Caicedo A, Herbert H
Department of Animal Physiology, University of Tübingen, Germany.
J Comp Neurol. 1993 Feb 15;328(3):377-92. doi: 10.1002/cne.903280305.
We examined the organization of descending projections from the inferior colliculus (IC) to auditory brainstem nuclei and to pontine and reticular nuclei in the rat by employing the anterograde axonal tracer Phaseolus vulgaris-leucoagglutinin (PHA-L). Small PHA-L injections into cytologically defined subnuclei of the IC revealed that each subnucleus has a unique pattern of efferent projections. The central nucleus of the IC projects in a topographic order to the dorsal nucleus of the lateral lemniscus (DLL), the rostral periolivary nucleus (RPO), the ventral nucleus of the trapezoid body (VNTB), and the dorsal cochlear nucleus (DCN). It is assumed that this topography represents a cochleotopic arrangement. The external cortex of the IC projects to the nucleus sagulum (Sag), the RPO, the VNTB, and the DCN. Minor projections were found to pontine and reticular nuclei. Efferent fibers from the dorsal cortex of the IC terminate mainly in the Sag, while other nuclei of the auditory and extra-auditory brainstem receive only minor projections. The intercollicular zone sends a moderate number of fibers to the DLL and very few, if any, to the remaining auditory brainstem nuclei. In contrast, fairly strong projections from the intercollicular zone to the reticular formation were found. The present data demonstrate that the four subnuclei of the IC have a differential pattern of descending projections to nuclei in the pontine and medullary brainstem. These parallel colliculofugal pathways, assumed to belong to functionally separate circuits, may modulate auditory processing at different levels of the auditory neuraxis.
我们通过使用顺行轴突示踪剂菜豆白细胞凝集素(PHA-L),研究了大鼠下丘(IC)至听觉脑干核以及脑桥核和网状核的下行投射组织。向IC细胞学定义的亚核内小剂量注射PHA-L显示,每个亚核都有独特的传出投射模式。IC的中央核按拓扑顺序投射到外侧丘系背核(DLL)、橄榄周核嘴侧部(RPO)、斜方体腹侧核(VNTB)和蜗背侧核(DCN)。据推测,这种拓扑结构代表了一种耳蜗拓扑排列。IC的外侧皮质投射到矢状核(Sag)、RPO、VNTB和DCN。发现有少量投射至脑桥核和网状核。IC背侧皮质的传出纤维主要终止于Sag,而听觉和听觉外脑干的其他核仅接受少量投射。下丘间区向DLL发送适量纤维,而向其余听觉脑干核发送的纤维极少(如果有的话)。相反,发现下丘间区向网状结构有相当强的投射。目前的数据表明,IC的四个亚核向脑桥和延髓脑干核的下行投射模式存在差异。这些平行的丘系传出通路,假定属于功能上独立的回路,可能在听觉神经轴的不同水平调节听觉处理。