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PMID: 37644163 Published · ppublish English Journal Article

Association between resistance to cerebrospinal fluid flow and cardiac-induced brain tissue motion for Chiari malformation type I.

Neuroradiology ·Vol. 65 ·No. 10 ·2023-10-00 ·页码 1535-1543

Mohsenian S, Ibrahimy A, Al Samman MMF, Oshinski JN, Bhadelia RA, Barrow DL, Allen PA, Amini R, Loth F

Abstract

Chiari malformation type I (CMI) patients have been independently shown to have both increased resistance to cerebrospinal fluid (CSF) flow in the cervical spinal canal and greater cardiac-induced neural tissue motion compared to healthy controls. The goal of this paper is to determine if a relationship exists between CSF flow resistance and brain tissue motion in CMI subjects. Computational fluid dynamics (CFD) techniques were employed to compute integrated longitudinal impedance (ILI) as a measure of unsteady resistance to CSF flow in the cervical spinal canal in thirty-two CMI subjects and eighteen healthy controls. Neural tissue motion during the cardiac cycle was assessed using displacement encoding with stimulated echoes (DENSE) magnetic resonance imaging (MRI) technique. The results demonstrate a positive correlation between resistance to CSF flow and the maximum displacement of the cerebellum for CMI subjects (r = 0.75, p = 6.77 × 10-10) but not for healthy controls. No correlation was found between CSF flow resistance and maximum displacement in the brainstem for CMI or healthy subjects. The magnitude of resistance to CSF flow and maximum cardiac-induced brain tissue motion were not statistically different for CMI subjects with and without the presence of five CMI symptoms: imbalance, vertigo, swallowing difficulties, nausea or vomiting, and hoarseness. This study establishes a relationship between CSF flow resistance in the cervical spinal canal and cardiac-induced brain tissue motion in the cerebellum for CMI subjects. Further research is necessary to understand the importance of resistance and brain tissue motion in the symptomatology of CMI.

Keywords
Chiari malformation type I Computational fluid dynamics techniques Displacement encoding with stimulated echoes Integrated longitudinal impedance
MeSH 主题词
Humans Arnold-Chiari Malformation/diagnostic imaging Brain/diagnostic imaging Cerebellum Brain Stem Healthy Volunteers
作者与单位
共 9 位作者,点击展开单位 / ORCID
Mohsenian Saeed ORCID
Department of Bioengineering, Northeastern University, 360 Huntington Ave, Boston, MA, 02115, USA. [email protected].
Ibrahimy Alaaddin
Department of Biomedical Engineering, Yale University, 17 Hillhouse Ave, New Haven, CT, 06520, USA.
Al Samman Mohamad Motaz F
Department of Bioengineering, Northeastern University, 360 Huntington Ave, Boston, MA, 02115, USA.
Oshinski John N
Departments of Radiology & Imaging Sciences and Biomedical Engineering, Emory University School of Medicine, 1364 Clifton Road NE, Atlanta, GA, 30322, USA.
Bhadelia Rafeeque A
Department of Radiology, Beth Israel Deaconess Medical Center & Harvard University School of Medicine, 330 Brookline Ave, Boston, MA, 02215, USA.
Barrow Daniel L
Department of Neurosurgery, Emory University School of Medicine, 1364 Clifton Road NE, Atlanta, GA, 30322, USA.
Allen Philip A
Department of Psychology, The University of Akron, 302 E Buchtel Ave, Akron, OH, 44325, USA.
Amini Rouzbeh
Departments of Mechanical and Industrial Engineering, and Bioengineering, Northeastern University, 805 Columbus Ave, ISEC 508, Boston, MA, 02120, USA.
Loth Francis
Departments of Mechanical and Industrial Engineering, and Bioengineering, Northeastern University, 360 Huntington Ave, SN 257, Boston, MA, 02115, USA.
Article Info
Journal
Neuroradiology
Abbr.
Neuroradiology
ISSN
1432-1920
Corresponding email
Published
2023-10-00
电子出版
2023-00-30
页码
1535-1543
Language
English
Country/Region
Germany
NLM ID
1302751
基金资助
NINDS NIH HHS · R15 NS109957 · United States
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