Laurencin, Cato T.
Cato T. Laurencin American surgeon, biomedical engineer
Laurencin, Cato T., 1959-
لاورنسين، كاتو تي.، 1959-
اورنسين، كاتو ت.، 1959-
VIAF ID: 71727696 (Personal)
Permalink: http://viaf.org/viaf/71727696
Preferred Forms
- 100 0 _ ‡a Cato T. Laurencin ‡c American surgeon, biomedical engineer
- 200 _ | ‡a Laurencin ‡b Cato T.
- 100 1 _ ‡a Laurencin, Cato T.
- 100 1 _ ‡a Laurencin, Cato T.
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- 100 1 _ ‡a Laurencin, Cato T.
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- 100 1 _ ‡a Laurencin, Cato T.
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- 100 1 _ ‡a Laurencin, Cato T. ‡d 1959-
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4xx's: Alternate Name Forms (13)
5xx's: Related Names (1)
Works
Title | Sources |
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An American crisis , 2017: | |
Arthritis & arthroplasty. | |
Bone graft substitutes | |
COVID-19 and the present and future of black communities : the role of black physicians, engineers, and scientists : proceedings of a workshop | |
Encyclopedia of biomedical engineering. | |
The impacts of racism and bias on Black people pursuing careers in science, engineering, and medicine : proceedings of a workshop | |
Nanofibers and nanoparticles for orthopaedic surgery applications | |
Nanoscale materials science in biology and medicine : symposium held November 28-December 2, 2004, Boston, Massachusetts, U.S.A. | |
Nanotechnology and orthopedics: a personal perspective | |
Nanotechnology and tissue engineering : the scaffold | |
Natural and synthetic biomedical polymers | |
The new health-care system: results of a round table discussion | |
Novel biodegradable poly(1,8-octanediol malate) for annulus fibrosus regeneration | |
Novel factor-loaded polyphosphazene matrices: potential for driving angiogenesis | |
Novel low temperature setting nanocrystalline calcium phosphate cements for bone repair: osteoblast cellular response and gene expression studies | |
Novel nanostructured scaffolds as therapeutic replacement options for rotator cuff disease | |
Novel polyphosphazene-hydroxyapatite composites as biomaterials | |
Novel polyphosphazene/poly(lactide-co-glycolide) blends: miscibility and degradation studies | |
Novel tubular composite matrix for bone repair | |
Optimally porous and biomechanically compatible scaffolds for large-area bone regeneration | |
Osteoblast-like Cell Adherance and Migration Through Three-Dimensional Porous Polymer Matrices | |
Osteogenic differentiation of adipose-derived stromal cells treated with GDF-5 cultured on a novel three-dimensional sintered microsphere matrix | |
Pain management via local anesthetics and responsive hydrogels | |
Phosphate graphene as an intrinsically osteoinductive scaffold for stem cell-driven bone regeneration | |
Poly(anhydride-co-imides): in vivo biocompatibility in a rat model | |
Poly(lactide-co-glycolide)/hydroxyapatite delivery of BMP-2-producing cells: a regional gene therapy approach to bone regeneration | |
Polymeric nanofibers as novel carriers for the delivery of therapeutic molecules | |
Polymers as biomaterials for tissue engineering and controlled drug delivery | |
Polyphosphazene functionalized polyester fiber matrices for tendon tissue engineering: in vitro evaluation with human mesenchymal stem cells | |
Pyoderma gangrenosum affecting the hand | |
Quality and fairness: achieving the paradigm. A personal perspective. | |
Quantitative analysis of three-dimensional fluid flow in rotating bioreactors for tissue engineering | |
Racial Profiling Is a Public Health and Health Disparities Issue | |
Regenerative engineering | |
Regional drug delivery with radiation for the treatment of Ewing's sarcoma. In vitro development of a taxol release system | |
Repair and restore with tissue engineering | |
The role of small molecules in musculoskeletal regeneration | |
Schwannoma of the superficial peroneal nerve presenting as web space pain | |
Short-term administration of small molecule phenamil induced a protracted osteogenic effect on osteoblast-like MC3T3-E1 cells | |
Shoulder | |
The small molecule PKA-specific cyclic AMP analogue as an inducer of osteoblast-like cells differentiation and mineralization | |
Solvent/non-solvent sintering: a novel route to create porous microsphere scaffolds for tissue regeneration | |
Structural and nanoindentation studies of stem cell-based tissue-engineered bone | |
Studies of bone morphogenetic protein-based surgical repair | |
Success is what you leave behind : fostering leadership and innovation | |
Synthesis, characterization, and osteocompatibility evaluation of novel alanine-based polyphosphazenes | |
Synthesis, Physicochemical Analysis, and Side Group Optimization of Degradable Dipeptide-Based Polyphosphazenes as Potential Regenerative Biomaterials | |
Tissue engineered bone: Measurement of nutrient transport in three‐dimensional matrices | |
Tissue-engineered matrices as functional delivery systems: adsorption and release of bioactive proteins from degradable composite scaffolds | |
Tissue engineered microsphere-based matrices for bone repair: design and evaluation | |
Tissue engineering of bone: a primer for the practicing hand surgeon | |
Tissue engineering: orthopedic applications | |
Toxicity, biodegradation and elimination of polyanhydrides | |
Toxicology and biocompatibility considerations in the evaluation of polymeric materials for biomedical applications | |
Unconscious Bias, Racism, and Trauma-Informed Policing: an Address and Message to the Connecticut Racial Profiling Prohibition Project Advisory Board | |
Unicompartmental versus total knee arthroplasty in the same patient. A comparative study | |
Use of polyphosphazenes for skeletal tissue regeneration | |
VEGF-incorporated biomimetic poly(lactide-co-glycolide) sintered microsphere scaffolds for bone tissue engineering | |
We Are the First to Applaud You Regarding Your Efforts in COVID-19: A Message from the African Diaspora to Our Brothers and Sisters of Africa | |
Xenotransplantation in orthopaedic surgery. | |
تقنية النانو و هندسة الأنسجة حاملة الخلايا و الأنسجة |