Introduction: Use of the radial approach for coronary angiography and percutaneous coronary intervention (PCI) is known to improve many patient outcome measures. However, there is some concern that it may be associated with increased patient radiation exposure. This study explores radiation exposure with the radial approach compared with the femoral approach in a centre previously performing purely femoral approach.
Patients And Methods: Data was collected retrospectively for all patients undergoing diagnostic coronary angiography over a six month period. PCIs and procedures with inherent technical difficulty or use of additional techniques (graft studies, optical coherence tomography, fractional flow reserve) were excluded. Dose area product (DAP) and fluoroscopy time (FT) were analysed for all remaining procedures (n=389), comparing radial (n=109) and femoral (n=280) approaches.
Results: The overall mean FT for transradial cases (7.45 mins) was significantly higher than for transfemoral cases (4.59 mins; p<0.001). The overall mean DAP for transradial cases (95.64 G Gycm(2)) was significantly higher than for transfemoral cases (70.25 Gycm(2), p<0.05)). Neither the FT nor the DAP decreased over the six month period.
Conclusion: The radial approach was associated with significantly higher DAP and FT compared to the femoral approach during an initial introductory phase which was likely insufficient to develop radial proficiency. The results of this study are consistent with previous studies and may influence choice of access for non-emergent diagnostic coronary angiography before radial proficiency has been established, particularly for patients more susceptible to radiation risks.
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http://dx.doi.org/10.1016/j.hlc.2014.02.019 | DOI Listing |
Nanotechnology
December 2024
CCTS/DFQM, UFSCar - Campus Sorocaba, Rod. João Leme dos Santos km 110 - SP-264 Bairro do Itinga - Sorocaba CEP 18052-780, Sorocaba, 18052-780, BRAZIL.
Nanomaterials stand out for their exceptional properties and innovative potential, especially in applications that protect against space radiation. They offer an innovative approach to this challenge, demonstrating notable properties of radiation absorption and scattering, as well as flexibility and lightness for the development of protective clothing and equipment. This review details the use of polymeric materials, such as polyimides (PIs), which are efficient at attenuating ultraviolet (UV) radiation and atomic oxygen (AO).
View Article and Find Full Text PDFMed Phys
December 2024
Department of Physics, Lakehead University, Thunder Bay, Ontario, Canada.
Background: This study investigates a multi-angle acquisition method aimed at improving image quality in organ-targeted PET detectors with planar detector heads. Organ-targeted PET technologies have emerged to address limitations of conventional whole-body PET/CT systems, such as restricted axial field-of-view (AFOV), limited spatial resolution, and high radiation exposure associated with PET procedures. The AFOV in organ-targeted PET can be adjusted to the organ of interest, minimizing unwanted signals from other parts of the body, thus improving signal collection efficiency and reducing the dose of administered radiotracer.
View Article and Find Full Text PDFEnviron Monit Assess
December 2024
School of Nuclear and Allied Sciences, University of Ghana, Atomic Campus, P.O. Box LG 80 Legon, Accra, Ghana.
Excavation of terrestrial surface of the Earth could enhance the chance of exposure to radon while gases in the underground get access to escape. This study was aimed to assess the level of radon concentration from soil samples of quarrying sites at Hakim Gara in Ethiopia using CR-39 detectors in sealed container technique. The results of the measured radon concentration level were ranging from 164.
View Article and Find Full Text PDFEJNMMI Res
December 2024
μNEURO Research Centre of Excellence, Universiteitsplein 1, University of Antwerp, Antwerp, Belgium.
Background: Huntington's disease (HD) is a rare neurodegenerative disorder caused by an expansion of the CAG trinucleotide repeat in the huntingtin gene which encodes the mutant huntingtin protein (mHTT) that is associated with HD-related neuropathophysiology. Noninvasive visualization of mHTT aggregates in the brain, with positron emission tomography (PET), will allow to reliably evaluate the efficacy of therapeutic interventions in HD. This study aimed to assess the radiation burden of [F]CHDI-650, a novel fluorinated mHTT radioligand, in humans based on both in vivo and ex vivo biodistribution in mice and subsequent determination of dosimetry for dosing in humans.
View Article and Find Full Text PDFDysphagia
December 2024
Department of Otorhinolaryngology-Head and Neck Surgery, Rennes University Hospital, 2 Rue Henri Le Guilloux, Rennes CEDEX 9, 35033, France.
Videofluoroscopy, recognized as the gold standard for dysphagia exploration, has inherent limitations, including poor soft tissue discrimination, radiation exposure, and aspiration risk. In response to these challenges, cine-MRI of swallowing has evolved over the past three decades, yielding diverse methodologies and results across various studies.This systematic review, conducted in accordance with the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines, meticulously outlines cine-MRI protocols, applications, advantages, and limitations.
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