Results for 'Wearable technologies'

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  1. Wearable Technologies for Healthy Ageing: Prospects, Challenges, and Ethical Considerations.Stefano Canali, Agara Ferretti, Viola Schiaffonati & Alessandro Blasimme - 2024 - Journal of Frailty and Aging 2024:1-8.
    Digital technologies hold promise to modernize healthcare. Such opportunity should be leveraged also to address the needs of rapidly ageing populations. Against this backdrop, this paper examines the use of wearable devices for promoting healthy ageing. Previous work has assessed the prospects of digital technologies for health promotion and disease prevention in older adults. However, to our knowledge, ours is one of the first attempts to specifically address the use of wearables for healthy ageing, and to offer (...)
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  2.  37
    Wearable Technologies in Collegiate Sports: The Ethics of Collecting Biometric Data From Student-Athletes.Jason F. Arnold & Robert M. Sade - 2017 - American Journal of Bioethics 17 (1):67-70.
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  3.  43
    Four Ironies of Self-quantification: Wearable Technologies and the Quantified Self.D. A. Baker - 2020 - Science and Engineering Ethics 26 (3):1477-1498.
    Bainbridge’s well known “Ironies of Automation” Analysis, design and evaluation of man–machine systems. Elsevier, Amsterdam, pp 129–135, 1983. https://doi.org/10.1016/B978-0-08-029348-6.50026-9) laid out a set of fundamental criticisms surrounding the promises of automation that, even 30 years later, remain both relevant and, in many cases, intractable. Similarly, a set of ironies in technologies for sensor driven self-quantification is laid out here, spanning from instrumental problems in human factors design to much broader social problems. As with automation, these ironies stand in the (...)
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  4.  15
    The Application of Wearable Technology to Quantify Health and Wellbeing Co-benefits From Urban Wetlands.Jonathan P. Reeves, Andrew T. Knight, Emily A. Strong, Victor Heng, Chris Neale, Ruth Cromie & Ans Vercammen - 2019 - Frontiers in Psychology 10.
  5.  46
    Smart clothes and wearable technology.David Smith - 2007 - AI and Society 22 (1):1-3.
  6.  18
    Dress For Stress: Wearable Technology and the Social Body.Susan Elizabeth Ryan - 2008 - Nexus 10:50.
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  7.  85
    Virtual Reality and Wearable Technologies to Support Adaptive Responding of Children and Adolescents With Neurodevelopmental Disorders: A Critical Comment and New Perspectives.Fabrizio Stasolla - 2021 - Frontiers in Psychology 12.
  8.  45
    ‘My Fitbit Thinks I Can Do Better!’ Do Health Promoting Wearable Technologies Support Personal Autonomy?John Owens & Alan Cribb - 2019 - Philosophy and Technology 32 (1):23-38.
    This paper critically examines the extent to which health promoting wearable technologies can provide people with greater autonomy over their health. These devices are frequently presented as a means of expanding the possibilities people have for making healthier decisions and living healthier lives. We accept that by collecting, monitoring, analysing and displaying biomedical data, and by helping to underpin motivation, wearable technologies can support autonomy over health. However, we argue that their contribution in this regard is (...)
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  9.  53
    Personalized Ad in Your Google Glass? Wearable Technology, Hands-Off Data Collection, and New Policy Imperative.Yong Jin Park & Marko Skoric - 2017 - Journal of Business Ethics 142 (1):71-82.
    This study analyzes the increasing presence and capabilities of wearable computing devices in the cornucopia of personalized digital data. We argue that the institutional data practices typical of Google Glass will pose policy challenges and herald yet another dramatic shift to personalized data marketing. We also highlight the characteristics of Google’s existing synergetic data practices that will shape the development of not only Google Glass, but also all subsequent wearable mobile devices in light of 360-degree data collection. The (...)
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  10.  18
    How do technological properties influence user affordance of wearable technologies?Donghee Shin - 2019 - Interaction Studies 20 (2):307-338.
