Introduction to Ehealth Technologies
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Objective This study aims to examine the extent to which design and implementation considerations for contact tracing apps are detailed in the available literature, focusing on aspects related to participatory and responsible eHealth innovation, and synthesize recommendations that support the development of successful COVID-19 contact tracing apps and related eHealth technologies.
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OBJECTIVE
This study aimed to (1) examine the extent to which design and implementation considerations for contact tracing apps are detailed in the available literature, focusing on aspects related to participatory and responsible eHealth innovation, and (2) synthesize recommendations that support the development of successful COVID-19 contact tracing apps and related eHealth technologies.
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Ehealth Technologies sentence examples within ehealth technologies may
Recent studies have explored eHealth technologies to support persons living with PTSD.
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Future directions might include rigorous evaluations of co-located medical and dental services or the use of interprofessional telehealth technologies.
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eHealth technologies may address some of these barriers, serving as a viable way to promote PA behavior change in this population.
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BACKGROUND
The worldwide increase in community-dwelling people with dementia underscores the need for innovative eHealth technologies that aim to provide support to both patients and their informal caregivers in the home setting.
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While the deployment of eHealth technologies in conflict settings is increasingly normalized, there is a need for further clarification of global norms relating to practice in this context.
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A standard approach to triage may minimize the risks to patient safety and support the appropriate use of telehealth technologies.
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An understanding of these differences can help regions or countries that are lagging in the implementation and use of eHealth technologies.
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The elderly population has unique challenges concerning the use of telehealth technologies.
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Implementation of eHealth technologies has been documented for the management of different chronic diseases, including asthma and allergic conditions.
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To successfully implement eHealth technologies in cross-sectoral care future research should include online physician–patient communication, data security, data safety, and the aspects of quality and safety of care.
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Conclusions: In both models, there is a lack of discussion about the impact of nursing aspects on the use and acceptance of eHealth technologies.
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A paper published in BMJ, describes the steps and strategies on how to choose and utilize appropriate telehealth technologies, which provided a guidance for supporting physicians or nursing practitioners to make remote consultation, such as taking a history remotely, performing remote physical examination, and making decision for remote management and providing advice or further inperson assessment [8].
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Emerging evidence shows that home monitoring in people with pulmonary fibrosis using home spirometry and eHealth technologies for symptom and drug-related side effect evaluation is possible.
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Opportunities to improve telehealth access should be explored, including investments in telehealth technologies for American Indians at risk for suicide.
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The convergence of smart sensors has prioritized the development of eHealth technologies.
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Clinicians and researchers have attempted to improve adherence to PA recommendations, essentially bridging the gap between the clinic and the home by incorporating telehealth technologies in patients with chronic diseases.
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Background and Aims Telehealth technologies are being implemented widely and can be used to provide education and self-management support to help and sustain lifestyle changes, namely in patients with chronic diseases.
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Conclusions Increasing adoption of eHealth mainly due to necessity but not out of interest can have serious implications for patients and the adoption of eHealth technologies in the future.
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Digital media interventions and telehealth technologies have gained considerable popularity in recent years and this phenomenon has accelerated in the current global COVID pandemic [1, 2].
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The increasing number of digital solutions developed for use in clinical health care settings is accompanied by new challenges to develop and conduct clinical studies that include eHealth technologies.
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However, with the rise of eHealth technologies, such as online patient portals, the role of trust and the factors that influence it need to be reconsidered.
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Objective This study aims to examine the extent to which design and implementation considerations for contact tracing apps are detailed in the available literature, focusing on aspects related to participatory and responsible eHealth innovation, and synthesize recommendations that support the development of successful COVID-19 contact tracing apps and related eHealth technologies.
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Conclusions The development of telehealth technologies should consider the expectations of patients and professionals and may incorporate elements of persuasive technologies in the design.
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Telehealth technologies have long remained on the peripheries of healthcare systems that prioritize in-person healthcare provision.
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Objective This study aims to explore and thematically categorize a selected representation of early phase studies on eHealth technologies, focusing on papers that are under development or undergoing testing.
