Assessing Individual Sensitivity to the Thermal Grill Illusion: A Two-Dimensional Adaptive Psychophysical Approach
Sardeto Deolindo, C.; Ehmsen, J. F.; Courtin, A. S.; Mitchell, A. G.; Kraenge, C. E.; Nikolova, N.; Allen, M. G.; Fardo, F.
Show abstract
In the thermal grill illusion (TGI), the spatial alternation of non-noxious warm and cold temperatures elicits burning sensations that resemble the presence of noxious stimuli. Previous research has largely relied on the use of specific temperature values (i.e., 20{degrees}C and 40{degrees}C) to study this phenomenon in both healthy individuals and patient populations. However, this methodology fails to account for inter-individual differences in thermal sensitivity, limiting the precision with which TGI responses can be evaluated across diverse populations. To address this gap, we created a Two-Dimensional Thermal Grill Calibration (2D-TGC) protocol, enabling an efficient and precise estimation of the combinations of warm and cold temperatures needed to elicit burning sensations tailored to each individual. By applying the 2D-TGC protocol in 43 healthy participants, we demonstrated key findings: (1) The TGI can be thresholded using an adaptive psychophysical method. (2) Multiple combinations of warm and cold temperatures can elicit this phenomenon. (3) The protocol facilitated the identification of temperature combinations that elicit TGI with varying levels of probability, intensity, and perceived quality ranging from freezing cold to burning hot. (4) TGI responsivity can be quantified as a continuous variable, moving beyond the conventional classification of individuals as responders vs. non-responders based on arbitrary temperature values. The 2D-TGC offers a comprehensive approach to investigate the TGI across populations with altered thermal sensitivity, and can be integrated with other methods (e.g., neuroimaging) to elucidate the mechanisms responsible for perceptual illusions in the thermo-nociceptive system.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Evaluating phasic transcutaneous vagus nerve stimulation (taVNS) with pupil dilation: the importance of stimulation intensity and sensory perception 93%
- Tactile Adaptation to Orientation Produces a Robust Tilt Aftereffect and Exhibits Crossmodal Transfer When Tested in Vision 92%
- Characteristics of vicarious touch reports in a general population 92%
Similar papers in this journal
- The onset and offset of noxious stimuli robustly modulate perceived pain intensity 95%
- Spatial summation of pain is associated with pain expectations: Results from a home-based paradigm 94%
- Characterization of spatiotemporal dynamics of binary and graded tonic pain in humans using intracranial recordings 92%
Similar papers in this journal
- Expectation generation and its effect on subsequent pain and visual perception 92%
- Personalized Closed-Loop Brain Stimulation for Effective Neurointervention Across Participants 91%
- An elasticity-curvature illusion decouples cutaneous and proprioceptive cues in active exploration of soft objects 90%
Similar papers in this journal
- The mathematics of erythema: Development of machine learning models for artificial intelligence assisted measurement and severity scoring of radiation induced dermatitis 90%
- Counting on AR: EEG responses to incongruent information with real-world context 90%
- Key Factors in the Cortical Response to Transcranial Electrical Stimulations--A Multi-Scale Modeling Study 88%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.