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Faber JS, Al-Dhahir I, Kraal JJ, Breeman LD, van den Berg-Emons RJG, Reijnders T, van Dijk S, Janssen VR, Kraaijenhagen RA, Visch VT, Chavannes NH, Evers AWM. Guide Development for eHealth Interventions Targeting People With a Low Socioeconomic Position: Participatory Design Approach. J Med Internet Res 2023; 25:e48461. [PMID: 38048148 PMCID: PMC10728791 DOI: 10.2196/48461] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/26/2023] [Revised: 09/19/2023] [Accepted: 09/26/2023] [Indexed: 12/05/2023] Open
Abstract
BACKGROUND People with a low socioeconomic position (SEP) are less likely to benefit from eHealth interventions, exacerbating social health inequalities. Professionals developing eHealth interventions for this group face numerous challenges. A comprehensive guide to support these professionals in their work could mitigate these inequalities. OBJECTIVE We aimed to develop a web-based guide to support professionals in the development, adaptation, evaluation, and implementation of eHealth interventions for people with a low SEP. METHODS This study consisted of 2 phases. The first phase involved a secondary analysis of 2 previous qualitative and quantitative studies. In this phase, we synthesized insights from the previous studies to develop the guide's content and information structure. In the second phase, we used a participatory design process. This process included iterative development and evaluation of the guide's design with 11 professionals who had experience with both eHealth and the target group. We used test versions (prototypes) and think-aloud testing combined with semistructured interviews and a questionnaire to identify design requirements and develop and adapt the guide accordingly. RESULTS The secondary analysis resulted in a framework of recommendations for developing the guide, which was categorized under 5 themes: development, reach, adherence, evaluation, and implementation. The participatory design process resulted in 16 requirements on system, content, and service aspects for the design of the guide. For the system category, the guide was required to have an open navigation strategy leading to more specific information and short pages with visual elements. Content requirements included providing comprehensible information, scientific evidence, a user perspective, information on practical applications, and a personal and informal tone of voice. Service requirements involved improving suitability for different professionals, ensuring long-term viability, and a focus on implementation. Based on these requirements, we developed the final version of "the inclusive eHealth guide." CONCLUSIONS The inclusive eHealth guide provides a practical, user-centric tool for professionals aiming to develop, adapt, evaluate, and implement eHealth interventions for people with a low SEP, with the aim of reducing health disparities in this population. Future research should investigate its suitability for different end-user goals, its external validity, its applicability in specific contexts, and its real-world impact on social health inequality.
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Affiliation(s)
- Jasper S Faber
- Department of Human-Centered Design, Delft University of Technology, Delft, Netherlands
| | - Isra Al-Dhahir
- Faculty of Social and Behavioral Sciences, Leiden University, Leiden, Netherlands
| | - Jos J Kraal
- Faculty of Industrial Design Engineering, Delft University of Technology, Delft, Netherlands
| | - Linda D Breeman
- Faculty of Social and Behavioral Sciences, Leiden University, Leiden, Netherlands
| | - Rita J G van den Berg-Emons
- Department of Rehabilitation Medicine, Erasmus MC, Rotterdam, Netherlands
- Capri Cardiac Rehabilitation, Rotterdam, Netherlands
| | - Thomas Reijnders
- Faculty of Social and Behavioral Sciences, Leiden University, Leiden, Netherlands
| | - Sandra van Dijk
- Faculty of Social and Behavioral Sciences, Leiden University, Leiden, Netherlands
| | - Veronica R Janssen
- Faculty of Social and Behavioral Sciences, Leiden University, Leiden, Netherlands
- Department of Cardiology, Leiden University Medical Center, Leiden, Netherlands
| | - Roderik A Kraaijenhagen
- Vital10, Amsterdam, Netherlands
- NDDO Institute for Prevention and Early Diagnostics, Amsterdam, Netherlands
| | - Valentijn T Visch
- Faculty of Industrial Design Engineering, Delft University of Technology, Delft, Netherlands
| | - Niels H Chavannes
- Department of Public Health and Primary Care, Leiden University Medical Centre, Leiden, Netherlands
| | - Andrea W M Evers
- Faculty of Social and Behavioral Sciences, Leiden University, Leiden, Netherlands
- Faculty of Industrial Design Engineering, Delft University of Technology, Delft, Netherlands
- Medical Delta, Leiden University, Delft University of Technology, Erasmus University, Delft, Netherlands
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Lentferink A, Oldenhuis H, Velthuijsen H, van Gemert-Pijnen L. How Reflective Automated e-Coaching Can Help Employees Improve Their Capacity for Resilience: Mixed Methods Study. JMIR Hum Factors 2023; 10:e34331. [PMID: 36897635 DOI: 10.2196/34331] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/18/2021] [Revised: 07/10/2022] [Accepted: 08/02/2022] [Indexed: 11/13/2022] Open
Abstract
