Giant Intracranial Cavernous Malformations: A Review on Magnetic Resonance Imaging Characteristics
暂无分享,去创建一个
[1] M. Castillo,et al. Cerebral cavernous malformations: Typical and atypical imaging characteristics , 2022, Journal of neuroimaging : official journal of the American Society of Neuroimaging.
[2] R. Shenkar,et al. Perfusion and Permeability MRI Predicts Future Cavernous Angioma Hemorrhage and Growth , 2021, Journal of magnetic resonance imaging : JMRI.
[3] Xinxing Li,et al. Clinical Uses of Diffusion Tensor Imaging Fiber Tracking Merged Neuronavigation with Lesions Adjacent to Corticospinal Tract : A Retrospective Cohort Study , 2019, Journal of Korean Neurosurgical Society.
[4] Sven Haller,et al. Cerebral Microbleeds: Imaging and Clinical Significance. , 2018, Radiology.
[5] H. Abe,et al. Cerebral and spinal cavernomas associated with Klippel-Trenaunay syndrome: case report and literature review , 2018, Acta Neurochirurgica.
[6] M. Morioka,et al. Symptomatic Brainstem Cavernoma of Elderly Patients: Timing and Strategy of Surgical Treatment. Two Case Reports and Review of the Literature. , 2017, World neurosurgery.
[7] G. Lanzino,et al. Prevalence of cerebral cavernous malformations associated with developmental venous anomalies increases with age , 2017, Child's Nervous System.
[8] D. Kondziolka,et al. Synopsis of Guidelines for the Clinical Management of Cerebral Cavernous Malformations: Consensus Recommendations Based on Systematic Literature Review by the Angioma Alliance Scientific Advisory Board Clinical Experts Panel , 2017, Neurosurgery.
[9] A. Panigrahy,et al. PHACE syndrome is associated with intracranial cavernous malformations , 2016, Child's Nervous System.
[10] L. Oleaga,et al. Hyperintense perilesional edema in the brain on T1-weighted images: Cavernous malformation or metastatic melanoma? Three case reports and literature review , 2016, The neuroradiology journal.
[11] L. Pawlikowska,et al. Genetics of cerebral cavernous malformations: current status and future prospects. , 2015, Journal of neurosurgical sciences.
[12] M. Lawton,et al. Surgical treatment of cerebral cavernous malformations. , 2015, Journal of neurosurgical sciences.
[13] X. Anqi,et al. Cavernous sinus cavernous hemangioma: Imaging features and therapeutic effect of Gamma Knife radiosurgery , 2014, Clinical Neurology and Neurosurgery.
[14] Mark E Ladd,et al. The venous angioarchitecture of sporadic cerebral cavernous malformations: a susceptibility weighted imaging study at 7 T MRI , 2012, Journal of Neurology, Neurosurgery & Psychiatry.
[15] A. Laakso,et al. A Proposed Grading System of Brain and Spinal Cavernomas , 2011, Neurosurgery.
[16] A. Reuss,et al. Epileptogenicity of Cavernomas Depends on (Archi-) Cortical Localization , 2010, Neurosurgery.
[17] I. Awad,et al. Emerging clinical imaging techniques for cerebral cavernous malformations: a systematic review. , 2010, Neurosurgical focus.
[18] T. KiliÇ,et al. Expressions of angiogenesis associated matrix metalloproteinases and extracellular matrix proteins in cerebral vascular malformations , 2010, Journal of Clinical Neuroscience.
[19] Takatoshi Nakamura,et al. Dural cavernous hemangioma of the cerebellar falx. , 2009, Neurologia medico-chirurgica.
[20] A. Goel,et al. Supratentorial Convexity Dural-Based Cavernous Hemangioma Mimicking a Meningioma in a Child , 2009, Pediatric Neurosurgery.
[21] K. Chang,et al. A T1 Hyperintense Perilesional Signal Aids in the Differentiation of a Cavernous Angioma from Other Hemorrhagic Masses , 2008, American Journal of Neuroradiology.
[22] E. Gasparetto,et al. Susceptibility-Weighted Imaging for the Evaluation of Patients with Familial Cerebral Cavernous Malformations: A Comparison with T2-Weighted Fast Spin-Echo and Gradient-Echo Sequences , 2008, American Journal of Neuroradiology.
[23] Michael Weber,et al. Improved Preoperative Evaluation of Cerebral Cavernomas by High-Field, High-Resolution Susceptibility-Weighted Magnetic Resonance Imaging at 3 Tesla: Comparison With Standard (1.5 T) Magnetic Resonance Imaging and Correlation With Histopathological Findings—Preliminary Results , 2007, Investigative radiology.
[24] S. Coons,et al. Are cavernous sinus hemangiomas and cavernous malformations different entities? , 2006, Neurosurgical focus.
[25] S. Dashti,et al. Molecular genetics of familial cerebral cavernous malformations. , 2006, Neurosurgical focus.
[26] M. Pamir,et al. Radiosurgical treatment of cavernous sinus cavernous haemangiomas , 2004, Acta Neurochirurgica.
[27] G. Fuller,et al. Pathologically Proven Cavernous Angiomas of the Brain following Radiation Therapy for Pediatric Brain Tumors , 2003, Pediatric Neurosurgery.
[28] R. Willinsky,et al. Intracranial cavernous malformations. , 2003, Neuroimaging clinics of North America.
[29] F. Giangaspero,et al. Growth, subsequent bleeding, and de novo appearance of cerebral cavernous angiomas. , 1996, Neurosurgery.
[30] D. Kondziolka,et al. Reduction of hemorrhage risk after stereotactic radiosurgery for cavernous malformations. , 1995, Journal of neurosurgery.
[31] W. Kirsten,et al. Dose-response studies to polyoma virus in rats. , 1965, Journal of the National Cancer Institute.
[32] F. Barker,et al. Cranial Cavernous Malformations: Natural History and Treatment , 2018, Stroke.
[33] Jason A. Ellis,et al. Supratentorial cavernous malformations. , 2017, Handbook of clinical neurology.
[34] R. Prayson,et al. Cavernous angiomas in chronic epilepsy associated with focal cortical dysplasia. , 2013, Clinical neuropathology.
[35] I. Awad,et al. A comparison of the clinical profile of cavernous malformations with and without associated venous malformations. , 1999, Neurosurgery.
[36] M. Lawton,et al. Cavernous malformations of the brainstem: experience with 100 patients. , 1999, Journal of neurosurgery.
[37] W. Poon,et al. Dural cavernous angiomas in a child. , 1996, Pediatric neurosurgery.