This article explores the potential applications of robotic exoskeletons in managing mobility challenges associated with dementia. Conditions which cause dementia or include it as one of its features impose significant hurdles not only to mental – especially logical – abilities of individuals afflicted by them, but also to their mobility and independence, thereby strongly impacting their general quality of life. Conventional rehabilitative methods often prove inadequate in addressing the multifaceted motor impairments characteristic of these conditions. By highlighting the intricate interplay between cognitive function and gait control, we meticulously examine the current landscape of robotic exoskeleton technology and the incorporation of artificial intelligence in dementia care, the hurdles encountered in their implementation, and future trajectories. Robotic exoskeletons have exhibited promising therapeutic benefits within the realm of many ailments which affect the neuromuscular system and hamper nerve-muscle coordination, inter alia, Parkinson’s disease, Guillain-Barre Syndrome, stroke, and injuries which cause partial or complete paralysis of the body. Since patients with dementia encounter neural weakness which negatively influences their voluntary muscles, we hypothesize that exoskeletons, in combination with intelligent sensing and analysis, can be useful in dementia, helping prolong the lives of patients with dementia, a hitherto incurable, irreversible disease. However, despite their potential, obstacles such as cost, user acceptance, and long-term efficacy necessitate further scrutiny. We, likewise, believe that with continuing research, robotic exoskeletons can become a feasible solution for dementia-associated struggles. In summary, robotic exoskeletons present potentially innovative avenues for ameliorating mobility constraints, bolstering autonomy, and enriching the wellbeing of individuals grappling with dementia.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Modernizing Medicine Through a Proof of Concept that Studies the Intersection of Robotic Exoskeletons, Computational Capacities and Dementia Care

  • Ritwik Raj Saxena,
  • Arshia Khan

摘要

This article explores the potential applications of robotic exoskeletons in managing mobility challenges associated with dementia. Conditions which cause dementia or include it as one of its features impose significant hurdles not only to mental – especially logical – abilities of individuals afflicted by them, but also to their mobility and independence, thereby strongly impacting their general quality of life. Conventional rehabilitative methods often prove inadequate in addressing the multifaceted motor impairments characteristic of these conditions. By highlighting the intricate interplay between cognitive function and gait control, we meticulously examine the current landscape of robotic exoskeleton technology and the incorporation of artificial intelligence in dementia care, the hurdles encountered in their implementation, and future trajectories. Robotic exoskeletons have exhibited promising therapeutic benefits within the realm of many ailments which affect the neuromuscular system and hamper nerve-muscle coordination, inter alia, Parkinson’s disease, Guillain-Barre Syndrome, stroke, and injuries which cause partial or complete paralysis of the body. Since patients with dementia encounter neural weakness which negatively influences their voluntary muscles, we hypothesize that exoskeletons, in combination with intelligent sensing and analysis, can be useful in dementia, helping prolong the lives of patients with dementia, a hitherto incurable, irreversible disease. However, despite their potential, obstacles such as cost, user acceptance, and long-term efficacy necessitate further scrutiny. We, likewise, believe that with continuing research, robotic exoskeletons can become a feasible solution for dementia-associated struggles. In summary, robotic exoskeletons present potentially innovative avenues for ameliorating mobility constraints, bolstering autonomy, and enriching the wellbeing of individuals grappling with dementia.