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einstein. 2010; 8(2 Pt 1):252-3

LEARNING BY IMAGES

Tractography

Tratografia

Lídia Mayumi Nagae1, Marco da Cunha Pinho2, Marcelo Buarque de Gusmão Funari3

Tractography is a new magnetic resonance technique that enables mapping and, consequently, evaluation of different white matter tracts in the central nervous system. It encompasses acquiring a sequence called diffusion tensor imaging in a common 1.5 or 3 Tesla magnetic resonance equipment, independently or associated to conventional images of the study(1-3).

The acquired images are post-processed using several types of software – some are available online for free. The same acquisition of images allows calculating quantitative parameters, such as fractioned anisotropy (FA) and apparent diffusion

coefficient (ADC), which interfere in white matter integrity, in addition to providing several maps, such as color map, identifying the orientation of diverse white matter tracts.

Some of the most common clinical applications are: the study of white matter tracts and their topographic relation with tumors and infarctions; the study of the pathophysiology of white matter injuries, such as multiple sclerosis and lateral amyotrophic sclerosis; cerebral palsy; epilepsy.

Figure 1 shows in the first line the three-dimension reconstruction of the corticospinal tracts in a normal

Study carried out at Hospital Israelita Albert Einstein – HIAE, São Paulo (SP), Brazil.

1 PhD; MD at Hospital Israelita Albert Einstein – HIAE, São Paulo (SP), Brazil. 2 MD at Hospital Israelita Albert Einstein – HIAE, São Paulo (SP), Brazil.

3 Head of the Imaging Department at Hospital Israelita Albert Einstein – HIAE, São Paulo (SP), Brazil.

Corresponding author: Lídia Mayumi Nagae – Rua Manuel da Nóbrega, 627, apto. 81 – Paraíso – CEP 04001-083 – São Paulo (SP), Brasil – Tel.: 11 3476-3320 – e-mail: [email protected] Received on Nov 12, 2008 – Accepted on Jun 25, 2009

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einstein. 2010; 8(2 Pt 1):252-3 Tractography 253

individual (blue on the right and pink on the left) from the motor cortex up to the posterior arm of the internal capsule. In the second line, there are images of color maps in three levels, showing the identification of white matter different tracts, limited by different orientations of water diffusion in the brain. Color codification demonstrates the latero-lateral orientation of fibers in red, anteroposterior orientation in green and craniocaudal in blue.

REFERENCES

1. Mori S, Barker PB. Diffusion magnetic resonance imaging: its principle and applications. Anat Rec. 1999;257(3):102-9.

2. Mori S, van Zijl PC. Fiber tracking: principles and strategies - a technical review. NMR Biomed. 2002;15(7-8):468–80.

Imagem

Figure 1 shows in the first line the three-dimension  reconstruction  of  the  corticospinal  tracts  in  a  normal

Referências

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