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- W3032647360 endingPage "542" @default.
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- W3032647360 abstract "Abstract Today's health care environment is shifting rapidly, driven by demographic change and high economic pressures on the system. Furthermore, modern precision medicine requires highly accurate and specific disease diagnostics in a short amount of time. Future imaging technology must adapt to these challenges. Demographic change necessitates scanner technologies tailored to the needs of an aging and increasingly multimorbid patient population. Accordingly, examination times have to be short enough that diagnostic images can be generated even for patients who can only lie in the scanner for a short time because of pain or with low breath-hold capacity. For economic reasons, the rate of nondiagnostic scans due to artifacts should be reduced as far as possible. As imaging plays an increasingly pivotal role in clinical-therapeutic decision making, magnetic resonance (MR) imaging facilities are confronted with an ever-growing number of patients, emphasizing the need for faster acquisitions while maintaining image quality. Lastly, modern precision medicine requires high and standardized image quality as well as quantifiable data in order to develop image-based biomarkers on which subsequent treatment management can rely. In recent decades, a variety of approaches have addressed the challenges of high throughput, demographic change, and precision medicine in MR imaging. These include field strength, gradient, coil and sequence development, as well as an increasing consideration of artificial intelligence. This article reviews state-of-the art MR technology and discusses future implementation from the perspective of what we know today." @default.
- W3032647360 created "2020-06-05" @default.
- W3032647360 creator A5048153659 @default.
- W3032647360 creator A5090178106 @default.
- W3032647360 creator A5091672962 @default.
- W3032647360 date "2020-06-02" @default.
- W3032647360 modified "2023-10-16" @default.
- W3032647360 title "Technological Advances of Magnetic Resonance Imaging in Today's Health Care Environment" @default.
- W3032647360 cites W1548679134 @default.
- W3032647360 cites W1676308325 @default.
- W3032647360 cites W1964264259 @default.
- W3032647360 cites W1970978975 @default.
- W3032647360 cites W1973148314 @default.
- W3032647360 cites W1974316717 @default.
- W3032647360 cites W1974508089 @default.
- W3032647360 cites W1979849031 @default.
- W3032647360 cites W1987263024 @default.
- W3032647360 cites W1987799301 @default.
- W3032647360 cites W1991461379 @default.
- W3032647360 cites W1993053013 @default.
- W3032647360 cites W1995710549 @default.
- W3032647360 cites W2011435635 @default.
- W3032647360 cites W2014547837 @default.
- W3032647360 cites W2021173709 @default.
- W3032647360 cites W2030773813 @default.
- W3032647360 cites W2047452998 @default.
- W3032647360 cites W2047787773 @default.
- W3032647360 cites W2049299851 @default.
- W3032647360 cites W2055628268 @default.
- W3032647360 cites W2064086721 @default.
- W3032647360 cites W2082087152 @default.
- W3032647360 cites W2084545839 @default.
- W3032647360 cites W2085459712 @default.
- W3032647360 cites W2097267689 @default.
- W3032647360 cites W2101675075 @default.
- W3032647360 cites W2109569035 @default.
- W3032647360 cites W2111388536 @default.
- W3032647360 cites W2114809469 @default.
- W3032647360 cites W2128185535 @default.
- W3032647360 cites W2131212415 @default.
- W3032647360 cites W2135542826 @default.
- W3032647360 cites W2141701272 @default.
- W3032647360 cites W2144288697 @default.
- W3032647360 cites W2149778524 @default.
- W3032647360 cites W2156706175 @default.
- W3032647360 cites W2163473032 @default.
- W3032647360 cites W2172318246 @default.
- W3032647360 cites W2176563895 @default.
- W3032647360 cites W2189070986 @default.
- W3032647360 cites W2211891236 @default.
- W3032647360 cites W2298170590 @default.
- W3032647360 cites W2329825122 @default.
- W3032647360 cites W2407979340 @default.
- W3032647360 cites W2463734342 @default.
- W3032647360 cites W2499096286 @default.
- W3032647360 cites W2511808871 @default.
- W3032647360 cites W2511854438 @default.
- W3032647360 cites W2514899874 @default.
- W3032647360 cites W2520628123 @default.
- W3032647360 cites W2525984666 @default.
- W3032647360 cites W2556996564 @default.
- W3032647360 cites W2567465595 @default.
- W3032647360 cites W2577347944 @default.
- W3032647360 cites W2579129208 @default.
- W3032647360 cites W2587665093 @default.
- W3032647360 cites W2603054283 @default.
- W3032647360 cites W2608040615 @default.
- W3032647360 cites W2609933870 @default.
- W3032647360 cites W2611805954 @default.
- W3032647360 cites W2738800716 @default.
- W3032647360 cites W2761183928 @default.
- W3032647360 cites W2763355946 @default.
- W3032647360 cites W2764124554 @default.
- W3032647360 cites W2793323194 @default.
- W3032647360 cites W2803127474 @default.
- W3032647360 cites W2803916235 @default.
- W3032647360 cites W2806074443 @default.
- W3032647360 cites W2806653486 @default.
- W3032647360 cites W2885906446 @default.
- W3032647360 cites W2886401769 @default.
- W3032647360 cites W2890036205 @default.
- W3032647360 cites W2894914686 @default.
- W3032647360 cites W2899267594 @default.
- W3032647360 cites W2906770153 @default.
- W3032647360 cites W2911060328 @default.
- W3032647360 cites W2913702059 @default.
- W3032647360 cites W2914003668 @default.
- W3032647360 cites W2932197053 @default.
- W3032647360 cites W2977860782 @default.
- W3032647360 cites W2978934519 @default.
- W3032647360 cites W2982446497 @default.
- W3032647360 cites W3000395313 @default.
- W3032647360 cites W4249760698 @default.
- W3032647360 cites W774553903 @default.
- W3032647360 doi "https://doi.org/10.1097/rli.0000000000000678" @default.
- W3032647360 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32487969" @default.
- W3032647360 hasPublicationYear "2020" @default.
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