    The Internet of things affords people plenty of opportunities and a higher quality of life as well as drives a huge amount of data. By drawing on the concept of affordances, this study examines the user experience of personal informatics focusing on the technological and affective nature of affordance. A multi-mixed approach is used by combining qualitative methods and a quantitative survey. Results of the qualitative methods revealed a series of factors that related to the affordance of personal informatics, whereas (...)
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  11.  7
    Clothing Inventions as Acts of Citizenship? The Politics of Material Participation, Wearable Technologies, and Women Patentees in Late Victorian Britain.Kat Jungnickel - 2023 - Science, Technology, and Human Values 48 (1):9-33.
    This article is about clothing inventions, material participation, and acts of citizenship. I explore how pioneering Victorian women at the turn of the last century inventively responded via clothing to restrictions to their (physical and ideological) freedom of movement. While the bicycle is typically celebrated as a primary vehicle of women’s emancipation at that time, I argue that inventive forms of clothing, such as convertible cycling skirts, also helped women make claims to rights and privileges otherwise legally denied to their (...)
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  12.  22
    Augmenting justice: Google glass, body cameras, and the politics of wearable technology.Kevin Healey & Niall Stephens - 2017 - Journal of Information, Communication and Ethics in Society 15 (4):370-384.
    Purpose This paper aims to uncover the assumptions and concerns driving public debates about Google Glass and police body cameras. In doing so, it shows how debates about wearable cameras reflect broader cultural tensions surrounding race and privilege. Design/methodology/approach The paper employs a form of critical discourse analysis to discover patterns in journalistic coverage of these two technologies. Findings Public response to Glass has been overwhelmingly negative, while response to body cameras has been positive. Analysis indicates that this (...)
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  13.  72
    Wearable music in engaging technologies.Franziska Schroeder & Pedro Rebelo - 2007 - AI and Society 22 (1):85-91.
    We address the relationship between a music performer and her instrument as a possible model for re-thinking wearable technologies. Both musical instruments and textiles invite participation and by engaging with them we intuitively develop a sense of their malleability, resistance and fragility. In the action of touching we not only sense, but more importantly we react. We adjust the nature of our touch according to a particular material’s property. In this paper we draw on musical practice as it (...)
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  14.  20
    Wearable Biometric Technologies and Public Health.Michael J. DiStefano - 2017 - American Journal of Bioethics 17 (1):79-81.
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  15.  56
    Wearable artefacts as research vehicles.Laura Beloff - 2010 - Technoetic Arts 8 (1):47-53.
    The wearable technology field, including terms and areas such as wearable computing and fashionable technology, has been evolving at the cross-section of various disciplines including science, technology, arts, augmented reality, design, cybernetics, ergonomics and fashion. As an example, the research community in wearable computing has been carrying out profound work in understanding and defining many key principles in the field. According to these researchers, the wearable computer is understood as a kind of extension of the body, (...)
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  16.  17
    Wearables, the Marketplace and Efficiency in Healthcare: How Will I Know That You’re Thinking of Me?Mark Howard - 2021 - Philosophy and Technology 34 (4):1545-1568.
    Technology corporations and the emerging digital health market are exerting increasing influence over the public healthcare agendas forming around the application of mobile medical devices. By promising quick and cost-effective technological solutions to complex healthcare problems, they are attracting the interest of funders, researchers, and policymakers. They are also shaping the public facing discourse, advancing an overwhelmingly positive narrative predicting the benefits of wearable medical devices to include personalised medicine, improved efficiency and quality of care, the empowering of under-resourced (...)
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  17. Challenges and recommendations for wearable devices in digital health: Data quality, interoperability, health equity, fairness.Stefano Canali, Viola Schiaffonati & Andrea Aliverti - 2022 - PLOS Digital Health 1 (10):e0000104.
    Wearable devices are increasingly present in the health context, as tools for biomedical research and clinical care. In this context, wearables are considered key tools for a more digital, personalised, preventive medicine. At the same time, wearables have also been associated with issues and risks, such as those connected to privacy and data sharing. Yet, discussions in the literature have mostly focused on either technical or ethical considerations, framing these as largely separate areas of discussion, and the contribution of (...)
