{ "Name": "Electrical_Thermal_FingerTapping_2015", "BIDSVersion": "1.7.1", "License": "CC0", "Authors": [ "Yücel, Meryem", "Selb, Juliette", "Aasted, Christopher", "Petkov, Mihayl", "Borsook, David", "Boas, David", "Becerra, Lino" ], "Acknowledgements": "This work was supported by the National Institutes of Health (NIH), the National Institute of General Medical Sciences (NIGMS) under grants NIH-NIGMS 1-R01-GM104986, 1-R01-GM122405, and the Mayday Fund, New York. We thank all participants and research staff involved in this study.", "HowToAcknowledge": "Yücel, M.A., Aasted, C.M., Petkov, M.P., Borsook, D., Boas, D.A., & Becerra, L. (2015). Specificity of hemodynamic brain responses to painful stimuli: a functional near-infrared spectroscopy study. Scientific Reports, 5, 9469. https://doi.org/10.1038/srep09469. Also see: Yücel, M.A., Selb, J., Aasted, C.M., Petkov, M.P., Becerra, L., Borsook, D., & Boas, D.A. (2015). Short separation regression improves statistical significance and better localizes the hemodynamic response obtained by near-infrared spectroscopy for tasks with differing autonomic responses. Neurophotonics, 2(3), 035005. https://doi.org/10.1117/1.NPh.2.3.035005", "Funding": [ "NIH-NIGMS 1-R01-GM104986", "NIH-NIGMS 1-R01-GM122405", "The Mayday Fund, New York" ], "EthicsApprovals": [ "Massachusetts General Hospital IRB" ], "ReferencesAndLinks": [ "https://doi.org/10.1038/srep09469", "https://doi.org/10.1117/1.NPh.2.3.035005" ], "DatasetDOI": "10.82901/nemar.on005776", "SourceDatasets": [ { "DOI": "doi:10.18112/openneuro.ds005776.v1.0.1" } ], "Version": "1.0.0" }