Skip to main content
Top
Published in: Child's Nervous System 6/2014

01-06-2014 | Original Paper

Analysis of a bleeding mechanism in patients with the sylvian arachnoid cyst using a finite element model

Authors: Chang-Hyun Lee, In Seok Han, Ji Yeoun Lee, Ji Hoon Phi, Seung-Ki Kim, Young-Eun Kim, Kyu-Chang Wang

Published in: Child's Nervous System | Issue 6/2014

Login to get access

Abstract

Objective

The sylvian arachnoid cyst (AC) is a common benign disease; however, it sometimes leads to subdural or intracystic hemorrhage without major trauma. The reason of easy bleeding of the AC is not fully understood. The purpose of this study was to investigate the bleeding mechanism of the sylvian AC in biomechanical aspect and suggest treatment guidelines.

Methods

A finite element (FE) model of normal male adult head/brain was developed and validated by comparison with cadaveric experimental studies. Based on the normal FE model, two sylvian AC models with different sizes (mean size, 55.5 cm3; large size, 75.2 cm3) were developed. To simulate the interface between the dura mater and the arachnoid membrane, spot-weld constraints were assigned. The vulnerability of vein rupture was forecasted with calculated shear force at the spot-weld elements (SFSW). Simulation was performed for four different loading directions.

Results

The newly developed normal FE models showed reliable biomechanical responses comparable with the cadaveric experiments. The sylvian AC model showed significantly increased SFSW compared with normal model. As AC size increased, higher shear force was generated at the spot-weld element of outer wall of sylvian AC regardless of impact directions.

