Three-dimensional visualization of intracranial tumors with cortical surface and vasculature from routine MR sequences.

The simultaneous three-dimensional (3D) visualization of intracranial tumors, brain structures, skull, and vessels is desired by neurosurgeons to create a clear mental picture of the anatomical orientation of the surgical field prior to the surgical intervention. Different anatomical and pathologica...

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Publicado en:Neurology India Vol. 65; no. 2; pp. 333 - 341
Autores principales: Neyaz, Zafar, Phadke, Rajendra V., Singh, Vivek, Godbole, Chaitanya
Formato: Journal Article
Publicado: Wolters Kluwer India Pvt Ltd Mar/Apr2017
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Mar/Apr2017
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      pub: Wolters Kluwer India Pvt Ltd
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        10.4103/neuroindia.NI_1167_16
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        atl: Three-dimensional visualization of intracranial tumors with cortical surface and vasculature from routine MR sequences.
      aug:
        au:
          Neyaz, Zafar
          Phadke, Rajendra V.
          Singh, Vivek
          Godbole, Chaitanya
        affil: Departments of Radiodiagnosis, Sanjay Gandhi Post Graduate Institute of Medical Sciences, Lucknow, Uttar Pradesh, India
      sug:
        subj:
          Neurosurgery Methods
          Brain Neoplasms
          Image Processing, Computer Assisted Methods
          Blood Vessels
          Imaging, Three-Dimensional Methods
          Cerebral Cortex
          Magnetic Resonance Imaging Methods
          Clinical Assessment Tools
      ab: The simultaneous three-dimensional (3D) visualization of intracranial tumors, brain structures, skull, and vessels is desired by neurosurgeons to create a clear mental picture of the anatomical orientation of the surgical field prior to the surgical intervention. Different anatomical and pathological components are usually visualized separately on different magnetic resonance (MR) sequences; however, during surgery, they are tackled simultaneously. Another problem is that most present day MR workstations enable review of two-dimensional (2D) slices only with limited postprocessing options. With recent software developments, a simultaneous 3D visualization simulating the real surgical field is possible using commercial or open source softwares. The authors have reviewed the important concepts and described a technique of interactive 3D visualization from routine 3D T1-weighted, MR angiography, and MR venography sequences using open source FSL (Functional MRI of the brain software library) and BrainSuite softwares.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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