Science

| Basic Science: Studies |
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Gutersohn A, Caspari G, and Erbel R. Upregulation of VEGF-mRNA in human umbilical vascular endothelial cells via shock waves. Presentation; Eur J Heart Failure 2000;2(Suppl1):42.
Wang CJ, Huang SY, and Pai CH. Shock wave enhanced neovascularization at the bone-tendon junction. A study in a dog model. Am J Foot Ankle 2002;41:16-22.
Wang FS, Yang KD, Chen RF, Wang CJ, and Sheen-Chen SM. Exracorporeal shock wave promotes growth and differentiation of bone-marrow stromal cells towards osteoprogenitors associated with induction of TGF-beta1. J Bone Joint Surg (Br) 2002;84-B:457-461.
Wang CJ, Wang FS, Yang KD, Weng LH, Hsu CC, Huang CS, and Yang LC. Shock wave therapy induces neovascularization at the tendon-bone junction. A study in rabbits. J Orthop Res. 2003;21(6):984-989.
Wang FS, Wang CJ, Chen YJ, Chang PR, Huang YT, Sun YC, Huang HC, Yang YJ, and Yang KD. Ras induction of superoxide activates ERK-dependent angiogenic transcription factor HIF-1alpha and VEGF-A expression in shock wave-stimulated osteoblasts. J Biol Chem. 2004; 279(11):10331-10337.
Mariotto S, Cavalieri, Amelio E, Ciampa AR, Carcereri de Prati A, Marlinghaus E, Russo S, and Suzuki H. Extracorporeal shock waves: From lithotripsy to anti-inflammatory action by NO production. Nitric Oxide. 2005;12:89-96.
Wang CJ. Biological mechanism of musculoskeletal shock wave therapy. ISMST Newsletter 2006; 1(1): 5-11. Wang CJ, Wang FS, Yang KD, Weng LH, Sun YC, and Yang YJ. The effect of shock wave treatment at the tendon-bone interface. A histomorphological and biomechanical study in rabbits. J Orthop Res 2005;23:274-280.
Aicher A, Heeschen C, Sasaki K, Urbich C, Zeiher A, and Dimmeler S. Low-energy shock wave for enhancing recruitment of endothelial progenitor cells. Circulation 2006;114:2823-2830.
Meirer R, Brunner A, Deibl M, Oehlbauer M, Piza-Katzer H, and Kamelger FS. Shock wave therapy reduces necrotic flap zones and induces VEGF expression in animal epigastric skin flap model. J Reconstr Microsurg. 2007;23:231-236.
Davis TA, Stojadinovic A, Amare K, Anam M, Naik S, Peoples GE, Tadaki D, and Elster EA. Extracorporeal shock wave therapy suppresses the acute early proinflammatory immune response to a severe cutaneous burn injury. Presentation no. 47; 10th Int Congress of the ISMST, June 6th to 9th, 2007, Toronto, Canada.
Krokowicz L, Mielniczuk M, and Siemionow M. Microcirculatory response to shock wave therapy in an acute model. Preliminary report. Presentation no. 36; 10th Int Congress of the ISMST, June 6th to 9th, 2007, Toronto, Canada.
Kuo YR, Wu WS, Hsieh YL, Wang FS, Wang CT, Chiang YC, and Wang CJ. Extracorporeal shock wave enhanced extended skin flap tissue survival via increase of topical blood perfusion and associated with suppression of tissue pro-inflammation. J Surg Res 2007;143:385-392
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