He J, Hashikawa T
Advanced Research Laboratory, Hitachi Ltd., Hatayama, Saitama, Japan.
J Comp Neurol. 1998 Oct 26;400(3):334-48. doi: 10.1002/(sici)1096-9861(19981026)400:3<334::aid-cne4>3.0.co;2-9.
The present study examined the anatomic connections of the dorsal zone of cat auditory cortex (DZ). The DZ was discriminated physiologically from the primary auditory field (AI) on the basis of neuronal responses with long latency and broad or multipeaked tuning curves. Wheat germ agglutinin-horseradish peroxidase was then injected either by pressure or iontophoretically. The thalamocortical and corticothalamic connections of the DZ were visualized by the presence of retrogradely labeled neurons and anterogradely labeled terminal fields in the thalamus; ipsilateral corticocortical projections from other cortical fields were visualized by the presence of retrogradely labeled cells. Injections of tracer into the DZ retrogradely labeled cells mainly in the lateral division of posterior complex (Po) and in the dorsal division (MGd) of the medial geniculate body (MGB); fewer labeled cells were found in the ventral (MGv) and medial (MGm) divisions of the MGB and in the suprageniculate nucleus. The DZ projection to Po, MGv, and MGd was heavy and was more diffuse than the reciprocal thalamocortical projection; the projection to MGm was light. The corticothalamic terminations and thalamocortical cells projecting to the same part of the DZ were not superimposed rigidly. The DZ received cortical projections from AI and from the second, anterior, and posterior auditory fields, and there were strong intra-DZ connections. Together with the physiological findings, the present results suggest that the DZ is a potentially separate auditory field from AI and is likely to be involved in both temporal and spectral integration of acoustic information.
本研究检测了猫听觉皮层背侧区(DZ)的解剖学连接。根据神经元反应的长潜伏期以及宽调谐曲线或多峰调谐曲线,从生理上区分了DZ与初级听觉区(AI)。然后通过压力注射或离子电渗法注射小麦胚凝集素-辣根过氧化物酶。通过丘脑内逆行标记的神经元和顺行标记的终末场来观察DZ的丘脑皮质和皮质丘脑连接;通过逆行标记的细胞来观察来自其他皮质区的同侧皮质皮质投射。向DZ注射示踪剂后,主要在丘脑后复合体外侧部(Po)和内侧膝状体(MGB)背侧部(MGd)发现逆行标记的细胞;在内侧膝状体腹侧部(MGv)和内侧部(MGm)以及上膝状体核中发现的标记细胞较少。DZ向Po、MGv和MGd的投射密集,且比相互的丘脑皮质投射更弥散;向MGm的投射较稀疏。投射到DZ同一部位的皮质丘脑终末和丘脑皮质细胞并非严格重叠。DZ接受来自AI以及第二、前、后听觉区的皮质投射,且存在较强的DZ内连接。结合生理学研究结果,目前的结果表明,DZ可能是一个与AI分离的听觉区,可能参与听觉信息的时间和频谱整合。