Now You Feel It, Now You Don't: The Effect of Movement, Cue Complexity, and Body Location on Tactile Change Detection.

Objective: To evaluate the effects that movement, cue complexity, and the location of tactile displays on the body have on tactile change detection.Background: Tactile displays have been demonstrated as a means to address data overload by offloading the visual and auditory modalities. However, chang...

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Publicado en:Human Factors Vol. 62; no. 4; pp. 643 - 656
Autores principales: Gomes, Kylie, Betza, Scott, Riggs, Sara Lu
Formato: research Journal Article
Publicado: Sage Publications Inc. Jun2020
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Jun2020
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      pub: Sage Publications Inc.
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        atl: Now You Feel It, Now You Don't: The Effect of Movement, Cue Complexity, and Body Location on Tactile Change Detection.
      aug:
        au:
          Gomes, Kylie
          Betza, Scott
          Riggs, Sara Lu
        affil: 2545 Clemson University, South Carolina, USA
      sug:
        subj:
          Cues
          Movement
          Touch
          Male
          Young Adult
          Female
          Task Performance and Analysis
          Human
          Comparative Studies
          Multicenter Studies
          Evaluation Research
          Validation Studies
          Male
          Female
      ab: Objective: To evaluate the effects that movement, cue complexity, and the location of tactile displays on the body have on tactile change detection.Background: Tactile displays have been demonstrated as a means to address data overload by offloading the visual and auditory modalities. However, change blindness-the failure to detect changes in a stimulus when changes coincide with another event or disruption in stimulus continuity-has been demonstrated to affect the tactile modality and may be exacerbated during movement. The complexity of tactile cues and locations of tactile displays on the body may also affect the detection of changes in tactile patterns. Limitations to tactile perception need to be examined.Method: Twenty-four participants performed a tactile change detection task while sitting, standing, and walking. Tactile cues varied in complexity and included low, medium, and high complexity cues presented to the arm or back.Results: Movement adversely affects tactile change detection as hit rates were the highest while sitting, followed by standing and walking. Cue complexity affected tactile change detection: Low complexity cues resulted in higher detection rates compared with medium and high complexity cues. The arms exhibited better change detection performance than the back.Conclusion: The design of tactile displays should consider the effect of movement. Cue complexity should be minimized and decisions about the location of a tactile display should take into account body movements to support tactile perception.Application: The findings can provide design guidelines to inform tactile display design for data-rich, complex domains.
      pubtype: Academic Journal
      doctype:
        research
        Journal Article
      ougenre: Article
    language: English
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