Publications · 2003 · Journal article

Optimized Individual Mismatch Negativity Source Localization Using a Realistic Head Model and the Talairach Coordinate System

Kyoo Seob Ha, Tak Youn, Seog Weon Kong, Hae-Jeong Park, Tae Hyon Ha, Myung Sun Kim, Jun Soo Kwon

Brain Topography 15(4), 233-238

Abstract

The purpose of this study is to evaluate the difference between anatomical locations of mismatch negativity (MMN) generators using a realistic head model and the Talairach coordinate system. This was performed by dipole source analysis by using a high density 128 channel electroencephalography (EEG) acquisition system and the subjects' individual 3D magnetic resonance images (MRI) for the realistic head model, in 24 healthy subjects. For dipole source localization, both the Talairach coordinate system and the individual MRI realistic head models were used and location results were compared. The MMN generators were clearly localized in the superior temporal gyri, especially in Heschl's gyrus, according to each individual's structural MRI. Only 37.5% of subjects showed the same anatomical locations of the MMN generator in both hemispheres in the realistic head model and in Talairach coordinate system, but fifteen subjects (62.5%) didn't. This result indicates that individually registered functional locations are desirable for the precise localization of activated areas in functional imaging studies and that a brain coordinate system is needed which adequately accounts for ethnic differences.

Korean summary

불일치 음전위(MMN)의 발생원 위치를 찾을 때 각 개인의 MRI로 만든 현실적 두부 모델을 쓰는 것과 표준 Talairach 좌표계를 쓰는 것이 얼마나 다른 결과를 내는지를 비교한 연구입니다. 건강한 성인을 대상으로 128채널 고밀도 뇌파(EEG)를 기록하고 쌍극자 신호원 분석을 두 방식으로 수행하여 해부학적 위치를 대조했습니다. 개인 MRI에서 MMN 발생원은 상측두이랑, 특히 헤슐이랑에 명확히 위치했지만, 두 방식이 같은 해부학적 위치를 가리킨 경우는 피험자의 절반에 미치지 못했습니다. 이는 기능 영상에서 활성 부위를 정확히 특정하려면 개인별 해부 영상에 맞춘 국소화가 바람직하며, 인종 간 뇌 형태 차이를 적절히 반영하는 뇌 좌표계가 필요함을 보여 줍니다.

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