期刊文献+

功能区胶质瘤术中应用DTI-FT导航定位和保护锥体束(附13例报告) 被引量:17

Localization and function protection of pyramidal tract using DTI-FT in resection of glioma in eloquent brain areas:report of 13 cases
暂未订购
导出
摘要 目的研究功能区胶质瘤术中完善而有效的锥体束空间定位和功能保护方法。方法对13例功能区胶质瘤应用1.5T磁共振系统采集弥散张量成像(DTI)数据,在功能神经导航中进行纤维束示踪(FT),在导航中确定肿瘤与锥体束界面的标记点,应用自制导航穿刺针、着色明胶海绵对白质内锥体束走行进行空间定位。在空间定位锥体束基础上,应用皮质、皮质下直接电刺激或唤醒麻醉技术在肿瘤切除中对锥体束功能进行评估监测,保证其正常功能。结果本组锥体束与肿瘤交界区在神经导航中均得到确定,术中在DTI-FT导航下空间定位满意;锥体束功能判定明确者10例。均全切肿瘤,运动功能保持术前正常水平或得到改善。结论联合应用DTI-FT导航、神经电生理或唤醒麻醉技术可确保锥体束功能不出现手术损伤,同时为明确胶质瘤在脑白质内功能性边界提供有效方法。 Objective To establish an optimized method for localizing and protecting the pyramidal tract in resection of glioma in eloquent brain areas. Methods Functional magnetic resonance image (DTI) data were obtained with a 1.5T Siemens scanner and fused in a neuronavigation system in 13 cases ofglioma in eloquent brain area. After pyramidal tract visualization by fiber tractography (FT) technique, the interface between the tumor and pyramidal tract was identified and marked in the neuronavigation. A self-made puncture needle for navigation and methylene blue-stained gelatin sponge were used to localize the pyramidal tract after the dura was opened. The cortical and subcortical direct electrical stimulation or "awake anesthesia" were used to protect pyramidal tract function during tumor resection. Results The pyramidal tracts were visualized and marked in the neuronavigation in all the patients. The interface between tumor and pyramidal tract were successfully localized before tumor resection. Pyramidal function was inspected and identified definitely during tumor resection in 10 patients. Tumor was totally resected in all the patients without operation-related motor function disorder, even with some improvement of motor function. Conclusion Combination of DTI-FT neuronavigation, direct simulation and (or) "awake anesthesia" is an optimal method for protecting functional against injury to the pyramidal tract, which also could let us identify the functional boundary of glioma in the brain white matter.
出处 《中国微侵袭神经外科杂志》 CAS 2007年第1期9-12,共4页 Chinese Journal of Minimally Invasive Neurosurgery
关键词 锥体束 磁共振成像 弥散 纤维束示踪 神经导航 电刺激 胶质瘤 pyramidal tract diffusion magnetic resonance imaging fiber tractography neuronavigation electrical stimulation glioma
  • 相关文献

参考文献14

  • 1于春水,李坤成,李永忠,梁志刚,秦文,刘嘉宾.人脑连合纤维的弥散张量纤维束成像[J].中国医学影像技术,2004,20(3):378-380. 被引量:20
  • 2BASSER P J, JONES D K. Diffusion-tensor MRI: theory,experimental design and data analysis——a technical review[J]. NMR Biomed, 2002, 15(7-8): 456-467.
  • 3MELHEM E R, MORI S, MUKUNDAN G. Diffusion tensor MR imaging of the brain and white matter tractography [J].Am J Roentgenol, 2002, 178(1): 3-16.
  • 4DUFFAU H, CAPELLE L, SICHEZ J, et al. Intraoperative direct electrical stimulations of the central nervous system:the Salpetriere experience with 60 patients [J]. Acta Neurochir (Wien), 1999, 141(11): 1157-1167.
  • 5王伟民,施冲,李天栋,蒋晓星,白红民,高寒,王国良,李建亭,王玉宝.脑功能区胶质瘤的手术策略[J].中华神经外科杂志,2004,20(2):147-150. 被引量:93
  • 6李天栋,白红民,蒋晓星,高寒,李建亭,王国良,王伟民.直接皮质电刺激在脑功能区手术中对脑功能的保护作用[J].中国临床康复,2004,8(10):1828-1829. 被引量:8
  • 7DUFFAU H, CAPELLE L, SICHEZ N, et al. Intraoperative mapping of the subcortical language pathways using direct stimulations. An anatomo-functional study [J]. Brain, 2002,125(Pt 1): 199-214.
  • 8KELES G E, BERGER M S. Advances in neurosurgical technique in the current management of brain tumors [J].Semin Oncol, 2004, 31(5): 659-665.
  • 9温洋,戴建平.利用扩散原理的体内神经纤维束示踪成像[J].国外医学(临床放射学分册),2004,27(5):331-334. 被引量:3
  • 10LIN C P, WEDEEN V J, CHEN J H, et al. Validation of diffusion spectrum magnetic resonance imaging with manganese-enhanced rat optic tracts and ex vivo phantoms [J]. Neuroimage, 2003, 19(3): 482-495.

二级参考文献34

  • 1[1]Melhem ER, Mori S, Mukundan G, et al. Diffusion tensor MR imaging of the brain and white matter tractography[J]. AJR, 2002, 178(1):3-16.
  • 2[3]Everett NB. Functional neuroanatomy[M]. 6th ed. Washington: Henry Kimpton,1971.
  • 3[4]Catani M, Howard RJ, Pajevic S, et al.Virtual in vivo interactive dissection of white matter fasciculi in the human brain[J]. Neuroimage, 2002, 17(1):77-94.
  • 4[5]Hagmann P, Thiran JP, Jonasson L, et al. DTI mapping of human brain connectivity: statistical fibre tracking and virtual dissection[J]. Neuroimage, 2003, 19(3):545-554.
  • 5[6]Lazar M, Weinstein DM, Tsuruda JS, et al. White matter tractography using diffusion tensor deflection[J]. Hum Brain Mapp, 2003, 18(4):306-321.
  • 6[7]Jones DK, Horsfield MA, Simmons A. Optimal strategies for measuring diffusion in anisotropic systems by magnetic resonance imaging[J]. Magn Reson Med, 1999, 42(3): 515-525.
  • 7[8]Hasan KM, Parker DL, Alexander AL. Comparison of gradient encoding schemes for diffusion-tensor MRI[J]. J Magn Reson Imaging, 2001, 13(5):769-780.
  • 8Suzuki A, Yasmi N. Intraoperative location of the central sulcus by cortical somatosensory evoked potentials in brain tumor. Case report J Neurosurg 1992: 76:867.
  • 9Woolsey CN, Erickson TC. Study of the postcentral gyrus of man by the evoked potential technique. Trans Am Neurol Assoc 1950; 75:50 - 2.
  • 10Wood CC, Spencer DD, Allison T, et al. Localization of human sensorimotor cortex during surgery by cortical surface recording of somatosensory evoked potentials. J Neurosurg 1988; 68:99 - 111.

共引文献184

同被引文献201

引证文献17

二级引证文献78

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部