Yıl: 2018 Cilt: 6 Sayı: 1 Sayfa Aralığı: 109 - 120 Metin Dili: Türkçe DOI: 10.5152/trs.2018.584 İndeks Tarihi: 24-07-2019

Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme

Öz:
-
Anahtar Kelime:

Konular: Radyoloji, Nükleer Tıp, Tıbbi Görüntüleme
Belge Türü: Makale Makale Türü: Diğer Erişim Türü: Erişime Açık
  • Rinkel GJ, Djibuti M, Algra A, van Gijn J. Prevalence and risk of rupture of intracranial aneurysms: a systematic review. Stroke 1998; 29: 251-6. [CrossRef]
  • van Gijn J, Kerr RS, Rinkel GJ. Subarachnoid haemorrhage. Lancet 2007; 369: 306-18. [CrossRef]
  • Vlak MH, Algra A, Brandenburg R, Rinkel GJ. Prevalence of unruptured intracranial aneurysms, with emphasis on sex, age, comorbidity, country, and time period: a systematic review and meta-analysis. Lancet Neurol 2011; 10: 626-36. [CrossRef]
  • Cagnazzo F, Gambacciani C, Morganti R, Perrini P. Intracranial aneurysms in patients with autosomal dominant polycystic kidney disease: prevalence, risk of rupture, and management. A systematic review. Acta Neurochir 2017; 159: 811-21. [CrossRef]
  • Long B, Koyfman A, Runyon MS. Subarachnoid Hemorrhage: Updates in Diagnosis and Management. Emerg Med Clin North Am 2017; 35: 803-24. [CrossRef]
  • Chen W, Xing W, He Z, Peng Y, Wang C, Wang Q. Accuracy of 320-detector row nonsubtracted and subtracted volume CT angiography in evaluating small cerebral aneurysms. J Neurosurg 2017; 127: 725-31. [CrossRef]
  • Feng TY, Han XF, Lang R, Wang F, Wu Q. Subtraction CT angiography for the detection of intracranial aneurysms: A meta-analysis. Exp Ther Med 2016; 11: 1930-6. [CrossRef]
  • Sailer AM, Wagemans BA, Nelemans PJ, de Graaf R, van Zwam WH. Diagnosing intracranial aneurysms with MR angiography: systematic review and meta-analysis. Stroke 2014; 45: 119-26. [CrossRef]
  • Bonati LH, Nederkoorn PJ. Clinical Perspective of Carotid Plaque Imaging. Neuroimaging Clin N Am 2016; 26: 175-82. [CrossRef]
  • Kargiotis O, Safouris A, Magoufis G, Georgala M, Roussopoulou A, Stamboulis E, et al. The Role of Neurosonology in the Diagnosis and Management of Patients with Carotid Artery Disease: A Review. J Neuroimaging 2018; 28: 239-51. [CrossRef]
  • Grant EG, Benson CB, Moneta GL, Alexandrov AV, Baker JD, Bluth EI, et al. Carotid artery stenosis: gray-scale and Doppler US diagnosis--Society of Radiologists in Ultrasound Consensus Conference. Radiology 2003; 229: 340-6. [CrossRef]
  • Rafailidis V, Charitanti A, Tegos T, Destanis E, Chryssogonidis I. Contrast-enhanced ultrasound of the carotid system: a review of the current literature. J Ultrasound 2017; 20: 97-109. [CrossRef]
  • Cires-Drouet RS, Mozafarian M, Ali A, Sikdar S, Lal BK. Imaging of high-risk carotid plaques: ultrasound. Semin Vasc Surg 2017; 30: 44-53. [CrossRef]
  • Chen H, Zhang Q, Kerwin W. Analysis of Multicontrast Carotid Plaque MR Imaging. Neuroimaging Clin N Am 2016; 26: 13-28. [CrossRef]
  • Holmstedt CA, Turan TN, Chimowitz MI. Atherosclerotic intracranial arterial stenosis: risk factors, diagnosis, and treatment. Lancet Neurol 2013; 12: 1106- 14. [CrossRef]
  • Reith W, Berkefeld J, Dietrich P, Fiehler J, Jansen O. Diagnosis and Treatment of Intracranial Stenoses. Clin Neuroradiol 2015; 25: 307-16. [CrossRef]
  • Sade R, Ogul H. Serebrovasküler Olay. Trd Sem 2016; 4: 198-210. [CrossRef]
  • Nogueira RG, Jadhav AP, Haussen DC, Bonafe A, Budzik RF, Bhuva P, et al. Thrombectomy 6 to 24 Hours after Stroke with a Mismatch between Deficit and Infarct. N Engl J Med 2018; 378: 11-21. [CrossRef]
  • Albers GW, Marks MP, Kemp S, Christensen S, Tsai JP, Ortega-Gutierrez S, et al. Thrombectomy for Stroke at 6 to 16 Hours with Selection by Perfusion Imaging. N Engl J Med 2018; 378: 708-18. [CrossRef]
