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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.
Abstract:
Purpose: Children with cerebral palsy may face difficulties using handheld pointing devices, due to involuntary muscle movements. This study aimed at describing the idea of the new wearable sensor switch and assessing its feasibility as an access solution in a case of mixed-type cerebral palsy.Methods: The study participant was a 17-year-old male with mixed-type cerebral palsy characterized by chorea-athetotic movements and bilateral spasticity with gross motor function classification system level V. He exhibited sudden and irregular involuntary upper limb movements when sitting. Because spastic finger movements limited his ability to use a handheld mouse, he used a trackball near his neck as a pointing device (previous input method). The wearable switch system using a stretchable strain sensor was introduced; the sensor was attached to a groove worn on the dorsal regions of the right hand crossing the proximal interphalangeal and metacarpophalangeal joints of the middle finger (new input method). The switch turned on when the subject flexed his middle finger.Results: The user successfully turned the switch on and typed almost the same numbers of characters per trial compared with the previous input method. The speed of his head movements during typing reduced (p < .01), and his sitting posture was nearly upright during computer operation (p < .01). No involuntary movement, requiring physical assistance, was observed when using the wearable switch.Conclusion: The new switch system can be a new option for people with difficulty using standard handheld input devices due to paralysis and involuntary muscle movements.Implications for rehabilitationCerebral palsy is a major cause of motor dysfunction and spasticity and dyskinesia in the fingers and upper limbs may prevent children with cerebral palsy from using handheld input devices.Wearable devices may be useful for children with cerebral palsy who have limited access to handheld pointing devices.We developed a new wearable switch to control devices using a flexible stretchable sensor.The wearable switch contributed to the improvement of sitting posture and reduction of neck burden during the typing task at the speed equivalent to that using the previous method in a child with mixed type of cerebral palsy exhibiting choreoathetotic movements and bilateral spasticity.
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