81 results on '"Shirwaiker, Rohan A."'
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52. Label free process monitoring of 3D bioprinted engineered constructs via dielectric impedance spectroscopy
53. Chapter 3 - 3D Bioprinting Techniques
54. Investigating Dielectric Impedance Spectroscopy As a Non-Destructive Quality Assessment Tool for 3D Cellular Constructs
55. Engineering 3D-Bioplotted scaffolds to induce aligned extracellular matrix deposition for musculoskeletal soft tissue replacement
56. Fabrication and Evaluation of Electrospun, 3D-Bioplotted, and Combination of Electrospun/3D-Bioplotted Scaffolds for Tissue Engineering Applications
57. 3D-Bioprinting of Polylactic Acid (PLA) Nanofiber–Alginate Hydrogel Bioink Containing Human Adipose-Derived Stem Cells
58. Modified Pharmacokinetic/Pharmacodynamic model for electrically activated silver-titanium implant system
59. Evaluation of silver-titanium implants activated by low intensity direct current for orthopedic infection control: Anin vitroandin vivostudy
60. Alginate Microspheroid Encapsulation and Delivery of MG-63 Cells Into Polycaprolactone Scaffolds: A New Biofabrication Approach for Tissue Engineering Constructs
61. A Clinical Perspective on Musculoskeletal Infection Treatment Strategies and Challenges
62. Characterization of Material–Process–Structure Interactions in the 3D Bioplotting of Polycaprolactone
63. Manufacturing Road Map for Tissue Engineering and Regenerative Medicine Technologies
64. Biocompatibility Analysis of an Electrically-Activated Silver-Based Antibacterial Surface System for Medical Device Applications
65. Interdigitated silver-polymer-based antibacterial surface system activated by oligodynamic iontophoresis – An empirical characterization study
66. Determining Optimal Current Intensity and Duration for Electrically Activated Silver-Based Prophylactic Hip Implant Prototype Design
67. Evaluation of silver-titanium implants activated by low intensity direct current for orthopedic infection control: An in vitro and in vivo study.
68. Nanomaterials and synergistic low‐intensity direct current (LIDC) stimulation technology for orthopedic implantable medical devices
69. Biocompatibility analysis of an electrically-activated silver-based antibacterial surface system for medical device applications
70. Micro-scale fabrication and characterization of a silver-polymer-based electrically activated antibacterial surface
71. Prophylactic Bactericidal Orthopedic Implants – Animal Testing Study
72. Triz and axiomatic design: a review of case-studies and a proposed synergistic use
73. USING TRIZ AND AXIOMATIC DESIGN SYNERGISTICALLY: A CASE STUDY
74. A Multi-Stage Problem Formulation for Concept Selection for Improved Product Design
75. TRIZ and Axiomatic Design: A Review of Manufacturing Case-Studies&Their Compatibility
76. An Investigation on the Effectiveness of Design Ideation Using TRIZ
77. Regenerative medicine manufacturing.
78. Fabrication and Evaluation of Electrospun, 3D-Bioplotted, and Combination of Electrospun/3D-Bioplotted Scaffolds for Tissue Engineering Applications
79. Perching might beat sitting or standing.
80. Process hybridization schemes for multiscale engineered tissue biofabrication.
81. Nanomaterials and synergistic low-intensity direct current (LIDC) stimulation technology for orthopedic implantable medical devices.
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