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    User-Centered Design of Professional Social Service Robots

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    Current digital consumer technology : barriers, facilitators, and impact on participation for persons with intellectual disabilities – a scoping review

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    Objective The objective of this scoping review is to understand the extent and type of evidence concerning digital consumer technology use by adults with intellectual disabilities and its impact on participation. Inclusion criteria Studies published in English from 2011 to 2024 were included, focusing on the use of digital consumer technology by people with intellectual disabilities over the age of 18. Methods Searches were conducted in key databases following the JBI methodology for scoping reviews. Screening of titles, abstracts, and full-text reviews identified 151 relevant studies. Data extraction focused on demographics, intervention details, outcomes, and study design. Both descriptive statistical analysis and qualitative content analysis were used. Results The search was conducted in September 2024. The included studies, predominantly from European countries, included interventions covering various life areas, mostly in communication, community, social and civic life, and general tasks and needs. The findings highlight the importance of personalized, adaptable technologies. Conclusions While consumer technology has the potential to enhance participation for people with ID, further research is needed to better understand its impact and specific factors influencing participation in this target group. Personalized and adaptable technologies have the potential to improve access and participation in different areas of life

    Faltanleitung für Membrankanäle

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    Oxide layers thickness of titanium matrix structures : ToF-SIMS to analyze the influence of oxygen on additively manufactured titanium-based structures

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    Titanium implants are frequently used in dentistry and orthopedics due to their excellent biocompatibility and mechanical properties. The natural oxide layer that forms on the surface of these implants plays a crucial role in their biological performance. Studies have shown that anodization and nanostructuring can improve the bioactivity of titanium surfaces [1]. However, the ceramic rutile structure (TiO2) has a ceramic character due to its ionic and covalent bonds (Ionicity QTiO=59,4 %) and is, therefore, highly brittle. Additively manufactured lattice structures have a significantly higher surface area, which increases the proportion of ceramic rutile compounds

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