Key Features
- Written to be highly interdisciplinary, suitable for relevant audiences in physics, biophysics, biology, chemistry, engineering, and materials science from the level of undergraduates to senior principal investigators.
- Highlights both foundational works as well as recent important findings, with a focus on recurring unifying themes and key open questions.
- Provides detailed descriptions of experimental methods for measuring mechanics, structure, and dynamics of biopolymer networks, including underlying principles, key components, important design and implementation considerations, advantages and disadvantages, and pro tips.
- Includes comprehensive discussion of computational analysis methods to characterize dynamics, rheology and structure of biopolymer networks, including underlying principles, algorithms, deliverables, limitations, and optimization considerations.
- Provides beginner's guide to working with biopolymers and their networks and engineering networks to have specific properties
- Discusses networks of topologically-novel polymers as well as blends and composites of multiple distinct biopolymers.
- Provides comprehensive discussion of active, responsive and otherwise out-of-equilibrium biopolymer networks, including networks driven by molecular motors and enzymes as well as networks that undergo liquid-liquid phase separation.
- Features input from the community on the future of the field, grand challenges for applications in biology and materials science, and recommendations for collaborative endeavours to advance understanding of biopolymer networks and their applications.
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