Conclusion

Outer wall of sylvian AC receives higher shear force comparing with normal brain, which is a possible cause of vulnerability to bleeding. Although the size-reducing surgery may decrease bleeding risk of sylvian AC, clinicians need to consider the rare incidence of AC bleeding and unsatisfactory volume reduction in many cases of fenestration.
Literature
1.
go back to reference Aoki N, Sakai T (1990) Intraoperative subdural hematoma in a patient with arachnoid cyst in the middle cranial fossa. Childs Nerv Syst 6:44–46PubMedCrossRef Aoki N, Sakai T (1990) Intraoperative subdural hematoma in a patient with arachnoid cyst in the middle cranial fossa. Childs Nerv Syst 6:44–46PubMedCrossRef
2.
go back to reference Becker T, Wagner M, Hofmann E, Warmuth-Metz M, Nadjmi M (1991) Do arachnoid cysts grow? A retrospective CT volumetric study. Neuroradiology 33:341–345PubMedCrossRef Becker T, Wagner M, Hofmann E, Warmuth-Metz M, Nadjmi M (1991) Do arachnoid cysts grow? A retrospective CT volumetric study. Neuroradiology 33:341–345PubMedCrossRef
3.
go back to reference Bilginer B, Onal MB, Oguz KK, Akalan N (2009) Arachnoid cyst associated with subdural hematoma: report of three cases and review of the literature. Childs Nerv Syst 25:119–124PubMedCrossRef Bilginer B, Onal MB, Oguz KK, Akalan N (2009) Arachnoid cyst associated with subdural hematoma: report of three cases and review of the literature. Childs Nerv Syst 25:119–124PubMedCrossRef
4.
go back to reference Cappelen J, Unsgaard G (1986) Arachnoid cysts of the middle cranial fossa and traumatic complications. Childs Nerv Syst 2:225–227PubMed Cappelen J, Unsgaard G (1986) Arachnoid cysts of the middle cranial fossa and traumatic complications. Childs Nerv Syst 2:225–227PubMed
5.
go back to reference Choi JU, Kim DS (1998) Pathogenesis of arachnoid cyst: congenital or traumatic? Pediatr Neurosurg 29:260–266PubMedCrossRef Choi JU, Kim DS (1998) Pathogenesis of arachnoid cyst: congenital or traumatic? Pediatr Neurosurg 29:260–266PubMedCrossRef
6.
go back to reference Cincu R, Agrawal A, Eiras J (2007) Intracranial arachnoid cysts: current concepts and treatment alternatives. Clin Neurol Neurosurg 109:837–843PubMedCrossRef Cincu R, Agrawal A, Eiras J (2007) Intracranial arachnoid cysts: current concepts and treatment alternatives. Clin Neurol Neurosurg 109:837–843PubMedCrossRef
7.
go back to reference Clemenceau S, Carpentier A (1999) Intracranial arachnoid cysts. A review Rev Neurol (Paris) 155:604–608 Clemenceau S, Carpentier A (1999) Intracranial arachnoid cysts. A review Rev Neurol (Paris) 155:604–608
8.
go back to reference Cloots RJ, Gervaise HM, van Dommelen JA, Geers MG (2008) Biomechanics of traumatic brain injury: influences of the morphologic heterogeneities of the cerebral cortex. Ann Biomed Eng 36:1203–1215PubMedCentralPubMedCrossRef Cloots RJ, Gervaise HM, van Dommelen JA, Geers MG (2008) Biomechanics of traumatic brain injury: influences of the morphologic heterogeneities of the cerebral cortex. Ann Biomed Eng 36:1203–1215PubMedCentralPubMedCrossRef
9.
go back to reference El-Ghandour NM (2012) Endoscopic treatment of middle cranial fossa arachnoid cysts in children. J Neurosurg Pediatr 9:231–238PubMedCrossRef El-Ghandour NM (2012) Endoscopic treatment of middle cranial fossa arachnoid cysts in children. J Neurosurg Pediatr 9:231–238PubMedCrossRef
10.
go back to reference Galassi E, Piazza G, Gaist G, Frank F (1980) Arachnoid cysts of the middle cranial fossa: a clinical and radiological study of 25 cases treated surgically. Surg Neurol 14:211–219PubMed Galassi E, Piazza G, Gaist G, Frank F (1980) Arachnoid cysts of the middle cranial fossa: a clinical and radiological study of 25 cases treated surgically. Surg Neurol 14:211–219PubMed
11.
go back to reference Galford JE, McElhaney JH (1970) A viscoelastic study of scalp, brain, and dura. J Biomech 3:211–221PubMedCrossRef Galford JE, McElhaney JH (1970) A viscoelastic study of scalp, brain, and dura. J Biomech 3:211–221PubMedCrossRef
12.
