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9B - TCCS advanced arterial protocol

from 9 - Transcranial insonation

Published online by Cambridge University Press:  05 May 2016

László Csiba
Affiliation:
Department of Neurology, Debreceni Egyetem, Hungary
Claudio Baracchini
Affiliation:
Department of Neuroscience, Università degli Studi di Padova, Italy
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Publisher: Cambridge University Press
Print publication year: 2016

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References

Bartels, E. Color-coded Duplex Ultrasonography of the Cerebral Vessels, Stuttgart: Schattauer; 1999.Google Scholar
Schöning, M, Walter, J, Scheel, P. Estimation of cerebral blood flow through color duplex sonography of the carotid and vertebral arteries in healthy adults. Stroke. 1994;25:1722.CrossRefGoogle ScholarPubMed
Schöning, M, Walter, J. Evaluation of the vertebrobasilar-posterior system by transcranial color duplex sonography in adults. Stroke. 1992;23: 12801286.CrossRefGoogle ScholarPubMed
Martin, PJ, Evans, DH, Naylor, AR. Transcranial color- coded sonography of the basal cerebral circulation. Stroke. 1994;25:390396.CrossRefGoogle ScholarPubMed
Valdueza, JM, Schreiber, SJ, Roehl, J, Klingebiel, R. Neurosonology and Neuroimaging of Stroke. Stuttgart-New York: Thieme, 2008.10.1055/b-006-160396CrossRefGoogle Scholar
Stolz, E, Kaps, M, Kern, A, Dorndorf, W. Frontal bone windows for transcranial color-coded duplex sonography. Stroke. 1999; 30:814820.10.1161/01.STR.30.4.814CrossRefGoogle ScholarPubMed
Krejza, J, Swiat, M, Pawlak, MA, et al. Suitability of temporal bone acoustic window: conventional TCD versus transcranial color-coded duplex sonography. J Neuroimaging. 2007;17:311314.10.1111/j.1552-6569.2007.00117.xCrossRefGoogle ScholarPubMed
Gerriets, T, Goertler, M, Stolz, E, et al. Feasibility and validity of transcranial duplex sonography in patients with acute stroke. J Neurol Neurosurg Psychiatry. 2002;73:1720.CrossRefGoogle ScholarPubMed
Giller, CA. Is angle correction correct? J Neuroimaging. 1994;4:5152.10.1111/jon19944151CrossRefGoogle ScholarPubMed
Eggers, J, Pade, O, Rogge, A, Schreiber, SJ, Valdueza, JM. Transcranial color-coded sonography successfully visualizes all intracranial parts of the internal carotid artery using the combined transtemporal axial and coronal approach. AJNR Am J Neuroradiol. 2009;30:15891593.10.3174/ajnr.A1602CrossRefGoogle ScholarPubMed
Jurgita, V, Felix, S, Thilo, H, et al. Transcranial color-coded duplex sonography of the carotid siphon: the coronal plane approach. Clin Imaging. 2002;26: 8185.Google Scholar
Valaikiene, J, Schuierer, G, Ziemus, B, et al. Transcranial color-coded duplex sonography for detection of distal internal carotid artery stenosis. AJNR Am J Neuroradiol. 2008;29:347353.CrossRefGoogle ScholarPubMed
Kurre, W, Berkefeld, J, Brassel, F, et al; INTRASTENT Study Group. In-hospital complication rates after stent treatment of 388 symptomatic intracranial stenoses: results from the INTRASTENT multicentric registry. Stroke. 2010;41:494498.CrossRefGoogle Scholar
Hayreh, SS, Dass, R. The ophthalmic artery. Br J Ophthalmol. 1962;46: 6598.CrossRefGoogle ScholarPubMed
Lang, J, Kageyama, I. The ophthalmic artery and its branches, measurements and clinical importance. Surg Radiol Anat. 1990;12:8390.10.1007/BF01623328CrossRefGoogle ScholarPubMed
Lasjaunias, P, Bernstein, A, Ter Brugge, KG. The ophthalmic artery and its branches. In: Surgical Neuroangiography (vol. 1). New York: Springer; 2001: 435440.Google Scholar
Schreiber, SJ, Angstwurm, K, Doepp, F, Valdueza, JM. Transcranial duplex ultrasound of the ophthalmic artery. Ultrasound Med Biol. 2006;32:309313.CrossRefGoogle ScholarPubMed
Huber, P. Cerebral Angiography (2nd ed.). Stuttgart: Thieme; 1982.Google Scholar
Rogge, A, Schreiber, SJ, Doepp, F, Valdueza, JM. Transcranial color-coded duplex sonography of the middle cerebral artery: more than just the M1 segment. J Ultrasound Med. 2015;34:267273.CrossRefGoogle ScholarPubMed
Gibo, H, Carver, C, Rhoton, AL, Lenkey, C, Mitchell, RJ. Microsurgical anatomy of the middle cerebral artery. J Neurosurg. 1981;54:151169.10.3171/jns.1981.54.2.0151CrossRefGoogle ScholarPubMed
Tanriover, N, Kawashima, M, Rhoton, A, Ulm, AJ, Mericle, RA. Microsurgical anatomy of the early branches of the middle cerebral artery: morphometric analysis and classification with angiographic correlation. J Neurosurg. 2003;98:12771290.10.3171/jns.2003.98.6.1277CrossRefGoogle ScholarPubMed
