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Rajash K Handa

Showing results (11-20 of 37) with videos related to

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The Journal of Urology|December 20, 2008
Assessment of renal injury with a clinical dual head lithotriptor delivering 240 shock waves per minuteRajash K Handa, James A McAteer, Andrew P Evan, et al.
BJU International|January 22, 2009
Localization of renal oxidative stress and inflammatory response after lithotripsyDaniel L Clark, Bret A Connors, Andrew P Evan, et al.
BJU International|August 6, 2008
Effect of initial shock wave voltage on shock wave lithotripsy-induced lesion size during step-wise voltage rampingBret A Connors, Andrew P Evan, Philip M Blomgren, et al.
Journal of Endourology|October 7, 2014
Shock wave lithotripsy does not impair renal function in a Swine model of metabolic syndromeRajash K Handa, Cynthia D Johnson, Bret A Connors, et al.
Journal of Endourology|September 29, 2015
Percutaneous Renal Access: Surgical Factors Involved in the Acute Reduction of Renal FunctionRajash K Handa, Cynthia D Johnson, Bret A Connors, et al.
American Journal of Physiology. Renal Physiology|February 7, 2015
Mechanism by which shock wave lithotripsy can promote formation of human calcium phosphate stonesAndrew P Evan, Fredric L Coe, Bret A Connors, et al.
Journal of the American Society of Nephrology : JASN|February 3, 2006
Prevention of lithotripsy-induced renal injury by pretreating kidneys with low-energy shock wavesLynn R Willis, Andrew P Evan, Bret A Connors, et al.
Urolithiasis|November 4, 2015
Intraluminal measurement of papillary duct urine pH, in vivo: a pilot study in the swine kidneyRajash K Handa, James E Lingeman, Sharon B Bledsoe, et al.
BJU International|January 22, 2009
Pretreatment with low-energy shock waves induces renal vasoconstriction during standard shock wave lithotripsy (SWL): a treatment protocol known to reduce SWL-induced renal injuryRajash K Handa, Michael R Bailey, Marla Paun, et al.
Nuclear Medicine and Biology|March 27, 2007
Assessment of Cu-ETS as a PET radiopharmaceutical for evaluation of regional renal perfusionMark A Green, Carla J Mathias, Lynn R Willis, et al.
Pageof 4

Showing results (11-20 of 37) with videos related to

Sort By:
Pageof 4
The Journal of Urology|December 20, 2008
Assessment of renal injury with a clinical dual head lithotriptor delivering 240 shock waves per minuteRajash K Handa, James A McAteer, Andrew P Evan, et al.
BJU International|January 22, 2009
Localization of renal oxidative stress and inflammatory response after lithotripsyDaniel L Clark, Bret A Connors, Andrew P Evan, et al.
BJU International|August 6, 2008
Effect of initial shock wave voltage on shock wave lithotripsy-induced lesion size during step-wise voltage rampingBret A Connors, Andrew P Evan, Philip M Blomgren, et al.
Journal of Endourology|October 7, 2014
Shock wave lithotripsy does not impair renal function in a Swine model of metabolic syndromeRajash K Handa, Cynthia D Johnson, Bret A Connors, et al.
Journal of Endourology|September 29, 2015
Percutaneous Renal Access: Surgical Factors Involved in the Acute Reduction of Renal FunctionRajash K Handa, Cynthia D Johnson, Bret A Connors, et al.
American Journal of Physiology. Renal Physiology|February 7, 2015
Mechanism by which shock wave lithotripsy can promote formation of human calcium phosphate stonesAndrew P Evan, Fredric L Coe, Bret A Connors, et al.
Journal of the American Society of Nephrology : JASN|February 3, 2006
Prevention of lithotripsy-induced renal injury by pretreating kidneys with low-energy shock wavesLynn R Willis, Andrew P Evan, Bret A Connors, et al.
Urolithiasis|November 4, 2015
Intraluminal measurement of papillary duct urine pH, in vivo: a pilot study in the swine kidneyRajash K Handa, James E Lingeman, Sharon B Bledsoe, et al.
BJU International|January 22, 2009
Pretreatment with low-energy shock waves induces renal vasoconstriction during standard shock wave lithotripsy (SWL): a treatment protocol known to reduce SWL-induced renal injuryRajash K Handa, Michael R Bailey, Marla Paun, et al.
Nuclear Medicine and Biology|March 27, 2007
Assessment of Cu-ETS as a PET radiopharmaceutical for evaluation of regional renal perfusionMark A Green, Carla J Mathias, Lynn R Willis, et al.
Pageof 4