2004NanobiotechnologyRequires access

Force Spectroscopy

Markus Seitz

Open publisher page 4 citations

Abstract

This chapter contains sections titled: Overview Dynamic Force Spectroscopy of Specific Biomolecular Bonds Force Spectroscopy and Force Microscopy of Cell Membranes Protein (Un-)folding Elasticity of Individual Polymer Molecules DNA Mechanics DNA–Protein Interactions Molecular Motors Synthetic Functional Polymers Methods AFM Cantilevers Microneedles Optical Tweezers Magnetic Tweezers Biomembrane Force Probe Outlook

About this research paper

What this paper is about

This chapter contains sections titled: Overview Dynamic Force Spectroscopy of Specific Biomolecular Bonds Force Spectroscopy and Force Microscopy of Cell Membranes Protein (Un-)folding Elasticity of Individual Polymer Molecules DNA Mechanics DNA–Protein Interactions Molecular Motors Synthetic Functional Polymers Methods AFM Cantilevers Microneedles Optical Tweezers Magnetic Tweezers Biomembrane Force Probe Outlook

Why it matters

OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

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Method / approach

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Main findings

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Available abstract

This chapter contains sections titled: Overview Dynamic Force Spectroscopy of Specific Biomolecular Bonds Force Spectroscopy and Force Microscopy of Cell Membranes Protein (Un-)folding Elasticity of Individual Polymer Molecules DNA Mechanics DNA–Protein Interactions Molecular Motors Synthetic Functional Polymers Methods AFM Cantilevers Microneedles Optical Tweezers Magnetic Tweezers Biomembrane Force Probe Outlook

Key concepts: Force spectroscopy, Magnetic tweezers, Optical tweezers, Atomic force microscopy, Nanotechnology, Polymer, Molecule, Spectroscopy

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