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Erschienen in: Neuroradiology 8/2003

01.08.2003 | Diagnostic Neuroradiology

Three-dimensional white matter tractography by diffusion tensor imaging in ischaemic stroke involving the corticospinal tract

verfasst von: A. Kunimatsu, S. Aoki, Y. Masutani, O. Abe, H. Mori, K. Ohtomo

Erschienen in: Neuroradiology | Ausgabe 8/2003

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Abstract

Diffusion tensor MR imaging (DTI) provides information on diffusion anisotropy, which can be expressed with three-dimensional (3D) white matter tractography. We used 3D white matter tractography to show the corticospinal tract in eight patients with acute or early subacute ischaemic stroke involving the posterior limb of the internal capsule or corona radiata and to assess involvement of the tract. Infarcts and the tract were shown simultaneously, providing information on their spatial relationships. In five of the eight patients, 3D fibre tract maps showed the corticospinal tract in close proximity to the infarct but not to pass through it. All these patients recovered well, with maximum improvement from the lowest score on manual muscle testing (MMT) up to the full score through rehabilitation. In the other three patients the corticospinal tract was shown running through the infarct; reduction in MMT did not necessarily improve favourably or last longer, other than in one patient. As 3D white matter tractography can show spatial relationships between the corticospinal tract and an infarct, it might be helpful in prognosis of gross motor function.
Literatur
1.
Zurück zum Zitat Basser PJ, Pierpaoli C (1996) Microstructural and physiological features of tissues elucidated by quantitative-diffusion-tensor MRI. J Magn Reson B 111: 209–219PubMed Basser PJ, Pierpaoli C (1996) Microstructural and physiological features of tissues elucidated by quantitative-diffusion-tensor MRI. J Magn Reson B 111: 209–219PubMed
2.
Zurück zum Zitat Conturo TE, McKinstry RC, Akbudak E, Robinson BH (1996) Encoding of anisotropic diffusion with tetrahedral gradients: a general mathematical diffusion formalism and experimental results. Magn Reson Med 35: 399–412PubMed Conturo TE, McKinstry RC, Akbudak E, Robinson BH (1996) Encoding of anisotropic diffusion with tetrahedral gradients: a general mathematical diffusion formalism and experimental results. Magn Reson Med 35: 399–412PubMed
3.
Zurück zum Zitat Melhem ER, Mori S, Mukundan G, et al (2002) Diffusion tensor MR imaging of the brain and white matter tractography. Am J Roentgenol 178: 3–16 Melhem ER, Mori S, Mukundan G, et al (2002) Diffusion tensor MR imaging of the brain and white matter tractography. Am J Roentgenol 178: 3–16
4.
Zurück zum Zitat Sorensen AG, Wu O, Copen WA, et al (1999) Human acute cerebral ischemia: detection of changes in water diffusion anisotropy by using MR imaging. Radiology 212: 785–792PubMed Sorensen AG, Wu O, Copen WA, et al (1999) Human acute cerebral ischemia: detection of changes in water diffusion anisotropy by using MR imaging. Radiology 212: 785–792PubMed
5.
Zurück zum Zitat Shimony JS, McKinstry RC, Akbudak E, et al (1999) Quantitative diffusion-tensor anisotropy brain MR imaging: normative human data and anatomic analysis. Radiology 212: 770–784PubMed Shimony JS, McKinstry RC, Akbudak E, et al (1999) Quantitative diffusion-tensor anisotropy brain MR imaging: normative human data and anatomic analysis. Radiology 212: 770–784PubMed
6.
Zurück zum Zitat Masutani Y, Abe O, Aoki S, et al (2002) Tractography of brain white matter tracts based on analysis of MR diffusion tensor data: selective tractography with tracking reliability. Med Imag Tech 20: 584–592 [Japanese] Masutani Y, Abe O, Aoki S, et al (2002) Tractography of brain white matter tracts based on analysis of MR diffusion tensor data: selective tractography with tracking reliability. Med Imag Tech 20: 584–592 [Japanese]
7.
Zurück zum Zitat Yagishita A, Nakano I, Oda M, Hirano A (1994) Location of the corticospinal tract in the internal capsule at MR imaging. Radiology 191: 455–460PubMed Yagishita A, Nakano I, Oda M, Hirano A (1994) Location of the corticospinal tract in the internal capsule at MR imaging. Radiology 191: 455–460PubMed
8.
Zurück zum Zitat Iwasaki S, Nakagawa H, Fukusumi A, et al (1991) Identification of pre- and postcentral gyri on CT and MR images on the basis of the medullary pattern of cerebral white matter. Radiology 179: 207–213PubMed Iwasaki S, Nakagawa H, Fukusumi A, et al (1991) Identification of pre- and postcentral gyri on CT and MR images on the basis of the medullary pattern of cerebral white matter. Radiology 179: 207–213PubMed
9.
Zurück zum Zitat Victor M, Ropper AH (2001) Principles of neurology. McGraw-Hill, New York, pp 47–66 Victor M, Ropper AH (2001) Principles of neurology. McGraw-Hill, New York, pp 47–66
10.
Zurück zum Zitat Mori S, Frederiksen K, van Zijl PC, et al (2002) Brain white matter anatomy of tumor patients evaluated with diffusion tensor imaging. Ann Neurol 51: 377–380CrossRefPubMed Mori S, Frederiksen K, van Zijl PC, et al (2002) Brain white matter anatomy of tumor patients evaluated with diffusion tensor imaging. Ann Neurol 51: 377–380CrossRefPubMed
11.
Zurück zum Zitat Victor M and Ropper AH (2001) Principles of neurology. McGraw-Hill, New York, pp 821-924 Victor M and Ropper AH (2001) Principles of neurology. McGraw-Hill, New York, pp 821-924
12.
Zurück zum Zitat Miyabe M, Mori S, van Zijl PC, et al (1996) Correlation of the average water diffusion constant with cerebral blood flow and ischemic damage after transient middle cerebral artery occlusion in cats. J Cereb Blood Flow Metab 16: 881–891PubMed Miyabe M, Mori S, van Zijl PC, et al (1996) Correlation of the average water diffusion constant with cerebral blood flow and ischemic damage after transient middle cerebral artery occlusion in cats. J Cereb Blood Flow Metab 16: 881–891PubMed
13.
Zurück zum Zitat Fiehler J, Foth M, Kucinski T, et al (2002) Severe ADC decreases do not predict irreversible tissue damage in humans. Stroke 33: 79–86PubMed Fiehler J, Foth M, Kucinski T, et al (2002) Severe ADC decreases do not predict irreversible tissue damage in humans. Stroke 33: 79–86PubMed
14.
Zurück zum Zitat Wiegell MR, Larsson HB, Wedeen VJ (2000) Fiber crossing in human brain depicted with diffusion tensor MR imaging. Radiology 217: 897–903PubMed Wiegell MR, Larsson HB, Wedeen VJ (2000) Fiber crossing in human brain depicted with diffusion tensor MR imaging. Radiology 217: 897–903PubMed
Metadaten
Titel
Three-dimensional white matter tractography by diffusion tensor imaging in ischaemic stroke involving the corticospinal tract
verfasst von
A. Kunimatsu
S. Aoki
Y. Masutani
O. Abe
H. Mori
K. Ohtomo
Publikationsdatum
01.08.2003
Verlag
Springer-Verlag
Erschienen in
Neuroradiology / Ausgabe 8/2003
Print ISSN: 0028-3940
Elektronische ISSN: 1432-1920
DOI
https://doi.org/10.1007/s00234-003-0974-4

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