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Titlebook: Mechanical Stress, Functional Adaptation and the Variation Structure of the Human Femur Diaphysis; E. Amtmann Conference proceedings 1971

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E. Amtmanntraints must be considered (e.g., limited capacities), or there are perturbations such as stochastic demands. In this work, we compare several approaches to model fair assignments and discuss their relevance to common health care service management problems. We show that different ways of modelling
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E. Amtmanne in explaining biological phenomena—if we aim to obtain an organismic theory of evolution in the original spirit of Darwin’s struggle for existence. This kind of understanding must rely on an agential perspective on evolution, complementing and succeeding existing structural, functional, and proces
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Mechanical Stress, Functional Adaptation and the Variation Structure of the Human Femur Diaphysis
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0301-5556 the investigations of the functional architecture of the substantia spongiosa by H. von Meyer (1867), bone is "functionally" laid down in gross form as well as in minute architecture in accordance with the "maximum-minimum-law". As a result of functional adaptation, a maximum of efficiency is achiev
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Summary,adult human femur shaft. The aim of this investigation was to disclose this complex variation structure as far as possible and to estimate preferably on the strength of the hitherto existing experimental findings the effect and the significance of mechanical stress and of functional adaptation on the covariation of the accounted variables.
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Discussion,w stresses are absorbed by relative small areas of the cross-sectional surface. It is obvious from the figures that by slightly moving the point of application of the resultant of forces the distribution of stresses will also be only changed by a little.
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