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  • 11
    Publication Date: 1974-02-15
    Print ISSN: 0036-8075
    Electronic ISSN: 1095-9203
    Topics: Biology , Chemistry and Pharmacology , Computer Science , Medicine , Natural Sciences in General , Physics
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  • 12
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 432 (2004), S. 454-455 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] The image-forming eyes, simple eyes (ocelli) and other photoreceptor organs of animals are structurally diverse. But their photoreceptor cells are basically of two types only — either ‘ciliary’ or ‘rhabdomeric’, depending on whether they use cilia or arrays of ...
    Type of Medium: Electronic Resource
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  • 13
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 424 (2003), S. 263-264 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] As a vertebrate embryo grows, the development of its brain and spinal cord is controlled by complex and precisely regulated patterns of gene activity. Writing in Cell, Lowe et al. now report similar patterns from the embryos of hemichordates, which are invertebrates but are related to vertebrates ...
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  • 14
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 421 (2003), S. 120-121 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] The stalked crinoids, or sea lilies, are generally accepted as the most ancient of living echinoderms, with a fossil record extending back some 500 million years, almost to the base of the Palaeozoic. They live in deep water, and are difficult to collect in good enough condition for laboratory ...
    Type of Medium: Electronic Resource
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  • 15
    Electronic Resource
    Electronic Resource
    Springer
    Zoomorphology 108 (1988), S. 61-68 
    ISSN: 1432-234X
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Phyllodoce trochophores have a system of large, multipolar, nerve-like cells similar to the larval reticulum of the much-studied larva of Lopadorhynchus. The Phyllodoce reticulum is described here by means of light and electron microscopy and Golgi-Cox preparations. The cells appear to be secretory, and contain numerous large vesicles approximately 1 ώm in diameter. Their nuclei are large and distinctive, with a dense, granular nucleoplasm containing unusual hollow tubules, 40 nm in diameter, arranged in tangled masses and parallel arrays. The cells are nerve-like in that they possess surface processes that ramify irregularly throughout the larval tissues and thinner, basal processes that run along the larval nerves. They differentiate in close association with nerve cells of conventional type, the principal centres being in the apical region, on either side of the apical organ, and in the oral region, on either side of the mouth. The latter are centres of nerve differentiation in species with a metatroch. Phyllodoce larvae lack a metatroch, but the band itself could have been lost secondarily during evolution without loss of the neural elements associated with it. The precise function of the reticular system is not known. Basal processes connect it to the larval nerves, suggesting its cells receive neural input and, presumably, release their secretion from surface processes. There is no obvious evidence of secretory release during the larval phase, but the system disappears entirely at metamorphosis, suggesting a role in this process, possibly related to the histolysis of larval tissues.
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  • 16
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    BioEssays 18 (1996), S. 251-254 
    ISSN: 0265-9247
    Keywords: Life and Medical Sciences ; Cell & Developmental Biology
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Biology , Medicine
    Notes: Recent molecular evidence suggests that the body plans of insects and vertebrates may be dorsoventrally inverted with respect to one another. This poses a major challenge for comparative zoologists, either to explain how this came about or to offer alternative interpretations of the data. Dorsoventral inversion is most easily explained if the mouth of deuterostome metazoans (which would include vertebrates) is truly a secondary structure unrelated to the protostome mouth, located opposite to the latter on the dorsal surface of the body. Two possibilities are (1) that the definitive deuterostome mouth has replaced a preexisting protostome-type mouth, or (2) that ancestral deuterostomes lacked a protostome-type mouth altogether, and formed a secondary dorsal mouth entirely de novo. Our current understanding of invertebrate embryogenesis and larval morphology provides at least as much support, if not more, for (2) as for (1). By implication, even if ancestral protostomes and deuterostomes shared common anteroposterior and dorsoventral patterning systems, they may still have differed significantly with respect to other aspects of body organization and been otherwise very dissimilar organisms.
    Additional Material: 2 Ill.
    Type of Medium: Electronic Resource
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