ISBN
| 9780841232204 |
DDC
| 610.284 |
Nhan đề
| Advances in Bioinspired and Biomedical Materials. Volume 1 / Yoshihiro Itō; Xuesi Chen; Inn-Kyu Kang |
Lần xuất bản
| Illustrated edition |
Thông tin xuất bản
| Washington, DC : American Chemical Society, 2017 |
Mô tả vật lý
| x, 206 pages. : illustrations. ; 24 cm. |
Tùng thư
| ACS symposium series, 1252. |
Tóm tắt
| Bioinspired concepts are becoming increasingly integrated into materials and devices intended for medical applications. Biological organisms evolve within specific environmental constraints, giving rise to elegant and efficient strategies for fabricating materials that often outperform
man-made materials of similar composition. A main goal of the interdisciplinary field of bioinspired materials is to unlock the secrets of this process--the composition, processing, self-assembly, hierarchical organization, and properties of biological materials--and use this information to
synthesize and engineer novel functional materials for a variety of practical applications. |
Thuật ngữ chủ đề
| Biomedical materials |
Thuật ngữ chủ đề
| Biomimetic materials |
Thuật ngữ chủ đề
| Catecholamines-Therapeutic use |
Thuật ngữ chủ đề
| Oxidation-reduction reaction |
Từ khóa tự do
| Cell adhesion molecules |
Khoa
| Khoa Công nghệ sinh học |
Tác giả(bs) CN
| Chen, Xuesi |
Tác giả(bs) CN
| Itō, Yoshihiro |
Tác giả(bs) CN
| Kang, Inn-Kyu |
Tác giả(bs) TT
| American Chemical Society |
Địa chỉ
| 300Q12_Kho Mượn_02(1): 084462 |
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082 | |a610.284|bA2444|223 |
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245 | |aAdvances in Bioinspired and Biomedical Materials. |nVolume 1 / |cYoshihiro Itō; Xuesi Chen; Inn-Kyu Kang |
---|
250 | |aIllustrated edition |
---|
260 | |aWashington, DC : |bAmerican Chemical Society, |c2017 |
---|
300 | |ax, 206 pages. : |billustrations. ; |c24 cm. |
---|
490 | |aACS symposium series, 1252. |
---|
520 | |aBioinspired concepts are becoming increasingly integrated into materials and devices intended for medical applications. Biological organisms evolve within specific environmental constraints, giving rise to elegant and efficient strategies for fabricating materials that often outperform
man-made materials of similar composition. A main goal of the interdisciplinary field of bioinspired materials is to unlock the secrets of this process--the composition, processing, self-assembly, hierarchical organization, and properties of biological materials--and use this information to
synthesize and engineer novel functional materials for a variety of practical applications. |
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541 | |aMua |
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650 | |aBiomedical materials |
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650 | |aBiomimetic materials |
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650 | |aCatecholamines|xTherapeutic use |
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650 | |aOxidation-reduction reaction |
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653 | |aCell adhesion molecules |
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690 | |aKhoa Công nghệ sinh học |
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691 | |aCông nghệ sinh học |
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692 | |aKỹ thuật phòng thí nghiệm |
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700 | |aChen, Xuesi |
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700 | |aItō, Yoshihiro |
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700 | |aKang, Inn-Kyu |
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710 | |aAmerican Chemical Society |
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852 | |a300|bQ12_Kho Mượn_02|j(1): 084462 |
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890 | |a1|b0|c0|d0 |
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