Fibrillar Structure and Mechanical Properties of Collagen (original) (raw)

Viscoelastic properties of collagen: synchrotron radiation investigations and structural model

S. Bernstorff, Peter Purslow

Philosophical Transactions of The Royal Society B: Biological Sciences, 2002

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Stress-Strain Experiments on Individual Collagen Fibrils

Roberto Ballarini

Biophysical Journal, 2008

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X-ray diffraction by collagen tape shows that type I collagen fibrils need not have a three-dimensional lattice

David Hukins

Biochemical and Biophysical Research Communications, 1977

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Evidence that Collagen Fibrils in Tendons Are Inhomogeneously Structured in a Tubelike Manner

Deborah Fygenson

Biophysical Journal, 2003

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Nanoscale Characterization of Collagen Structural Responses to in Situ Loading in Rat Achilles Tendons

maria pierantoni

SSRN Electronic Journal

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Collagen fibril morphology and organization: Implications for force transmission in ligament and tendon

Ray Vanderby

Matrix Biology, 2006

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Tension tests on mammalian collagen fibrils

Roberto Ballarini

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Materials Science and Mechanics of Collagenous Tissues

Dale Devore

Research & Reviews: Journal of Material Sciences, 2017

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Mechanical Properties of Native and Cross-linked Type I Collagen Fibrils

Carel Fitié

Biophysical Journal, 2008

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Mechanical Properties of Collagen Fibrils

Laurent Bozec

Biophysical Journal, 2007

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Molecular packing of type I collagen in tendon 1 1Edited by M. F. Moody

tim wess

Journal of Molecular Biology, 1998

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Nanomechanics of Type I Collagen

Jay Schieber

Biophysical journal, 2016

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Structural alteration of collagen fibres--spectroscopic and mechanical studies

M. Kobielarz, Marlena Gąsior-głogowska

Acta of bioengineering and biomechanics / Wrocław University of Technology, 2010

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Structural Hierarchy Controls Deformation Behavior of Collagen

Kalpana Katti

Biomacromolecules, 2012

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Ultrastructural response of tendon to excessive level or duration of tensile load supports that collagen fibrils are mechanically continuous

Khaled Hijazi

Journal of the Mechanical Behavior of Biomedical Materials, 2019

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Twisted Fibrils are a Structural Principle in the Assembly of Interstitial Collagens, Chordae Tendineae Included

Michel Koch

Zeitschrift für Naturforschung C, 1987

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Viscoelastic behavior of discrete human collagen fibrils

Philip Hansen

Journal of The Mechanical Behavior of Biomedical Materials, 2010

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The Variability in Type I Collagen Helical Pitch Is Reflected in the D Periodic Fibrillar Structure

T. Wess

Journal of Molecular Biology, 2007

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Structural changes in human type I collagen fibrils investigated by force spectroscopy

Charlotte Phillips

Experimental Cell Research, 2004

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On the mechanobiology of collagen growth and remodelling

Mohammad Siadat

2021

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Structure of rat tail tendon collagen examined by atomic force microscope

Ranieri Rolandi, Ornella Cavalleri

Experientia, 1995

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Nanomechanical Mapping of Hydrated Rat Tail Tendon Collagen I Fibrils

Laurent Kreplak

Biophysical Journal, 2014

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A synchrotron radiation X-ray diffraction study of the crystallinity of tendon fibres

Michel Koch

International Journal of Biological Macromolecules, 1984

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Collagen Structure and Stability

Rafael de Jesus García Solís

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Collagen orientation and molecular spacing during creep and stress-relaxation in soft connective tissues

Peter Purslow

The Journal of experimental biology, 1998

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Different architectures of the collagen fibril: morphological aspects and functional implications

Mario Raspanti

International Journal of Biological Macromolecules, 1989

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Micromechanical bending of single collagen fibrils using atomic force microscopy

Lanti Yang

Journal of Biomedical Materials Research Part A, 2007

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In situ multi-level analysis of viscoelastic deformation mechanisms in tendon collagen

Jong Seto, H. Screen

Journal of Structural Biology, 2010

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Investigation of mechanisms of viscoelastic behavior of collagen molecule

Kurosh Darvish

Journal of the Mechanical Behavior of Biomedical Materials, 2015

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