Just as the study of physiology requires an understanding of biochemistry, so the study of the mechanical properties and design of organisms requires a grounding in engineering and materials science. This book presents an overview of the subject, in relation to biological materials. The mechanical testing of biological materials presents many difficulties - the test methods are alien to most biologists, and the engineer can be perplexed by the shape, size and form in which biological specimens are presented. Sophistication is required in both test methods and analysis. This book provides experimental protocols which aim to cross the barriers of understanding between the biologist and the engineer, and encourage effective interdisciplinary communication. There are chapters on subjects such as the properties and testing of bone, cartilage, joints, liquids, composites, tensile fibres, stiffness, fractures, adhesion and plant material. The book should be a useful experimental resource for any researcher interested in the analysis of biological materials, whether their background is in biology, materials science, medical biomechanics of agricultural engineering.
"Sinopsis" puede pertenecer a otra edición de este libro.
Just as the study of physiology requires an understanding of biochemistry, so the study of the mechanical properties and design of organisms requires a grounding in engineering and materials science. This book presents an overview of the subject, in relation to biological materials. The mechanical testing of biological materials presents many difficulties - the test methods are alien to most biologists, and the engineer can be perplexed by the shape, size and form in which biological specimens are presented. Sophistication is required in both test methods and analysis. This book provides experimental protocols which aim to cross the barriers of understanding between the biologist and the engineer, and encourage effective interdisciplinary communication. There are chapters on subjects such as the properties and testing of bone, cartilage, joints, liquids, composites, tensile fibres, stiffness, fractures, adhesion and plant material. The book should be a useful experimental resource for any researcher interested in the analysis of biological materials, whether their background is in biology, materials science, medical biomechanics of agricultural engineering.
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