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Dive into the research topics where Domenic Santoianni is active.

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Featured researches published by Domenic Santoianni.


Circulation | 2003

Lower Incidence of Thrombus Formation With Cryoenergy Versus Radiofrequency Catheter Ablation

Paul Khairy; Patrick Chauvet; John W. Lehmann; Jean Lambert; Laurent Macle; Jean-François Tanguay; Martin G. Sirois; Domenic Santoianni; Marc Dubuc

Background—Radiofrequency (RF) catheter ablation is limited by thromboembolic complications. The objective of this study was to compare the incidence and characteristics of thrombi complicating RF and cryoenergy ablation, a novel technology for the catheter-based treatment of arrhythmias. Methods and Results—Ablation lesions (n=197) were performed in 22 mongrel dogs at right atrial, right ventricular, and left ventricular sites preselected by a randomized factorial design devised to compare RF ablation with cryocatheter configurations of varying sizes (7F and 9F), cooling rates (−1°C/s, −5°C/s, and −20°C/s) and target temperatures (−55°C and −75°C). Animals were pretreated with acetylsalicylic acid and received intraprocedural intravenous unfractionated heparin. Seven days after ablation, the incidence of thrombus formation was significantly higher with RF than with cryoablation (75.8% versus 30.1%, P =0.0005). In a multiple regression model, RF energy remained an independent predictor of thrombus formation compared with cryoenergy (OR, 5.6; 95% CI, 1.7, 18.1;P =0.0042). Thrombus volume was also significantly greater with RF than with cryoablation (median, 2.8 versus 0.0 mm3;P <0.0001). More voluminous thrombi were associated with larger RF lesions, but cryolesion dimensions were not predictive of thrombus size. Conclusions—RF energy is significantly more thrombogenic than cryoenergy, with a higher incidence of thrombus formation and larger thrombus volumes. The extent of hyperthermic tissue injury is positively correlated with thrombus bulk, whereas cryoenergy lesion size does not predict thrombus volume, most likely reflecting intact tissue ultrastructure with endothelial cell preservation.


Archive | 2002

Defined deflection structure

Sean Carroll; Domenic Santoianni; Benoit Thibault; Dan Wittenberger; Mathieu-Philippe Aubert; Marc-André Marcotte


Archive | 2003

Method and apparatus for locating and detecting vascular plaque via impedence and conductivity measurements, and for cryogenically passivating vascular plaque and inhibiting vascular plaque progression and rupture

Willard W. Hennemann; Michael Urick; Domenic Santoianni; Claudia Lückge; Sean Carroll; Dan Wittenberger; Teresa Mihalik


Archive | 2002

Cryoblation catheter handle

Marwan Abboud; Domenic Santoianni; Philippe Marchand


Archive | 2006

Cryoablation catheter handle

Marwan Abboud; Domenic Santoianni; Philippe Marchand


Archive | 2000

Cryomedical device for promoting angiogenesis

Sean Carroll; Dan Wittenberger; Domenic Santoianni; Marwan Abboud; Mathieu-Philippe Aubert; Daniel Nahon; Richard L. Gallo; Marc Dubuc; John W. Lehmann; Philippe Marchand; Steven G. Arless


Archive | 2005

Extended treatment zone catheter

Domenic Santoianni; Marwan Abboud; Sean Carroll


Archive | 2009

Tip design for cryogenic probe with inner coil injection tube

Steve Arless; Daniel Nahon; Domenic Santoianni


Archive | 2006

Handle for catheter device

Philippe Marchand; Yixin Hu; Ramin Sabbaghe-Kermani; Michael Bailey; Michel Morelli; André Tremblay; Teresa Mihalik; Dan O'Sullivan; Stanley Thompson; Domenic Santoianni; Vincent Nicolas Gladu


Archive | 2013

METHOD AND DEVICE FOR INFUSION OF PHARMACOLOGIC AGENTS AND THROMBUS ASPIRATION IN ARTERY

Thierry Charron; Domenic Santoianni; Marwan Abboud; Guy Rousseau; Aimé-robert Leblanc

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Guy Rousseau

Université de Montréal

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Marc Dubuc

Montreal Heart Institute

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Thierry Charron

University Health Network

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Jean Lambert

Montreal Heart Institute

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Laurent Macle

Montreal Heart Institute

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