go back to reference Hardy WN, Foster CD, Mason MJ, Yang KH, King AI, Tashman S (2001) Investigation of head injury mechanisms using neutral density technology and high-speed biplanar X-ray. Stapp Car Crash J 45:337–368PubMed Hardy WN, Foster CD, Mason MJ, Yang KH, King AI, Tashman S (2001) Investigation of head injury mechanisms using neutral density technology and high-speed biplanar X-ray. Stapp Car Crash J 45:337–368PubMed
13.
go back to reference Ildan F, Cetinalp E, Bagdatoglu H, Boyar B, Uzuneyuoglu Z (1994) Arachnoid cyst with traumatic intracystic hemorrhage unassociated with subdural hematoma. Neurosurg Rev 17:229–232PubMedCrossRef Ildan F, Cetinalp E, Bagdatoglu H, Boyar B, Uzuneyuoglu Z (1994) Arachnoid cyst with traumatic intracystic hemorrhage unassociated with subdural hematoma. Neurosurg Rev 17:229–232PubMedCrossRef
14.
go back to reference Kimpara H, Nakahira Y, Iwamoto M, Miki K, Ichihara K, Kawano S, Taguchi T (2006) Investigation of anteroposterior head-neck responses during severe frontal impacts using a brain-spinal cord complex FE model. Stapp Car Crash J 50:509–544PubMed Kimpara H, Nakahira Y, Iwamoto M, Miki K, Ichihara K, Kawano S, Taguchi T (2006) Investigation of anteroposterior head-neck responses during severe frontal impacts using a brain-spinal cord complex FE model. Stapp Car Crash J 50:509–544PubMed
15.
go back to reference Kleiven S, Hardy WN (2002) Correlation of an FE model of the human head with local brain motion-consequences for injury prediction. Stapp Car Crash J 46:123–144PubMed Kleiven S, Hardy WN (2002) Correlation of an FE model of the human head with local brain motion-consequences for injury prediction. Stapp Car Crash J 46:123–144PubMed
16.
go back to reference Kushida Y, Terao H, Shibata I, Shishido M, Seiki Y, Tsutsumi S (1983) Chronic subdural hematoma associated with arachnoid cyst-study of the mechanism of its development. No Shinkei Geka 11:1211–1217PubMed Kushida Y, Terao H, Shibata I, Shishido M, Seiki Y, Tsutsumi S (1983) Chronic subdural hematoma associated with arachnoid cyst-study of the mechanism of its development. No Shinkei Geka 11:1211–1217PubMed
17.
go back to reference Kwak YS, Hwang SK, Park SH, Park JY (2013) Chronic subdural hematoma associated with the middle fossa arachnoid cyst: pathogenesis and review of its management. Childs Nerv Syst 29:77–82PubMedCrossRef Kwak YS, Hwang SK, Park SH, Park JY (2013) Chronic subdural hematoma associated with the middle fossa arachnoid cyst: pathogenesis and review of its management. Childs Nerv Syst 29:77–82PubMedCrossRef
18.
go back to reference LaCour F, Trevor R, Carey M (1978) Arachnoid cyst and associated subdural hematoma. Observations on conventional roentgenographic and computerized tomographic diagnosis. Arch Neurol 35:84–89PubMedCrossRef LaCour F, Trevor R, Carey M (1978) Arachnoid cyst and associated subdural hematoma. Observations on conventional roentgenographic and computerized tomographic diagnosis. Arch Neurol 35:84–89PubMedCrossRef
19.
go back to reference Lisovoski F, Danziger N, Helias A, Masson C, Masson M, Cambier J (1992) Arachnoid cyst of the temporal fossa. Subdural hematoma. Contribution of MRI. Rev Neurol (Paris) 148:150–151 Lisovoski F, Danziger N, Helias A, Masson C, Masson M, Cambier J (1992) Arachnoid cyst of the temporal fossa. Subdural hematoma. Contribution of MRI. Rev Neurol (Paris) 148:150–151
20.
go back to reference Lund E, Buhl M, Miletic T, Knudsen V (1987) Isodense middle fossa arachnoid cyst and subdural hematoma: a diagnostic problem on CT. J Neuroradiol 14:89–93PubMed Lund E, Buhl M, Miletic T, Knudsen V (1987) Isodense middle fossa arachnoid cyst and subdural hematoma: a diagnostic problem on CT. J Neuroradiol 14:89–93PubMed
21.
go back to reference Maeda M, Kawamura Y, Handa Y, Kubota T, Ishii Y (1993) Value of MR imaging in middle fossa arachnoid cyst with intracystic and subdural hematoma. Eur J Radiol 17:145–147PubMedCrossRef Maeda M, Kawamura Y, Handa Y, Kubota T, Ishii Y (1993) Value of MR imaging in middle fossa arachnoid cyst with intracystic and subdural hematoma. Eur J Radiol 17:145–147PubMedCrossRef
23.
