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Titlebook: Neuronal Input Pathways to the Brain‘s Biological Clock and their Functional Significance; Jens Hannibal,Jan Fahrenkrug Book 2006 The Edit

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Neuronal Input Pathways to the Brain‘s Biological Clock and their Functional Significance978-3-540-27789-7Series ISSN 0301-5556 Series E-ISSN 2192-7065
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Jens Hannibal,Jan FahrenkrugIncludes supplementary material:
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Advances in Anatomy, Embryology and Cell Biologyhttp://image.papertrans.cn/n/image/664268.jpg
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0301-5556 t (RHT) by activation of the classical photoreceptor system of rods and cones and a more recently identified system of intrinsic photosensitive retinal ganglion cells (ipRGCs) using melanopsin 978-3-540-27788-0978-3-540-27789-7Series ISSN 0301-5556 Series E-ISSN 2192-7065
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tion tothe addressee and increasing his or her communicative status; reducing or increasing the illocutionary power of evaluations and motivations; and evaluating one’s own or someone else’s speech. The volume 978-3-030-81749-7978-3-030-81747-3
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Book 2006toreceptors located in the retina. Light information is mediated to the SCN via the retinohypothalamic tract (RHT) by activation of the classical photoreceptor system of rods and cones and a more recently identified system of intrinsic photosensitive retinal ganglion cells (ipRGCs) using melanopsin
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Neuronal Input Pathways to the Brain‘s Biological Clock and their Functional Significance
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ong laryngeal component in stuttering (Conture, McCall & Brewer, 1977; Freeman & Ushijima, 1978). In order both to better understand the nature of speech timing in stutterers and to resolve the laryngeal focus question, it is appropriate to study how the three major speech systems interact or coordi
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