大鼠的内侧上橄榄:解剖、输入源和轴突投射

IF 2.5 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY Hearing Research Pub Date : 2024-05-25 DOI:10.1016/j.heares.2024.109036
Héctor Rincón , Mario Gómez-Martínez , Marcelo Gómez-Álvarez , Enrique Saldaña
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引用次数: 0

摘要

虽然大鼠和小鼠是研究听觉功能许多特征的首选动物模型之一,但它们很少被用来研究双耳听觉的一个重要方面:动物通过检测耳间时差(ITD)定位低频声音来源的能力,即声音到达每只耳朵的时间差。在哺乳动物中,ITD 主要由内侧上橄榄(MSO)编码,MSO 是上橄榄复合体(SOC)的主要核团之一。由于大鼠和小鼠的头部较小,听力范围较高,因此通常被认为无法利用 ITD 进行声音定位。此外,与使用 ITDs 进行声音定位的哺乳动物(包括猫和沙鼠)相比,它们的 MSO 经常被认为太小或微不足道。然而,最近的研究表明,小鼠 MSO 神经元的大多数形态和生理特征与使用 ITDs 的哺乳动物的 MSO 神经元有显著的相似之处。在这种情况下,我们分析了大鼠 MSO 的结构和神经传入与传出连接。大鼠 MSO 纵向横跨 SOC,其尾部相对较小,但在喙部生长为发达的堆叠双极神经元柱。通过向 MSO 小量、精确地注射双向示踪剂生物素化葡聚糖胺(BDA),我们发现该神经核主要受两侧耳蜗前腹侧核最腹侧和喙侧球状丛细胞以及同侧梯形体内侧核最腹侧主神经元的支配。同样的实验显示,MSO 密布支配同侧下丘中央核最背外侧区域、外侧半月板背侧核中央区域和外侧半月板中间核最外侧区域。因此,MSO 选择性地接受处理低频声音的神经元的支配,并向其发出投射。大鼠 MSO 的结构和构造特征与猫和沙鼠的 MSO 非常相似。这些相似之处提出了一个问题,即除了 ITD 编码外,MSO 还能执行哪些功能,同时也表明大鼠 MSO 是未来以 MSO 为中心进行研究的合适模型。
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Medial superior olive in the rat: Anatomy, sources of input and axonal projections

Although rats and mice are among the preferred animal models for investigating many characteristics of auditory function, they are rarely used to study an essential aspect of binaural hearing: the ability of animals to localize the sources of low-frequency sounds by detecting the interaural time difference (ITD), that is the difference in the time at which the sound arrives at each ear. In mammals, ITDs are mostly encoded in the medial superior olive (MSO), one of the main nuclei of the superior olivary complex (SOC). Because of their small heads and high frequency hearing range, rats and mice are often considered unable to use ITDs for sound localization. Moreover, their MSO is frequently viewed as too small or insignificant compared to that of mammals that use ITDs to localize sounds, including cats and gerbils. However, recent research has demonstrated remarkable similarities between most morphological and physiological features of mouse MSO neurons and those of MSO neurons of mammals that use ITDs. In this context, we have analyzed the structure and neural afferent and efferent connections of the rat MSO, which had never been studied by injecting neuroanatomical tracers into the nucleus.

The rat MSO spans the SOC longitudinally. It is relatively small caudally, but grows rostrally into a well-developed column of stacked bipolar neurons. By placing small, precise injections of the bidirectional tracer biotinylated dextran amine (BDA) into the MSO, we show that this nucleus is innervated mainly by the most ventral and rostral spherical bushy cells of the anteroventral cochlear nucleus of both sides, and by the most ventrolateral principal neurons of the ipsilateral medial nucleus of the trapezoid body. The same experiments reveal that the MSO densely innervates the most dorsolateral region of the central nucleus of the inferior colliculus, the central region of the dorsal nucleus of the lateral lemniscus, and the most lateral region of the intermediate nucleus of the lateral lemniscus of its own side. Therefore, the MSO is selectively innervated by, and sends projections to, neurons that process low-frequency sounds. The structural and hodological features of the rat MSO are notably similar to those of the MSO of cats and gerbils. While these similarities raise the question of what functions other than ITD coding the MSO performs, they also suggest that the rat MSO is an appropriate model for future MSO-centered research.

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来源期刊
Hearing Research
Hearing Research 医学-耳鼻喉科学
CiteScore
5.30
自引率
14.30%
发文量
163
审稿时长
75 days
期刊介绍: The aim of the journal is to provide a forum for papers concerned with basic peripheral and central auditory mechanisms. Emphasis is on experimental and clinical studies, but theoretical and methodological papers will also be considered. The journal publishes original research papers, review and mini- review articles, rapid communications, method/protocol and perspective articles. Papers submitted should deal with auditory anatomy, physiology, psychophysics, imaging, modeling and behavioural studies in animals and humans, as well as hearing aids and cochlear implants. Papers dealing with the vestibular system are also considered for publication. Papers on comparative aspects of hearing and on effects of drugs and environmental contaminants on hearing function will also be considered. Clinical papers will be accepted when they contribute to the understanding of normal and pathological hearing functions.
期刊最新文献
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