Somatotopic representation of second pain in the primary somatosensory cortex of humans and rodents., Jin, Q.Q., Wu, G.Q., Peng, W.W., Xia, X.L., Hu, L., Iannetti, G.D., 2018
Altered white matter microarchitecture in the cingulum bundle in women with primary dysmenorrhea: a tract-based analysis study., Liu, J.X., Liu, H.J., Mu, J.Y., Xu, Q., Chen, T., Dun, W.H., Yang, J., Tian, J., Hu, L., Zhang, M., 2016
Painful issues in pain prediction., Hu, L., Iannetti, G.D., 2016
Issues in pain prediction – beyond pain and gain., Hu, L., Iannetti, G.D., 2016
Laser-evoked cortical responses in freely-moving rodents reflect the activation of C-fibre afferent pathways., Xia, X.L., Peng, W.W., Iannetti, G.D., Hu, L., 2016
Alpha and Gamma Oscillation Amplitudes Synergistically Predict the Perception of Forthcoming Nociceptive Stimuli., Tu, Y.H., Zhang, Z.G., Tan, A., Peng, W.W., Hung, Y.S., Moayedi, M., Iannetti, G.D., Hu, L., 2016
Was It a Pain or a Sound? Across-species Variability in Sensory Sensitivity., Hu, L., Xia, X.L., Peng, W.W., Su, W.X., Luo, F., Yuan, H., Chen, A.T., Liang, M., Iannetti, G.D., 2015
The primary somatosensory cortex and the insula contribute differently to the processing of transient and sustained nociceptive and non-nociceptive somatosensory inputs., Hu, L., Zhang, L., Chen, R., Yu, H.B., Li, H., Mouraux, A., 2015
Multiple linear regression to estimate time-frequency electrophysiological responses in single trials., Hu, L., Zhang, Z.G., Mouraux, A., Iannetti, G.D., 2015
Human Brain Responses to Concomitant Stimulation of Aδ and C Nociceptors., Hu, L., Cai, M.M., Xiao, P., Luo, F., Iannetti, G.D., 2014
Single-trial time-frequency analysis of electrocortical signals: baseline correction and beyond., Hu, L., Xiao, P., Zhang, Z.G., Mouraux, A., Iannetti, G.D., 2014
The primary somatosensory cortex contributes to the latest part of the cortical response elicited by nociceptive somatosensory stimuli in humans., Hu, L., Valentini, E., Zhang, Z.G., Liang, M., Iannetti, G.D., 2014
A novel approach to predict subjective pain perception from single-trial laser-evoked potentials., Huang, G., Xiao, P., Iannetti, G.D., Zhang, Z.G., Hu, L., 2013
Primary Sensory Cortices Contain Distinguishable Spatial Patterns of Activity for Each Sense., Liang, M., Mouraux, A., Hu, L., Iannetti, G.D., 2013
Gamma-band oscillations in the primary somatosensory cortex – a direct and obligatory correlate of subjective pain intensity., Zhang, Z.G., Hu, L., Hung, Y.S., Mouraux, A., Iannetti, G.D., 2012
A Time-Varying Source Connectivity Approach to Reveal Human Somatosensory Information Processing., Hu, L., Zhang, Z.G., Hu, Y., 2012
The primary somatosensory cortex largely contributes to the early part of the cortical response elicited by nociceptive stimuli., Valentini, E., Hu, L., Chakrabarti, B., Aglioti, S.M., Hu, Y., Iannetti, G.D., 2012
A novel approach for enhancing the signal-to-noise ratio and detecting automatically event-related potentials (ERPs) in single trials., Hu, L., Mouraux, A., Hu, Y., Iannetti, G.D., 2010