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Manyetik Rezonans Venografi ile Oksipital Sinüs Varyasyonlarının Değerlendirilmesi: Türk Toplumunda Morfoloji Çalışması

Yıl 2021, Cilt: 7 Sayı: 1, 77 - 82, 01.01.2021

Öz

Amaç: Oksipital sinüs OS dural venöz yapıların en küçüklerinden birisidir. Ancak posteror fossa cerrahilerinde varlığı ve vasyasyonları oldukça önemlidir. Bu çalışmanın amacı Türk toplumunda OS görülme sıklığı ve varyasyonlarını tanımlamaktır.Gereç ve Yöntemler: Hastanemizde Ocak 2016-Kasım 2019 tarihlerinde Manyetik Rezonans MR Venografi çekimi yapılan 468 hasta değerlendirildi. Çalışmaya 379 hasta alındı. Kontrastlı kaynak kesitler ve maksimum yoğunluk projeksiyon MYP görüntüler iki radyolog tarafından değerlendirildi. OS varlığı, çapı, başlangıcı ve drene eden sinüs, dallanmaları not edildi. Yanı sıra konvansiyonel beyin MR sekansları da değerlendirildi. İstatistiksel olarak p

Kaynakça

  • Kobayashi K, Suzuki M, Ueda F, Matsui O. Anatomi- cal study of the occipital sinus using contrast-enhanced magnetic resonance venography. Neuroradiology 2006; 48(6):373-9.
  • Srijit D, Latiff AA, Suhaimi FH, Othman FB, Yahaya MF, Ahmad F, Hamid HA. An anatomico-radiological study of the grooves for occipital sinus in the posterior cranial fossa. Bratisl Lek Listy 2008; 109(11):520-4.
  • Tanohata K. Normal variations of brain, head and neck vessels. Medical View, Tokyo 2000;140-2.
  • Suzuki M, Matsui O, Ueda F, Hattori Y, Minami T, Kobayashi K, Tawara M, Kawashima H, Takanaka T, Yamashita J. Contrast-enhanced MR angiography (enhanced 3-D fast gradient echo) for diagnosis of cerebral aneurysms. Neuroradiology 2002;44(1):17-20.
  • Kaneko U. Japanese Human Anatomy, 17th ed. Tokyo, Nanzando. 1973: 292-8.
  • Newton TH, Potts DG (eds): Radiology of the skull and brain angiography, 2th ed. Mosby, Saint Louis, 1974: 1866-8.
  • Curé JK, Tassel PV, Smith MT. Normal and variant anatomy of the dural venous sinuses. Semin Ultrasound CT MRI 1994; 15:499-519.
  • Dora F, Zileli T. Common variations of the lateral and occipital sinuses at the confluens sinuum. Neuroradiology 1980; 20(1):23-7.
  • Lang J (eds): Cinical Anatomy of the posterior cranial fos- sa and its foramina. 1th ed. New York: Thieme, 1991.
  • Susa Y. Patterns of the torcular Herophili: Measurement of sinus lumen and histology of sinus wall. J Nippon Med School 1950; 27:247-63.
  • Ohata K, Haque M, Morino M, Nagai K, Nishio A, Nishijima Y, Hakuba A. Occlusion of the sigmoid sinüs after surgery via the presigmoidal-transpetrosal approach. J Neurosurg 1998; 89(4):575-84.
  • Hollinshead WH. Anatomy for surgeons, the head and neck, vol 1. Hoeber Medical Division of Harper & Row, New York, 1958:13-74.
  • Das AC, Hasan M. The occipital sinus. J Neurosurg 1970; 33:307-11.
  • Farb RI, Scott JN, Willinsky RA, Montanera WJ, Wright GA, terBrugge KG. Intracranial venous system: Gadoli- nium-enhanced three-dimensional MR venography with auto-triggered elliptic centric-ordered sequence-initial experience. Radiology 2003; 226(1):203-9.
  • Widjaja E, Griffiths PD. Intracranial MR venography in Children: Normal anatomy and variations. Am J Neuro- radiol 2004; 25(9):1557-62.
  • Okudera T, Huang YP, Ohta T, Yokota A, Nakamura Y, Maehara F, Utsunomiya H, Fukasawa H. Develop- ment of posterior fossa dural sinuses, emissary veins, and jugular bulb: Morphological and radiologic study. Am J Neuroradiol 1994; 15:1871-83.