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  18.  7
    Wearable Device Monitoring Exercise Energy Consumption Based on Internet of Things.Xiaomei Shi & Zhihua Huang - 2021 - Complexity 2021:1-10.
    Computer technology and related Internet of things technology have penetrated into people’s daily life and industrial production; even in competitive sports training and competition, the Internet of things technology has also been a large number of applications. Traditional intelligent wearable devices are mainly used to calculate the steps of athletes or sports enthusiasts, corresponding physical data, and corresponding body indicators. The energy consumption calculated by these indexes is rough and the corresponding error is large. Based on this, this paper (...)
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  19.  18
    Designing for wearable and fashionable interactions.Wei-Chen Chang & Rung-Tai Lin - 2020 - Interaction Studies 21 (2):200-219.
    This research examines wearable, fashionable interaction design to mediate the narrative and semiotic concepts found in technology and fashion. We discuss the principles of design anthropology using Taiwan proverbs to transmit the “people-situation-reason-object” method and analyze five case studies that provide new approaches for designers engaged in future industry. Design anthropology attempts to engage physiological and psychological design through technological function, meaning formation, and fashion aesthetics to achieve cognition between people and the environment. The wearable, fashionable interaction displays (...)
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  20.  16
    Designing for wearable and fashionable interactions : Exploring narrative design and cultural semantics for design anthropology.Wei-Chen Chang & Rung-Tai Lin - 2020 - Interaction Studies 21 (2):200-219.
    This research examines wearable, fashionable interaction design to mediate the narrative and semiotic concepts found in technology and fashion. We discuss the principles of design anthropology using Taiwan proverbs to transmit the “people-situation-reason-object” method and analyze five case studies that provide new approaches for designers engaged in future industry. Design anthropology attempts to engage physiological and psychological design through technological function, meaning formation, and fashion aesthetics to achieve cognition between people and the environment. The wearable, fashionable interaction displays (...)
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  21.  14
    Exploring the smart wearable payment device adoption intention: Using the symmetrical and asymmetrical analysis methods.Naeem Hayat, Abdullah Al Mamun, Anas A. Salameh, Mohd Helmi Ali, Wan Mohd Hirwani Wan Hussain & Noor Raihani Zainol - 2022 - Frontiers in Psychology 13.
    The smart wearable device is a new breed of mobile device that offers diversified utilities for health, sport, and finance for consumers worldwide. The current study aims to investigate the provocation of the intention to use smart wearable payment devices among Malaysian consumers. The unified theory of technology acceptance and use of technology was employed with the cross-sectional survey-based data to explain the adoption of the smart wearable payment device. Furthermore, the UTAUT model was extended with trust (...)
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  22.  15
    A Wearable Mixed Reality Platform to Augment Overground Walking: A Feasibility Study.Emily Evans, Megan Dass, William M. Muter, Christopher Tuthill, Andrew Q. Tan & Randy D. Trumbower - 2022 - Frontiers in Human Neuroscience 16.
    Humans routinely modify their walking speed to adapt to functional goals and physical demands. However, damage to the central nervous system often results in abnormal modulation of walking speed and increased risk of falls. There is considerable interest in treatment modalities that can provide safe and salient training opportunities, feedback about walking performance, and that may augment less reliable sensory feedback within the CNS after injury or disease. Fully immersive virtual reality technologies show benefits in boosting training-related gains in (...)
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  23. Ethical issues concerning the use of commercially available wearables in children.Evangelos D. Protopapadakis & Andrie G. Panayiotou - 2022 - Jahr 13 (1):9-22.
    Wearable and mobile technology has advanced in leaps and bounds in the last decade with technological advances creating a role from enhancing healthy living to monitoring and treating disease. However, the discussion about the ethical use of such commercial technology in the community, especially in minors, is lacking behind. In this paper, we first summarize the major ethical concerns that arise from the usage of commercially available wearable technology in children, with a focus on smart watches, highlighting issues (...)
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  24.  12
    Molecular Politics, Wearables, and the Aretaic Shift in Biopolitical Governance.Peter Lindner - 2020 - Theory, Culture and Society 37 (3):71-96.
