The University of Tokyo · Neuroscience
이 교수의 연구실은 정신질환의 생물학적 기반을 규명하고 임상 적용 가능한 생물학적 표지자(바이오마커)를 개발하는 데 초점을 맞추고 있습니다. 주로 대사체학적 분석(CE-TOFMS), 다중 센터 MRI 데이터의 표준화, 그리고 fNIRS를 활용한 뇌 기능 영상 기법을 통해 정신건강 문제의 객관적 진단 및 평가 방법을 모색하고 있습니다. 특히, 건강한 이동 참가자(Traveling Subject)를 활용한 다기관 협업 연구를 통해 영상 및 대사 데이터의 정밀성과 재현성을 높이는 데 기여하고 있습니다.
Figures are computed from collected data and may differ slightly.
Few biomarkers have been known that can easily measure clinical conditions in mental illnesses such as schizophrenia. Capillary electrophoresis time-of-flight mass spectrometry (CE-TOFMS) is a new method that can measure ionized and low-molecular-weight metabolites. To explore global metabolomic alterations that characterize the onset of schizophrenia and identify biomarkers, we profiled the relative and absolute concentrations of the plasma metabolites from 30 patients with first-episode schizo
Multisite magnetic resonance imaging (MRI) is increasingly used in clinical research and development. Measurement biases-caused by site differences in scanner/image-acquisition protocols-negatively influence the reliability and reproducibility of image-analysis methods. Harmonization can reduce bias and improve the reproducibility of multisite datasets. Herein, a traveling-subject (TS) dataset including 56 T1-weighted MRI scans of 20 healthy participants in three different MRI procedures-20, 19,
This study is registered at UMIN-CTR (No. UMIN000012239).
Psychiatric and neurological disorders are afflictions of the brain that can affect individuals throughout their lifespan. Many brain magnetic resonance imaging (MRI) studies have been conducted; however, imaging-based biomarkers are not yet well established for diagnostic and therapeutic use. This article describes an outline of the planned study, the Brain/MINDS Beyond human brain MRI project (BMB-HBM, FY2018 ~ FY2023), which aims to establish clinically-relevant imaging biomarkers with multi-
Functional near-infrared spectroscopy (fNIRS) is a relatively new technique that can measure hemoglobin changes in brain tissues, and its use in psychiatry has been progressing rapidly. Although it has several disadvantages (e.g., relatively low spatial resolution and the possibility of shallow coverage in the depth of brain regions) compared with other functional neuroimaging techniques (e.g., functional magnetic resonance imaging and positron emission tomography), fNIRS may be a candidate inst
Name change of schizophrenia had a limited effect on the articles published and little effect on its contents.
We built a classifier from multiple protocol structural brain images applicable to independent samples from different clinical stages and spectra. The predictive information of the classifier could be useful for applying neuroimaging techniques to clinical differential diagnosis and predicting disease onset earlier.
Traditional neuroscience sees sensory perception as a simple feedforward process. This view is challenged by the predictive coding model in recent years due to the robust evidence researchers had found on how our prediction could influence perception. In the first half of this article, we reviewed the concept of predictive brain and some empirical evidence of sensory prediction in visual and auditory processing. The predictive function along the auditory pathway was mainly studied by mismatch ne
Open papers in the app to read, cite, and organize with AI.