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Titlebook: Development of the Central Nervous System in Vertebrates; S. C. Sharma,A. M. Goffinet Book 1992 Springer Science+Business Media New York 1

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The Developing Mouse Whiskerpad: Pattern Formation at the Periphery of a Highly Organized Somatosennd what the developmental mechanisms are by which periphery and brain interact, resulting in the homeomorphic relationship alluded to. In line with our earlier argument that the periphery plays a major role in the creation of the pattern in the central nervous system (Van der Loos and Dörfl, 1978; A
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Two Phases of Pattern Formation in the Developing Rodent Trigeminal System,aptic partners (Purves and Lichtman,1985), and so on. In this chapter we review our studies on pattern formation in the trigeminal system within the context of two particular aspects of this issue: the conferring of axial orientation of the somatotopic map in the CNS and the emergence of modular pat
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Development of Longitudinal Patterns in the Cerebellar Cortex,the olivocerebellar climbing fiber afferents in discrete compartments of the white matter.. These compartments can be visualized with the Häggqvist myelin stain and with staining for acetylcholinesterase (AChE, Fig. 1K). The borders between the compartments contain a higher concentration of thin fib
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Broder J. Merkel,Britta Planer-Friedrichnd what the developmental mechanisms are by which periphery and brain interact, resulting in the homeomorphic relationship alluded to. In line with our earlier argument that the periphery plays a major role in the creation of the pattern in the central nervous system (Van der Loos and Dörfl, 1978; A
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Hydrogeochemische Modellierungsprogramme,aptic partners (Purves and Lichtman,1985), and so on. In this chapter we review our studies on pattern formation in the trigeminal system within the context of two particular aspects of this issue: the conferring of axial orientation of the somatotopic map in the CNS and the emergence of modular pat
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https://doi.org/10.1007/978-3-7091-5402-1point to a possible role of the reeler gene in cortical evolution..Although the factors responsible for the formation of neural cell patterns are largely unknown, most data point to the importance of cell-cell interactions. Cell-interaction molecules have probably been acquired during brain evolutio
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https://doi.org/10.1007/978-3-662-66424-7the olivocerebellar climbing fiber afferents in discrete compartments of the white matter.. These compartments can be visualized with the Häggqvist myelin stain and with staining for acetylcholinesterase (AChE, Fig. 1K). The borders between the compartments contain a higher concentration of thin fib
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