pathophysiology compared with normals and with other animals in which the surgery failed to interrupt the OCB. Thresholds at the characteristic frequency (CF), the frequency at which ANFs are most sensitive, were elevated across the CF range, with maximal effects for CFs in the 10 kHz region. Frequency threshold or tuning curves displayed reduction of tip-to-tail ratios (the difference between CF and low-frequency "tail" thresholds) and decreased sharpness of tuning. These pathological changes are generally associated with outer hair cell (OHC) damage. However, light microscopic histological analysis showed minimal hair cell loss and no significant differences between normal and deefferented groups. Spontaneous discharge rates (SRs) were lower than normal; however, those fibers with the highest SRs remained more sensitive than those with lower SRs. Findings suggest that the interaction between OC efferents and OHCs early in development may be critical for full expression of active mechanical processes.

摘要

切断新生猫的橄榄耳蜗束(OCB)以评估其在正常耳蜗功能发育中的作用。去传入神经大约1年后,对损伤动物、假手术动物和正常对照进行急性听神经纤维(ANF)记录。通过光学显微镜评估柯蒂氏管中OCB束的密度来量化去传入神经的程度,并通过电子显微镜对选定的病例进行分析。在最成功的病例中,去传入神经几乎是完全的。与正常动物以及手术未能切断OCB的其他动物相比,成功损伤动物的ANF表现出明显的病理生理学变化。在特征频率(CF),即ANF最敏感的频率处,阈值在整个CF范围内升高,在10kHz区域的CF处影响最大。频率阈值或调谐曲线显示尖峰与尾端比率降低(CF与低频“尾端”阈值之间的差异),调谐锐度降低。这些病理变化通常与外毛细胞(OHC)损伤有关。然而,光学显微镜组织学分析显示毛细胞损失最小,正常组和去传入神经组之间无显著差异。自发放电率(SRs)低于正常水平;然而,那些SRs最高的纤维仍然比SRs较低的纤维更敏感。研究结果表明,发育早期OC传出神经与OHC之间的相互作用可能对主动机械过程的充分表达至关重要。

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