Pages that link to "Q30437053"
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The following pages link to Novel nanofiber-based scaffold for rotator cuff repair and augmentation (Q30437053):
Displaying 50 items.
- Augmentation of Rotator Cuff Repair With Soft Tissue Scaffolds (Q26776001) (← links)
- Molecular regulation of tendon cell fate during development (Q26829280) (← links)
- Biomimetic scaffold design for functional and integrative tendon repair (Q26861562) (← links)
- Emerging Applications of Stem Cell and Regenerative Medicine to Sports Injuries (Q26991609) (← links)
- The enthesis: a review of the tendon-to-bone insertion (Q26995696) (← links)
- Recent Scientific Advances Towards the Development of Tendon Healing Strategies (Q28383397) (← links)
- Biomedical Applications of Biodegradable Polymers (Q30426452) (← links)
- Tendon tissue engineering: adipose-derived stem cell and GDF-5 mediated regeneration using electrospun matrix systems (Q30427557) (← links)
- Functional attachment of soft tissues to bone: development, healing, and tissue engineering (Q30439414) (← links)
- Biodegradable electrospun nanofibers coated with platelet-rich plasma for cell adhesion and proliferation (Q30580423) (← links)
- In Vivo Evaluation of Adipose-Derived Stromal Cells Delivered with a Nanofiber Scaffold for Tendon-to-Bone Repair (Q30679638) (← links)
- Multilayered polycaprolactone/gelatin fiber-hydrogel composite for tendon tissue engineering (Q33613651) (← links)
- Engineering on the straight and narrow: the mechanics of nanofibrous assemblies for fiber-reinforced tissue regeneration. (Q33634560) (← links)
- New directions in nanofibrous scaffolds for soft tissue engineering and regeneration (Q33688700) (← links)
- Fabrication and modeling of dynamic multipolymer nanofibrous scaffolds (Q33697197) (← links)
- Combined effects of chemical priming and mechanical stimulation on mesenchymal stem cell differentiation on nanofiber scaffolds (Q33759773) (← links)
- Tissue-specific bioactivity of soluble tendon-derived and cartilage-derived extracellular matrices on adult mesenchymal stem cells (Q33768305) (← links)
- Award Winner in the Young Investigator Category, 2014 Society for Biomaterials Annual Meeting and Exposition, Denver, Colorado, April 16-19, 2014: Periodically perforated core-shell collagen biomaterials balance cell infiltration, bioactivity, [...] (Q33852565) (← links)
- Novel strategies in tendon and ligament tissue engineering: Advanced biomaterials and regeneration motifs (Q34128677) (← links)
- In vivo response to electrochemically aligned collagen bioscaffolds (Q34241450) (← links)
- Cellular therapy in bone-tendon interface regeneration (Q34391092) (← links)
- Co-cultured tissue-specific scaffolds for tendon/bone interface engineering (Q34461200) (← links)
- Electrospun nanofibers for regenerative medicine (Q34660947) (← links)
- Imaging, spectroscopy, mechanical, alignment and biocompatibility studies of electrospun medical grade polyurethane (Carbothane™ 3575A) nanofibers and composite nanofibers containing multiwalled carbon nanotubes (Q35032654) (← links)
- Stringent requirement for spatial arrangement of extracellular matrix in supporting cell morphogenesis and differentiation. (Q35128835) (← links)
- Collagen Scaffolds Incorporating Coincident Gradations of Instructive Structural and Biochemical Cues for Osteotendinous Junction Engineering (Q35537320) (← links)
- Fiber stretch and reorientation modulates mesenchymal stem cell morphology and fibrous gene expression on oriented nanofibrous microenvironments (Q35609209) (← links)
- Orthopedic interface tissue engineering for the biological fixation of soft tissue grafts (Q35677107) (← links)
- Aligned multilayered electrospun scaffolds for rotator cuff tendon tissue engineering. (Q36029537) (← links)
- Sacrificial nanofibrous composites provide instruction without impediment and enable functional tissue formation (Q36212976) (← links)
- Effect of 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide and N-hydroxysuccinimide concentrations on the mechanical and biological characteristics of cross-linked collagen fibres for tendon repair (Q36345152) (← links)
- Scaffold fiber diameter regulates human tendon fibroblast growth and differentiation. (Q36525923) (← links)
- Biologic Treatments for Sports Injuries II Think Tank-Current Concepts, Future Research, and Barriers to Advancement, Part 2: Rotator Cuff (Q36763117) (← links)
- Tissue engineering strategies for the regeneration of orthopedic interfaces (Q36880985) (← links)
- In vitro and in vivo evaluation of orthopedic interface repair using a tissue scaffold with a continuous hard tissue-soft tissue transition (Q36945601) (← links)
- The guidance of stem cell differentiation by substrate alignment and mechanical stimulation (Q36947645) (← links)
- Current Status of Tissue-Engineered Scaffolds for Rotator Cuff Repair (Q37033016) (← links)
- Multilayered electrospun scaffolds for tendon tissue engineering. (Q37377665) (← links)
- Rotator cuff repair augmentation using a novel polycarbonate polyurethane patch: preliminary results at 12 months’ follow-up (Q37414408) (← links)
- Rational design of nanofiber scaffolds for orthopedic tissue repair and regeneration (Q37420209) (← links)
- Scaffold-mediated lentiviral transduction for functional tissue engineering of cartilage. (Q37628097) (← links)
- Tendon augmentation grafts: a systematic review (Q37667296) (← links)
- MR elastography monitoring of tissue‐engineered constructs (Q37851078) (← links)
- Rotator cuff: biology and current arthroscopic techniques (Q37978172) (← links)
- Bioreactor design for tendon/ligament engineering. (Q38052609) (← links)
- Structure-function relationships of postnatal tendon development: a parallel to healing (Q38077389) (← links)
- Biocomposites reinforced by fibers or tubes as scaffolds for tissue engineering or regenerative medicine (Q38107432) (← links)
- Biodegradable synthetic scaffolds for tendon regeneration (Q38112145) (← links)
- Synthetic and degradable patches: an emerging solution for rotator cuff repair. (Q38120314) (← links)
- Repairing damaged tendon and muscle: are mesenchymal stem cells and scaffolds the answer? (Q38133659) (← links)