Initial Experience With Automated 3D Color Flow Quantification of Mitral Regurgitation. [PDF]
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Comparative performance of mitral E/e' versus inferior vena cava variability for predicting fluid responsiveness in mechanically ventilated adults with shock. [PDF]
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Inner ear high signal on non‑contrast 3D FLAIR imaging in patients with cerebrospinal fluid leaks: Association with dural/subdural changes and with audiovestibular symptoms. [PDF]
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Influence of image preprocessing on reproducibility and longitudinal repeatability analysis of radiomics features in magnetic resonance image-guided accelerator imaging. [PDF]
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A case series of radiologically misdiagnosed visceral lymphatic malformations. [PDF]
Chen L, Hu P, Zhou Z.
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Quantification of mitral regurgitation: from traditional methods to artificial intelligence. [PDF]
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Vibration Analysis of MR Fluid Sandwich Plates and Identification of Optimal MR Fluids Treatments
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Fluid-Particle Separation of Magnetorheological (MR) Fluid in MR Machining Application
Key Engineering Materials, 2014The presented work is an investigation of fluid-particle separation phenomena and compression stress resistance performance of magnetorheological (MR) fluids under squeeze mode. The squeeze mode is very significant to MR machining application. Material used in this study was silicone oil based MR fluid with 20% volume fraction of carbonyl iron particle.
I. Ismail, Syarifah Nur Aqida
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MR features of fluid-fluid levels in ovarian masses
European Radiology, 2007To evaluate retrospectively the frequency and imaging features of fluid-fluid levels (FFLs) in pathologically proven ovarian masses on magnetic resonance (MR) images. The authors reviewed the preoperative MR findings of 556 ovarian masses in 428 patients. Presence, numbers, and signal intensities (SI) of FFLs were analyzed.
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MR Imaging of Body Fluid Collections
Journal of Computer Assisted Tomography, 1986To evaluate the potential of magnetic resonance (MR) to characterize body fluids in vivo, we determined the relaxation times and the relative MR signal intensities of 42 body fluid collections in 42 patients. Twelve normal volunteers served as controls. We also studied albumin solutions at different concentrations and blood at various periods in vitro.
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