File:Brain ventricles and ganglia development 01.jpg
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Brain, Ventricles and Ganglia Development
Three-dimensional reconstruction of the basal ganglia and ganglionic eminence (bottom row of a), ventricle (middle row of a), and whole brain (top row of a).
- gray - whole brain
- pink - ventricle
- red - ganglionic eminence
- cyan - putamen and globus pallidus together
- yellow - thalamus
- green - caudate nucleus
Original File Name: Figure 9
Diffusion tensor imaging (DTI) A newly developed form of magnetic resonance imaging (MRI). Magnetic field variations of the MRI magnet are applied in at least six different directions generating a three dimensional shape of the diffusion pattern. This technique can be used in neural imaging of white matter due to the orientation of axon bundles and the associated water flow. (More? Magnetic Resonance Imaging)
- Neural DTI Links: Scaled Fissures 13-21 weeks | Fissures 13-21 weeks | Brain Sylvian Fissure | Scaled Brain and Ventricles 13-21 weeks | Scaled Brain, Ventricles and Ganglia 13-21 weeks | Limbic Tract 13-19 weeks | Brain and Ventricles 13-21 weeks | Sylvian Fissure Movie | Neural System Development | Magnetic Resonance Imaging
Huang H, Xue R, Zhang J, Ren T, Richards LJ, Yarowsky P, Miller MI & Mori S. (2009). Anatomical characterization of human fetal brain development with diffusion tensor magnetic resonance imaging. J. Neurosci. , 29, 4263-73. PMID: 19339620 DOI.
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Cite this page: Hill, M.A. (2021, April 17) Embryology Brain ventricles and ganglia development 01.jpg. Retrieved from https://embryology.med.unsw.edu.au/embryology/index.php/File:Brain_ventricles_and_ganglia_development_01.jpg
- © Dr Mark Hill 2021, UNSW Embryology ISBN: 978 0 7334 2609 4 - UNSW CRICOS Provider Code No. 00098G
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|current||11:25, 27 August 2010||994 × 564 (45 KB)||S8600021||==Brain, Ventricles and Ganglia Development== Three-dimensional reconstruction of the basal ganglia and ganglionic eminence (bottom row of a), ventricle (middle row of a), and whole brain (top row of a). Different colors represent different brain struct|