Development of Multilayered Chlorogenate-Peptide Based Biocomposite Scaffolds for Potential Applications in Ligament Tissue Engineering - An In Vitro Study (English)
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- New search for: Pajovich, Harrison T.
- New search for: Brown, Alexandra M.
- New search for: Smith, Andrew M.
- New search for: Hurley, Sara K.
- New search for: Dorilio, Jessica R.
- New search for: Cutrone, Nicole M.
- New search for: Banerjee, Ipsita A.
In:
Journal of Biomimetics, Biomaterials and Biomedical Engineering
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34
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37-56
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2017
- Article (Journal) / Electronic Resource
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Title:Development of Multilayered Chlorogenate-Peptide Based Biocomposite Scaffolds for Potential Applications in Ligament Tissue Engineering - An In Vitro Study
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Contributors:
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Published in:
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Publisher:
- New search for: Trans Tech Publications
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Place of publication:Stafa-Zurich, Switzerland
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Publication date:2017-10-10
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Size:20 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents – Volume 34
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 1
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Analysis of Foot Kinematics with Unstable Sole Structure Using Oxford Foot Model| 2017
- 10
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Combination of Gray-Level and Moment Invariant for Automatic Blood Vessel Detection on Retinal Image| 2017
- 20
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Application Design of Dengue Hemorrhagic Fever Patients Screening Using Naive Bayes Method| 2017
- 29
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Uterine Tamponade Device to Control Atonic Primary Postpartum Haemorrhage in Resource-Poor Settings| 2017
- 37
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Development of Multilayered Chlorogenate-Peptide Based Biocomposite Scaffolds for Potential Applications in Ligament Tissue Engineering - An In Vitro Study| 2017
- 57
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Novel Strontium Doped Zinc Calcium Phosphate Conversion Coating on AZ31 Magnesium Alloy for Biomedical Applications| 2017
- 68
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Biomechanical Characterization of Failure the 316L Stainless Steel for Femoral Compression Plates| 2017
- 75
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Rheological Properties of Some Materials Used for Dental Impression| 2017
- 82
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Numerical Analysis of the Equivalent Stress at the Interface Bone/Threaded Dental Implant| 2017
- 94
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Transplantation of Dental Pulp Stem Cells in Experimental Bone Defect| 2017