Collagen fibers are the main components of the extra cellular matrix and the primary contributors to the mechanical properties of tissues. Here we report a novel approach to measure the longitudinal component of the elastic moduli of biological fibers under conditions close to those found in vivo and apply it to type I collagen from rat tail tendon. This approach combines optical tweezers, atomic force microscopy, and exploits Euler-Bernoulli elasticity theory for data analysis. This approach also avoids drying for measurements or visualization, since samples are freshly extracted. Importantly, strains are kept below 0.5%, which appear consistent with the linear elastic regime. We find, surprisingly, that the longitudinal elastic modulus of...
AbstractMicromechanical bending experiments using atomic force microscopy were performed to study th...
A precise analysis of the mechanical response of collagen fibrils in tendon tissue is critical to un...
Collagen is the primary structural protein in animals. Serving as nanoscale biological ropes, collag...
Collagen fibers are the main components of the extra cellular matrix and the primary contributors to...
<div><p>Collagen fibers are the main components of the extra cellular matrix and the primary contrib...
ABSTRACT The formation of collagen fibers from staggered subfibrils still lacks a universally accept...
Collagen is the main component of human connective tissue and extracellular matrix. Here we report m...
AbstractThe formation of collagen fibers from staggered subfibrils still lacks a universally accepte...
AbstractCollagen fibrils play an important role in the human body, providing tensile strength to con...
A new micromechanical technique was developed to study the mechanical properties of single collagen ...
Micromechanical bending experiments using atomic force microscopy were performed to study the mechan...
AbstractMicromechanical bending experiments using atomic force microscopy were performed to study th...
Micromechanical bending experiments using atomic force microscopy were performed to study the mechan...
Collagen is the most abundant protein in the human body. Of the 25 types of collagen known, fibril-f...
There is a fundamental need for techniques that are capable of determining the mechanical propertie...
AbstractMicromechanical bending experiments using atomic force microscopy were performed to study th...
A precise analysis of the mechanical response of collagen fibrils in tendon tissue is critical to un...
Collagen is the primary structural protein in animals. Serving as nanoscale biological ropes, collag...
Collagen fibers are the main components of the extra cellular matrix and the primary contributors to...
<div><p>Collagen fibers are the main components of the extra cellular matrix and the primary contrib...
ABSTRACT The formation of collagen fibers from staggered subfibrils still lacks a universally accept...
Collagen is the main component of human connective tissue and extracellular matrix. Here we report m...
AbstractThe formation of collagen fibers from staggered subfibrils still lacks a universally accepte...
AbstractCollagen fibrils play an important role in the human body, providing tensile strength to con...
A new micromechanical technique was developed to study the mechanical properties of single collagen ...
Micromechanical bending experiments using atomic force microscopy were performed to study the mechan...
AbstractMicromechanical bending experiments using atomic force microscopy were performed to study th...
Micromechanical bending experiments using atomic force microscopy were performed to study the mechan...
Collagen is the most abundant protein in the human body. Of the 25 types of collagen known, fibril-f...
There is a fundamental need for techniques that are capable of determining the mechanical propertie...
AbstractMicromechanical bending experiments using atomic force microscopy were performed to study th...
A precise analysis of the mechanical response of collagen fibrils in tendon tissue is critical to un...
Collagen is the primary structural protein in animals. Serving as nanoscale biological ropes, collag...