Three-Dimensional Printed Brain Model of a Patient With Alexia Without Agraphia Syndrome

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Title Three-Dimensional Printed Brain Model of a Patient With Alexia Without Agraphia Syndrome
Creator A. R. Pascoe; S. Raviskanthan; P. W. Mortensen; A. G. Lee
Affiliation Department of Ophthalmology (ARP, AGL), University of Texas Medical Branch, Galveston, Texas; Department of Ophthalmology (SR, PWM, AGL), Blanton Eye Institute, Houston Methodist Hospital, Houston, Texas; Departments of Ophthalmology, Neurology, and Neurosurgery (AGL), Weill Cornell Medicine, New York, New York; University of Texas MD Anderson Cancer Center (AGL), Houston, Texas; Texas A and M College of Medicine (AGL), Bryan, Texas; and Department of Ophthalmology (AGL), The University of Iowa Hospitals and Clinics, Iowa City, Iowa
Abstract A 64-year-old woman presented with acute painless bilateral vision loss. She had well-controlled psoriatic arthritis, but the remainder of her past ocular, surgical, and family histories were noncontributory.
Subject Vision Loss; Bilateral Vision Loss
OCR Text Show
Date 2023-06
Date Digital 2023-06
References 1. Caffarra P. Alexia without agraphia or hemianopia. Eur Neurol. 1987;27:65-71. 2. Marti-Massó J, Astudillo A, Obeso J, Carrera N, de la Puente E. Alexia sin agrafia, hemianopsia homónima derecha y anomia de colores. A propósito de cuatro observaciones con topografía conocida mediante TAC craneal [Alexia without agraphia, right homonymous hemianopsia, and color anomia. Report of four cases with location of the lesion by computerized axial tomography of the brain (author's transl)]. Med Clin (Barc). 1981;77:64-68. 3. Quint DJ, Gilmore JL. Alexia without agraphia. Neuroradiology. 1992;34:210-214.4. Rupareliya C, Naqvi S, Hejazi S. Alexia without agraphia: a rare entity. Cureus. 2017;9:e1304. 5. Weisberg LA, Wall M. Alexia without agraphia: clinical-computed tomographic correlations. Neuroradiology. 1987;29:283-286. 6. Ogdie A, McGill N, Shin D, Takeshita J, Love T, Noe M, Chiesa Fuxench ZC, Choi HK, Mehta NN, Gelfand JM. Risk of venous thromboembolism inpatients with psoriatic arthritis, psoriasisand rheumatoid arthritis: a general population-based cohort study. Eur Heart J. 2018;39:3608-3614. 7. Virupannavar S, Brandau A, Guggenheim C, Laird-Fick H. Possible association of etanercept, venous thrombosis, and induction of antiphospholipid syndrome. Case Rep Rheumatol. 2014;2014:801072. 8. Toth L, Schiffer A, Nyitrai M, Pentek A, Told R, Maroti P. Developing an anti-spastic orthosis for daily home-use of stroke patients using smart memory alloys and 3D printing technologies. Mater Des. 2020;195:109029. 9. Thiong'o GM, Bernstein M, Drake JM. 3D printing in neurosurgery education: a review. 3D Print Med. 2021;7:9. 10. Weinstock P, Prabhu SP, Flynn K, Orbach DB, Smith E. Optimizing cerebrovascular surgical and endovascular procedures in children via personalized 3D printing. J Neurosurg Pediatr. 2015;16:584-589. 11. Dho YS, Lee D, Ha T, Ji SY, Kim KM, Kang H, Kim MS, Kim JW, Cho WS, Kim YH, Kim YG, Park SJ, Park CK. Clinical application of patient-specific 3D printing brain tumor model production system for neurosurgery. Sci Rep. 2021;11:7005. 12. Biglino G, Capelli C, Wray J, Schievano S, Leaver L, Khambadkone S, Giardini A, Derrick G, Jones A, Taylor AM. 3D-manufactured patient-specific models of congenital heart defects for communication in clinical practice: feasibility and acceptability. BMJ Open. 2015;5:e007165.
Language eng
Format application/pdf
Type Text
Publication Type Journal Article
Source Journal of Neuro-Ophthalmology, June 2023, Volume 43, Issue 2
Collection Neuro-Ophthalmology Virtual Education Library: Journal of Neuro-Ophthalmology Archives: https://novel.utah.edu/jno/
Publisher Lippincott, Williams & Wilkins
Holding Institution Spencer S. Eccles Health Sciences Library, University of Utah
Rights Management © North American Neuro-Ophthalmology Society
ARK ark:/87278/s6x57mb2
Setname ehsl_novel_jno
ID 2498930
Reference URL https://collections.lib.utah.edu/ark:/87278/s6x57mb2
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