[1] |
Eren Yılmaz.
Modifi cation of the Micro Arc-oxidized Ti Surface for Implant
Applications
[J]. Journal of Bionic Engineering, 2021, 18(6): 1391-1399.
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[2] |
Zhiqiang Ma, Yuanhang Xu, Yonggang Jiang, Xiaohe Hu, Deyuan Zhang.
BTO/P(VDF-TrFE) Nanofiber-based Artificial Lateral Line Sensor with Drag Enhancement Structures
[J]. Journal of Bionic Engineering, 2020, 17(1): 64-75.
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[3] |
Mohammad Khodaei, Farahnaz Nejatidanesh, Mohammad Javad Shirani, Srinivasan Iyengar, Hossein Sina, Omid Savabi.
Magnesium/Nano-hydroxyapatite Composite for Bone Reconstruction: The Effect of Processing Method
[J]. Journal of Bionic Engineering, 2020, 17(1): 92-99.
|
[4] |
Pallab Datta, Veena Vyas, Santanu Dhara, Amit Roy Chowdhury, Ananya Barui.
Anisotropy Properties of Tissues: A Basis for Fabrication of Biomimetic Anisotropic Scaffolds for Tissue Engineering
[J]. Journal of Bionic Engineering, 2019, 16(5): 842-868.
|
[5] |
Roqia Ashraf, Hasham S. Sofi, Hern Kim, Faheem A. Sheikh.
Recent Progress in the Biological Basis of Remodeling Tissue Regeneration Using Nanofibers: Role of Mesenchymal Stem Cells and Biological Molecules
[J]. Journal of Bionic Engineering, 2019, 16(2): 189-208.
|
[6] |
Serbülent Türk, İbrahim Altınsoy, Gözde Çelebi Efe, Mediha Ipek, Mahmut Özacar, Cuma Bindal, .
Effect of Solution and Calcination Time on Sol–gel Synthesis of Hydroxyapatite
[J]. Journal of Bionic Engineering, 2019, 16(2): 311-318.
|
[7] |
Yonggang Jiang, Zhiqiang Ma, Bonan Cao, Longlong Gong, Lin Feng, Deyuan Zhang.
Development of a Tactile and Slip Sensor with a Biomimetic Structure-enhanced Sensing Mechanism
[J]. Journal of Bionic Engineering, 2019, 16(1): 47-55.
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[8] |
Fedor Senatov, Natalia Anisimova, Mikhail Kiselevskiy, Aleksey Kopylov .
Polyhydroxybutyrate/Hydroxyapatite Highly Porous Scaffold for Small Bone Defects Replacement in the Nonload-bearing Parts
[J]. Journal of Bionic Engineering, 2017, 14(4): 648-658.
|
[9] |
Mao Yang1, Wenjuan Zhen2, Hui Chen1, Zhihua Shan1.
Biomimetic Design of Oxidized Bacterial Cellulose-gelatin-hydroxyapatite Nanocomposites
[J]. J4, 2016, 13(4): 631-640.
|
[10] |
Xiaoli Zhang1,2, Keyong Tang1, Xuejing Zheng1.
Electrospinning and Crosslinking of COL/PVA Nanofiber-microsphere Containing Salicylic Acid for Drug Delivery
[J]. J4, 2016, 13(1): 143-149.
|
[11] |
Nenad Ignjatovi?1, Zorica Ajdukovi?2, Jelena Rajkovi?3, Stevo Najman3, Dragan Mi.
Enhanced Osteogenesis of Nanosized Cobalt-substituted Hydroxyapatite
[J]. J4, 2015, 12(4): 604-612.
|
[12] |
Jiancang Wang1, Chaozong Liu2.
Biomimetic Collagen/Hydroxyapatite Composite Scaffolds: Fabrication and Characterizations
[J]. J4, 2014, 11(4): 600-609.
|
[13] |
Mei Zhang, Yongjia Liu, Yuqing Jia, Hongshuang Han, Dahui Sun.
Preparation and Evaluation of Electrospun Zein/HA Fibers Based on Two Methods of Adding HA Nanoparticles
[J]. J4, 2014, 11(1): 115-124.
|
[14] |
Ting Cao, Weili Tang, Jingchan Zhao, Lulu Qin, Chunbo Lan.
A Novel Drug Delivery Carrier Based on α-eleostearic Acid Grafted Hydroxyapatite Composite
[J]. J4, 2014, 11(1): 125-133.
|
[15] |
Xiaofeng Song, Fengguang Ling, Haotian Li, Zhantuan Gao, Xuesi Chen.
Tuned Morphological Electrospun Hydroxyapatite Nanofibers via pH
[J]. J4, 2012, 9(4): 478-483.
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