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https://www.readbyqxmd.com/read/28048867/mo-ab-bra-10-super-high-temporal-resolution-cardiac-ct-imaging-using-smart-recon
#1
Y Li, X Cao, Z Xing, X Sun, J Hsieh, G Chen
PURPOSE: Coronary CT angiography is a challenging task currently limited by the achievable temporal resolution of modern MDCT scanners. In this work, a highly innovative method has been developed and validated to improve temporal resolution of the MDCT by a factor of four with the newly developed SMART-RECON method to enable high quality coronary CTA exams. The primary purpose of this paper is to investigate the relationships between: (1) SMART-RECON and the motion pattern; (2) SMART-RECON and the average speed of moving vessels; (3) SMART-RECON and the position and direction of moving vessels...
June 2016: Medical Physics
https://www.readbyqxmd.com/read/26254250/a-study-on-the-optimal-positions-of-ecg-electrodes-in-a-garment-for-the-design-of-ecg-monitoring-clothing-for-male
#2
Hakyung Cho, Joo Hyeon Lee
Smart clothing is a sort of wearable device used for ubiquitous health monitoring. It provides comfort and efficiency in vital sign measurements and has been studied and developed in various types of monitoring platforms such as T-shirt and sports bra. However, despite these previous approaches, smart clothing for electrocardiography (ECG) monitoring has encountered a serious shortcoming relevant to motion artifacts caused by wearer movement. In effect, motion artifacts are one of the major problems in practical implementation of most wearable health-monitoring devices...
September 2015: Journal of Medical Systems
https://www.readbyqxmd.com/read/26128708/mo-fg-bra-05-next-generation-radiotherapy-biomaterials-loaded-with-gold-nanoparticles
#3
G Cifter, E Sajo, H Korideck, R Kumar, S Sridhar, R Cormack, G Makrigiorgos, W Ngwa
PURPOSE: It has been proposed that routinely used inert radiotherapy (RT) biomaterials (e.g. fiducials, spacers) can be upgraded to smarter ones by coating/loading them with radiosensitizing gold nanoparticles (GNPs), for sustained in-situ release after implantation to enhance RT. In this work, we developed prototypes of such RT biomaterials and investigated the sustained release of GNPs from the biomaterials as a function of design parameters. METHODS: Prototype smart biomaterials were produced by incorporating the GNPs in poly(D,L-lactide-co-glycolide) (PLGA) polymer millirods during the gel phase of production...
June 2015: Medical Physics
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