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The visual white matter connecting human area prostriata and the thalamus is retinotopically organized
by
Mikellidou Kyriaki
, Pestilli Franco
, Kurzawski, Jan W
, Morrone, Maria Concetta
in
Eye
/ Functional magnetic resonance imaging
/ Information processing
/ Lateral geniculate nucleus
/ Myelin
/ Parieto-occipital sulcus
/ Retina
/ Substantia alba
/ Thalamus
/ Ventricle
/ Ventricles (cerebral)
/ Visual field
/ Visual system
2020
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The visual white matter connecting human area prostriata and the thalamus is retinotopically organized
by
Mikellidou Kyriaki
, Pestilli Franco
, Kurzawski, Jan W
, Morrone, Maria Concetta
in
Eye
/ Functional magnetic resonance imaging
/ Information processing
/ Lateral geniculate nucleus
/ Myelin
/ Parieto-occipital sulcus
/ Retina
/ Substantia alba
/ Thalamus
/ Ventricle
/ Ventricles (cerebral)
/ Visual field
/ Visual system
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
The visual white matter connecting human area prostriata and the thalamus is retinotopically organized
by
Mikellidou Kyriaki
, Pestilli Franco
, Kurzawski, Jan W
, Morrone, Maria Concetta
in
Eye
/ Functional magnetic resonance imaging
/ Information processing
/ Lateral geniculate nucleus
/ Myelin
/ Parieto-occipital sulcus
/ Retina
/ Substantia alba
/ Thalamus
/ Ventricle
/ Ventricles (cerebral)
/ Visual field
/ Visual system
2020
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The visual white matter connecting human area prostriata and the thalamus is retinotopically organized
Journal Article
The visual white matter connecting human area prostriata and the thalamus is retinotopically organized
2020
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Overview
The human visual system is capable of processing visual information from fovea to the far peripheral visual field. Recent fMRI studies have shown a full and detailed retinotopic map in area prostriata, located ventro-dorsally and anterior to the calcarine sulcus along the parieto-occipital sulcus with strong preference for peripheral and wide-field stimulation. Here, we report the anatomical pattern of white matter connections between area prostriata and the thalamus encompassing the lateral geniculate nucleus (LGN). To this end, we developed and utilized an automated pipeline comprising a series of Apps that run openly on the cloud computing platform brainlife.io to analyse 139 subjects of the Human Connectome Project (HCP). We observe a continuous and extended bundle of white matter fibers from which two subcomponents can be extracted: one passing ventrally parallel to the optic radiations (OR) and another passing dorsally circumventing the lateral ventricle. Interestingly, the loop travelling dorsally connects the thalamus with the central visual field representation of prostriata located anteriorly, while the other loop travelling more ventrally connects the LGN with the more peripheral visual field representation located posteriorly. We then analyse an additional cohort of 10 HCP subjects using a manual plane extraction method outside brainlife.io to study the relationship between the two extracted white matter subcomponents and eccentricity, myelin and cortical thickness gradients within prostriata. Our results are consistent with a retinotopic segregation recently demonstrated in the OR, connecting the LGN and V1 in humans and reveal for the first time a retinotopic segregation regarding the trajectory of a fiber bundle between the thalamus and an associative visual area.
Publisher
Springer Nature B.V
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