Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration
An emerging issue in movement neurosciences is whether haptic feedback influences the nature of the information supporting a simulated grasping response (i.e., pantomime-grasping). In particular, recent work by our group contrasted pantomime-grasping responses performed with (i.e., PH+ trials) and...
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doaj-0bd08cc5a98d445f91784eceea27192f2020-11-25T02:55:49ZengFrontiers Media S.A.Frontiers in Human Neuroscience1662-51612016-05-011010.3389/fnhum.2016.00197182415Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibrationShirin eDavarpanah Jazi0Matthew eHeath1Matthew eHeath2University of Western OntarioUniversity of Western OntarioUniversity of Western OntarioAn emerging issue in movement neurosciences is whether haptic feedback influences the nature of the information supporting a simulated grasping response (i.e., pantomime-grasping). In particular, recent work by our group contrasted pantomime-grasping responses performed with (i.e., PH+ trials) and without (i.e., PH- trials) terminal haptic feedback in separate blocks of trials. Results showed that PH- trials were mediated via relative visual information. In contrast, PH+ trials showed evidence of an absolute visuo-haptic calibration – a finding attributed to an error signal derived from a comparison between expected and actual haptic feedback (i.e., an internal forward model). The present study examined whether advanced knowledge of haptic feedback availability influences the aforementioned calibration process. To that end, PH- and PH+ trials were completed in separate blocks (i.e., the feedback schedule used in our group’s previous study) and a block wherein PH- and PH+ trials were randomly interleaved on a trial-by-trial basis (i.e., random feedback schedule). In other words, the random feedback schedule precluded participants from predicting whether haptic feedback would be available at the movement goal location. We computed just-noticeable-difference (JND) values to determine whether responses adhered to, or violated, the relative psychophysical principles of Weber’s law. Results for the blocked feedback schedule replicated our group’s previous work, whereas in the random feedback schedule PH- and PH+ trials were supported via relative visual information. Accordingly, we propose that a priori knowledge of haptic feedback is necessary to support an absolute visuo-haptic calibration. Moreover, our results demonstrate that the presence and expectancy of haptic feedback is an important consideration in contrasting the behavioral and neural properties of natural and stimulated (i.e., pantomime-grasping) grasping.http://journal.frontiersin.org/Journal/10.3389/fnhum.2016.00197/fullWeber's lawactiongraspingHaptic Feedbackpantomime |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shirin eDavarpanah Jazi Matthew eHeath Matthew eHeath |
spellingShingle |
Shirin eDavarpanah Jazi Matthew eHeath Matthew eHeath Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration Frontiers in Human Neuroscience Weber's law action grasping Haptic Feedback pantomime |
author_facet |
Shirin eDavarpanah Jazi Matthew eHeath Matthew eHeath |
author_sort |
Shirin eDavarpanah Jazi |
title |
Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration |
title_short |
Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration |
title_full |
Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration |
title_fullStr |
Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration |
title_full_unstemmed |
Pantomime-grasping: Advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration |
title_sort |
pantomime-grasping: advance knowledge of haptic feedback availability supports an absolute visuo-haptic calibration |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Human Neuroscience |
issn |
1662-5161 |
publishDate |
2016-05-01 |
description |
An emerging issue in movement neurosciences is whether haptic feedback influences the nature of the information supporting a simulated grasping response (i.e., pantomime-grasping). In particular, recent work by our group contrasted pantomime-grasping responses performed with (i.e., PH+ trials) and without (i.e., PH- trials) terminal haptic feedback in separate blocks of trials. Results showed that PH- trials were mediated via relative visual information. In contrast, PH+ trials showed evidence of an absolute visuo-haptic calibration – a finding attributed to an error signal derived from a comparison between expected and actual haptic feedback (i.e., an internal forward model). The present study examined whether advanced knowledge of haptic feedback availability influences the aforementioned calibration process. To that end, PH- and PH+ trials were completed in separate blocks (i.e., the feedback schedule used in our group’s previous study) and a block wherein PH- and PH+ trials were randomly interleaved on a trial-by-trial basis (i.e., random feedback schedule). In other words, the random feedback schedule precluded participants from predicting whether haptic feedback would be available at the movement goal location. We computed just-noticeable-difference (JND) values to determine whether responses adhered to, or violated, the relative psychophysical principles of Weber’s law. Results for the blocked feedback schedule replicated our group’s previous work, whereas in the random feedback schedule PH- and PH+ trials were supported via relative visual information. Accordingly, we propose that a priori knowledge of haptic feedback is necessary to support an absolute visuo-haptic calibration. Moreover, our results demonstrate that the presence and expectancy of haptic feedback is an important consideration in contrasting the behavioral and neural properties of natural and stimulated (i.e., pantomime-grasping) grasping. |
topic |
Weber's law action grasping Haptic Feedback pantomime |
url |
http://journal.frontiersin.org/Journal/10.3389/fnhum.2016.00197/full |
work_keys_str_mv |
AT shirinedavarpanahjazi pantomimegraspingadvanceknowledgeofhapticfeedbackavailabilitysupportsanabsolutevisuohapticcalibration AT mattheweheath pantomimegraspingadvanceknowledgeofhapticfeedbackavailabilitysupportsanabsolutevisuohapticcalibration AT mattheweheath pantomimegraspingadvanceknowledgeofhapticfeedbackavailabilitysupportsanabsolutevisuohapticcalibration |
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