    Since the publication of Nikolas Rose’s ‘The Politics of Life Itself’ there has been vivid discussion about how biopolitical governance has changed over the last decades. This article uses what Rose terms ‘molecular politics’, a new socio-technical grip on the human body, as a contrasting background to ask anew his question ‘What, then, of biopolitics today?’ – albeit focusing not on advances in genetics, microbiology, and pharmaceutics, as he does, but on the rapid proliferation of wearables and other sensor-software gadgets. (...)
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  25.  60
    Ethical Implications of User Perceptions of Wearable Devices.L. H. Segura Anaya, Abeer Alsadoon, N. Costadopoulos & P. W. C. Prasad - 2018 - Science and Engineering Ethics 24 (1):1-28.
    Health Wearable Devices enhance the quality of life, promote positive lifestyle changes and save time and money in medical appointments. However, Wearable Devices store large amounts of personal information that is accessed by third parties without user consent. This creates ethical issues regarding privacy, security and informed consent. This paper aims to demonstrate users’ ethical perceptions of the use of Wearable Devices in the health sector. The impact of ethics is determined by an online survey which was (...)
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  26.  23
    Exploring the factors influencing adoption of health-care wearables among generation Z consumers in India.Bishwajit Nayak, Som Sekhar Bhattacharyya, Saurabh Kumar & Rohan Kumar Jumnani - 2022 - Journal of Information, Communication and Ethics in Society 20 (1):150-174.
    PurposeThe purpose of this study is to identify the major factors influencing the adoption of health-care wearables in generation Z (Gen Z) customers in India. A conceptual framework using push pull and mooring (PPM) adoption theory was developed.Design/methodology/approachData was collected from 208 Gen Z customers based on 5 constructs related to the adoption of health-care wearables. Confirmatory factor analysis and structural equation modelling was used to analyse the responses. The mediation paths were analysed using bootstrapping method and examination of the (...)
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  27.  30
    An ethical framework for automated, wearable cameras in health behavior research.Paul Kelly, Simon J. Marshall, Hannah Badland, Jacqueline Kerr, Melody Oliver, Aiden R. Doherty & Charlie Foster - unknown
    Technologic advances mean automated, wearable cameras are now feasible for investigating health behaviors in a public health context. This paper attempts to identify and discuss the ethical implications of such research, in relation to existing guidelines for ethical research in traditional visual methodologies. Research using automated, wearable cameras can be very intrusive, generating unprecedented levels of image data, some of it potentially unflattering or unwanted. Participants and third parties they encounter may feel uncomfortable or that their privacy has (...)
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  28.  56
    The Borg–eye and the We–I. The production of a collective living body through wearable computers.Nicola Liberati - 2020 - AI and Society 35 (1):39-49.
    The aim of this work is to analyze the constitution of a new collective subject thanks to wearable computers. Wearable computers are emerging technologies which are supposed to become pervasively used in the near future. They are devices designed to be on us every single moment of our life and to capture every experience we have. Therefore, we need to be prepared to such intrusive devices and to analyze potential effect they will have on us and our (...)
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  29.  31
    ‘Do-It-Yourself’ Healthcare? Quality of Health and Healthcare Through Wearable Sensors.Lucia Vesnic-Alujevic, Melina Breitegger & Ângela Guimarães Pereira - 2018 - Science and Engineering Ethics 24 (3):887-904.
    Wearable sensors are an integral part of the new telemedicine concept supporting the idea that Information Technologies will improve the quality and efficiency of healthcare. The use of sensors in diagnosis, treatment and monitoring of patients not only potentially changes medical practice but also one’s relationship with one’s body and mind, as well as the role and responsibilities of patients and healthcare professionals. In this paper, we focus on knowledge assessment of the online communities of Fitbit and the (...)
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  30.  22
    Digital sovereignty and smart wearables: Three moral calculi for the distribution of legitimate control over the digital.Niël Henk Conradie & Saskia K. Nagel - 2022 - Journal of Responsible Technology 12 (C):100053.
