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Titlebook: 3D Contrast MR Angiography; Martin R. Prince,Thomas M. Grist,J?rg F. Debatin Book 19992nd edition Springer-Verlag Berlin Heidelberg 1999 A

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期刊全稱3D Contrast MR Angiography
影響因子2023Martin R. Prince,Thomas M. Grist,J?rg F. Debatin
視頻videohttp://file.papertrans.cn/101/100707/100707.mp4
圖書封面Titlebook: 3D Contrast MR Angiography;  Martin R. Prince,Thomas M. Grist,J?rg F. Debatin Book 19992nd edition Springer-Verlag Berlin Heidelberg 1999 A
影響因子Non-invasive, high resolution contrast arteriography without arte rial catheterization or nephrotoxicity is now possible. It is accomplished by using paramagnetic contrast and an MR scanner. Paramagnetic contrast media is injected intravenously and image data are collected as the con- trast circulates through the vascular territory of interest. Due to the strong enhancement effect of paramagnetic contrast media, a small dose injected as an intravenous bolus is sufficient to briefly enhance the entire arterial vascular tree. This allows imaging with a large field-of-view that encompasses an extensive region of vascular anatomy. By using a 3D gradient echo pulse sequence on magnets with high performance gra- dient systems, high resolution 3D volumes of image data are acquired in a single breath-hold. This has vastly improved image quality of 3D con- trast MRA exams, particularly in the chest and abdomen. Subsequent post-processing allows an angiographic display of image data in any desired obliquity. The success of this technique is reflected by its incorporation into clinical practice in centers throughout the world. It has been applied to multiple vascular territories, using variou
Pindex Book 19992nd edition
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Hypoglycemia: An Endocrine Emergencycarotid arterial disease. Patients with peripheral vascular disease (PVD) may present with an acute limb threatening event, a chronically threatened limb (i.e., rest pain, tissue loss, and ulceration), or claudication.
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https://doi.org/10.1007/978-1-84800-358-3aramagnetic contrast and an MR scanner. Paramagnetic contrast media is injected intravenously and image data are collected as the contrast circulates through the vascular territory of interest. Due to the strong enhancement effect of paramagnetic contrast media, a small dose injected as an intraveno
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Anthony A. Bavry,Deepak L. Bhattse ratio and eliminating flow artifacts. Paramagnetic contrast agents shorten the T1 relaxation time of spins in the immediate vicinity of the paramagnetic molecules. Gadolinium is the most commonly used paramagnetic substance because of its high relaxivity and favorable safety profile when bound to
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