Interactive Diffusion Tensor Tractography Visualization for Neurosurgical Planning

被引:71
|
作者
Golby, Alexandra J. [1 ,2 ]
Kindlmann, Gordon [2 ]
Norton, Isaiah [1 ]
Yarmarkovich, Alexander [2 ]
Pieper, Steven [2 ]
Kikinis, Ron [2 ]
机构
[1] Harvard Univ, Dept Neurosurg, Sch Med, Brigham & Womens Hosp, Boston, MA 02115 USA
[2] Harvard Univ, Dept Radiol, Sch Med, Boston, MA 02115 USA
基金
美国国家卫生研究院;
关键词
Diffusion tensor imaging; Magnetic resonance imaging; Neurosurgery; Surgical planning; Tractography; WHITE-MATTER TRACTS; LOW-GRADE GLIOMA; FIBER-TRACKING; MAGNETIC-RESONANCE; BRAIN-TUMORS; CONSECUTIVE SERIES; LANGUAGE PATHWAYS; FUNCTIONAL MR; II GLIOMA; RESECTION;
D O I
10.1227/NEU.0b013e3182061ebb
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
BACKGROUND: Diffusion tensor imaging (DTI) infers the trajectory and location of large white matter tracts by measuring the anisotropic diffusion of water. DTI data may then be analyzed and presented as tractography for visualization of the tracts in 3 dimensions. Despite the important information contained in tractography images, usefulness for neurosurgical planning has been limited by the inability to define which are critical structures within the mass of demonstrated fibers and to clarify their relationship to the tumor. OBJECTIVE: To develop a method to allow the interactive querying of tractography data sets for surgical planning and to provide a working software package for the research community. METHODS: The tool was implemented within an open source software project. Echoplanar DTI at 3 T was performed on 5 patients, followed by tensor calculation. Software was developed that allowed the placement of a dynamic seed point for local selection of fibers and for fiber display around a segmented structure, both with tunable parameters. A neurosurgeon was trained in the use of software in, 1 hour and used it to review cases. RESULTS: Tracts near tumor and critical structures were interactively visualized in 3 dimensions to determine spatial relationships to lesion. Tracts were selected using 3 methods: anatomical and functional magnetic resonance imaging-defined regions of interest, distance from the segmented tumor volume, and dynamic seed-point spheres. CONCLUSION: Interactive tractography successfully enabled inspection of white matter structures that were in proximity to lesions, critical structures, and functional cortical areas, allowing the surgeon to explore the relationships between them.
引用
收藏
页码:496 / 505
页数:10
相关论文
共 50 条
  • [1] Diffusion tensor tractography in patients with cerebral tumors: A helpful technique for neurosurgical planning and postoperative assessment
    Yu, CS
    Li, KC
    Xuan, Y
    Ji, XM
    Qin, W
    EUROPEAN JOURNAL OF RADIOLOGY, 2005, 56 (02) : 197 - 204
  • [2] Visualization of disconnection syndromes using diffusion tensor imaging tractography
    Thiebaut De Schotten, Michel
    Kinkingnehun, Serge
    Delmaire, Christine
    Lehericy, Stephane
    Duffau, Hugues
    Thivard, Lionel
    Volle, Emmanuelle
    Dubois, Bruno
    Levy, Richard
    Bartolomeo, Paolo
    NEUROLOGY, 2007, 68 (12) : A215 - A215
  • [3] Visualization of white matter fiber tracts with diffusion tensor imaging: Normal anatomy and neurosurgical planning
    Mamata, H
    Mamata, Y
    Kikinis, R
    Jolesz, FA
    Maier, SE
    RADIOLOGY, 2000, 217 : 602 - 602
  • [4] Usefulness of diffusion tensor imaging and fiber tractography in neurological and neurosurgical pediatric diseases
    Alberto Spalice
    Francesco Nicita
    Laura Papetti
    Fabiana Ursitti
    Claudio Di Biasi
    Pasquale Parisi
    Martino Ruggieri
    Paola Iannetti
    Child's Nervous System, 2010, 26 : 995 - 1002
  • [5] Usefulness of diffusion tensor imaging and fiber tractography in neurological and neurosurgical pediatric diseases
    Spalice, Alberto
    Nicita, Francesco
    Papetti, Laura
    Ursitti, Fabiana
    Di Biasi, Claudio
    Parisi, Pasquale
    Ruggieri, Martino
    Iannetti, Paola
    CHILDS NERVOUS SYSTEM, 2010, 26 (08) : 995 - 1002
  • [6] VISUALIZATION OF EPILEPTIC NETWORKS: A MEG GUIDED DIFFUSION TENSOR TRACTOGRAPHY APPROACH
    Madhavan, Deepak
    Podariu, S.
    White, M. L.
    EPILEPSIA, 2009, 50 : 81 - 82
  • [7] Diffusion tensor imaging and fiber tractography for the visualization of the female pelvic floor
    Zijta, Frank M.
    Froeling, Martijn
    Nederveen, Aart J.
    Stoker, Jaap
    CLINICAL ANATOMY, 2013, 26 (01) : 110 - 114
  • [8] Visualization of peripheral nerve degeneration and regeneration: Monitoring with diffusion tensor tractography
    Takagi, Takehiko
    Nakamura, Masaya
    Yamada, Masayuki
    Hikishima, Keigo
    Momoshima, Suketaka
    Fujiyoshi, Kanehiro
    Shibata, Shinsuke
    Okano, Hirotaka James
    Toyama, Yoshiaki
    Okano, Hideyuki
    NEUROIMAGE, 2009, 44 (03) : 884 - 892
  • [9] GPU-Accelerated Interactive Visualization and Planning of Neurosurgical Interventions
    Rincon-Nigro, Mario
    Navkar, Nikhil V.
    Tsekos, Nikolaos V.
    Deng, Zhigang
    IEEE COMPUTER GRAPHICS AND APPLICATIONS, 2014, 34 (01) : 22 - 31
  • [10] Diffusion tensor tractography of heatstroke
    Haoran Xu
    Qinglong Li
    Lei Zheng
    Jun Li
    Acta Neurologica Belgica, 2022, 122 : 211 - 212