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  31.  37
    A Taxonomy of Ethical, Legal and Social Implications of Wearable Robots: An Expert Perspective.Alexandra Kapeller, Heike Felzmann, Eduard Fosch-Villaronga & Ann-Marie Hughes - 2020 - Science and Engineering Ethics 26 (6):3229-3247.
    Wearable robots and exoskeletons are relatively new technologies designed for assisting and augmenting human motor functions. Due to their different possible design applications and their intimate connection to the human body, they come with specific ethical, legal, and social issues, which have not been much explored in the recent ELS literature. This paper draws on expert consultations and a literature review to provide a taxonomy of the most important ethical, legal, and social issues of wearable robots. These (...)
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  32.  21
    Ethics of digital contact tracing wearables.G. Owen Schaefer & Angela Ballantyne - 2022 - Journal of Medical Ethics 48 (9):611-615.
    The success of digital COVID-19 contact tracing requires a strategy that successfully addresses the digital divide—inequitable access to technology such as smartphones. Lack of access both undermines the degree of social benefit achieved by the use of tracing apps, and exacerbates existing social and health inequities because those who lack access are likely to already be disadvantaged. Recently, Singapore has introduced portable tracing wearables (with the same functionality as a contact tracing app) to address the equity gap and promote public (...)
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  33.  73
    Simulation and augmentation: Issues of wearable computers. [REVIEW]Ana Viseu - 2003 - Ethics and Information Technology 5 (1):17-26.
    As the physical and digital worlds interact,some fields of technoscience have started toshift from an approach emphasizing simulation –in which the physical is replicated in thedigital – to one focusing on augmentation, inwhich the digital is utilized to enhance thephysical. A good place to study theimplications this shift has on the individualis the field of personal wearable technologies.Here, the body is not simply extended byinformation and communication technologies(ICTs), but also becomes their intimate host.This represents a new step (...)
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  34.  13
    Solitary death and new lifestyles during and after COVID-19: wearable devices and public health ethics.Akira Akabayashi, Alex John London, Keiichiro Yamamoto & Eisuke Nakazawa - 2021 - BMC Medical Ethics 22 (1):1-10.
    BackgroundSolitary death (kodokushi) has recently become recognized as a social issue in Japan. The social isolation of older people leads to death without dignity. With the outbreak of COVID-19, efforts to eliminate solitary death need to be adjusted in line with changes in lifestyle and accompanying changes in social structure. Health monitoring services that utilize wearable devices may contribute to this end. Our goals are to outline how wearable devices might be used to (1) detect emergency situations involving (...)
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  35.  45
    Technologies of the self and other’: how self-tracking technologies also shape the other.Katleen Gabriels & Mark Coeckelbergh - 2019 - Journal of Information, Communication and Ethics in Society 17 (2):119-127.
    Purpose This paper aims to fill this gap by providing a conceptual framework for discussing “technologies of the self and other,” by showing that, in most cases, self-tracking also involves other-tracking. Design/methodology/approach In so doing, we draw upon Foucault’s “technologies of the self” and present-day literature on self-tracking technologies. We elaborate on two cases and practical domains to illustrate and discuss this mutual process: first, the quantified workplace; and second, quantification by wearables in a non-clinical and self-initiated (...)
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  36.  9
    Contested technology: Social scientific perspectives of behaviour-based insurance.Maiju Tanninen - 2020 - Big Data and Society 7 (2).
    In this review, I analyse how ‘behaviour-based personalisation’ in insurance – that is, insurers’ increased interest in tracking and manipulating insureds’ behaviour with, for instance, wearable devices – has been approached in recent social scientific literature. In the review, I focus on two streams of literature, critical data studies and the sociology of insurance, discussing the new insurance schemes that utilise sensor-generated and digital data. The aim of this review is to compare these two approaches and to analyse what (...)
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  37.  21
    Remote Technologies and Filial Obligations at a Distance: New Opportunities and Ethical Challenges.Yi Jiao Tian, Fabrice Jotterand & Tenzin Wangmo - 2023 - Asian Bioethics Review 15 (4):479-504.
