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Type
Research Group
Ben M. Oldfrey, Ram C. Thapa, Ashish Thapa, Bikash Paudel, Amit Bajracharya, Ganga Gurung, Rosemary Gowran, Pratisthit Lal Shrestha, Tigmanshu Bhatnagar, Mark Miodownik, Catherine Holloway
The World Health Organisation (WHO) reports that access to assistive products like prosthetics, wheelchairs, and hearing aids varies significantly by income level. In high-income countries, 64% of people needing these products have access, while only 33% in medium-income countries and 11% in low-income countries do.
Assistive technology (AT) encompasses assistive products (APs) and services necessary for effective use. Globalisation has facilitated the mass production of assistive products but often leads to monopolies that create barriers to local innovation and repair strategies, especially in low-income countries. The AT2030 Programme, led by the Global Disability Innovation Hub in Nepal, aims to enhance localised innovation within the global assistive product system.
In Nepal, official estimates suggest that only 2.2% of the population has a disability, but this figure is likely underestimated. Various organisations are working to provide AT and rehabilitation services, addressing local needs, such as difficult terrain and logistics.
This paper reflects on our journey within the AT2030 project, highlighting the development of a global-local community, interdisciplinary innovation teams in Kathmandu, and preliminary results from two bespoke product development cases, emphasising collaboration between global and local expertise for effective AT solutions.

Type
Research Group
Ben Oldfrey, Cathy Holloway, Julian Walker, Steven McCormack, Bernadette Deere, Laurence Kenney, Robert Ssekitoleko, Helen Ackers & Mark Miodownik
This paper focuses on the local repair of assistive products in low resource environments. We review the existing literature on the repair of assistive products in low resource settings, and briefly discuss the “Right to Repair” movement.
Disability and Rehabilitation; 2023

Type
Research Group
Jamie Danemayer & Myung-Joon Lim
Korea is a rapidly ageing country, with its population over 65 years old increasing from 5% in 1990 to 17% in 2021. Comparatively, the global population over 65 has increased from 6% in 1990 to 9% in 2019 ]. As populations age and functional difficulties become more prevalent, the importance of assistive technology (AT) provision becomes more pronounced. Disparities in access to AT within a population can indicate inequities in healthy aging trajectories that will widen as the overall population ages, if clusters of limited access are not identified and addressed.
Taylor & Francis Online; 2023

Type
Research Group
Sahan Bulathwela, María Pérez-Ortiz, Catherine Holloway, John Shawe-Taylor
This paper starts by synthesising how AI might change how we learn and teach, focusing specifically on the case of personalised learning companions, and then move to discuss some socio-technical features that will be crucial for avoiding the perils of these AI systems worldwide (and perhaps ensuring their success). This paper also discusses the potential of using AI together with free, participatory and democratic resources, such as Wikipedia, Open Educational Resources and open-source tools. We also emphasise the need for collectively designing human-centered, transparent, interactive and collaborative AI-based algorithms that empower and give complete agency to stakeholders, as well as support new emerging pedagogies.
Workshop on Machine Learning for the Developing World (ML4D) at the Conference on Neural Information Processing Systems 2021; 2021

Type
Research Group
Chapal Khasnabis, Catherine Holloway, Malcolm MacLachlan
We are now in an era of assistive care and assistive living—whereby many people, of all ages, in good health, and those who are more frail, or with cognitive or functional impairments, are using a broad range of technologies to assist and enhance their daily living. Assistive living1 is becoming an important part of population health and rehabilitation, which can help to maximise an individual's abilities, regardless of age or functional capacity. This encouraging shift in ethos has been strengthened by the response to the COVID-19 pandemic, in which a plethora of digital and remote technologies have been used.
The Lancet; 2020

Type
Research Group
B Oldfrey, A Tchorzewska, R Jackson, M Croysdale, R Loureiro, C Holloway, M Miodownik
Elastomeric liners are commonly worn between socket and limb by prosthetic wearers. This is due to their superior skin adhesion, load distribution and their ability to form a seal. Laboratory tests suggest that elastomeric liners allow reduced shear stress on the skin and give a higher cushioning effect on bony prominences, since they are soft in compression, and similar to biological tissues [1]. However, they also increase perspiration reducing hygiene and increasing skin irritations. Prosthetic users in general face a myriad of dermatological problems associated with lower limb prosthesis such as ulcers, cysts, and contact dermatitis, which are exacerbated by the closed environment of a fitted socket where perspiration is trapped and bacteria can proliferate [2].
Medical Engineering & Physics; 2021