By Thomas P. Naidich, Henri M. Duvernoy, Bradley N. Delman, A. Gregory Sorensen, Spyros S. Kollias, E. Mark Haacke
Advanced MRI calls for complex wisdom of anatomy. This quantity correlates thin-section mind anatomy with corresponding scientific three T MR photographs in axial, coronal and sagittal planes to illustrate the anatomic bases for complicated MR imaging. It in particular correlates complicated neuromelanin imaging, susceptibility-weighted imaging, and diffusion tensor tractography with scientific three and four T MRI to demonstrate definitely the right nuclear and fiber tract anatomy imaged via those strategies. every one quarter of the mind stem is then analyzed with 9.4 T MRI to teach the anatomy of the medulla, pons, midbrain, and parts of the diencephalonin with an in-plane answer corresponding to myelin- and Nissl-stained mild microscopy (40-60 microns). the quantity is thoroughly equipped as a instructing textual content, utilizing concise drawings and lovely anatomic/MRI photographs to provide the knowledge in sequentially finer aspect, so the reader simply assimilates the relationships one of the buildings proven by means of high-field MRI.
Read or Download Duvernoy’s Atlas of the Human Brain Stem and Cerebellum: High-Field MRI: Surface Anatomy, Internal Structure, Vascularization and 3D Sectional Anatomy PDF
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Additional resources for Duvernoy’s Atlas of the Human Brain Stem and Cerebellum: High-Field MRI: Surface Anatomy, Internal Structure, Vascularization and 3D Sectional Anatomy
The superior vermis rises above the cerebellar hemispheres, while the inferior vermis is deeply embedded within the posterior cerebellar notch and the vallecula. 26 1 1’ 2 3 3’ 4 5 6 7 8 9 Culmen Quadrangular lobule Postcentral fissure Central lobule Ala of the central lobule Lingula Superior medullary velum Anterior superior (primary) fissure Simple lobule Posterior superior fissure Superior semilunar lobule SURFACE ANATOMY OF THE BRAIN STEM AND CEREBELLUM B 10 11 12 13 14 15 15’ 16 17, 17’ 18 18’ Great horizontal fissure Inferior semilunar lobule Prepyramidal fissure Biventral lobule Postpyramidal fissure (secondary fissure) Uvula Tonsil Vallecula Posterolateral fissure Nodulus Flocculus 18” 19 20 21 22 23 Paraflocculus Brachium of the flocculus (peduncle of the flocculus) and inferior medullary velum Middle cerebellar peduncle (brachium pontis) Fastigial sulcus Superior portion of the ventricular roof (median vermian portion) Superior portion of the ventricular roof (lateral hemispheric portion) 27 SECTION I Fig.
24. The roof of the inferior fourth ventricle. Diagram of a median section. The inferior portion of the roof is a thin wall made up of two layers: 1 2 Tectorial membrane (ependyma) Medullary layer of the inferior tela choroidea The inferior tela choroidea itself is composed of two pial layers: a medullary (2) and a cerebellar (2’ ) layer. These layers of the tela choroidea delimit the cerebellomedullary cistern (cisterna magna) (4), which is completed posteriorly by the arachnoid mater (5). The arrow indicates the median aperture of the roof (foramen of Magendie), which communicates the ventricular cavity with the subarachnoid spaces.
6 Obex 7–8 The paired intraventricular choroid plexi are seen through the transparent tela choroidea. On each side the choroid plexus is formed by a vertical limb (7) and a transverse limb (8) which passes through the lateral aperture and exits from the ventricle to enter the cerebellopontine angle (See Figs. 28). The portions of the choroid plexi that protrude into the subarachnoid space are called the extraventricular choroid plexi. 9 Posterior inferior cerebellar arteries 41 SECTION I Fig. 26.