BE.462J Molecular Principles of Biomaterials, Spring 2003

Analysis and design at a molecular scale of materials used in contact with biological systems, including biotechnology and biomedical engineering. Topics include molecular interactions between bio- and synthetic molecules and surfaces; design, synthesis, and processing approaches for materials that...

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Bibliographic Details
Main Author: Irvine, Darrell J.
Other Authors: Massachusetts Institute of Technology. Department of Biological Engineering
Format: Learning Object
Language:en-US
Published: 2003
Subjects:
Online Access:http://hdl.handle.net/1721.1/36892
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author Irvine, Darrell J.
author2 Massachusetts Institute of Technology. Department of Biological Engineering
author_facet Massachusetts Institute of Technology. Department of Biological Engineering
Irvine, Darrell J.
author_sort Irvine, Darrell J.
collection MIT
description Analysis and design at a molecular scale of materials used in contact with biological systems, including biotechnology and biomedical engineering. Topics include molecular interactions between bio- and synthetic molecules and surfaces; design, synthesis, and processing approaches for materials that control cell functions; and application of state-of-the-art materials science to problems in tissue engineering, drug delivery, biosensors, and cell-guiding surfaces.
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spelling mit-1721.1/368922025-02-26T20:27:36Z BE.462J Molecular Principles of Biomaterials, Spring 2003 Molecular Principles of Biomaterials Irvine, Darrell J. Massachusetts Institute of Technology. Department of Biological Engineering Analysis design molecular scale biological systems biotechnology biomedical engineering molecular interactions synthetic molecules synthesis processing approaches cell functions materials science tissue engineering drug delivery biosensors cell-guiding surfaces BE.462J 3.962J BE.462 3.962 Biomedical materials Analysis and design at a molecular scale of materials used in contact with biological systems, including biotechnology and biomedical engineering. Topics include molecular interactions between bio- and synthetic molecules and surfaces; design, synthesis, and processing approaches for materials that control cell functions; and application of state-of-the-art materials science to problems in tissue engineering, drug delivery, biosensors, and cell-guiding surfaces. 2003-06 Learning Object BE.462J-Spring2003 local: BE.462J local: IMSCP-MD5-462c28ee0719cd4548b25cfe55069148 http://hdl.handle.net/1721.1/36892 en-US Usage Restrictions: This site (c) Massachusetts Institute of Technology 2003. Content within individual courses is (c) by the individual authors unless otherwise noted. The Massachusetts Institute of Technology is providing this Work (as defined below) under the terms of this Creative Commons public license ("CCPL" or "license"). The Work is protected by copyright and/or other applicable law. Any use of the work other than as authorized under this license is prohibited. By exercising any of the rights to the Work provided here, You (as defined below) accept and agree to be bound by the terms of this license. The Licensor, the Massachusetts Institute of Technology, grants You the rights contained here in consideration of Your acceptance of such terms and conditions. text/html Spring 2003
spellingShingle Analysis
design
molecular scale
biological systems
biotechnology
biomedical engineering
molecular interactions
synthetic molecules
synthesis
processing approaches
cell functions
materials science
tissue engineering
drug delivery
biosensors
cell-guiding surfaces
BE.462J
3.962J
BE.462
3.962
Biomedical materials
Irvine, Darrell J.
BE.462J Molecular Principles of Biomaterials, Spring 2003
title BE.462J Molecular Principles of Biomaterials, Spring 2003
title_full BE.462J Molecular Principles of Biomaterials, Spring 2003
title_fullStr BE.462J Molecular Principles of Biomaterials, Spring 2003
title_full_unstemmed BE.462J Molecular Principles of Biomaterials, Spring 2003
title_short BE.462J Molecular Principles of Biomaterials, Spring 2003
title_sort be 462j molecular principles of biomaterials spring 2003
topic Analysis
design
molecular scale
biological systems
biotechnology
biomedical engineering
molecular interactions
synthetic molecules
synthesis
processing approaches
cell functions
materials science
tissue engineering
drug delivery
biosensors
cell-guiding surfaces
BE.462J
3.962J
BE.462
3.962
Biomedical materials
url http://hdl.handle.net/1721.1/36892
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