Skip to main content
Advertisement

Main menu

  • Home
  • Content
    • Current Issue
    • Accepted Manuscripts
    • Article Preview
    • Past Issue Archive
    • Video Articles
    • AJNR Case Collection
    • Case of the Week Archive
    • Case of the Month Archive
    • Classic Case Archive
  • Special Collections
    • AJNR Awards
    • Low-Field MRI
    • Alzheimer Disease
    • ASNR Foundation Special Collection
    • Photon-Counting CT
    • View All
  • Multimedia
    • AJNR Podcasts
    • AJNR SCANtastic
    • Trainee Corner
    • MRI Safety Corner
    • Imaging Protocols
  • For Authors
    • Submit a Manuscript
    • Submit a Video Article
    • Submit an eLetter to the Editor/Response
    • Manuscript Submission Guidelines
    • Statistical Tips
    • Fast Publishing of Accepted Manuscripts
    • Graphical Abstract Preparation
    • Imaging Protocol Submission
    • Author Policies
  • About Us
    • About AJNR
    • Editorial Board
    • Editorial Board Alumni
  • More
    • Become a Reviewer/Academy of Reviewers
    • Subscribers
    • Permissions
    • Alerts
    • Feedback
    • Advertisers
    • ASNR Home

User menu

  • Alerts
  • Log in

Search

  • Advanced search
American Journal of Neuroradiology
American Journal of Neuroradiology

American Journal of Neuroradiology

ASHNR American Society of Functional Neuroradiology ASHNR American Society of Pediatric Neuroradiology ASSR
  • Alerts
  • Log in

Advanced Search

  • Home
  • Content
    • Current Issue
    • Accepted Manuscripts
    • Article Preview
    • Past Issue Archive
    • Video Articles
    • AJNR Case Collection
    • Case of the Week Archive
    • Case of the Month Archive
    • Classic Case Archive
  • Special Collections
    • AJNR Awards
    • Low-Field MRI
    • Alzheimer Disease
    • ASNR Foundation Special Collection
    • Photon-Counting CT
    • View All
  • Multimedia
    • AJNR Podcasts
    • AJNR SCANtastic
    • Trainee Corner
    • MRI Safety Corner
    • Imaging Protocols
  • For Authors
    • Submit a Manuscript
    • Submit a Video Article
    • Submit an eLetter to the Editor/Response
    • Manuscript Submission Guidelines
    • Statistical Tips
    • Fast Publishing of Accepted Manuscripts
    • Graphical Abstract Preparation
    • Imaging Protocol Submission
    • Author Policies
  • About Us
    • About AJNR
    • Editorial Board
    • Editorial Board Alumni
  • More
    • Become a Reviewer/Academy of Reviewers
    • Subscribers
    • Permissions
    • Alerts
    • Feedback
    • Advertisers
    • ASNR Home
  • Follow AJNR on Twitter
  • Visit AJNR on Facebook
  • Follow AJNR on Instagram
  • Join AJNR on LinkedIn
  • RSS Feeds

AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleNeurointervention

Intracranial Aneurysmal Pulsatility as a New Individual Criterion for Rupture Risk Evaluation: Biomechanical and Numeric Approach (IRRAs Project)

M. Sanchez, O. Ecker, D. Ambard, F. Jourdan, F. Nicoud, S. Mendez, J.-P. Lejeune, L. Thines, H. Dufour, H. Brunel, P. Machi, K. Lobotesis, A. Bonafe and V. Costalat
American Journal of Neuroradiology September 2014, 35 (9) 1765-1771; DOI: https://doi.org/10.3174/ajnr.A3949
M. Sanchez
aFrom Philips Healthcare, Suresnes, France (M.S.)
cCNRS-LMGC Montpellier, Montpellier, France (M.S., F.J., D.A.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
O. Ecker
bCHU Montpellier Neuroradiology, Montpellier, France (O.E., P.M., A.B., V.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
D. Ambard
cCNRS-LMGC Montpellier, Montpellier, France (M.S., F.J., D.A.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
F. Jourdan
cCNRS-LMGC Montpellier, Montpellier, France (M.S., F.J., D.A.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
F. Nicoud
dCNRS-I3M Montpellier, Montpellier, France (F.N., S.M.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
S. Mendez
dCNRS-I3M Montpellier, Montpellier, France (F.N., S.M.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
J.-P. Lejeune
eCHU Lille Neurosurgery, Lille, France (J.-P.L., L.T.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
L. Thines
eCHU Lille Neurosurgery, Lille, France (J.-P.L., L.T.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
H. Dufour
fCHU Marseille Neurosurgery, Marseille, France (H.D.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
H. Brunel
gCHU Marseille Neuroradiology, Marseille, France (H.B.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
P. Machi
bCHU Montpellier Neuroradiology, Montpellier, France (O.E., P.M., A.B., V.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
K. Lobotesis
hImperial College Healthcare NHS Trust, London, England (K.L.).
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
A. Bonafe
bCHU Montpellier Neuroradiology, Montpellier, France (O.E., P.M., A.B., V.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
V. Costalat
bCHU Montpellier Neuroradiology, Montpellier, France (O.E., P.M., A.B., V.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • Article
  • Figures & Data
  • Info & Metrics
  • Responses
  • References
  • PDF
Loading