  • Petrella JR, Provenzale JM. MR perfusion imaging of the brain: techniques and applications. AJR Am J Roentgenol 2000; 175: 207-19. [CrossRef]
  • Arakawa S, Wright PM, Koga M, Phan TG, Reutens DC, Lim I, et al. Ischemic thresholds for gray and white matter: a diffusion and perfusion magnetic resonance study. Stroke 2006; 37: 1211-6. [CrossRef]
  • Schramm P, Schellinger PD, Klotz E, Kallenberg K, Fiebach JB, Külkens S, et al. Comparison of perfusion computed tomography and computed tomography angiography source images with perfusion-weighted imaging and diffusion-weighted imaging in patients with acute stroke of less than 6 hours’ duration. Stroke 2004; 35: 1652-8. [CrossRef]
  • Albers GW, Thijs VN, Wechsler L, et al. Magnetic resonance imaging profiles predict clinical response to early reperfusion: the diffusion and perfusion imaging evaluation for understanding stroke evolution (DEFUSE) study. Ann Neurol 2006; 60: 508-17. [CrossRef]
  • Solomon RA, Connolly ES Jr. Arteriovenous Malformations of the Brain. New Engl J Med 2017; 376: 1859-66. [CrossRef]
  • Mokin M, Dumont TM, Levy EI. Novel multimodality imaging techniques for diagnosis and evaluation of arteriovenous malformations. Neurol Clin 2014; 32: 225-36. [CrossRef]
  • Geibprasert S, Pongpech S, Jiarakongmun P, Shroff MM, Armstrong DC, Krings T. Radiologic assessment of brain arteriovenous malformations: what clinicians need to know. Radiographics 2010; 30: 483-501. [CrossRef]
  • Abdel Razek AA, Alvarez H, Bagg S, Refaat S, Castillo M. Imaging spectrum of CNS vasculitis. Radiographics 2014; 34: 873-94. [CrossRef]
APA SADE R, LEVENT A (2018). Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. , 109 - 120. 10.5152/trs.2018.584
Chicago SADE Recep,LEVENT Akın Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. (2018): 109 - 120. 10.5152/trs.2018.584
MLA SADE Recep,LEVENT Akın Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. , 2018, ss.109 - 120. 10.5152/trs.2018.584
AMA SADE R,LEVENT A Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. . 2018; 109 - 120. 10.5152/trs.2018.584
Vancouver SADE R,LEVENT A Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. . 2018; 109 - 120. 10.5152/trs.2018.584
IEEE SADE R,LEVENT A "Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme." , ss.109 - 120, 2018. 10.5152/trs.2018.584
ISNAD SADE, Recep - LEVENT, Akın. "Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme". (2018), 109-120. https://doi.org/10.5152/trs.2018.584
APA SADE R, LEVENT A (2018). Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. Türk Radyoloji Seminerleri, 6(1), 109 - 120. 10.5152/trs.2018.584
Chicago SADE Recep,LEVENT Akın Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. Türk Radyoloji Seminerleri 6, no.1 (2018): 109 - 120. 10.5152/trs.2018.584
MLA SADE Recep,LEVENT Akın Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. Türk Radyoloji Seminerleri, vol.6, no.1, 2018, ss.109 - 120. 10.5152/trs.2018.584
AMA SADE R,LEVENT A Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. Türk Radyoloji Seminerleri. 2018; 6(1): 109 - 120. 10.5152/trs.2018.584
Vancouver SADE R,LEVENT A Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme. Türk Radyoloji Seminerleri. 2018; 6(1): 109 - 120. 10.5152/trs.2018.584
IEEE SADE R,LEVENT A "Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme." Türk Radyoloji Seminerleri, 6, ss.109 - 120, 2018. 10.5152/trs.2018.584
ISNAD SADE, Recep - LEVENT, Akın. "Nörovasküler Patolojilerde Teşhis ve İşlem Öncesi Görüntüleme". Türk Radyoloji Seminerleri 6/1 (2018), 109-120. https://doi.org/10.5152/trs.2018.584