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Titlebook: Experimental and Theoretical Advances in Biological Pattern Formation; Hans G. Othmer,Philip K. Maini,James D. Murray Book 1993 Plenum Pre

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书目名称Experimental and Theoretical Advances in Biological Pattern Formation
编辑Hans G. Othmer,Philip K. Maini,James D. Murray
视频video
丛书名称NATO Science Series A:
图书封面Titlebook: Experimental and Theoretical Advances in Biological Pattern Formation;  Hans G. Othmer,Philip K. Maini,James D. Murray Book 1993 Plenum Pre
描述This volume contains the proceedings of the NATO ARW on ‘Biological Pattern Formation‘ held at Merton College, University of Oxford, on 27-31 August, 1992. The objective of the workshop was to bring together a select group of theoreticians and experimental biologists to present the latest results in the area of biological pattern formation and to foster interactiqn across dis- plines. The workshop was divided into 5 main areas: (i) limb development, (ii) Dictyostelium discoideum, (iii) Drosophila, (iv) cell movement, (v) g- eral pattern formation. We thank all the participants for their contributions, enthusiasm, and willingness to collaborate. There was a genuine, open, and extremely fru- ful interaction between the experimentalists and theoreticians which made the workshop a success. We also thank The Welcome Trust for providing additional funding. The local organization fell mainly on Denise McKittrick and Beverley Bhaskhare at the Mathematical Institute, Oxford, and Jeanette Hudson and the staff of Merton College. We greatly appreciate their help and patience. We also thank Jonathan Sherratt, Wendy Brandts and Debbie Benson for helping out in the conference and for providing a
出版日期Book 1993
关键词Drosophila; development; genes; growth; microorganisms
版次1
doihttps://doi.org/10.1007/978-1-4615-2433-5
isbn_softcover978-1-4613-6033-9
isbn_ebook978-1-4615-2433-5
copyrightPlenum Press, New York 1993
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Palgrave Insights into Apocalypse Economics for morphogenesis to date have, however, focussed on a particular mechanism. Although such models are capable of capturing some aspects of development they are inconsistent with key experimental observations. Here we consider a two-step hierarchy of patterning mechanisms in which the spatial patter
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Deciding which simplifying assumptions to make is a non-trivial task. Experimentally it is possible to grow small avascular nodules (multicell spheroids) whose growth kinetics approximate . tumours such as carcinoma. These spherical colonies of cells receive nutrients and dispose of waste products
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is in relation to other cells (Wolpert 1969). Consequently, in order to understand how a relatively unstructured egg leads to an adult organism with many different cell types arranged in the appropriate spatial pattern, it is necessary to understand how the spatial pattern of cellular differentiati
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Water Erosion and Its Control in Chinaarabolic systems (see, for example, Fisher 1937; Kolmogorov . 1937; Winfree 1988; Murray 1989; Swinney & Krinsky 1992). In many biological and physical situations, dispersal is modelled by a density-dependent diffusion coefficient, for example, the bacterium . diffuses through the roots of some . pl
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