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听觉交叉 II:猫外侧上橄榄核双耳听觉的解剖学基础

Acoustic chiasm II: Anatomical basis of binaurality in lateral superior olive of cat.

作者信息

Glendenning K K, Hutson K A, Nudo R J, Masterton R B

出版信息

J Comp Neurol. 1985 Feb 8;232(2):261-85. doi: 10.1002/cne.902320210.

Abstract

The afferent projections to the lateral superior olive (LSO) were examined with horseradish peroxidase, horseradish peroxidase-wheat germ agglutinin conjugate, 125I-wheat germ agglutinin and tritiated leucine autoradiograhy, anterograde axonal degeneration, and 14C-2-deoxyglucose methods. The pathway to the ipsilateral LSO orginates in the spherical cells in anteroventral cochlear nucleus. Although some of the fibers pass above the lateral nucleus of the trapezoid body, most pass below it and turn at right angles to enter the LSO either directly through its ventral, lateral, or dorsal borders, or through its ventral or dorsal hilus. They end in unpolarized terminal fields throughout the LSO. Most if not all of these fibers are true collaterals of axons continuing across the midline in the trapezoid body. Verifying Held's (1893) finding of a major direct projection from the cochlear nucleus to the contralateral medial nucleus of the trapezoid body (MTB) and Rasmussen's ('46) finding of a major projection from the MTB to the LSO, the present results illustrate that this two-neuron pathway probably supplies all but a very small component of the relatively direct input to the LSO from the contralateral ear. This pathway originates in the globular cells of the ventral cochlear nucleus and relays mostly though not exclusively through the "principal cells" in the more rostral parts of the MTB. It terminates mostly in perisomal endings in unpolarized fields throughout the LSO, though most heavily within the (high frequency) medial and middle limbs and less heavily in the LSO's (low frequency) lateral limb. In addition to this indirect pathway, there is a small direct pathway to the contralateral LSO as suggested by Goldberg and Brown ('69) and Warr ('72, '82). This direct pathway to the contralateral LSO, like the direct ipsilateral pathway, probably originates in the spherical cell region of the ventral cochlear nucleus, crosses the midline in the trapezoid body, and terminates in a small circumscribed area within the LSO's ventromedial (high frequency) area. The 2-deoxyglucose method applied to cats in which the ipsilateral and contralateral pathways have been surgically isolated shows that each of the pathways converging on the LSO is topographically and tonotopically organized with the ipsilateral and the combined contralateral terminations in strict tonotopic register.

摘要

运用辣根过氧化物酶、辣根过氧化物酶 - 小麦胚凝集素复合物、¹²⁵I - 小麦胚凝集素和氚标记亮氨酸放射自显影、顺行性轴突退变以及¹⁴C - 2 - 脱氧葡萄糖法,对投射至外侧上橄榄核(LSO)的传入神经进行了研究。同侧LSO的传导通路起源于蜗腹侧核的球状细胞。虽然部分纤维经斜方体外侧核上方通过,但多数纤维经其下方通过,并呈直角转向,直接通过其腹侧、外侧或背侧边界,或通过其腹侧或背侧门进入LSO。它们在整个LSO内终止于无极性的终末野。这些纤维中的大多数(如果不是全部的话)是在斜方体中继续穿过中线的轴突的真正侧支。本研究结果证实了赫尔德(1893年)发现的从蜗神经核到对侧斜方体内侧核(MTB)的主要直接投射,以及拉斯穆森(1946年)发现的从MTB到LSO的主要投射,表明这条双神经元通路可能为来自对侧耳的相对直接输入到LSO的所有部分(除了非常小的一部分)提供了信号。该通路起源于蜗腹侧核的球状细胞,主要(尽管并非唯一)通过MTB更靠前部分的“主细胞”进行中继。它主要终止于整个LSO无极性区域的胞体周围终末,不过在(高频)内侧和中间肢区域最为密集,而在LSO的(低频)外侧肢区域则较稀疏。除了这条间接通路外,正如戈德堡和布朗(1969年)以及瓦尔(1972年、1982年)所指出的,还存在一条到对侧LSO的小的直接通路。这条到对侧LSO的直接通路,与同侧直接通路一样,可能起源于蜗腹侧核的球状细胞区域,在斜方体中穿过中线,并终止于LSO腹内侧(高频)区域内的一个小的限定区域。对同侧和对侧通路已通过手术分离的猫应用2 - 脱氧葡萄糖法显示,汇聚于LSO的每条通路在地形学和音频拓扑学上都是有组织的,同侧和对侧的联合终末严格按照音频拓扑排列。

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