REFERENCES

  1. 1.↵
    1. Wardlaw J,
    2. White P
    . The detection and management of unruptured intracranial aneurysms. Brain 2000;123:205–21
    Abstract/FREE Full Text
  2. 2.↵
    1. Horikoshi T,
    2. Sugita M,
    3. Yagishita T,
    4. et al
    . Size of cerebral aneurysms and related factors in patients with subarachnoid hemorrhage. Surg Neurol 2002;61:239–45
  3. 3.↵
    1. Nahed B,
    2. Diluna M,
    3. Morgan T,
    4. et al
    . Hypertension, age, and location predict rupture of small intracranial aneurysms. Neurosurgery 2005;57:676–83
    PubMedWeb of Science
  4. 4.↵
    1. Matsubara S,
    2. Hadeishir H,
    3. Suzukil A,
    4. et al
    . Incidence and risk factors for the growth of unruptured cerebral aneurysms: observation using serial computerized tomography angiography. J Neurosurg 2004;101:908–14
    CrossRefPubMedWeb of Science
  5. 5.↵
    1. Chung S,
    2. Vafai K
    . A coupling model for macromolecule transport in a stenosed arterial wall. Int J Heat Mass Transfer 2012;45:371–81
  6. 6.↵
    1. Nicoud F,
    2. Moreno R,
    3. Tayllamin B,
    4. et al
    . Computational hemodynamics in moving geometries without solving the fluid-structure interaction problem. Paper presented at: Conference on Modelling Fluid Flow 2009. The 14th International Conference on Fluid Flow Technologies. Budapest, Hungary. September 9–12, 2009
  7. 7.↵
    1. Balocco S,
    2. Camara O,
    3. Vivas E,
    4. et al
    . Feasibility of estimating regional mechanical properties of cerebral aneurysms in vivo. Med Phys 2010;37:1689–706
    PubMed
  8. 8.↵
    1. Rissland P,
    2. Alemu Y,
    3. Einav S,
    4. et al
    . Abdominal aortic aneurysm risk of rupture: patient-specific FSI simulations using anisotropic model. J Biomech Eng 2009;131:031001
  9. 9.↵
    1. Torii R,
    2. Oshima M,
    3. Kobayashi T,
    4. et al
    . Fluid structure interaction modeling of a patient-specific cerebral aneurysm: influence of structural modeling. Comput Mech 2008;43:151–59
    CrossRefWeb of Science
  10. 10.↵
    1. Vito R,
    2. Hickey J
    . The mechanical-properties of soft-tissues. 2. The elastic response of arterial segments. J Biomech 1980;13:951–57
    PubMed
  11. 11.↵
    1. Vande Geest J,
    2. Schmidt E,
    3. Sacks M,
    4. et al
    . The effects of anisotropy on the stress analyses of patient-specific abdominal aortic aneurysms. Ann Biomed Eng 2008;36:921–32
    CrossRefPubMedWeb of Science
  12. 12.↵
    1. Vande Geest J,
    2. Sacks M,
    3. Vorp D
    . The effects of aneurysm on the biaxial mechanical behavior of human abdominal aorta. J Biomech 2006;39:1324–34
    CrossRefPubMedWeb of Science
  13. 13.↵
    1. Costalat V,
    2. Sanchez M,
    3. Ambard D,
    4. et al
    . Biomechanical wall properties of human intracranial aneurysms resected following surgical clipping. J Biomech 2011;44:2685–91
    PubMed
  14. 14.↵
    1. Sanchez M,
    2. Ambard D,
    3. Costalat V,
    4. et al
    . Biomechanical assessment of the individual risk of rupture of cerebral aneurysms: a proof of concept. Ann Biomed Eng 2013;41:28–40
    PubMed
  15. 15.↵
    1. Duprey A,
    2. Khanafer K,
    3. Sclicht M
    . In vitro characterisation of physiological and maximum elastic modulus of ascending thoracic aortic aneurysms using uniaxial tensile testing. Eur J Vasc Endovasc Surg 2010;39:700–07
    PubMed
  16. 16.↵
    1. Ambard D,
    2. Cherblanc F
    . Mechanical behavior of annulus fibrosus: a microstructural model of fibers reorientation. Ann Biomed Eng 2009;37:2256–65
    PubMed
  17. 17.↵
    1. Jourdan F,
    2. Samida A
    . An implicit numerical method for wear modeling applied to hip joint prothesis problem. Comput Methods Appl Mech Eng 2009;198:2209–17
  18. 18.↵
    1. Malachanne E,
    2. Dureisseix D,
    3. Jourdan F
    . Numerical model of bone remodeling sensitive to loading frequency through a poroelastic behavior and internal fluid movements. J Mech Behav Biomed Mater 2011;4:849–57
