Robe, Pierre ; Université de Liège - ULiège > Département des sciences biomédicales et précliniques > Département des sciences biomédicales et précliniques
Luijten, F
Hendrikse, J
Language :
English
Title :
High Resolution postontrast time of flight MR angiography of intracranial perforators at 7.0 Tesla
Publication date :
16 March 2015
Journal title :
PLoS ONE
eISSN :
1932-6203
Publisher :
Public Library of Science, San Franscisco, United States - California
Marinkovic S, Gibo H, Milisavljevic M. The surgical anatomy of the relationships between the perforating and the leptomeningeal arteries. Neurosurgery 1996, 39(1):72-83. PMID: 8805142
Kumral E, Ozdemirkiran T, Alper Y. Strokes in the subinsular territory: clinical, topographical, and etiological patterns. Neurology 2004, 63(12):2429-2432. PMID: 15623721
Greenberg SM. Small vessels, big problems. N Engl J Med 2006, 354(14):1451-1453. PMID: 16598043
Wardlaw JM, Dennis MS, Warlow CP, Sandercock PA. Imaging appearance of the symptomatic perforating artery in patients with lacunar infarction: occlusion or other vascular pathology? Ann Neurol 2001, 50(2):208-215. PMID: 11506404
Fisher CM. The arterial lesions underlying lacunes. Acta Neuropathol 1969, 12(1):1-15.
Fisher CM, Caplan LR. Basilar artery branch occlusion: a cause of pontine infarction. Neurology 1971, 21(9):900-905. PMID: 5106254
Fisher CM. Lacunes: Small, Deep Cerebral Infarcts. Neurology 1965, 15:774-784. PMID: 14315302
Heverhagen JT, Bourekas E, Sammet S, Knopp MV, Schmalbrock P. Time-of-flight magnetic resonance angiography at 7 Tesla. Invest Radiol 2008, 43(8):568-573. doi: 10.1097/RLI. 0b013e31817e9b2c PMID: 18648256
Van Der Kolk AG, Hendrikse J, Zwanenburg JJ, Visser F, Luijten PR. Clinical applications of 7 T MRI in the brain. Eur J Radiol 2013, 82(5):708-718. doi: 10.1016/j.ejrad.2011.07.007 PMID: 21937178
Von Morze C, Xu D, Purcell DD, Hess CP, Mukherjee P, Saloner D, et al. Intracranial time-of-flight MR angiography at 7T with comparison to 3T. J Magn Reson Imaging 2007, 26(4):900-904. PMID: 17896360
Stamm AC, Wright CL, Knopp MV, Schmalbrock P, Heverhagen JT. Phase contrast and time-of-flight magnetic resonance angiography of the intracerebral arteries at 1.5, 3 and 7 T. Magn Reson Imaging 2013, 31(4):545-549. doi: 10.1016/j.mri.2012.10.023 PMID: 23219250
Nowinski WL, Puspitasaari F, Volkau I, Marchenko Y, Knopp MV. Comparison of magnetic resonance angiography scans on 1.5, 3, and 7 Tesla units: a quantitative study of 3-dimensional cerebrovasculature. J Neuroimaging 2013, 23(1):86-95.
Cho ZH, Kang CK, Han JY, Kim SH, Kim KN, Hong SM, et al. Observation of the lenticulostriate arteries in the human brain in vivo using 7.0T MR angiography. Stroke 2008, 39(5):1604-1606. doi: 10.1161/STROKEAHA.107.508002 PMID: 18340096
Conijn MM, Hendrikse J, Zwanenburg JJ, Takahara T, Geerlings MI, Mali WP, et al. Perforating arteries originating from the posterior communicating artery: a 7.0-Tesla MRI study. Eur Radiol 2009, 19(12):2986-2992. doi: 10.1007/s00330-009-1485-4 PMID: 19533146
Hendrikse J, Zwanenburg JJ, Visser F, Takahara T, Luijten P. Noninvasive depiction of the lenticulostriate arteries with time-of-flight MR angiography at 7.0 T. Cerebrovasc Dis 2008, 26(6):624-629. doi: 10. 1159/000166838 PMID: 18984947
Kang CK, Park CA, Kim KN, Hong SM, Park CW, Kim YB, et al. Non-invasive visualization of basilar artery perforators with 7T MR angiography. J Magn Reson Imaging 2010, 32(3):544-550. doi: 10.1002/jmri.22250 PMID: 20815051
Kang CK, Park CA, Lee H, Kim SH, Park CW, Kim YB, et al. Hypertension correlates with lenticulostriate arteries visualized by 7T magnetic resonance angiography. Hypertension 2009, 54(5):1050-1056.
Kang CK, Park CA, Park CW, Lee YB, Cho ZH, Kim YB. Lenticulostriate arteries in chronic stroke patients visualised by 7 T magnetic resonance angiography. Int J Stroke 2010, 5(5):374-380.