Umansky, F, Dujovny, M, Ausman, JI, Diaz, FG, Mirchandani, HG. Anomalies and variations of the middle cerebral artery: a microanatomical study. Neurosurgery. 1988;22:10231027.CrossRefGoogle ScholarPubMed
Valdueza, JM, Schreiber, SJ, Roehl, J, Klingebiel, R. Case 10. M1 middle cerebral artery occlusion with prominent early temporal branch. In: Neurosonology and Neuroimaging of Stroke. Stuttgart: Thieme; 2008;269278.10.1055/b-006-160396CrossRefGoogle Scholar
Yasargil, MG. Microneurosurgery, Vol. I: Microsurgical Anatomy of the Basal Cisterns and Vessels of the Brain, Diagnostic Studies, General Operative Techniques and Pathological Considerations of the Intracranial Aneurysms. Stuttgart-New York: Thieme, 1984.Google Scholar
Caruso, G, Vincentelli, F, Rabehanta, P, Giudicelli, G, Grisoli, F. Anomalies of the P1 segment of the posterior cerebral artery: early bifurcation or duplication, fenestration, common trunk with the superior cerebellar artery. Acta Neurochir. 1991;109:6671.CrossRefGoogle ScholarPubMed
Hoksbergen, AWJ, Legemate, DA, Ubbink, DT, Jacobs, MJHM. Collateral variations in circle of Willis in atherosclerotic population assessed by means of transcranial color-coded duplex sonography. Stroke. 2000;31:16561660.CrossRefGoogle Scholar
Saeki, N, Rhoton, AL Jr. Microsurgical anatomy of the upper basilar artery and the posterior circle of Willis. J Neurosurg. 1977;46:563578.CrossRefGoogle ScholarPubMed
Zeal, AA, Rhoton, AL Jr. Microsurgical anatomy of the posterior cerebral artery. J Neurosurg. 1978;48:534559.10.3171/jns.1978.48.4.0534CrossRefGoogle ScholarPubMed
Frid, P, Schreiber, SJ, Pade, O, et al. The posterior cerebral artery and its main cortical branches identified with non-invasive transcranial color-coded duplex sonography. Ultrasound Internat Open. 2015;01(02):E53–E57.Google Scholar
Schulte-Altedorneburg, G, Droste, DW, Popa, V. Visualization of the basilar artery by transcranial colour-coded duplex sonography: comparison with postmortem results. Stroke. 2000;31:11231127.CrossRefGoogle Scholar
Becker, G, Lindner, A, Bogdahn, U. Imaging of the vertebrobasilar system by transcranial colour-coded real-time sonography. J Ultrasound Med. 1993;12:395401.CrossRefGoogle Scholar
Bogdahn, U, Becker, G, Winkler, J, Greiner, K, Perez, J, Meurers, B. Transcranial colour-coded real-time sonography in adults. Stroke. 1990; 21:16801688.CrossRefGoogle Scholar
Iglseder, B, Huemer, M, Staffen, W, Ladurner, G. Imaging the basilar artery by contrast-enhanced colour-coded ultrasound. J Neuroimaging. 2000;10:195199.CrossRefGoogle Scholar
Postert, T, Braun, B, Federlein, J, Przuntek, H, Büttner, T. Comparison of transcranial power Doppler and contrast-enhanced colour-coded sonography in the identification of intracranial arteries. J Ultrasound Med. 1998;17:9196.CrossRefGoogle Scholar
Stolz, E, Nückel, M, Mendes, I, Gerriets, T, Kaps, M. Vertebrobasilar transcranial colour-coded duplex ultrasonography: improvement with echo enhancement. Am J Neuroradiol. 2002;23:10511054.Google Scholar
Pade, O, Eggers, J, Schreiber, SJ, Valdueza, J. Complete basilar artery assessment by transcranial color-coded duplex sonography using the combined transforaminal and transtemporal approach. Ultraschall Med. 2011;32(Suppl 2):E63–68.Google ScholarPubMed
Kermer, P, Wellmer, A, Crome, O, et al. Transcranial colour-coded duplex sonography in suspected acute basilar artery occlusion. Ultrasound Med Biol. 2006;32: 315320.CrossRefGoogle Scholar
Mani, RL, Newton, TH, Glickman, MG. The superior cerebellar artery: an anatomic-roentgenographic correlation. Radiology. 1968;91:11021108.CrossRefGoogle ScholarPubMed
Hardy, DG, Peace, DA, Rhoton, AL Jr. Microsurgical anatomy of the superior cerebellar artery. Neurosurgery. 1980;6:1028.CrossRefGoogle ScholarPubMed
Baumgartner, RW, Heinrich, P, Mattle, HP, Schroth, G. Assessment of ≥ 50% and < 50% intracranial stenosis by transcranial colour-coded duplex sonography. Stroke. 1999;30:8792.10.1161/01.STR.30.1.87CrossRefGoogle Scholar
Pade, O, Schreiber, SJ, Eggers, J, Valdueza, J. Superior cerebellar artery – a potential pitfall in transcranial posterior cerebral artery insonation. Ultraschall Med. 2010;31:401404.CrossRefGoogle ScholarPubMed

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