Amanote Research

Amanote Research

    RegisterSign In

An Algorithm to Construct Biologically Relevant Chondroitin Sulfate Biopolymer Models at Atomic Resolution

Biophysical Journal - United States
doi 10.1016/j.bpj.2018.11.1596
Full Text
Open PDF
Abstract

Available in full text

Categories
Biophysics
Date

February 1, 2019

Authors
Elizabeth K. WhitmoreGabriel VesenkaHanna SihlerOlgun Guvench
Publisher

Elsevier BV


Related search

Inferring Biologically Relevant Models: Nested Canalyzing Functions

ISRN Biomathematics
2012English

Histochemical Differentiation Between Chondroitin 4-Sulfate and Chondroitin 6-Sulfate.

Kurume Medical Journal
Medicine
1978English

Chondroitin Sulfate Proteoglycan (CSPG)

Science-Business eXchange
2014English

Neuroactive Chondroitin Sulfate Glycomimetics

English

An Algorithm to Construct Representations of Finite Groups

English

Quantum Algorithm to Construct Linear Approximation of an S-Box

International Journal of Recent Technology and Engineering
EngineeringManagement of TechnologyInnovation
2019English

Contributions of Chondroitin Sulfate Proteoglycans to Neurodevelopment, Injury, and Cancer

Current Opinion in Neurobiology
Neuroscience
2014English

How Specific Is Plasmodium Falciparum Adherence to Chondroitin 4-Sulfate?

Trends in Parasitology
ParasitologyInfectious Diseases
2011English

Free-Standing Graphene at Atomic Resolution

Nature Nanotechnology
Electronic EngineeringCondensed Matter PhysicsMaterials ScienceOpticsMolecular Physics,NanoscienceElectricalAtomicBioengineeringNanotechnologyBiomedical Engineering
2008English

Amanote Research

Note-taking for researchers

Follow Amanote

© 2025 Amaplex Software S.P.R.L. All rights reserved.

Privacy PolicyRefund Policy