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Titlebook: Structural Interfaces and Attachments in Biology; Stavros Thomopoulos,Victor Birman,Guy M. Genin Book 2013 Springer Science+Business Media

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Muscle–Tendon Interactions in the Absence of Bones: Lessons from the Fruit Fly, ,Invertebrates provide a unique system in which to study how the musculoskeletal system operates and functions in the absence of bone structures. The fruit fly . has been used as an exciting animal model to study and elucidate various aspects of embryonic development, including the initial steps of muscle and tendon development and patterning [1–3].
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https://doi.org/10.1007/978-1-4614-3317-0Bioengineering; Bioengineering; Bioengineering; Biomechanics; Biomechanics; Biomechanics; Bone healing; Bon
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Models for the Mechanics of Joining Dissimilar Materials of some of these challenges by summarizing key model problems. The problems presented here fall under the category of small-strain, linear elasticity solutions. We discuss these solutions in the context of the attachment of tendon to bone.
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Stavros Thomopoulos,Victor Birman,Guy M. Genined from two different samples are labeled at the N terminus and at the C terminus with isotopically labeled reagents that have identical mass differences. To obtain isobaric peptides, labeling is carried out such that the introduced mass increase at one terminus will exactly match the mass decrease
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Victor Birman,Tyler Keil,Serhat Hosderning inorganic salts to label whole and mature plants. Employing .N salts as the sole nitrogen source for HILEP leads to the production of healthy-looking plants which contain .N proteins labeled to nearly 100%. Therefore, HILEP is suitable for quantitative plant proteomic analysis, where plants are
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