Biomaterials and Biomechanics
Biomechanics is the study of systems and structures of biological organisms from the smallest plants to the largest animals react with external stimuli. In animals, biomechanics often refers to the study of how the skeletal and musculature systems work under different cases. In biomechanics it is repeated that the scientists often try to apply physics and other mathematical based forms of analysis to discover the limits and capabilities of biological systems.
Biomaterials are substances that are used in medical devices or in contact with biological systems. Biomaterials use impression from medicine, biology, chemistry, materials science and engineering.
- Implants and Vascular grafts
- Comparative biomechanics
- Cellular and Plant biomechanics
- Injury Biomechanics
- Musculoskeletal and Orthopaedic Biomechanics
- Ergonomy and Allometry
- Continuum biomechanics
- Sustainable materials
- Bionics and Biopolymers
- Bio tribology and Bio fluid mechanics
Related Conference of Biomaterials and Biomechanics
Biomaterials and Biomechanics Conference Speakers
Recommended Sessions
- Applications of Protein Engineering
- Bio Imaging and Signal Processing
- Bio instrumentation
- Biomaterials and Biomechanics
- Cancer Genome Biology
- Cell and Tissue Engineering
- Clinical and Biomedical Engineering
- Medical Devices and Medical Imaging
- Metabolic Engineering
- Neural and Rehabilitation Engineering
- Protein Engineering
- Protein Crystallography
- Protein Engineered Biomaterials
- Protein Folding
- Protein Purification
- Recombinant Protein Expression
- Synthetic Biology
- Systems Biology
- Transcriptome analysis & Gene Expression
Related Journals
Are you interested in
- Advanced Imaging and Super-Resolution Techniques - Structural Biology 2026 (Spain)
- Biomolecular Dynamics and Allostery - Structural Biology 2026 (Spain)
- Computational Structural Biology and Artificial Intelligence - Structural Biology 2026 (Spain)
- Cryo-Electron Microscopy (Cryo-EM) - Structural Biology 2026 (Spain)
- Integrative and Hybrid Structural Biology - Structural Biology 2026 (Spain)
- Membrane Protein Structure and Dynamics - Structural Biology 2026 (Spain)
- Nuclear Magnetic Resonance (NMR) Spectroscopy - Structural Biology 2026 (Spain)
- Protein Engineering and Synthetic Biology - Structural Biology 2026 (Spain)
- Protein Structure and Function - Structural Biology 2026 (Spain)
- Structural Basis of Genetic and Metabolic Disorders - Structural Biology 2026 (Spain)
- Structural Biology in Drug Discovery - Structural Biology 2026 (Spain)
- Structural Genomics and Proteomics - Structural Biology 2026 (Spain)
- Structural Immunology - Structural Biology 2026 (Spain)
- Virus Structure and Host Interactions - Structural Biology 2026 (Spain)
- X-ray Crystallography and Diffraction Methods - Structural Biology 2026 (Spain)
