Imaging of Trabecular Microfracture and Bone Marrow Edema and Hemorrhage / by Yong-Whee Bahk
Por: Bahk, Yong-Whee
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Tipo de material:
E-bookSeries Editor: Singapoure : Springer International Publishing Imprint: Springer, 2020Edición: 1st ed. 2020.Descripción: 1 recurso en línea (I-XVII, 146 páginas) : ilustraciones a color.ISBN: 9789811544668.Recursos en línea: Acceso a este recurso digital (usuarios Universidad Europea de Valencia)
Resumen: This excellently illustrated monograph summarizes the updated fresh information on the theoretical, practical, and rapidly extended facets of gamma correction 99mTc-hydroxymethylene diphosphonate pinhole bone scan (99mTc-GCPBS) to MRI, CR, and MDCT. Basically, 99mTc-GCPBS is able to precisely visualize and quantitate callused trabecular microfracture (CTMF) which is as little as 200 μm in size. The extended gamma correction images can very neatly demonstrate CTMF on MRI, conventional radiography (CR), and multidetector computed tomography (MDCT). Whenever appropriate, histological correlation is provided in conjunction with fine gamma corrected images. In this setting, ACDSee 10 gamma correction MRI and CR have been found to offer a highly useful option that deserves wider clinical interest. In practice, gamma correction MRI, CR, and MDCT can distinctly visualize CTMF so that CTMF can be precisely measured simply using an optic lens. By comparison, the naïve MRI, for example, shows CTMF which measures as big as 2 mm in size. Furthermore, 99mTc-GCPBS can now differentiate bone marrow edema from hemorrhage using the visuospatial mathematic method, which includes the ImageJ of the NIH.
| Tipo de ítem | Biblioteca actual | Colección | Signatura topográfica | Estado | Fecha de vencimiento | Código de barras | Reserva de ítems | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
|
Valencia Digital Acceso Electrónico (UEV) | Ciencias de la Salud | RC645.7 .B34 2020 EB (Navegar estantería(Abre debajo)) | Acceso electrónico |
Navegando Valencia Digital estanterías, Ubicación en estantería: Acceso Electrónico (UEV) Cerrar el navegador de estanterías (Oculta el navegador de estanterías)
| RC644 .P74 2018 EB Precision Molecular Pathology of Liver Cancer | RC644 .P743 2018 EB Precision Molecular Pathology of Hodgkin Lymphoma | RC645 .B66 2020 EB Bone Marrow Biopsy Pathology A Practical Guide | RC645.7 .B34 2020 EB Imaging of Trabecular Microfracture and Bone Marrow Edema and Hemorrhage | RC645.7 .B66 2018 EB Atlas of Bone Marrow Pathology | RC645.7 .B66 2018 EB Bone Marrow Failure | RC645.7 .D53 2018 EB Diagnosis of Blood and Bone Marrow Disorders |
This excellently illustrated monograph summarizes the updated fresh information on the theoretical, practical, and rapidly extended facets of gamma correction 99mTc-hydroxymethylene diphosphonate pinhole bone scan (99mTc-GCPBS) to MRI, CR, and MDCT. Basically, 99mTc-GCPBS is able to precisely visualize and quantitate callused trabecular microfracture (CTMF) which is as little as 200 μm in size. The extended gamma correction images can very neatly demonstrate CTMF on MRI, conventional radiography (CR), and multidetector computed tomography (MDCT). Whenever appropriate, histological correlation is provided in conjunction with fine gamma corrected images. In this setting, ACDSee 10 gamma correction MRI and CR have been found to offer a highly useful option that deserves wider clinical interest. In practice, gamma correction MRI, CR, and MDCT can distinctly visualize CTMF so that CTMF can be precisely measured simply using an optic lens. By comparison, the naïve MRI, for example, shows CTMF which measures as big as 2 mm in size. Furthermore, 99mTc-GCPBS can now differentiate bone marrow edema from hemorrhage using the visuospatial mathematic method, which includes the ImageJ of the NIH.
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