Curt A. Deister, Ph.D.

Affiliations: 
2007 Chemical Engineering University of Texas at Austin, Austin, Texas, U.S.A. 
Area:
Biomedical, Cell Biology
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"Curt Deister"

Parents

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Christine E. Schmidt grad student 2006 UT Austin (E-Tree)
Krishnendu Roy grad student 2007 UT Austin
 (Neurotrophic factor combinations and extracellular matrix-based hydrogels for nerve regeneration.)
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Publications

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Zhukauskas R, Fischer DN, Deister C, et al. (2023) Histological Comparison of Porcine Small Intestine Submucosa and Bovine Type-I Collagen Conduit for Nerve Repair in a Rat Model. Journal of Hand Surgery Global Online. 5: 810-817
Zoghoul Alsmadi N, Deister C, Agrawal N, et al. (2023) Characterization of Nerve Damage After an Injury to the Adjacent Soft Tissue: A Pilot Animal Study. Tissue Engineering. Part C, Methods. 29: 547-557
Zhukauskas R, Fischer DN, Deister C, et al. (2021) A Comparative Study of Porcine Small Intestine Submucosa and Cross-Linked Bovine Type I Collagen as a Nerve Conduit. Journal of Hand Surgery Global Online. 3: 282-288
Kasper M, Deister C, Beck F, et al. (2020) Bench-to-Bedside Lessons Learned: Commercialization of an Acellular Nerve Graft. Advanced Healthcare Materials. e2000174
Tork S, Faleris J, Engemann A, et al. (2020) Application of a Porcine Small Intestine Submucosa Nerve Cap for Prevention of Neuromas and Associated Pain. Tissue Engineering. Part A. 26: 503-511
Riley DC, Boyer RB, Deister CA, et al. (2017) Immediate Enhancement of Nerve Function Using a Novel Axonal Fusion Device After Neurotmesis. Annals of Plastic Surgery
Durgam H, Sapp S, Deister C, et al. (2010) Novel degradable co-polymers of polypyrrole support cell proliferation and enhance neurite out-growth with electrical stimulation. Journal of Biomaterials Science. Polymer Edition. 21: 1265-82
Deister C, Aljabari S, Schmidt CE. (2007) Effects of collagen 1, fibronectin, laminin and hyaluronic acid concentration in multi-component gels on neurite extension. Journal of Biomaterials Science. Polymer Edition. 18: 983-97
Hudson TW, Zawko S, Deister C, et al. (2004) Optimized acellular nerve graft is immunologically tolerated and supports regeneration. Tissue Engineering. 10: 1641-51
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