    PubMed
  19. 19.↵
    1. Swider P,
    2. Pedrono A,
    3. Ambard D,
    4. et al
    . Substructuring and poroelastic modelling of the intervertebral disc. J Biomech 2010;47:1287–91
  20. 20.↵
    1. Hoi Y,
    2. Meng H,
    3. Woodward S,
    4. et al
    . Effects of arterial geometry on aneurysm growth: three-dimensional computational fluid dynamics study. J Neurosurg 2004;101:676–81
    CrossRefPubMedWeb of Science
  21. 21.↵
    1. Van de Vosse FN
    . Pulse wave propagation in the arterial tree. Ann Rev Fluid Mech 2011;43:467–99
    CrossRef
  22. 22.↵
    1. Steiner L,
    2. Andrews J
    . Monitoring the injured brain: ICP and CBF. Br J Anaesth 2006;97:26–38
    Abstract/FREE Full Text
  23. 23.↵
    1. Ai L,
    2. Vafai K
    . A coupling model for macromolecule transport in a stenosed arterial wall. Int J Heat Mass Transfer 2006;49:1568–91
  24. 24.↵
    1. Watton P,
    2. Raberger N,
    3. Holzapfel G,
    4. et al
    . Blood flow dynamics and fluid-structure interaction in patient specific bifurcating cerebral aneurysm. J Biomech Eng 2009;131:1–14
  25. 25.↵
    1. Yang N,
    2. Vafai K
    . Modeling of low-density lipoprotein (LDL) transport in the artery-effects of hypertension. Int J Heat Mass Transfer 2006;49:850–67
    CrossRefWeb of Science
  26. 26.↵
    1. Valencia A,
    2. Ledermann D,
    3. Rivera R,
    4. et al
    . Blood flow dynamics and fluid-structure interaction in patient specific bifurcating cerebral aneurysm. Int J Numer Methods Fluids 2009;58:1081–1100
  27. 27.↵
    1. Alnaes M,
    2. Isaksen J,
    3. Mardal K,
    4. et al
    . Computation of hemodynamics in the circle of Willis. Stroke 2007;38:2500–05
    Abstract/FREE Full Text
  28. 28.↵
    1. Hayakawa M,
    2. Maeda S,
    3. Sadato A,
    4. et al
    . Detection of pulsation in ruptured and unruptured cerebral aneurysms by electrocardiographically gated 3-dimensional computed tomographic angiography with a 320- row area detector computed tomography and evaluation of its clinical usefulness. Neurosurgery 2011;69:843–51
    CrossRefPubMed
  29. 29.↵
    1. Ishida F,
    2. Ogawa H,
    3. Simizu T,
    4. et al
    . Visualizing the dynamics of cerebral aneurysms with four-dimensional computed tomographic angiography. Neurosurgery 2005;57:460–71
    CrossRefPubMedWeb of Science
  30. 30.↵
    1. Zhang C,
    2. Villa-Uriol M,
    3. Craene M,
    4. et al
    . Morphodynamic analysis of cerebral aneurysm pulsation from time-resolved rotational angiography. Med Imag 2009;28:1105–16
  31. 31.↵
    1. Karmonik C,
    2. Diaz O,
    3. Grossman R,
    4. et al
    . In vivo quantification of wall motion in cerebral aneurysm from 2D cine phase contrast magnetic resonance images. Rofo 2010;182:140–51
    PubMed
  32. 32.↵
    1. San Millan Ruiz D,
    2. Yilmaz H,
    3. Dehdashti A,
    4. et al
    . The perianeurysmal environment: influence on saccular aneurysm shape and rupture. AJNR Am J Neuroradiol 2006;27:504–12
    Abstract/FREE Full Text
  33. 33.↵
    1. Seshaiyer P,
    2. Humphrey J
    . On the potentially protective role of contact constraints on saccular aneurysms. J Biomech 2001;34:607–12
    PubMed
  34. 34.↵
    1. MacDonald D,
    2. Finlay H,
    3. Canham P
    . Directional wall strength in saccular brain aneurysms from polarized light microscopy. Ann Biomed Eng 2000;28:533–42
    CrossRefPubMedWeb of Science
  35. 35.↵
    1. Cebral J,
    2. Castro M,
    3. Putman C,
    4. et al
    . Efficient pipeline for image-based patient-specific analysis of cerebral aneurysm hemodynamics: technique and sensitivity. IEEE Trans Med Imag 2005;24:457–67
    CrossRefPubMedWeb of Science
  36. 36.↵
    1. Sforza D,
    2. Putman C,
    3. Cebral J
    . Hemodynamics of cerebral aneurysms. Ann Rev Fluid Mech 2008;41:91–107
PreviousNext
Back to top

