Research ArticleBRAIN
Diffusion Tensor Fiber Tractography for Arteriovenous Malformations: Quantitative Analyses to Evaluate the Corticospinal Tract and Optic Radiation
T. Okada, Y. Miki, K. Kikuta, N. Mikuni, S. Urayama, Y. Fushimi, A. Yamamoto, N. Mori, H. Fukuyama, N. Hashimoto and K. Togashi
American Journal of Neuroradiology June 2007, 28 (6) 1107-1113; DOI: https://doi.org/10.3174/ajnr.A0493
T. Okada
Y. Miki
K. Kikuta
N. Mikuni
S. Urayama
Y. Fushimi
A. Yamamoto
N. Mori
H. Fukuyama
N. Hashimoto

References
- ↵Basser PJ, Pajevic S, Pierpaoli C, et al. In vivo fiber tractography using DT-MRI data. Magn Reson Med 2000;44:625–32
- ↵Mori S, Crain BJ, Chacko VP, et al. Three-dimensional tracking of axonal projections in the brain by magnetic resonance imaging. Ann Neurol 1999;45:265–69
- ↵Pierpaoli C, Jezzard P, Basser PJ, et al. Diffusion tensor MR imaging of the human brain. Radiology 1996;201:637–48
- ↵
- ↵
- ↵Yamada K, Kizu O, Ito H, et al. Tractography for arteriovenous malformations near the sensorimotor cortices. AJNR Am J Neuroradiol 2005;26:598–602
- ↵Kikuta K, Takagi Y, Nozaki K, et al. Early experience with 3-T magnetic resonance tractography in the surgery of cerebral arteriovenous malformations in and around the visual pathway. Neurosurgery 2006;58:331–37
- ↵Abe O, Yamada H, Masutani Y, et al. Amyotrophic lateral sclerosis: diffusion tensor tractography and voxel-based analysis. NMR Biomed 2004;17:411–16
- ↵Jiang H, van Zijl PC, Kim J, et al. DtiStudio: resource program for diffusion tensor computation and fiber bundle tracking. Comput Methods Programs Biomed 2006;81:106–16
- ↵Okada T, Miki Y, Fushimi Y, et al. Diffusion-tensor fiber tractography: intraindividual comparison of 3.0-T and 1.5-T MR imaging. Radiology 2006;238:668–78
- ↵Huang H, Zhang J, van Zijl PC, et al. Analysis of noise effects on DTI-based tractography using the brute-force and multi-ROI approach. Magn Reson Med 2004;52:559–65
- ↵Concha L, Gross DW, Beaulieu C. Diffusion tensor tractography of the limbic system. AJNR Am J Neuroradiol 2005;26:2267–74
- ↵Yamamoto A, Miki Y, Urayama S, et al. Diffusion tensor fiber tractography of the optic radiation: analysis with 6-, 12-, 40- and 81-directional motion probing gradients; a preliminary study. AJNR Am J Neuroradiol 2007;28:92–96
- ↵Kier EL, Staib LH, Davis LM, et al. MR imaging of the temporal stem: anatomic dissection tractography of the uncinate fasciculus, inferior occipitofrontal fasciculus, and Meyer's loop of the optic radiation. AJNR Am J Neuroradiol 2004;25:677–91
- ↵Thomalla G, Glauche V, Koch MA, et al. Diffusion tensor imaging detects early wallerian degeneration of the pyramidal tract after ischemic stroke. Neuroimage 2004;22:1767–74
- ↵Glenn OA, Henry RG, Berman JI, et al. DTI-based three-dimensional tractography detects differences in the pyramidal tracts of infants and children with congenital hemiparesis. J Magn Reson Imaging 2003;18:641–48
- ↵Lu S, Ahn D, Johnson G, et al. Diffusion-tensor MR imaging of intracranial neoplasia and associated peritumoral edema: introduction of the tumor infiltration index. Radiology 2004;232:221–28
- ↵Jang SH, Kwon YH, Lee MY, et al. Corticospinal tract compression by hematoma in a patient with intracerebral hemorrhage: a diffusion tensor tractography and functional MRI study. Yonsei Med J 2006;47:135–39
