Sugimoto T, Hattori T
Neuroscience. 1984 Apr;11(4):931-46. doi: 10.1016/0306-4522(84)90204-5.
In an attempt to evaluate the cellular organization and efferent projections of the nucleus tegmenti pedunculopontinus pars compacta, several experiments were performed in the rat. From measurements of neurons in the nucleus tegmenti pedunculopontinus pars compacta in Nissl-stained sections, the nucleus was observed to contain many large neurons which made it possible to demarcate this nucleus from surrounding pontomesencephalic reticular formation. Two other neuronal populations, medium and small neurons, were also seen in the nucleus tegmenti pedunculopontinus pars compacta. Detailed measurements showed that 90% by volume of all neurons in the nucleus tegmenti pedunculopontinus pars compacta were large and medium-sized neurons. After injections of [3]leucine into the nucleus tegmenti pedunculopontinus pars compacta, transported label was observed in dorsally and ventrally coursing ascending fibers. The dorsally coursing fibers entered the centrolateral nucleus and centre median-parafascicular complex of the thalamus. The ventrally coursing fibers produced accumulation of silver grains in the ventral tegmental area, substantia nigra pars compacta, subthalamic nucleus, zona incerta and lateral hypothalamus. Crossed fibers of the nucleus tegmenti pedunculopontinus pars compacta were observed sparsely at the levels of the thalamus and posterior commissure, and to a greater degree through the supraoptic commissure of Meynert. Much less anterograde labeling was seen in the equivalent terminal sites on the contralateral side of the brain. By electron microscopic autoradiography major terminal sites of axons of the nucleus tegmenti pedunculopontinus pars compacta were examined in rats injected with [3H]leucine in the nucleus tegmenti pedunculopontinus pars compacta and later injected with horseradish peroxidase in the striatum and pallidum. Statistical data showed preferential radiolabeling of terminals forming asymmetrical synaptic contact with dendrites in the centrolateral nucleus, centre median-parafascicular complex and subthalamic nucleus. Apparent terminations in the substantia nigra pars compacta proposed in earlier studies and shown in the present light microscopic autoradiograms were not supported by this ultrastructural analysis. Several radiolabeled terminals of the asymmetrical type contacting horseradish peroxidase labeled dendrites in the thalamus confirmed direct input from the nucleus tegmenti pedunculopontinus pars compacta to the thalamostriate projection neurons. [3H]choline injections into the thalamus and subthalamic nucleus produced retrograde perikaryal labeling of large neurons in the nucleus tegmenti pedunculopontinus pars compacta.
为了评估脚桥被盖核致密部的细胞组织和传出投射,在大鼠身上进行了多项实验。通过对尼氏染色切片中脚桥被盖核致密部的神经元进行测量,观察到该核包含许多大型神经元,这使得将该核与周围的脑桥中脑网状结构区分开来成为可能。在脚桥被盖核致密部还发现了另外两种神经元群体,即中型和小型神经元。详细测量表明,脚桥被盖核致密部中所有神经元体积的90%是大型和中型神经元。向脚桥被盖核致密部注射[3]亮氨酸后,在背侧和腹侧走行的上升纤维中观察到了运输标记。背侧走行的纤维进入丘脑的中央外侧核和中央中核-束旁复合体。腹侧走行的纤维在腹侧被盖区、黑质致密部、丘脑底核、未定带和外侧下丘脑产生银粒聚集。在丘脑和后连合水平,稀疏地观察到脚桥被盖核致密部的交叉纤维,而通过迈内特视上连合的交叉纤维则更多。在大脑对侧的等效终末部位,顺行标记要少得多。通过电子显微镜放射自显影术,在脚桥被盖核致密部注射[3H]亮氨酸、随后在纹状体和苍白球注射辣根过氧化物酶的大鼠中,检查了脚桥被盖核致密部轴突的主要终末部位。统计数据显示,在中央外侧核、中央中核-束旁复合体和丘脑底核中,与树突形成不对称突触接触的终末优先被放射性标记。早期研究中提出并在当前光学显微镜放射自显影图中显示的黑质致密部的明显终末,未得到这种超微结构分析的支持。在丘脑中,几个不对称类型的放射性标记终末与辣根过氧化物酶标记的树突接触,证实了从脚桥被盖核致密部到丘脑纹状体投射神经元的直接输入。向丘脑和丘脑底核注射[3H]胆碱,在脚桥被盖核致密部的大型神经元中产生逆行性胞体标记。