In this issue

American Journal of Neuroradiology: 35 (9)
American Journal of Neuroradiology
Vol. 35, Issue 9
1 Sep 2014
  • Table of Contents
  • Index by author
  • Complete Issue (PDF)
Advertisement
Print
Download PDF
Email Article

Thank you for your interest in spreading the word on American Journal of Neuroradiology.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
Intracranial Aneurysmal Pulsatility as a New Individual Criterion for Rupture Risk Evaluation: Biomechanical and Numeric Approach (IRRAs Project)
(Your Name) has sent you a message from American Journal of Neuroradiology
(Your Name) thought you would like to see the American Journal of Neuroradiology web site.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Cite this article
M. Sanchez, O. Ecker, D. Ambard, F. Jourdan, F. Nicoud, S. Mendez, J.-P. Lejeune, L. Thines, H. Dufour, H. Brunel, P. Machi, K. Lobotesis, A. Bonafe, V. Costalat
Intracranial Aneurysmal Pulsatility as a New Individual Criterion for Rupture Risk Evaluation: Biomechanical and Numeric Approach (IRRAs Project)
American Journal of Neuroradiology Sep 2014, 35 (9) 1765-1771; DOI: 10.3174/ajnr.A3949

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
0 Responses
Respond to this article
Share
Bookmark this article
Intracranial Aneurysmal Pulsatility as a New Individual Criterion for Rupture Risk Evaluation: Biomechanical and Numeric Approach (IRRAs Project)
M. Sanchez, O. Ecker, D. Ambard, F. Jourdan, F. Nicoud, S. Mendez, J.-P. Lejeune, L. Thines, H. Dufour, H. Brunel, P. Machi, K. Lobotesis, A. Bonafe, V. Costalat
American Journal of Neuroradiology Sep 2014, 35 (9) 1765-1771; DOI: 10.3174/ajnr.A3949
del.icio.us logo Twitter logo Facebook logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Google Plus One
Purchase

Jump to section

  • Article
    • Abstract
    • ABBREVIATION:
    • Materials and Methods
    • Results
    • Discussion
    • CONCLUSIONS
    • Acknowledgments
    • Footnotes
    • REFERENCES
  • Figures & Data
  • Info & Metrics
  • Responses
  • References
  • PDF

Related Articles

  • No related articles found.
  • PubMed
  • Google Scholar

Cited By...

