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1.
Int J Soc Robot ; : 1-13, 2023 May 05.
Artigo em Inglês | MEDLINE | ID: mdl-37359434

RESUMO

Inner Speech is an essential but also elusive human psychological process that refers to an everyday covert internal conversation with oneself. We argued that programming a robot with an overt self-talk system that simulates human inner speech could enhance both human trust and users' perception of robot's anthropomorphism, animacy, likeability, intelligence and safety. For this reason, we planned a pre-test/post-test control group design. Participants were divided in two different groups, one experimental group and one control group. Participants in the experimental group interacted with the robot Pepper equipped with an over inner speech system whereas participants in the control group interacted with the robot that produces only outer speech. Before and after the interaction, both groups of participants were requested to complete some questionnaires about inner speech and trust. Results showed differences between participants' pretest and post-test assessment responses, suggesting that the robot's inner speech influences in participants of experimental group the perceptions of animacy and intelligence in robot. Implications for these results are discussed.

2.
Front Robot AI ; 8: 620026, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33969001

RESUMO

This paper aims to discuss the possible role of inner speech in influencing trust in human-automation interaction. Inner speech is an everyday covert inner monolog or dialog with oneself, which is essential for human psychological life and functioning as it is linked to self-regulation and self-awareness. Recently, in the field of machine consciousness, computational models using different forms of robot speech have been developed that make it possible to implement inner speech in robots. As is discussed, robot inner speech could be a new feature affecting human trust by increasing robot transparency and anthropomorphism.

3.
Brief Bioinform ; 22(2): 823-831, 2021 03 22.
Artigo em Inglês | MEDLINE | ID: mdl-33326994

RESUMO

MOTIVATION: The epidemic at the beginning of this year, due to a new virus in the coronavirus family, is causing many deaths and is bringing the world economy to its knees. Moreover, situations of this kind are historically cyclical. The symptoms and treatment of infected patients are, for better or worse even for new viruses, always the same: more or less severe flu symptoms, isolation and full hygiene. By now man has learned how to manage epidemic situations, but deaths and negative effects continue to occur. What about technology? What effect has the actual technological progress we have achieved? In this review, we wonder about the role of robotics in the fight against COVID. It presents the analysis of scientific articles, industrial initiatives and project calls for applications from March to now highlighting how much robotics was ready to face this situation, what is expected from robots and what remains to do. RESULTS: The analysis was made by focusing on what research groups offer as a means of support for therapies and prevention actions. We then reported some remarks on what we think is the state of maturity of robotics in dealing with situations like COVID-19.


Assuntos
COVID-19/epidemiologia , Pandemias , Robótica , COVID-19/virologia , Humanos , SARS-CoV-2/isolamento & purificação
4.
J Biomed Inform ; 108: 103483, 2020 08.
Artigo em Inglês | MEDLINE | ID: mdl-32603793

RESUMO

Monitoring patients through robotics telehealth systems is an interesting scenario where patients' conditions, and their environment, are dynamic and unknown variables. We propose to improve telehealth systems' features to include the ability to serve patients with their needs, operating as human caregivers. The objective is to support the independent living of patients at home without losing the opportunity to monitor their health status. Application scenarios are several, and they spread from simple clinical assisting scenarios to an emergency one. For instance, in the case of a nursing home, the system would support in continuously monitoring the elderly patients. In contrast, in the case of an epidemic diffusion, such as COVID-19 pandemic, the system may help in all the early triage phases, significantly reducing the risk of contagion. However, the system has to let medical assistants perform actions remotely such as changing therapies or interacting with patients that need support. The paper proposes and describes a multi-agent architecture for intelligent medical care. We propose to use the beliefs-desires-intentions agent architecture, part of it is devised to be deployed in a robot. The result is an intelligent system that may allow robots the ability to select the most useful plan for unhandled situations and to communicate the choice to the physician for his validation and permission.


Assuntos
Monitorização Fisiológica/instrumentação , Robótica/tendências , Idoso , Inteligência Artificial , COVID-19 , Sistemas Computacionais , Infecções por Coronavirus/terapia , Medicina de Emergência/instrumentação , Geriatria/instrumentação , Humanos , Infectologia/instrumentação , Informática Médica , Modelos Teóricos , Monitorização Fisiológica/métodos , Casas de Saúde , Pandemias , Pneumonia Viral/terapia , Risco , Telemedicina/instrumentação , Telemedicina/métodos
5.
Adv Exp Med Biol ; 718: 209-21, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-21744221

RESUMO

Developing robotic systems endowed with self-conscious capabilities means realizing complex sub-systems needing ad-hoc software engineering techniques for their modelling, analysis and implementation. In this chapter the whole process (from analysis to implementation) to model the development of self-conscious robotic systems is presented and the new created design process, PASSIC, supporting each part of it, is fully illustrated.


Assuntos
Desenho de Equipamento , Robótica , Estado de Consciência , Modelos Teóricos
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