User perspectives on emotionally aligned social robots for older adults and persons living with dementia.

IF 2 Q3 ENGINEERING, BIOMEDICAL
Jill A Dosso, Ela Bandari, Aarti Malhotra, Gabriella K Guerra, Jesse Hoey, François Michaud, Tony J Prescott, Julie M Robillard
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引用次数: 2

Abstract

Introduction: Socially assistive robots are devices designed to aid users through social interaction and companionship. Social robotics promise to support cognitive health and aging in place for older adults with and without dementia, as well as their care partners. However, while new and more advanced social robots are entering the commercial market, there are still major barriers to their adoption, including a lack of emotional alignment between users and their robots. Affect Control Theory (ACT) is a framework that allows for the computational modeling of emotional alignment between two partners.

Methods: We conducted a Canadian online survey capturing attitudes, emotions, and perspectives surrounding pet-like robots among older adults (n = 171), care partners (n = 28), and persons living with dementia (n = 7).

Results: We demonstrate the potential of ACT to model the emotional relationship between older adult users and three exemplar robots. We also capture a rich description of participants' robot attitudes through the lens of the Technology Acceptance Model, as well as the most important ethical concerns around social robot use.

Conclusions: Findings from this work will support the development of emotionally aligned, user-centered robots for older adults, care partners, and people living with dementia.

Abstract Image

Abstract Image

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用户对老年人和痴呆症患者情感一致的社交机器人的看法。
简介:社交辅助机器人是为帮助用户进行社交互动和陪伴而设计的设备。社交机器人有望为患有或不患有痴呆症的老年人以及他们的护理伙伴提供认知健康和衰老方面的支持。然而,虽然新的和更先进的社交机器人正在进入商业市场,但它们的采用仍然存在主要障碍,包括用户和机器人之间缺乏情感一致性。情感控制理论(ACT)是一个框架,允许计算模拟双方的情感一致性。方法:我们在加拿大进行了一项在线调查,收集老年人(n = 171)、护理伙伴(n = 28)和痴呆症患者(n = 7)对宠物机器人的态度、情绪和观点。结果:我们证明了ACT在老年人用户和三个范例机器人之间建立情感关系模型的潜力。我们还通过技术接受模型的镜头捕捉到参与者对机器人态度的丰富描述,以及围绕社交机器人使用的最重要的伦理问题。结论:这项工作的发现将支持为老年人、护理伙伴和痴呆症患者开发情感一致、以用户为中心的机器人。
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