Anatomical and biomechanical similarity in intracranial environment in identical twins with external hydrocephalus
Identical twins who both presented with progressively enlarging heads in their first year of life are reported. Neuroimaging demonstrated morphological similarities in the cerebral cortex. The CSF space, including ventricular system, and subarachnoid space were dilated, suggesting external hydroceph...
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Published in: | Child's nervous system Vol. 13; no. 11-12; pp. 633 - 635 |
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Main Authors: | , |
Format: | Journal Article |
Language: | English |
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Berlin
Springer
01-11-1997
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Abstract | Identical twins who both presented with progressively enlarging heads in their first year of life are reported. Neuroimaging demonstrated morphological similarities in the cerebral cortex. The CSF space, including ventricular system, and subarachnoid space were dilated, suggesting external hydrocephalus. Cerebral blood flow velocity in the anterior cerebral artery monitored by Doppler sonogram indicated the two had similar flow patterns and velocities. Simultaneous recording of ICP waves and intracranial biomechanical properties, that is, pressure buffering capacity (pressure volume index: PVI) and CSF outflow resistance (Ro) measured by the bolus saline injection technique, objectively indicated that all these biomechanical factors were also quite similar in the twins. These results indicate that identical twins with external hydrocephalus have very similar intracranial environments, both anatomically and biomechanically. |
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AbstractList | Identical twins who both presented with progressively enlarging heads in their first year of life are reported. Neuroimaging demonstrated morphological similarities in the cerebral cortex. The CSF space, including ventricular system, and subarachnoid space were dilated, suggesting external hydrocephalus. Cerebral blood flow velocity in the anterior cerebral artery monitored by Doppler sonogram indicated the two had similar flow patterns and velocities. Simultaneous recording of ICP waves and intracranial biomechanical properties, that is, pressure buffering capacity (pressure volume index: PVI) and CSF outflow resistance (Ro) measured by the bolus saline injection technique, objectively indicated that all these biomechanical factors were also quite similar in the twins. These results indicate that identical twins with external hydrocephalus have very similar intracranial environments, both anatomically and biomechanically. |
Author | SATO, K WACHI, A |
Author_xml | – sequence: 1 givenname: A surname: WACHI fullname: WACHI, A organization: Department of Neurosurgery, Tokyo Metropolitan Health and Medical Treatment Corporation, Tamananbu Regional Hospital, 2-1-2, Nakazawa, Tama City, Tokyo, Japan – sequence: 2 givenname: K surname: SATO fullname: SATO, K organization: Department of Neurosurgery, Juntendo University, 2-1-1 Hongo, Bunkyo-Ku, Tokyo, Japan |
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Keywords | Human Nervous system diseases Exploration Intracranial pressure Nuclear magnetic resonance imaging Cerebral disorder Twin Case study Central nervous system disease External Medical imagery Hydrocephaly Child |
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SubjectTerms | Biological and medical sciences Biomechanical Phenomena Blood Flow Velocity - physiology Cerebrospinal fluid. Meninges. Spinal cord Cerebrovascular Circulation - physiology Child, Preschool Diseases in Twins Humans Hydrocephalus - diagnostic imaging Hydrocephalus - pathology Hydrocephalus - physiopathology Intracranial Pressure - physiology Magnetic Resonance Imaging Male Medical sciences Nervous system (semeiology, syndromes) Neurology Tomography, X-Ray Computed Twins, Monozygotic |
Title | Anatomical and biomechanical similarity in intracranial environment in identical twins with external hydrocephalus |
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