go back to reference Mori K, Yamamoto T, Horinaka N, Maeda M (2002) Arachnoid cyst is a risk factor for chronic subdural hematoma in juveniles: twelve cases of chronic subdural hematoma associated with arachnoid cyst. J Neurotrauma 19:1017–1027PubMedCrossRef Mori K, Yamamoto T, Horinaka N, Maeda M (2002) Arachnoid cyst is a risk factor for chronic subdural hematoma in juveniles: twelve cases of chronic subdural hematoma associated with arachnoid cyst. J Neurotrauma 19:1017–1027PubMedCrossRef
24.
go back to reference Nahum AM, Smith R, Ward CC (1977) Intracranial pressure dynamics during head impact. Stapp Car Crash J 21:339–366 Nahum AM, Smith R, Ward CC (1977) Intracranial pressure dynamics during head impact. Stapp Car Crash J 21:339–366
25.
go back to reference Parsch CS, Krauss J, Hofmann E, Meixensberger J, Roosen K (1997) Arachnoid cysts associated with subdural hematomas and hygromas: analysis of 16 cases, long-term follow-up, and review of the literature. Neurosurgery 40:483–490PubMed Parsch CS, Krauss J, Hofmann E, Meixensberger J, Roosen K (1997) Arachnoid cysts associated with subdural hematomas and hygromas: analysis of 16 cases, long-term follow-up, and review of the literature. Neurosurgery 40:483–490PubMed
26.
go back to reference Peterson J, Dechow PC (2003) Material properties of the human cranial vault and zygoma. Anat Rec A: Discov Mol Cell Evol Biol 274:785–797CrossRef Peterson J, Dechow PC (2003) Material properties of the human cranial vault and zygoma. Anat Rec A: Discov Mol Cell Evol Biol 274:785–797CrossRef
27.
go back to reference Sato K, Shimoji T, Yaguchi K, Sumie H, Kuru Y, Ishii S (1983) Middle fossa arachnoid cyst: clinical, neuroradiological, and surgical features. Childs Brain 10:301–316PubMed Sato K, Shimoji T, Yaguchi K, Sumie H, Kuru Y, Ishii S (1983) Middle fossa arachnoid cyst: clinical, neuroradiological, and surgical features. Childs Brain 10:301–316PubMed
28.
go back to reference Shaw CM, Alvord EC (1977) Congenital arachnoid cysts and their differential diagnosis. In: Vinken PJ, Bruyn GW (eds) Handbook of clinical neurology, vol 31. North Holland Publishing Company, Amsterdam, pp 75–136 Shaw CM, Alvord EC (1977) Congenital arachnoid cysts and their differential diagnosis. In: Vinken PJ, Bruyn GW (eds) Handbook of clinical neurology, vol 31. North Holland Publishing Company, Amsterdam, pp 75–136
29.
go back to reference Wester K, Helland CA (2008) How often do chronic extra-cerebral haematomas occur in patients with intracranial arachnoid cysts? J Neurol Neurosurg Psychiatry 79:72–75PubMedCrossRef Wester K, Helland CA (2008) How often do chronic extra-cerebral haematomas occur in patients with intracranial arachnoid cysts? J Neurol Neurosurg Psychiatry 79:72–75PubMedCrossRef
30.
go back to reference Yoganandan N, Pintar FA, Zhang J, Baisden JL (2009) Physical properties of the human head: mass, center of gravity and moment of inertia. J Biomech 42:1177–1192PubMedCrossRef Yoganandan N, Pintar FA, Zhang J, Baisden JL (2009) Physical properties of the human head: mass, center of gravity and moment of inertia. J Biomech 42:1177–1192PubMedCrossRef
31.
go back to reference Zhang L, Yang KH, Dwarampudi R, Omori K, Li T, Chang K, Hardy WN, Khalil TB, King AI (2001) Recent advances in brain injury research: a new human head model development and validation. Stapp Car Crash J 45:369–394PubMed Zhang L, Yang KH, Dwarampudi R, Omori K, Li T, Chang K, Hardy WN, Khalil TB, King AI (2001) Recent advances in brain injury research: a new human head model development and validation. Stapp Car Crash J 45:369–394PubMed
Metadata
Title
Analysis of a bleeding mechanism in patients with the sylvian arachnoid cyst using a finite element model
Authors
Chang-Hyun Lee
In Seok Han
Ji Yeoun Lee
Ji Hoon Phi
Seung-Ki Kim
Young-Eun Kim
Kyu-Chang Wang
Publication date
01-06-2014
Publisher
Springer Berlin Heidelberg
Published in
Child's Nervous System / Issue 6/2014
Print ISSN: 0256-7040
Electronic ISSN: 1433-0350
DOI
https://doi.org/10.1007/s00381-013-2301-7

Other articles of this Issue 6/2014

Child's Nervous System 6/2014 Go to the issue