Kang CK, Park CW, Han JY, Kim SH, Park CA, Kim KN, et al. Imaging and analysis of lenticulostriate arteries using 7.0-Tesla magnetic resonance angiography. Magn Reson Med 2009, 61(1):136-144. doi: 10.1002/mrm.21786 PMID: 19097221
Liem MK, Van Der Grond J, Versluis MJ, Haan J, Webb AG, Ferrari MD, et al. Lenticulostriate arterial lumina are normal in cerebral autosomal-dominant arteriopathy with subcortical infarcts and leukoencephalopathy: a high-field in vivo MRI study. Stroke 2010, 41(12):2812-2816. doi: 10.1161/STROKEAHA.110.586883 PMID: 20966419
Seo SW, Kang CK, Kim SH, Yoon DS, Liao W, Worz S, et al. Measurements of lenticulostriate arteries using 7T MRI: new imaging markers for subcortical vascular dementia. J Neurol Sci 2012, 322(1-2):200-205.
Yang JJ, Hill MD, Morrish WF, Hudon ME, Barber PA, Demchuk AM, et al. Comparison of pre- and postcontrast 3D time-of-flight MR angiography for the evaluation of distal intracranial branch occlusions in acute ischemic stroke. AJNR Am J Neuroradiol 2002, 23(4):557-567. PMID: 11950644
Yano T, Kodama T, Suzuki Y, Watanabe K. Gadolinium-enhanced 3D time-of-flight MR angiography. Experimental and clinical evaluation. Acta Radiol 1997, 38(1):47-54. PMID: 9059401
Ozsarlak O, Van Goethem JW, Parizel PM. 3D time-of-flight MR angiography of the intracranial vessels: optimization of the technique with water excitation, parallel acquisition, eight-channel phasedarray head coil and low-dose contrast administration. Eur Radiol 2004, 14(11):2067-2071. PMID: 15503037
Umutlu L, Theysohn N, Maderwald S, Johst S, Lauenstein TC, Moenninghoff C, et al. 7 Tesla MPRAGE imaging of the intracranial arterial vasculature: nonenhanced versus contrast-enhanced. Acad Radiol 2013, 20(5):628-634. doi: 10.1016/j.acra.2012.12.012 PMID: 23473725
Kang HS, Han MH, Kwon BJ, Kwon OK, Kim SH, Chang KH. Evaluation of the lenticulostriate arteries with rotational angiography and 3D reconstruction. AJNR Am J Neuroradiol 2005, 26(2):306-312. PMID: 15709128
Boeckh-Behrens T, Lutz J, Lummel N, Burke M, Wesemann T, Schopf V, et al. Susceptibility-weighted angiography (SWAN) of cerebral veins and arteries compared to TOF-MRA. Eur J Radiol 2012, 81(6):1238-1245. doi: 10.1016/j.ejrad.2011.02.057 PMID: 21466929
Zhou Q, Liu Z, Li C, Qu C, Ni S, Zeng Q. Preoperative evaluation of neurovascular relationship by using contrast-enhanced and unenhanced 3D time-of-flight MR angiography in patients with trigeminal neuralgia. Acta Radiol 2011, 52(8):894-898. doi: 10.1258/ar.2011.110195 PMID: 21835888
Moshel YA, Marcus JD, Parker EC, Kelly PJ. Resection of insular gliomas: the importance of lenticulostriate artery position. J Neurosurg 2008, 109(5):825-834. doi: 10.3171/JNS/2008/109/11/0825 PMID: 18976071
Lang FF, Olansen NE, De Monte F, Gokaslan ZL, Holland EC, Kalhorn C, et al. Surgical resection of intrinsic insular tumors: complication avoidance. J Neurosurg 2001, 95(4):638-650. PMID: 11596959
Davis WL, Warnock SH, Harnsberger HR, Parker DL, Chen CX. Intracranial MRA: single volume vs. multiple thin slab 3D time-of-flight acquisition. J Comput Assist Tomogr 1993, 17(1):15-21. PMID: 8419427
Schmitter S, Bock M, Johst S, Auerbach EJ, Ugurbil K, Van De Moortele PF. Contrast enhancement in TOF cerebral angiography at 7 T using saturation and MT pulses under SAR constraints: impact of VERSE and sparse pulses. Magn Reson Med 2012, 68(1):188-197. doi: 10.1002/mrm.23226 PMID: 22139829
Wiggins GC, Polimeni JR, Potthast A, Schmitt M, Alagappan V, Wald LL. 96-Channel receive-only head coil for 3 Tesla: design optimization and evaluation. Magn Reson Med 2009, 62(3):754-762. doi: 10.1002/mrm.22028 PMID: 19623621