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Biology subjects

Inami, M.

Publications and source records attributed to Inami, M..

2 recordsLinked to original sources

Background environment modulates motor contagions in humans

Motor contagions refer to implicit effects in ones actions induced by the observation of actions made by others. A plethora of studies over the last two decades have exhibited that observed, as well as predicted, actions can induce various kinds of motor contagions in a human observer. However, motor contagion has always been investigated in regard to different features of an observed action and it remains unclear whether the environment, in which an observed action takes place, modulates motor contagions as well. Here we investigated the effect of the observed environment on motor contagions using an empirical hand steering task in which the participants were required to move a cursor through visual channels of different shapes. We observed the movement time of observers to be influenced by both the movement of the cursor they observed, as well as the background (channel shape) in which the cursor movement was observed. Observers consistently made faster movements after observing steering movements in a narrowing channel compared to a widening channel. These results show a distinct effect of the environment, in which an observed action occurs, on ones own movement.

neuroscience↗

Embodiment of Supernumerary Robotic Limbs in Virtual Reality

The supernumerary robotic limb system expands the motor function of human users by adding extra artificially designed limbs. It is important for us to embody the system as if it is a part of ones own body and to maintain cognitive transparency in which the cognitive load is suppressed. Embodiment studies have been conducted with an expansion of bodily functions through a "substitution" and "extension." However, there have been few studies on the "addition" of supernumerary body parts. In this study, we developed a supernumerary robotic limb system that operates in a virtual environment, and then evaluated whether the extra limb can be regarded as a part of ones own body using a questionnaire and whether the perception of peripersonal space changes with a visuotactile crossmodal congruency task. We found that the participants can embody the extra-limbs after using the supernumerary robotic limb system. We also found a positive correlation between the perceptual change in the crossmodal congruency task and the subjective feeling that the number of ones arms had increased (supernumerary limb sensation). These results suggest that the addition of an extra body part may cause the participants to feel that they had acquired a new body part that differs from their original body part through a functional expansion.

neuroscience↗