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Kinematic Priming of Action Predictions

Overview
Journal Curr Biol
Publisher Cell Press
Specialty Biology
Date 2023 Jun 20
PMID 37339628
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Abstract

The ability to anticipate what others will do next is crucial for navigating social, interactive environments. Here, we develop an experimental and analytical framework to measure the implicit readout of prospective intention information from movement kinematics. Using a primed action categorization task, we first demonstrate implicit access to intention information by establishing a novel form of priming, which we term kinematic priming: subtle differences in movement kinematics prime action prediction. Next, using data collected from the same participants in a forced-choice intention discrimination task 1 h later, we quantify single-trial intention readout-the amount of intention information read by individual perceivers in individual kinematic primes-and assess whether it can be used to predict the amount of kinematic priming. We demonstrate that the amount of kinematic priming, as indexed by both response times (RTs) and initial fixations to a given probe, is directly proportional to the amount of intention information read by the individual perceiver at the single-trial level. These results demonstrate that human perceivers have rapid, implicit access to intention information encoded in movement kinematics and highlight the potential of our approach to reveal the computations that permit the readout of this information with single-subject, single-trial resolution.

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References
1.
Grafton S, F de C Hamilton A . Evidence for a distributed hierarchy of action representation in the brain. Hum Mov Sci. 2007; 26(4):590-616. PMC: 2042582. DOI: 10.1016/j.humov.2007.05.009. View

2.
Forstmann B, Ratcliff R, Wagenmakers E . Sequential Sampling Models in Cognitive Neuroscience: Advantages, Applications, and Extensions. Annu Rev Psychol. 2015; 67:641-66. PMC: 5112760. DOI: 10.1146/annurev-psych-122414-033645. View

3.
Gordon J, Maselli A, Lancia G, Thiery T, Cisek P, Pezzulo G . The road towards understanding embodied decisions. Neurosci Biobehav Rev. 2021; 131:722-736. PMC: 7614807. DOI: 10.1016/j.neubiorev.2021.09.034. View

4.
Reimer J, McGinley M, Liu Y, Rodenkirch C, Wang Q, McCormick D . Pupil fluctuations track rapid changes in adrenergic and cholinergic activity in cortex. Nat Commun. 2016; 7:13289. PMC: 5105162. DOI: 10.1038/ncomms13289. View

5.
Fagioli S, Ferlazzo F, Hommel B . Controlling attention through action: observing actions primes action-related stimulus dimensions. Neuropsychologia. 2007; 45(14):3351-5. DOI: 10.1016/j.neuropsychologia.2007.06.012. View