研究目的
Evaluating the performance of a DOT method in studying dynamic patterns of brain activations involving motor control.
研究成果
The DOT method demonstrated sensitivity, reliability, and sufficient spatio-temporal resolution to study motor cortex activities. It shows promise as a neuroimaging tool for clinical environments, especially for populations unable to use MRI-based modalities.
研究不足
The study was preliminary, involving only one participant. The DOT method's accuracy may be affected by optode configuration and regularization techniques. Subject-specific head models are required for increased reconstruction accuracy.
1:Experimental Design and Method Selection:
The study utilized a block-design experiment with a healthy male participant performing a motor task. CW-fNIRS data were acquired in four sessions.
2:Sample Selection and Data Sources:
Data were collected from a healthy male participant using a Nirscout extended fNIRS device.
3:List of Experimental Equipment and Materials:
Nirscout extended fNIRS device, Polhemus Patriot handheld digitizer, E-Prime software, LCD monitor, 3T MRI scanner, FreeSurfer, MATLAB, ISO2MESH toolbox, NIRFAST toolbox.
4:Experimental Procedures and Operational Workflow:
The participant performed right-hand clenching in a block-design task. NIRS data were processed and analyzed using various software tools for light modeling and reconstruction.
5:Data Analysis Methods:
Data were block-averaged, log-ratioed, and bandpass filtered. Reconstruction was performed using a linear single-step method for inversion.
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Nirscout extended
dual-wavelength (760/850nm) continuous-wave fNIRS device
NIRx
Collecting NIRS data
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Polhemus Patriot handheld digitizer
polhemus.com
Digitizing optodes
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E-Prime software
Executing visual cues and instructions
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LCD monitor
Displaying visual cues and instructions
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3T MRI scanner
Obtaining subject-specific T1 magnetic resonance imaging scans
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FreeSurfer
surfer.nmr.mgh.harvard.edu
Segmenting out different tissue surfaces
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MATLAB
mathworks.com
Processing surfaces and creating FEM mesh
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ISO2MESH toolbox
iso2mesh.sourceforge.net
Processing surfaces and creating FEM mesh
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NIRFAST toolbox
nirfast.org
Transforming mesh into node-based FEM mesh and performing forward modeling
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