Application of a wearable switch to perform a mouse left click for a child with mix type of cerebral palsy: a single

Akio Yamamoto1, Kenji Kihara2, Mariko Yagi2

  • 1Department of Community Health Science, Graduate School of Health Science, Kobe University, Kobe, Japan.

Insights

A new wearable sensor switch offers a viable alternative for individuals with cerebral palsy (CP) who struggle with traditional computer input devices. This innovative technology improves posture and reduces neck strain during computer use.

Area of Science:

  • Rehabilitation Engineering
  • Assistive Technology
  • Biomedical Engineering

Background:

  • Children with cerebral palsy (CP) often experience motor impairments, including involuntary movements and spasticity, which hinder the use of standard handheld pointing devices.
  • Existing assistive technologies may not adequately address the complex motor challenges faced by individuals with CP, necessitating novel solutions.
  • The study addresses the need for accessible computer access methods for individuals with severe motor disabilities.

Observation:

  • A 17-year-old male with mixed-type cerebral palsy (GMFCS V) with choreo-athetotic movements and spasticity was evaluated.
  • The participant previously used a trackball near his neck due to limited finger dexterity and involuntary upper limb movements.
  • A novel wearable switch system, utilizing a stretchable strain sensor on the middle finger, was introduced as a new input method.

Findings:

  • The wearable switch enabled successful device control, with typing performance comparable to the previous trackball method.
  • Significant improvements were observed in the user's head movement speed reduction (p < .01) and sitting posture (p < .01).
  • No physical assistance was required due to involuntary movements while using the wearable switch, indicating enhanced usability and safety.

Implications:

  • The wearable sensor switch presents a promising new assistive technology for individuals with paralysis or involuntary movements that impede standard device operation.
  • This innovation can enhance computer accessibility and independence for children and adults with cerebral palsy.
  • Further research into wearable sensor technology could lead to more sophisticated and adaptable assistive solutions for diverse motor impairments.

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