    The coupled growth of population aging and international migration warrants attention on the methods and solutions available to adult children living overseas to provide distance caregiving for their aging parents. Despite living apart from their parents, the transnational informal care literature has indicated that first-generation immigrants remain committed to carry out their filial caregiving obligations in extensive and creative ways. With functions to remotely access health information enabled by emergency, wearable, motion, and video sensors, remote monitoring technologies (RMTs) (...)
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  38.  41
    Digital Technologies for Schizophrenia Management: A Descriptive Review.Olga Chivilgina, Bernice S. Elger & Fabrice Jotterand - 2021 - Science and Engineering Ethics 27 (2):1-22.
    While the implementation of digital technology in psychiatry appears promising, there is an urgent need to address the implications of the absence of ethical design in the early development of such technologies. Some authors have noted the gap between technology development and ethical analysis and have called for an upstream examination of the ethical issues raised by digital technologies. In this paper, we address this suggestion, particularly in relation to digital healthcare technologies for patients with schizophrenia spectrum (...)
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  39.  22
    Things that help out: designing smart wearables as partners in stress management.Xueliang Li, Marco C. Rozendaal, Kaspar Jansen, Catholijn Jonker & Eric Vermetten - 2021 - AI and Society 36 (1):251-261.
    We propose an approach to designing smart wearables that act as partners to help people cope with stress in daily life. Our approach contributes to the developing field of smart wearables by addressing how technological capabilities can be designed to establish partnerships that consider the person, the situation, and the appropriate type of support. As such, this study also contributes to healthcare by opening up novel technology-supported routes to stress treatment and care. We present the results of a phenomenological study (...)
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  40.  19
    Editorial: Cognitive Aspects of Interactive Technology Use: From Computers to Smart Objects and Autonomous Agents.Amon Rapp, Maurizio Tirassa & Tom Ziemke - 2019 - Frontiers in Psychology 10.
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  41.  52
    The Mind-Technology Problem : Investigating Minds, Selves and 21st Century Artefacts.Inês Hipólito, Robert William Clowes & Klaus Gärtner (eds.) - 2021 - Springer Verlag.
    This edited book deepens the engagement between 21st century philosophy of mind and the emerging technologies which are transforming our environment. Many new technologies appear to have important implications for the human mind, the nature of our cognition, our sense of identity and even perhaps what we think human beings are. They prompt questions such as: Would an uploaded mind be 'me'? Does our reliance on smart phones, or wearable gadgets enhance or diminish the human mind? and: (...)
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  42.  40
    E-health beyond technology: analyzing the paradigm shift that lies beneath.Tania Moerenhout, Ignaas Devisch & Gustaaf C. Cornelis - 2018 - Medicine, Health Care and Philosophy 21 (1):31-41.
    Information and computer technology has come to play an increasingly important role in medicine, to the extent that e-health has been described as a disruptive innovation or revolution in healthcare. The attention is very much focused on the technology itself, and advances that have been made in genetics and biology. This leads to the question: What is changing in medicine today concerning e-health? To what degree could these changes be characterized as a ‘revolution’? We will apply the work of Thomas (...)
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  43.  14
    Mobile health technology and empowerment.Karola V. Kreitmair - forthcoming - Bioethics.
    Mobile Health (m-health) technologies, such as wearables, apps, and smartwatches, are increasingly viewed as tools for improving health and well-being. In particular, such technologies are conceptualized as means for laypersons to master their own health, by becoming “engaged” and “empowered” “managers” of their bodies and minds. One notion that is especially prevalent in the discussions around m-health technology is that of empowerment. In this paper, I analyze the notion of empowerment at play in the m-health arena, identifying five (...)
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  44. Thinking in the Cloud: The Cognitive Incorporation of Cloud-Based Technology.Robert Clowes - 2015 - Philosophy and Technology 28 (2):261-296.
    Technologies and artefacts have long played a role in the structure of human memory and our cognitive lives more generally. Recent years have seen an explosion in the production and use of a new regime of information technologies that might have powerful implications for our minds. Electronic-Memory, powerful, portable and wearable digital gadgetry and “the cloud” of ever-present data services allow us to record, store and access an ever-expanding range of information both about and of relevance to (...)
