Pages that link to "Q37382492"
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The following pages link to Identifying the human optic radiation using diffusion imaging and fiber tractography (Q37382492):
Displaying 50 items.
- Reconstruction and dissection of the entire human visual pathway using diffusion tensor MRI (Q21558416) (← links)
- Epilepsy surgery, vision, and driving: what has surgery taught us and could modern imaging reduce the risk of visual deficits? (Q26824757) (← links)
- Strengths and limitations of tractography methods to identify the optic radiation for epilepsy surgery (Q28087118) (← links)
- Preservation of the optic radiations based on comparative analysis of diffusion tensor imaging tractography and anatomical dissection (Q30404655) (← links)
- Optic radiation structure and anatomy in the normally developing brain determined using diffusion MRI and tractography. (Q30420741) (← links)
- Distinguishing and quantification of the human visual pathways using high-spatial-resolution diffusion tensor tractography (Q30826466) (← links)
- The visual white matter: The application of diffusion MRI and fiber tractography to vision science (Q30839298) (← links)
- Imaging retinotopic maps in the human brain (Q33652070) (← links)
- Bound pool fractions complement diffusion measures to describe white matter micro and macrostructure (Q33688661) (← links)
- Optimization of tractography of the optic radiations (Q33852449) (← links)
- Temporal lobe association fiber tractography as compared to histology and dissection (Q33887036) (← links)
- Axonal loss of retinal neurons in multiple sclerosis associated with optic radiation lesions (Q33961780) (← links)
- Evaluating contextual processing in diffusion MRI: application to optic radiation reconstruction for epilepsy surgery (Q33981843) (← links)
- Functional anatomy of subcortical circuits issuing from or integrating at the human brainstem (Q34067759) (← links)
- Quantitative volumetric analysis of the optic radiation in the normal human brain using diffusion tensor magnetic resonance imaging-based tractography. (Q34095581) (← links)
- Cortical maps and white matter tracts following long period of visual deprivation and retinal image restoration (Q34168786) (← links)
- Dissociable connectivity within human angular gyrus and intraparietal sulcus: evidence from functional and structural connectivity (Q34184664) (← links)
- Structural brain atlases: design, rationale, and applications in normal and pathological cohorts (Q34286629) (← links)
- White matter consequences of retinal receptor and ganglion cell damage. (Q34433605) (← links)
- Optic radiation fiber tractography in glioma patients based on high angular resolution diffusion imaging with compressed sensing compared with diffusion tensor imaging - initial experience (Q34907565) (← links)
- Magnetic resonance diffusion tensor imaging-based evaluation of optic-radiation shape and position in meningioma (Q35139404) (← links)
- Decoding diffusivity in multiple sclerosis: analysis of optic radiation lesional and non-lesional white matter. (Q35217105) (← links)
- DTI of the visual pathway - white matter tracts and cerebral lesions. (Q35256092) (← links)
- Disrupted fornix integrity in children with chromosome 22q11.2 deletion syndrome (Q35499123) (← links)
- Anatomic and electro-physiologic connectivity of the language system: a combined DTI-CCEP study (Q35570851) (← links)
- Diffusion tensor imaging tractography of the optic radiation for epilepsy surgical planning: a comparison of two methods (Q35571743) (← links)
- Probabilistic MRI tractography of the optic radiation using constrained spherical deconvolution: a feasibility study (Q35572352) (← links)
- Visual pathway study using in vivo diffusion tensor imaging tractography to complement classic anatomy. (Q35610176) (← links)
- Improved Framework for Tractography Reconstruction of the Optic Radiation (Q35777378) (← links)
- Ensemble Tractography (Q35914516) (← links)
- Progressive Injury in Chronic Multiple Sclerosis Lesions Is Gender-Specific: A DTI Study. (Q35931170) (← links)
- Extrastriate projections in human optic radiation revealed by fMRI-informed tractography (Q35995882) (← links)
- Semi-Automatic Segmentation of Optic Radiations and LGN, and Their Relationship to EEG Alpha Waves (Q36068832) (← links)
- Magnetic resonance diffusion tensor imaging and diffusion tensor tractography of human visual pathway (Q36192131) (← links)
- Optic Radiation Tractography and Visual Field Deficits in Laser Interstitial Thermal Therapy for Amygdalohippocampectomy in Patients with Mesial Temporal Lobe Epilepsy (Q36316821) (← links)
- Connectome imaging for mapping human brain pathways (Q36360149) (← links)
- Automated retinofugal visual pathway reconstruction with multi-shell HARDI and FOD-based analysis (Q36404938) (← links)
- Direct optic nerve pulvinar connections defined by diffusion MR tractography in humans: Implications for photophobia (Q37013244) (← links)
- White matter alterations at 33-year follow-up in adults with childhood attention-deficit/hyperactivity disorder (Q37038961) (← links)
- Defining Meyer's loop-temporal lobe resections, visual field deficits and diffusion tensor tractography. (Q37201414) (← links)
- White-matter tract abnormalities and antisocial behavior: A systematic review of diffusion tensor imaging studies across development (Q37614014) (← links)
- Afferent visual pathways in multiple sclerosis: a review. (Q38787395) (← links)
- Risk factors for neurological deficits after surgical treatment of brain arteriovenous malformations supplied by deep perforating arteries. (Q40458799) (← links)
- Stability metrics for optic radiation tractography: Towards damage prediction after resective surgery (Q41197920) (← links)
- Tractography of the optic radiation: a repeatability and reproducibility study (Q41374963) (← links)
- Plasticity and stability of the visual system in human achiasma (Q42321218) (← links)
- Occipital White Matter Tracts in Human and Macaque (Q46391659) (← links)
- Altered white matter structure in the visual system following early monocular enucleation (Q48090498) (← links)
- Progression of retinal ganglion cell loss in multiple sclerosis is associated with new lesions in the optic radiations. (Q48158244) (← links)
- Active delineation of Meyer's loop using oriented priors through MAGNEtic tractography (MAGNET). (Q48504019) (← links)