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Point of care testing (POCT) performed by the patient at home, paired with eHealth technologies, offers a wealth of opportunities to develop individualised, empowering clinical pathways.
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This study aimed at conducting a systematic literature review to establish the factors associated with the adoption of eHealth and propose a context-specific framework for successful adoption of eHealth technologies in developing countries such as Uganda.
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Applications of telehealth technologies have largely focused on management of chronic illnesses.
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eHealth technologies are often seen as a panacea, but a large proportion of eHealth projects fail, primarily because of human, not technological, elements.
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Introduction: Broad expansion of telehealth technologies has been implemented during the coronavirus disease 2019 (COVID-19) pandemic to allow for physical distancing and limitation of viral transmission within health care facilities.
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OBJECTIVE
This study aimed to (1) examine the extent to which design and implementation considerations for contact tracing apps are detailed in the available literature, focusing on aspects related to participatory and responsible eHealth innovation, and (2) synthesize recommendations that support the development of successful COVID-19 contact tracing apps and related eHealth technologies.
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The article will focus specifically on 1) wearable devices suitable for monitoring the populations at risk and those in quarantine, both for evaluating the health status of caregivers and management personnel, and for facilitating triage processes for admission to hospitals; 2) unobtrusive sensing systems for detecting the disease and for monitoring patients with relatively mild symptoms whose clinical situation could suddenly worsen in improvised hospitals; and 3) telehealth technologies for the remote monitoring and diagnosis of COVID-19 and related diseases.
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The term telerehabilitation, as widely used nowadays, includes more advanced telehealth technologies.
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While conventional RCTs have proven to be difficult in this setting, pragmatic randomized clinical trials (pRCTs), by leveraging real-world data and eHealth technologies, may be a unique fit for the special needs of the rare disease field.
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Most previous studies have not performed in-depth analyses of patient satisfaction with telehealth technologies.
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Methods We used data from two separate HF patient groups that used different telehealth technologies over a 90-day period.
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This paper highlights implications for clinical practice during and post-COVID-19, including the durability of practice adaptations and opportunities for research into mechanisms to support supportive care post the pandemic, including the advancement of eHealth technologies and alternative models of care that integrate community resources, primary care and allied health disciplines.
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Our goal was to standardize the telemedicine motor neurologic examination, summarize the evidence surrounding clinical use of telehealth technologies, and discuss financial and legal considerations.
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Understanding their level of eHealth literacy augments practice of health care, efficiency in education, and use of eHealth technologies.
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This literature review addresses sociotechnical challenges of eHealth technologies with a strong collaborative component.
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To address this issue, there has been an increased focus on using eHealth technologies for remote therapy delivery.
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Telepharmacy and telehealth technologies are being used by pharmacists in a multitude of settings to positively influence the health and wellbeing of patients through these connections.
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Telehealth technologies aimed at providing health care remotely through monitoring and consultations could help to improve health outcomes of people with COPD.
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BACKGROUND
For eHealth technologies in general, and audit and feedback (AF) systems specifically, integrating interdisciplinary theoretical underpinnings is essential as it increases the likelihood of achieving desired outcomes by ensuring a fit between the eHealth technology, stakeholders, and their context.
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While many of these technologies are still in infancy, we anticipate that in response to the Coronavirus Disease 2019 pandemic and current unmet needs to decentralize care for people with foot disease, we will see a new wave of innovations in the area of digital health, smart wearables, telehealth technologies, and “hospital-at-home” care delivery model.
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Studies were included in the review if they contained information on telehealth technologies for Indigenous OAs (aged 65 years and older).
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Secondary outcomes include binge-drinking sessions per month, alcohol-related problem severity (Rutgers Alcohol Problem Index), cannabis use frequency and quantity in grams (TLFB), depressive symptoms (Center for Epidemiological Studies Depression Scale), perceived stress (Perceived Stress Scale), engagement (Twente Engagement with eHealth Technologies Scale), readiness to change (Readiness to Change Questionnaire), mental well-being (Warwick-Edinburgh Mental Wellbeing Scale), trauma and COVID-19–related trauma (Short-Form Posttraumatic Stress Disorder Checklist for Diagnostic and Statistical Manual of Mental Disorders, 5th Edition), impulsivity (Urgency, Premeditation, Perseverance, Sensation Seeking, Positive Urgency Impulsive Behavior Scale), study or work performance (Individual Work Performance Questionnaire), and treatment adherence.
