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Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis

BACKGROUND: Chiari malformation, functional cranial settling and subtle forms of basilar invagination result in biomechanical neuraxial stress, manifested by bulbar symptoms, myelopathy and headache or neck pain. Finite element analysis is a means of predicting stress due to load, deformity and stra...

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Autores principales: Henderson, Fraser C., Wilson, William A., Mott, Stephen, Mark, Alexander, Schmidt, Kristi, Berry, Joel K., Vaccaro, Alexander, Benzel, Edward
Formato: Texto
Lenguaje:English
Publicado: Medknow Publications 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2940090/
https://www.ncbi.nlm.nih.gov/pubmed/20847911
http://dx.doi.org/10.4103/2152-7806.66461
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author Henderson, Fraser C.
Wilson, William A.
Mott, Stephen
Mark, Alexander
Schmidt, Kristi
Berry, Joel K.
Vaccaro, Alexander
Benzel, Edward
author_facet Henderson, Fraser C.
Wilson, William A.
Mott, Stephen
Mark, Alexander
Schmidt, Kristi
Berry, Joel K.
Vaccaro, Alexander
Benzel, Edward
author_sort Henderson, Fraser C.
collection PubMed
description BACKGROUND: Chiari malformation, functional cranial settling and subtle forms of basilar invagination result in biomechanical neuraxial stress, manifested by bulbar symptoms, myelopathy and headache or neck pain. Finite element analysis is a means of predicting stress due to load, deformity and strain. The authors postulate linkage between finite element analysis (FEA)-predicted biomechanical neuraxial stress and metrics of neurological function. METHODS: A prospective, Internal Review Board (IRB)-approved study examined a cohort of 5 children with Chiari I malformation or basilar invagination. Standardized outcome metrics were used. Patients underwent suboccipital decompression where indicated, open reduction of the abnormal clivo-axial angle or basilar invagination to correct ventral brainstem deformity, and stabilization/ fusion. FEA predictions of neuraxial preoperative and postoperative stress were correlated with clinical metrics. RESULTS: Mean follow-up was 32 months (range, 7-64). There were no operative complications. Paired t tests/ Wilcoxon signed-rank tests comparing preoperative and postoperative status were statistically significant for pain, bulbar symptoms, quality of life, function but not sensorimotor status. Clinical improvement paralleled reduction in predicted biomechanical neuraxial stress within the corticospinal tract, dorsal columns and nucleus solitarius. CONCLUSION: The results are concurrent with others, that normalization of the clivo-axial angle, fusion-stabilization is associated with clinical improvement. FEA computations are consistent with the notion that reduction of deformative stress results in clinical improvement. This pilot study supports further investigation in the relationship between biomechanical stress and central nervous system (CNS) function.
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spelling pubmed-29400902010-09-16 Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis Henderson, Fraser C. Wilson, William A. Mott, Stephen Mark, Alexander Schmidt, Kristi Berry, Joel K. Vaccaro, Alexander Benzel, Edward Surg Neurol Int Original Article BACKGROUND: Chiari malformation, functional cranial settling and subtle forms of basilar invagination result in biomechanical neuraxial stress, manifested by bulbar symptoms, myelopathy and headache or neck pain. Finite element analysis is a means of predicting stress due to load, deformity and strain. The authors postulate linkage between finite element analysis (FEA)-predicted biomechanical neuraxial stress and metrics of neurological function. METHODS: A prospective, Internal Review Board (IRB)-approved study examined a cohort of 5 children with Chiari I malformation or basilar invagination. Standardized outcome metrics were used. Patients underwent suboccipital decompression where indicated, open reduction of the abnormal clivo-axial angle or basilar invagination to correct ventral brainstem deformity, and stabilization/ fusion. FEA predictions of neuraxial preoperative and postoperative stress were correlated with clinical metrics. RESULTS: Mean follow-up was 32 months (range, 7-64). There were no operative complications. Paired t tests/ Wilcoxon signed-rank tests comparing preoperative and postoperative status were statistically significant for pain, bulbar symptoms, quality of life, function but not sensorimotor status. Clinical improvement paralleled reduction in predicted biomechanical neuraxial stress within the corticospinal tract, dorsal columns and nucleus solitarius. CONCLUSION: The results are concurrent with others, that normalization of the clivo-axial angle, fusion-stabilization is associated with clinical improvement. FEA computations are consistent with the notion that reduction of deformative stress results in clinical improvement. This pilot study supports further investigation in the relationship between biomechanical stress and central nervous system (CNS) function. Medknow Publications 2010-07-16 /pmc/articles/PMC2940090/ /pubmed/20847911 http://dx.doi.org/10.4103/2152-7806.66461 Text en © 2010 Henderson FC. http://creativecommons.org/licenses/by/2.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Original Article
Henderson, Fraser C.
Wilson, William A.
Mott, Stephen
Mark, Alexander
Schmidt, Kristi
Berry, Joel K.
Vaccaro, Alexander
Benzel, Edward
Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis
title Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis
title_full Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis
title_fullStr Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis
title_full_unstemmed Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis
title_short Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis
title_sort deformative stress associated with an abnormal clivo-axial angle: a finite element analysis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2940090/
https://www.ncbi.nlm.nih.gov/pubmed/20847911
http://dx.doi.org/10.4103/2152-7806.66461
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