- ↵Salat DH, Smith EE, Tuch DS, et al. White matter alterations in cerebral amyloid angiopathy measured by diffusion tensor imaging. Stroke 2006;37:1759–64
- ↵Berman JI, Berger MS, Mukherjee P, et al. Diffusion-tensor imaging-guided tracking of fibers of the pyramidal tract combined with intraoperative cortical stimulation mapping in patients with gliomas. J Neurosurg 2004;101:66–72
- ↵Okada T, Mikuni N, Miki Y, et al. Corticospinal tract localization: integration of diffusion-tensor tractography at 3-T MR imaging with intraoperative white matter stimulation mapping–preliminary results. Radiology 2006;240:849–57
- ↵Spetzler RF, Martin NA, Carter LP, et al. Surgical management of large AVM's by staged embolization and operative excision. J Neurosurg 1987;67:17–28
- ↵Miyamoto S, Hashimoto N, Nagata I, et al. Posttreatment sequelae of palliatively treated cerebral arteriovenous malformations. Neurosurgery 2000;46:589–94
- ↵Söderman M, Andersson T, Karlsson B, et al. Management of patients with brain arteriovenous malformations. Eur J Radiol 2003;46:195–205
- ↵Pollock BE, Flickinger JC. A proposed radiosurgery-based grading system for arteriovenous malformations. J Neurosurg 2002;96:79–85
- ↵Maruyama K, Kamada K, Shin M, et al. Integration of three-dimensional corticospinal tractography into treatment planning for gamma knife surgery. J Neurosurg 2005;102:673–77
- ↵Wakana S, Jiang H, Nagae-Poetscher LM, et al. Fiber tract-based atlas of human white matter anatomy. Radiology 2004;230:77–87
- ↵Powell HW, Parker GJ, Alexander DC, et al. MR tractography predicts visual field defects following temporal lobe resection. Neurology 2005;65:596–99
- ↵Taoka T, Sakamoto M, Iwasaki S, et al. Diffusion tensor imaging in cases with visual field defect after anterior temporal lobectomy. AJNR Am J Neuroradiol 2005;26:797–803
In this issue
Advertisement
Diffusion Tensor Fiber Tractography for Arteriovenous Malformations: Quantitative Analyses to Evaluate the Corticospinal Tract and Optic Radiation
T. Okada, Y. Miki, K. Kikuta, N. Mikuni, S. Urayama, Y. Fushimi, A. Yamamoto, N. Mori, H. Fukuyama, N. Hashimoto, K. Togashi
American Journal of Neuroradiology Jun 2007, 28 (6) 1107-1113; DOI: 10.3174/ajnr.A0493
Diffusion Tensor Fiber Tractography for Arteriovenous Malformations: Quantitative Analyses to Evaluate the Corticospinal Tract and Optic Radiation
T. Okada, Y. Miki, K. Kikuta, N. Mikuni, S. Urayama, Y. Fushimi, A. Yamamoto, N. Mori, H. Fukuyama, N. Hashimoto, K. Togashi
American Journal of Neuroradiology Jun 2007, 28 (6) 1107-1113; DOI: 10.3174/ajnr.A0493
Jump to section
Related Articles
- No related articles found.
Cited By...
- Classification of brain arteriovenous malformations located in motor-related areas based on location and anterior choroidal artery feeding
- Individual variations of the human corticospinal tract and its hand-related motor fibers using diffusion MRI tractography
- Principles and Limitations of Computational Algorithms in Clinical Diffusion Tensor MR Tractography
- Identifying the human optic radiation using diffusion imaging and fiber tractography
This article has not yet been cited by articles in journals that are participating in Crossref Cited-by Linking.
More in this TOC Section
Similar Articles
Advertisement