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These findings suggest the use of telehealth technologies may augment family communication and facilitate multidisciplinary care in the future.
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Telehealth and telehealth technologies have an increasing role in health care delivery as health care has continued to evolve to meet patient needs.
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Temporary changes in re-imbursement, inclusion of home office and patient home environments, and increased access to telehealth technologies by patients, health care staff and health care facilities were key to provide an environment for creative and consistent high-quality stroke care.
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The results provided a road map for optimizing the tool and highlighted the importance of evaluating eHealth technologies with representative users.
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Telepharmacy and telehealth technologies are being used by pharmacists in a multitude of settings to positively influence the health and wellbeing of patients.
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The article will focus specifically on 1) wearable devices suitable for monitoring the populations at risk and those in quarantine, both for evaluating the health status of caregivers and management personnel, and for facilitating triage processes for admission to hospitals; 2) unobtrusive sensing systems for detecting the disease and for monitoring patients with relatively mild symptoms whose clinical situation could suddenly worsen in improvised hospitals; and 3) telehealth technologies for the remote monitoring and diagnosis of COVID-19 and related diseases.
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Such remote care delivery methods include the use of telehealth technologies including clinical video telehealth or telephone visits.
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Gastrointestinal (GI) illness interventions are increasingly utilizing eHealth technologies, yet little is currently known about the extent of their impact on patient outcomes.
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This paper presents MyPal, an EC-funded collaborative research project that aims to exploit advanced eHealth technologies to develop and evaluate two novel ePRO-based general palliative care interventions for cancer patients.
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A host of telehealth technologies were implemented across a wide array of clinical settings, health conditions, and patient populations and generally reported positive outcomes.
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While there is increasing utilization of telehealth technologies to increase access to PID physicians, there is limited knowledge regarding adoption of these technologies and how they may be used to improve care and reimbursement.
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This chapter describes the specific IT systems and tools used by Kaiser Permanente to identify and narrow or eliminate disparities in care for its members, including one of the nation’s largest electronic health records (EHRs), panel health management tools, a patient portal, and various telehealth technologies.
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Results Of the 90 MMAT-rated studies, the highest reported (1) health areas were cancer and mental disorders, (2) eHealth technologies were websites and mobile apps, (3) targeted populations were youth and women, and (4) countries of study were the United States, the United Kingdom, and the Netherlands.
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Behavioral intervention strategies can be enhanced by recognizing human activities using eHealth technologies.
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Use of telehealth technologies based collaborative pathways can scale the endocrine expertise and help attain better care for diabetic patients.
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Purpose – This paper aims to discuss the strategic role of telehealth technologies in managing the COVID19 pandemic.
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The technologies spanning telehealth, telemedicine, and mobile health (mHealth) are rapidly evolving, and the Infectious Diseases Society of America (IDSA) has prepared this updated position statement to educate its membership on the use of telemedicine and telehealth technologies.
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CONCLUSIONS: Rural stakeholders report significant symptom management needs, are interested in eHealth technologies, and perceived OASIS positively.
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Understanding these differences could enable targeted outreach for health interventions and promotion of eHealth technologies.
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Research has found that delivering this assessment and intervention package via telehealth technologies is efficient and acceptable to caregivers in the United States (Wacker et al.
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Distance remains the greatest barrier to specialized team-based care for this population; telehealth technologies may make interprofessional care more accessible to these persons.
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Digital health or eHealth technologies, notably pervasive computing, robotics, big-data, wearable devices, machine learning, and artificial intelligence (AI), have opened unprecedented opportunities as to how the diseases are diagnosed and managed with active patient engagement.
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The ability to effectively understand and utilize telehealth technologies is an important skill for health care providers.
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Conclusions: With the DCN approach, we show that using telehealth technologies and collaborative partnerships, endocrine expertise can successfully be scaled to address the shortage of endocrinologists and help attain improved diabetes control.