Publications by authors named "P Tasso"

Background: Fenestrated (FEVAR) and chimney (ChEVAR) endovascular aortic repair have been applied in anatomically suitable complex aortic aneurysms. However, local hemodynamic changes may occur after repair. This study aimed to compare FEVAR's and ChEVAR's hemodynamic properties, focusing on visceral arteries.

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Background: Carotid endarterectomy (CEA) remains the first-line treatment option of symptomatic and asymptomatic carotid stenosis, while stenting (CAS) is reserved for selected patients at high surgical risk. Here, we compare the vascular remodeling process in CEA- and CAS-treated patients with respect to morphological and hemodynamic features, because of their possible engagement in carotid atherosclerosis.

Methods: Twelve (12) patients were included, half with patched CEA and half with CAS.

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Antiphospholipid syndrome (APS) is infrequent at pediatric age (3 %) and is characterized by venous or arterial thrombosis and/or spontaneous abortions. APS occurs either as a primary condition or in the setting of an underlying disease. This is a case of a 12-year-old girl with a right hemiparesis and acute disturbance in gait, in which an ischemic cerebrovascular accident (CVA) due to middle cerebral artery thrombosis associated with positive antiphospholipid antibodies is confirmed (anticardiolipin antibody, lupus anticoagulant and anti-β2-glycoprotein antibody), fulfilling the criteria for the diagnosis of antiphospholipid syndrome.

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The degeneration of the arterial wall at the basis of the ascending thoracic aortic aneurysm (ATAA) is a complex multifactorial process, which may lead to clinical complications and, ultimately, death. Individual genetic, biological or hemodynamic factors are inadequate to explain the heterogeneity of ATAA development/progression mechanisms, thus stimulating the analysis of their complex interplay. Here the disruption of the hemodynamic environment in the ATAA is investigated integrating patient-specific computational hemodynamics, CT-based in vivo estimation of local aortic stiffness and advanced fluid mechanics methods of analysis.

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Although arterio-venous grafts (AVGs) represent the second choice as permanent vascular access for hemodialysis, this solution is still affected by a relevant failure rate due to graft thrombosis, and development of neointimal hyperplasia (IH) at the distal vein. As a key role in these processes has been attributed to the abnormal hemodynamics establishing in the distal vein, the optimization of AVGs design aimed at minimizing flow disturbances would reduce AVG hemodynamic-related risks. In this study we used computational fluid dynamics to investigate the impact of alternative AVG designs on the reduction of IH and thrombosis risk at the distal venous anastomosis.

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