Phase-contrast synchrotron X-ray microtomography (pcSyncX) based on the highly coherent X-ray beam has previously been used to visualize the microstructures of biologic specimens, but it has never been used to evaluate embolic debris adherent on a cerebral protection device (CPD). The purpose of this study was to demonstrate the feasibility of pcSyncX for evaluating embolic debris during carotid artery stenting (CAS). Five patients (four males, age range 67-77 years) with severe carotid artery stenosis underwent CAS. The retrieved CPD was exposed to synchrotron radiation and 1000 pcSyncX projection images were obtained by rotating the CPD through 180°. An X-ray shadow of a CPD was converted into a visual image by the scintillator. After microtomographic reconstruction, the three-dimensionally reconstructed images were further segmented into the embolic debris and CPD. The total volume of emboli was calculated by summing the volume at each scanning level. The number of membrane pores covered by emboli as seen from the outer surface was counted and the percentage of covered area was calculated. Embolic debris was clearly demonstrated not only on the inner surface and within pores but also on the outer surface of the CPD. The mean total volume of embolic debris was 0.538 × 10(-6) mm(3) (range 0.225-0.965 × 10(-6) mm(3)). Most (61.5%) of the debris was located at the apical one-third of the CPD and 20.8% of the pore area was covered by debris.
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http://dx.doi.org/10.1107/S1600577513023862 | DOI Listing |
J Cardiovasc Dev Dis
December 2024
German Heart Centre Munich, 80636 Munich, Germany.
(1) Background: Cerebral magnetic resonance imaging has reported new cerebral ischemic lesions after left atrial appendage (LAA) closure in about one- third of patients. Stroke occurs predominantly periprocedurally. This study evaluated the characteristics of embolized debris captured by the SENTINEL cerebral embolic protection system in patients undergoing LAA closure; (2) Methods: Sixty filters of 30 consecutive patients undergoing LAA closure with the WATCHMAN FLX device were collected and captured debris was analyzed by histopathology and histomorphometry.
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Department of Neurosurgery, Padilla Hospital of Tucuman, San Miguel de Tucuman, Argentina.
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From the Departments of Cardiology and Medicine, Westchester Medical Center and New York Medical College, Valhalla, NY.
Methodist Debakey Cardiovasc J
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Houston Methodist Hospital, Houston, Texas, US.
Transcarotid artery revascularization (TCAR) is a novel method to treat severe stenosis of the carotid artery with minimal embolization. During TCAR, flow reversal system redirects blood from the internal, external, and common carotid arteries into the femoral vein through a filter system to prevent debris and microparticles from entering the cerebral circulation. Transcranial Doppler (TCD) monitoring allows real-time detection of blood flow in the cerebral arteries during the operation and informs the surgeon of flow changes or possible emboli.
View Article and Find Full Text PDFJ Clin Med
November 2024
Collegium Medicum-Faculty of Medicine, WSB University, 41-300 Dabrowa Gornicza, Poland.
Cerebral embolic protection (CEP) during transcatheter aortic valve replacement (TAVR) has emerged as an important tool in reducing stroke risk associated with this intervention. With the recent expansion of TAVR into lower-risk populations, the role of preventive strategies gained greater significance. Despite advancements in TAVR technologies, peri-procedural stroke remains a significant complication, with rates ranging between 2 and 5%.
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