Künzle Heinz
Anatomisches Institut, LM Universität München, München, Germany.
Brain Res. 2009 Feb 9;1253:35-47. doi: 10.1016/j.brainres.2008.11.052. Epub 2008 Nov 27.
The hedgehog tenrec (Afrosoricidae) has a very poorly differentiated neocortex. Previously its primary sensory regions have been characterized with hodological and electrophysiological techniques. Unlike the marsupial opossum the tenrec may also have a separate motor area as far as there are cortico-spinal cells located rostral to the primary somatosensory cortex. However, not knowing its thalamic input it may be premature to correlate this area with the true (mirror-image-like) primary motor cortex in higher mammals. For this reason the tenrec's thalamo-cortical connections were studied following tracer injections into various neocortical regions. The main sensory areas were confirmed by their afferents from the principal thalamic nuclei. The dorsal lateral geniculate nucleus, in addition, was connected with the retrosplenial area and a rostromedial visual region. Unlike the somatosensory cortex the presumed motor area did not receive afferents from the ventrobasal thalamus but fibers from the cerebello-thalamic target regions. These projections, however, were not restricted to the motor area, but involved the entire somatosensorimotor field as well as adjacent regions. The projections appeared similar to those arising in the rat thalamic ventromedial nucleus known to have a supporting function rather than a specific motor task. The question was raised whether the input from the basal ganglia might play a crucial role in the evolution of the mammalian motor cortex? Certainly, in the tenrec, the poor differentiation of the motor cortex coincides with the virtual absence of an entopeduncular projection to the ventrolateral thalamus.
刺猬猬鼩(非洲猬目)的新皮质分化程度极低。此前,其主要感觉区域已通过神经束路追踪和电生理技术进行了表征。与有袋类负鼠不同,就初级体感皮层前方存在皮质脊髓细胞而言,猬鼩可能也有一个独立的运动区域。然而,由于不清楚其丘脑输入,将该区域与高等哺乳动物真正的(镜像样)初级运动皮层相关联可能为时过早。因此,在向新皮质的各个区域注射示踪剂后,对猬鼩的丘脑皮质连接进行了研究。主要感觉区域通过来自主要丘脑核的传入纤维得到证实。此外,背外侧膝状核与压后皮质区域和一个吻内侧视觉区域相连。与体感皮层不同,推测的运动区域并未接收来自腹侧基底丘脑的传入纤维,而是接收来自小脑丘脑靶区域的纤维。然而,这些投射并不局限于运动区域,而是涉及整个体感运动场以及相邻区域。这些投射似乎与大鼠丘脑腹内侧核产生的投射相似,已知该核具有支持功能而非特定的运动任务。有人提出问题,基底神经节的输入是否可能在哺乳动物运动皮层的进化中起关键作用?当然,在猬鼩中,运动皮层的低分化与向腹外侧丘脑的内脚核投射几乎不存在相吻合。