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  45.  46
    Smart homes, private homes? An empirical study of technology researchers’ perceptions of ethical issues in developing smart-home health technologies.Giles Birchley, Richard Huxtable, Madeleine Murtagh, Ruud ter Meulen, Peter Flach & Rachael Gooberman-Hill - 2017 - BMC Medical Ethics 18 (1):23.
    Smart-home technologies, comprising environmental sensors, wearables and video are attracting interest in home healthcare delivery. Development of such technology is usually justified on the basis of the technology’s potential to increase the autonomy of people living with long-term conditions. Studies of the ethics of smart-homes raise concerns about privacy, consent, social isolation and equity of access. Few studies have investigated the ethical perspectives of smart-home engineers themselves. By exploring the views of engineering researchers in a large smart-home project, we (...)
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  46.  50
    Mind the gap: technology as soma. [REVIEW]Stephen Thompson - 2007 - AI and Society 22 (1):37-44.
    The author argues that the notion of wearable technology betrays a materialistic approach to design that constrains the construction of a means to fully facilitate the functionality of technology. It is argued that by taking the view that technology can be considered an extensive form of humanity a space can be opened for designers to explore how the body can be considered an architecture for facilitating consciousness and technology a means of distributing consciousness by means of an extended body. (...)
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  47.  10
    A Perspective on Implementation of Technology-Driven Exergames for Adults as Telerehabilitation Services.Cécil J. W. Meulenberg, Eling D. de Bruin & Uros Marusic - 2022 - Frontiers in Psychology 13.
    A major concern of public health authorities is to also encourage adults to be exposed to enriched environments during the pandemic lockdown, as was recently the case worldwide during the COVID-19 outbreak. Games for adults that require physical activity, known as exergames, offer opportunities here. In particular, the output of the gaming industry nowadays offers computer games with extended reality which combines real and virtual environments and refers to human-machine interactions generated by computers and wearable technologies. For example, (...)
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  48.  14
    Review—Emerging Portable Technologies for Gait Analysis in Neurological Disorders.Christina Salchow-Hömmen, Matej Skrobot, Magdalena C. E. Jochner, Thomas Schauer, Andrea A. Kühn & Nikolaus Wenger - 2022 - Frontiers in Human Neuroscience 16.
    The understanding of locomotion in neurological disorders requires technologies for quantitative gait analysis. Numerous modalities are available today to objectively capture spatiotemporal gait and postural control features. Nevertheless, many obstacles prevent the application of these technologies to their full potential in neurological research and especially clinical practice. These include the required expert knowledge, time for data collection, and missing standards for data analysis and reporting. Here, we provide a technological review of wearable and vision-based portable motion analysis (...)
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  49.  17
    What Drives Internet Entrepreneurial Intention to Use Technology Products? An Investigation of Technology Product Imagination Disposition, Social Support, and Motivation.Tien-Chi Huang, Yi-Jin Wang & Hui-Min Lai - 2022 - Frontiers in Psychology 13.
    Technological products such as computer, communication, and consumer electronic products, apps, smart wearables, and streaming services have become inseparable from people’s lives. In technological fields of practice, imagination, creativity, innovation, and entrepreneurship may influence one another. A vivid imagination can generate creativity and trigger the entrepreneurial intention to “bring new things to the market.” This study aims to understand the formation of internet entrepreneurial intention to use technology products. Drawing on social cognitive theory, this study explores and empirically tests how (...)
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  50. Thinking with things: An embodied enactive account of mind–technology interaction.Anco Peeters - 2019 - Dissertation, University of Wollongong
    Technological artefacts have, in recent years, invited increasingly intimate ways of interaction. But surprisingly little attention has been devoted to how such interactions, like with wearable devices or household robots, shape our minds, cognitive capacities, and moral character. In this thesis, I develop an embodied, enactive account of mind--technology interaction that takes the reciprocal influence of artefacts on minds seriously. First, I examine how recent developments in philosophy of technology can inform the phenomenology of mind--technology interaction as seen through (...)
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