Evaluation of Occipital Sinus Variations By Magnetic Resonance Venography: Morphologic Study in Turkish Society

Yıl 2021, Cilt: 7 Sayı: 1, 77 - 82, 01.01.2021

Öz

Objective: The occipital sinus OS is one of the smallest of the dural venous structures. However, its presence and variations are very important for the posterior fossa surgeries. The aim of this study is to describe the frequency and variations of OS in the Turkish society.Material and Methods: 468 patients who underwent Magnetic Resonance MR Venography at our hospital between January 2016 and November 2019 were evaluated. 379 patients were included in the study. Contrast-enhanced source images and maximum intensity projection MIP images were evaluated by two radiologists. The presence of the OS, and the diameter, origin, draining sinus, and branching were noted. In addition, conventional brain MR sequences were evaluated. Statistical values of p

Kaynakça

  • Kobayashi K, Suzuki M, Ueda F, Matsui O. Anatomi- cal study of the occipital sinus using contrast-enhanced magnetic resonance venography. Neuroradiology 2006; 48(6):373-9.
  • Srijit D, Latiff AA, Suhaimi FH, Othman FB, Yahaya MF, Ahmad F, Hamid HA. An anatomico-radiological study of the grooves for occipital sinus in the posterior cranial fossa. Bratisl Lek Listy 2008; 109(11):520-4.
  • Tanohata K. Normal variations of brain, head and neck vessels. Medical View, Tokyo 2000;140-2.
  • Suzuki M, Matsui O, Ueda F, Hattori Y, Minami T, Kobayashi K, Tawara M, Kawashima H, Takanaka T, Yamashita J. Contrast-enhanced MR angiography (enhanced 3-D fast gradient echo) for diagnosis of cerebral aneurysms. Neuroradiology 2002;44(1):17-20.
  • Kaneko U. Japanese Human Anatomy, 17th ed. Tokyo, Nanzando. 1973: 292-8.
  • Newton TH, Potts DG (eds): Radiology of the skull and brain angiography, 2th ed. Mosby, Saint Louis, 1974: 1866-8.
  • Curé JK, Tassel PV, Smith MT. Normal and variant anatomy of the dural venous sinuses. Semin Ultrasound CT MRI 1994; 15:499-519.
  • Dora F, Zileli T. Common variations of the lateral and occipital sinuses at the confluens sinuum. Neuroradiology 1980; 20(1):23-7.
  • Lang J (eds): Cinical Anatomy of the posterior cranial fos- sa and its foramina. 1th ed. New York: Thieme, 1991.
  • Susa Y. Patterns of the torcular Herophili: Measurement of sinus lumen and histology of sinus wall. J Nippon Med School 1950; 27:247-63.
  • Ohata K, Haque M, Morino M, Nagai K, Nishio A, Nishijima Y, Hakuba A. Occlusion of the sigmoid sinüs after surgery via the presigmoidal-transpetrosal approach. J Neurosurg 1998; 89(4):575-84.
  • Hollinshead WH. Anatomy for surgeons, the head and neck, vol 1. Hoeber Medical Division of Harper & Row, New York, 1958:13-74.
  • Das AC, Hasan M. The occipital sinus. J Neurosurg 1970; 33:307-11.
  • Farb RI, Scott JN, Willinsky RA, Montanera WJ, Wright GA, terBrugge KG. Intracranial venous system: Gadoli- nium-enhanced three-dimensional MR venography with auto-triggered elliptic centric-ordered sequence-initial experience. Radiology 2003; 226(1):203-9.
  • Widjaja E, Griffiths PD. Intracranial MR venography in Children: Normal anatomy and variations. Am J Neuro- radiol 2004; 25(9):1557-62.
  • Okudera T, Huang YP, Ohta T, Yokota A, Nakamura Y, Maehara F, Utsunomiya H, Fukasawa H. Develop- ment of posterior fossa dural sinuses, emissary veins, and jugular bulb: Morphological and radiologic study. Am J Neuroradiol 1994; 15:1871-83.
Toplam 16 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Araştırma Makalesi
Yazarlar

Okan Dilek Bu kişi benim

Ömer Kaya Bu kişi benim

Hüseyin Akkaya Bu kişi benim

Bozkurt Gülek Bu kişi benim

Yayımlanma Tarihi 1 Ocak 2021
Yayımlandığı Sayı Yıl 2021 Cilt: 7 Sayı: 1

Kaynak Göster

APA Dilek, O., Kaya, Ö., Akkaya, H., Gülek, B. (2021). Manyetik Rezonans Venografi ile Oksipital Sinüs Varyasyonlarının Değerlendirilmesi: Türk Toplumunda Morfoloji Çalışması. Akdeniz Tıp Dergisi, 7(1), 77-82.