Hemodynamic differences between unstable and stable unruptured aneurysms independent of size and location: a pilot study

被引:41
作者
Brinjikji, Waleed [1 ]
Chung, Bong Jae [2 ]
Jimenez, Carlos [3 ]
Putman, Christopher [4 ]
Kallmes, David F. [1 ]
Cebral, Juan R. [2 ]
机构
[1] Mayo Clin, Dept Radiol, Rochester, MN USA
[2] George Mason Univ, Volgenau Sch Engn, Dept Bioengn, Fairfax, VA 22030 USA
[3] Univ Antioquia, Dept Neurosurg, Medellin, Colombia
[4] Inova Fairfax Hosp, Dept Intervent Neuroradiol, Falls Church, VA USA
关键词
WALL SHEAR-STRESS; INTRACRANIAL ANEURYSMS; CEREBRAL ANEURYSMS; VERTEBRAL ARTERIES; PHASES SCORE; BLOOD-FLOW; RUPTURE; GROWTH; RISK; PREDICTION;
D O I
10.1136/neurintsurg-2016-012327
中图分类号
R445 [影像诊断学];
学科分类号
100207 ;
摘要
Background While clinical and angiographic risk factors for intracranial aneurysm instability are well established, it is reasonable to postulate that intra-aneurysmal hemodynamics also have a role in aneurysm instability. Objective To identify hemodynamic characteristics that differ between radiologically unstable and stable unruptured intracranial aneurysms. Materials and methods 12 pairs of unruptured intracranial aneurysms with a 3D rotational angiographic set of images and followed up longitudinally without treatment were studied. Each pair consisted of one stable aneurysm (no change on serial imaging) and one unstable aneurysm (demonstrated growth of at least 1 mm diameter or ruptured during follow-up) of matching size (within 10%) and locations. Patient-specific computational fluid dynamics models were created and run under pulsatile flow conditions. Relevant hemodynamic and geometric variables were calculated and compared between groups using the paired Wilcoxon test. Results The area of the aneurysm under low wall shear stress (low shear stress area (LSA)) was 2.26 times larger in unstable aneurysms than in stable aneurysms (p=0.0499). The mean aneurysm vorticity was smaller by a factor of 0.57 in unstable aneurysms compared with stable aneurysms (p=0.0499). No statistically significant differences in geometric variables or shape indices were found. Conclusions This pilot study suggests there may be hemodynamic differences between unstable and stable unruptured cerebral aneurysms. In particular, the area under low wall shear stress was larger in unstable aneurysms. These findings should be considered tentative until confirmed by future larger studies.
引用
收藏
页码:376 / +
页数:6
相关论文
共 29 条
[22]   Computational hemodynamics framework for the analysis of cerebral aneurysms [J].
Mut, Fernando ;
Loehner, Rainald ;
Chien, Aichi ;
Tateshima, Satoshi ;
Vinuela, Fernando ;
Putman, Christopher ;
Cebral, Juan R. .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING, 2011, 27 (06) :822-839
[23]   Predictable Morphometric Parameters for Rupture of Intracranial Aneurysms - A Series of 142 Operated Aneurysms [J].
Nikolic, Igor ;
Tasic, Goran ;
Bogosavljevic, Vojislav ;
Nestorovic, Branislav ;
Jovanovic, Vladimir ;
Kojic, Zvezdana ;
Djoric, Igor ;
Djurovic, Branko .
TURKISH NEUROSURGERY, 2012, 22 (04) :420-426
[24]   Hemodynamics in growing and stable cerebral aneurysms [J].
Sforza, Daniel M. ;
Kono, Kenichi ;
Tateshima, Satoshi ;
Vinuela, Fernando ;
Putman, Christopher ;
Cebral, Juan R. .
JOURNAL OF NEUROINTERVENTIONAL SURGERY, 2016, 8 (04) :407-412
[25]   Hemodynamic Differences Between Unruptured and Ruptured Intracranial Aneurysms During Observation [J].
Takao, Hiroyuki ;
Murayama, Yuichi ;
Otsuka, Shinobu ;
Qian, Yi ;
Mohamed, Ashraf ;
Masuda, Shunsuke ;
Yamamoto, Makoto ;
Abe, Toshiaki .
STROKE, 2012, 43 (05) :1436-1439
[26]   Unruptured intracranial aneurysms: natural history, clinical outcome, and risks of surgical and endovascular treatment [J].
Wiebers, D ;
Whisnant, JP ;
Huston, J ;
Meissner, I ;
Brown, RD ;
Piepgras, DG ;
Forbes, GS ;
Thielen, K ;
Nichols, D ;
O'Fallon, WM ;
Peacock, J ;
Jaeger, L ;
Kassell, NF ;
Kongable-Beckman, GL ;
Torner, JC ;
Naleway, A ;
Yoo, B ;
Sorensen, B ;
Wiebers, DO ;
Whisnant, JP ;
Huston, J ;
Meissner, I ;
Brown, RD ;
Piepgras, DG ;
Forbes, GS ;
Thielen, K ;
Nichols, D ;
O'Fallon, WM ;
Peacock, J ;
Jaeger, L ;
Kassell, NF ;
Kongable-Beckman, GL ;
Torner, JC ;
Wiebers, DO ;
Whisnant, JP ;
Huston, J ;
Meissner, I ;
Brown, RD ;
Piepgras, DG ;
Forbes, GS ;
Nichols, D ;
O'Fallon, WM ;
Peacock, J ;
Jaeger, L ;
Kassell, NF ;
Kongable-Beckman, GL ;
Torner, JC ;
Naleway, A ;
Drake, CG ;
Ferguson, GG .
LANCET, 2003, 362 (9378) :103-110
[27]   Hemodynamic-Morphologic Discriminants for Intracranial Aneurysm Rupture [J].
Xiang, Jianping ;
Natarajan, Sabareesh K. ;
Tremmel, Markus ;
Ma, Ding ;
Mocco, J. ;
Hopkins, L. Nelson ;
Siddiqui, Adnan H. ;
Levy, Elad I. ;
Meng, Hui .
STROKE, 2011, 42 (01) :144-152
[28]   Characteristic features of unruptured intracranial aneurysms: predictive risk factors for aneurysm rupture [J].
You, S-H ;
Kong, D-S ;
Kim, J-S ;
Jeon, P. ;
Kim, K. H. ;
Roh, H. K. ;
Kim, G-M ;
Lee, K-H ;
Hong, S-C .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 2010, 81 (05) :479-484
[29]   Aneurysm geometry in predicting the risk of rupture. A review of the literature [J].
Zanaty, Mario ;
Chalouhi, Nohra ;
Tjoumakaris, Stavropoula I. ;
Gonzalez, L. Fernando ;
Rosenwasser, Robert H. ;
Jabbour, Pascal M. .
NEUROLOGICAL RESEARCH, 2014, 36 (04) :308-313