Influence of orientation and area of the extended cortical current source on the magnetoencephalography (MEG) inverse problem

  • Choi, Jong-Ho
  • Luan, Feng
  • Kim, Min-Hyuk
  • Jung, Hyun-Kyo
  • Im, Chang-Hwan
Citations

SCOPUS

0

초록

Purpose: In this paper, we investigated the influence of orientation and activation area of extended cortical current sources upon the solutions of magnetoencephalography (MEG) inverse problems. Methods: Extensive simulation studies were performed with artificial MEG datasets generated using a realistic head geometry model. Results: Our simulation studies demonstrated that as the source activation area was extended beyond a threshold level, the radial component of cortical sources was weakened and thus the accuracy of MEG inverse problem was enhanced. Conclusions: These are important findings suggesting that one may not need to be concerned too much about the insensitivity of MEG to radial sources in many practical MEG measurements. ? 2012 Korean Society of Medical and Biological Engineering and Springer.

키워드

Distributed source modelMagnetoencephalography (MEG)Neuroelectromagnetic inverse problemSource imagingBrain mappingChemical activationMagnetoencephalographyCurrent sourcesDistributed sourcesExtensive simulationsHead geometryRadial componentSimulation studiesSource imagingThreshold levelsInverse problems
제목
Influence of orientation and area of the extended cortical current source on the magnetoencephalography (MEG) inverse problem
저자
Choi, Jong-HoLuan, FengKim, Min-HyukJung, Hyun-KyoIm, Chang-Hwan
DOI
10.1007/s13534-012-0061-z
발행일
2012-06
유형
Article
저널명
Biomedical Engineering Letters (BMEL)
2
2
페이지
124 ~ 128