  • No citing articles found.
  • Crossref (19)
  • Google Scholar

This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Fluid-Structure Simulations of a Ruptured Intracranial Aneurysm: Constant versus Patient-Specific Wall Thickness
    S. Voß, S. Glaßer, T. Hoffmann, O. Beuing, S. Weigand, K. Jachau, B. Preim, D. Thévenin, G. Janiga, P. Berg
    Computational and Mathematical Methods in Medicine 2016 2016
  • Hemodynamics in a giant intracranial aneurysm characterized by in vitro 4D flow MRI
    Omid Amili, Daniele Schiavazzi, Sean Moen, Bharathi Jagadeesan, Pierre-François Van de Moortele, Filippo Coletti, Dalin Tang
    PLOS ONE 2018 13 1
  • Combined Visualization of Vessel Deformation and Hemodynamics in Cerebral Aneurysms
    Monique Meuschke, Samuel Voss, Oliver Beuing, Bernhard Preim, Kai Lawonn
    IEEE Transactions on Visualization and Computer Graphics 2017 23 1
  • Flow-splitting-based computation of outlet boundary conditions for improved cerebrovascular simulation in multiple intracranial aneurysms
    Sylvia Saalfeld, Samuel Voß, Oliver Beuing, Bernhard Preim, Philipp Berg
    International Journal of Computer Assisted Radiology and Surgery 2019 14 10
  • Biomechanical Simulation to Compare the Blood Hemodynamics and Cerebral Aneurysm Rupture Risk in Patients with Different Aneurysm Necks
    K. Hajirayat, S. Gholampour, I. Sharifi, D. Bizari
    Journal of Applied Mechanics and Technical Physics 2017 58 6
  • The quantitative comparison between high wall shear stress and high strain in the formation of paraclinoid aneurysms
    Jung-Jae Kim, Hyeondong Yang, Yong Bae Kim, Je Hoon Oh, Kwang-Chun Cho
    Scientific Reports 2021 11 1
  • A numerical investigation of the mechanics of intracranial aneurysms walls: Assessing the influence of tissue hyperelastic laws and heterogeneous properties on the stress and stretch fields
    I.L. Oliveira, P. Cardiff, C.E. Baccin, J.L. Gasche
    Journal of the Mechanical Behavior of Biomedical Materials 2022 136
  • Understanding flow patterns and inflammatory status in intracranial aneurysms: Towards a personalized medicine
    Jérôme Berge, Patrick Blanco, Caroline Rooryck, Romain Boursier, Gaultier Marnat, Florent Gariel, Thomas Wavasseur, Hubert Desal, Vincent Dousset
    Journal of Neuroradiology 2016 43 2
  • A NUMERICAL STUDY ON THE HEMODYNAMIC AND SHEAR STRESS OF DOUBLE ANEURYSM THROUGH S-SHAPED VESSEL
    Mahdi Halabian, Alireza Karimi, Borhan Beigzadeh, Mahdi Navidbakhsh
    Biomedical Engineering: Applications, Basis and Communications 2015 27 04
  • Risk Factors for Intraprocedural Rupture in the Endovascular Treatment of Unruptured Intracranial Aneurysms: A Single-Center Experience with 1232 Procedures
    Li Li, Xiaoxi Zhang, Zhengzhe Feng, Rui Zhao, Bo Hong, Yi Xu, Qinghai Huang, Jianmin Liu
    World Neurosurgery 2019 123

More in this TOC Section

  • Contour Neurovascular System: Five Year Follow Up
  • Effect of SARS-CoV2 on Endovascular Thrombectomy
  • Flow diversion for distal circulation aneurysms
Show more NEUROINTERVENTION

Similar Articles

Advertisement

Indexed Content

  • Current Issue
  • Accepted Manuscripts
  • Article Preview
  • Past Issues
  • Editorials
  • Editor's Choice
  • Fellows' Journal Club
  • Letters to the Editor
  • Video Articles

Cases

  • Case Collection
  • Archive - Case of the Week
  • Archive - Case of the Month
  • Archive - Classic Case

More from AJNR

  • Trainee Corner
  • Imaging Protocols
  • MRI Safety Corner
  • Book Reviews

Multimedia

  • AJNR Podcasts
  • AJNR Scantastics

Resources

  • Turnaround Time
  • Submit a Manuscript
  • Submit a Video Article
  • Submit an eLetter to the Editor/Response
  • Manuscript Submission Guidelines
  • Statistical Tips
  • Fast Publishing of Accepted Manuscripts
  • Graphical Abstract Preparation
  • Imaging Protocol Submission
  • Evidence-Based Medicine Level Guide
  • Publishing Checklists
  • Author Policies
  • Become a Reviewer/Academy of Reviewers
  • News and Updates

About Us

  • About AJNR
  • Editorial Board
  • Editorial Board Alumni
  • Alerts
  • Permissions
  • Not an AJNR Subscriber? Join Now
  • Advertise with Us
  • Librarian Resources
  • Feedback
  • Terms and Conditions
  • AJNR Editorial Board Alumni

American Society of Neuroradiology

  • Not an ASNR Member? Join Now

© 2025 by the American Society of Neuroradiology All rights, including for text and data mining, AI training, and similar technologies, are reserved.
Print ISSN: 0195-6108 Online ISSN: 1936-959X

Powered by HighWire