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Microvascular Research|July 31, 1998
A novel approach for comparative study of periosteum, muscle, subcutis, and skin microcirculation by intravital fluorescence microscopyM Rücker, F Roesken, B Vollmar, et al.American Journal of Physiology. Heart and Circulatory Physiology|August 3, 2000
Vasomotion in critically perfused muscle protects adjacent tissues from capillary perfusion failureM Rücker, O Strobel, B Vollmar, et al.British Journal of Plastic Surgery|May 4, 2002
Microvascular transfer-related abrogation of capillary flow motion in critically reperfused composite flapsM Rücker, B Vollmar, F Roesken, et al.Journal of Vascular Surgery|September 16, 1998
In vivo analysis of antithrombotic effectiveness of recombinant hirudin on microvascular thrombus formation and recanalizationF Roesken, B Vollmar, M Rücker, et al.Langenbeck'S Archives of Surgery|February 9, 2000
Acceleration of wound healing by topical drug delivery via liposomesF Roesken, E Uhl, S B Curri, et al.Thrombosis and Haemostasis|January 4, 1998
A new model for quantitative in vivo microscopic analysis of thrombus formation and vascular recanalisation: the ear of the hairless (hr/hr) mouseF Roesken, M Ruecker, B Vollmar, et al.The British Journal of Surgery|September 27, 2005
Experimental cooling-induced preconditioning attenuates skin flap failureD Kubulus, M Amon, F Roesken, et al.The British Journal of Surgery|March 22, 2001
Local heat-shock priming-induced improvement in microvascular perfusion in osteomyocutaneous flaps is mediated by heat-shock protein 32M Rücker, T Schäfer, F Roesken, et al.Surgery|March 7, 2001
Reduction of inflammatory response in composite flap transfer by local stress conditioning-induced heat-shock protein 32M Rücker, T Schäfer, F Roesken, et al.British Journal of Plastic Surgery|February 5, 2000
In vivo analysis of the microcirculation of osteomyocutaneous flaps using fluorescence microscopyM Rücker, F Roesken, T Schäfer, et al.Pageof 2