Cordery P, Molnár Z
University Laboratory of Physiology, University of Oxford, Oxford OX1 3PT, United Kingdom.
J Comp Neurol. 1999 Oct 11;413(1):26-54.
We are interested in similarities and conserved mechanisms in early development of the reptilian and mammalian thalamocortical connections. We set out to analyse connectivity in embryonic turtle brains (Pseudemys scripta elegans, between stages 17 and 25), by using carbocyanine dye tracing. From the earliest stages studied, labelling from dorsal and ventral thalamus revealed backlabelled cells among developing thalamic fibres within the lateral forebrain bundle and striatum, which had similar morphology to backlabelled internal capsule cells in embryonic rat (Molnár and Cordery, 1999). However, thalamic crystal placements did not label cells in the dorsal ventricular ridge (DVR) at any stage examined. Crystal placements into both dorsal and lateral cortex labelled cells in the DVR and, reciprocally, DVR crystal placements labelled cells in the dorsal and lateral cortices. Retrograde labelling revealed that thalamic fibres arrive in the DVR and dorsal cortex by stage 19. The DVR received projections from the nucleus rotundus and the dorsal cortex exclusively from the perirotundal complex (including lateral geniculate nucleus). Thalamic fibres show this remarkable degree of specificity from the earliest stage we could examine with selective retrograde labelling (stage 19). Our study demonstrates that axons of similar cells are among the first to reach dorsal and ventral thalamus in mammals and reptiles. Our connectional analysis in turtle suggests that some cells of the mammalian primitive internal capsule are homologous to a cell group within the reptilian lateral forebrain bundle and striatum and that diverse vertebrate brains might use a highly conserved pattern of early thalamocortical development.
我们对爬行动物和哺乳动物丘脑皮质连接早期发育中的相似性和保守机制感兴趣。我们着手通过使用羰花青染料追踪技术来分析乌龟胚胎脑(秀丽锦龟,17至25期)中的连接性。从最早研究的阶段开始,来自背侧和腹侧丘脑的标记显示,在前脑外侧束和纹状体内发育的丘脑纤维中有回标细胞,其形态与胚胎大鼠中回标的内囊细胞相似(莫尔纳尔和科德里,1999年)。然而,在任何检查阶段,丘脑晶体植入都未标记背侧脑室嵴(DVR)中的细胞。向背侧和外侧皮质植入晶体标记了DVR中的细胞,反之,向DVR植入晶体标记了背侧和外侧皮质中的细胞。逆行标记显示,丘脑纤维在19期到达DVR和背侧皮质。DVR仅从圆核接收投射,而背侧皮质仅从圆核周围复合体(包括外侧膝状体核)接收投射。从我们能够用选择性逆行标记检查的最早阶段(19期)开始,丘脑纤维就表现出这种显著的特异性程度。我们的研究表明,在哺乳动物和爬行动物中,相似细胞的轴突是最早到达背侧和腹侧丘脑的轴突之一。我们对乌龟的连接分析表明,哺乳动物原始内囊的一些细胞与爬行动物前脑外侧束和纹状体内的一个细胞群同源,并且不同脊椎动物的大脑可能使用高度保守的早期丘脑皮质发育模式。