BACKGROUND An eHealth tool that coaches employees through the process of reflection has the potential to support employees with moderate levels of stress to increase their capacity for resilience. Most eHealth tools that include self-tracking summarize the collected data for the users. However, users need to gain a deeper understanding of the data and decide upon the next step to take through self-reflection. OBJECTIVE In this study, we aimed to examine the perceived effectiveness of the guidance offered by an automated e-Coach during employees' self-reflection process in gaining insights into their situation and on their perceived stress and resilience capacities and the usefulness of the design elements of the e-Coach during this process. METHODS Of the 28 participants, 14 (50%) completed the 6-week BringBalance program that allowed participants to perform reflection via four phases: identification, strategy generation, experimentation, and evaluation. Data collection consisted of log data, ecological momentary assessment (EMA) questionnaires for reflection provided by the e-Coach, in-depth interviews, and a pre- and posttest survey (including the Brief Resilience Scale and the Perceived Stress Scale). The posttest survey also asked about the utility of the elements of the e-Coach for reflection. A mixed methods approach was followed. RESULTS Pre- and posttest scores on perceived stress and resilience were not much different among completers (no statistical test performed). The automated e-Coach did enable users to gain an understanding of factors that influenced their stress levels and capacity for resilience (identification phase) and to learn the principles of useful strategies to improve their capacity for resilience (strategy generation phase). Design elements of the e-Coach reduced the reflection process into smaller steps to re-evaluate situations and helped them to observe a trend (identification phase). However, users experienced difficulties integrating the chosen strategies into their daily life (experimentation phase). Moreover, the identified events related to stress and resilience were too specific through the guidance offered by the e-Coach (identification phase), and the events did not recur, which consequently left users unable to sufficiently practice (strategy generation phase), experiment (experimentation phase), and evaluate (evaluation phase) the techniques during meaningful events. CONCLUSIONS Participants were able to perform self-reflection under the guidance of the automated e-Coach, which often led toward gaining new insights. To improve the reflection process, more guidance should be offered by the e-Coach that would aid employees to identify events that recur in daily life. Future research could study the effects of the suggested improvements on the quality of reflection via an automated e-Coach.
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Affiliation(s)
- Aniek Lentferink
- Department of Psychology, Health & Technology, University of Twente, Enschede, Netherlands
| | - Hilbrand Oldenhuis
- Marian van Os Centre for Entrepreneurship, Hanze University of Applied Sciences, Groningen, Netherlands
| | - Hugo Velthuijsen
- Marian van Os Centre for Entrepreneurship, Hanze University of Applied Sciences, Groningen, Netherlands
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Wrede C, Braakman-Jansen A, van Gemert-Pijnen L. How to create value with unobtrusive monitoring technology in home-based dementia care: a multimethod study among key stakeholders. BMC Geriatr 2022; 22:921. [PMID: 36451119 PMCID: PMC9713088 DOI: 10.1186/s12877-022-03550-1] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/12/2022] [Accepted: 10/11/2022] [Indexed: 12/05/2022] Open
Abstract
BACKGROUND There is a growing interest to support extended independent living of people with dementia (PwD) via unobtrusive monitoring (UM) technologies which allow caregivers to remotely monitor lifestyle, health, and safety of PwD. However, these solutions will only be viable if developers obtain a clear picture of how to create value for all relevant stakeholders involved and achieve successful implementation. The aim of this study was therefore to explore the value proposition of UM technology in home-based dementia care and preconditions for successful implementation from a multi-stakeholder perspective. METHODS We conducted an expert-informed survey among potential stakeholders (n = 25) to identify key stakeholders for UM technology in home-based dementia care. Subsequently, focus groups and semi-structured interviews were conducted among 5 key stakeholder groups (n = 24) including informal caregivers (n = 5), home care professionals (n = 5), PwD (n = 4), directors and managers within home care (n = 4), and policy advisors within the aged care and health insurance sector (n = 6). The sessions addressed the value proposition- and business model canvas and were analyzed using thematic analysis. RESULTS Stakeholders agreed that UM technology should provide gains such as objective surveillance, timely interventions, and prevention of unnecessary control visits, whereas pains mainly included information overload, unplannable care due to real-time monitoring, and less human interaction. The overall design-oriented need referred to clear situation classifications including urgent care (fall- and wandering detection), non-urgent care (deviations in eating, drinking, sleeping), and future care (risk predictions). Most important preconditions for successful implementation of UM technology included inter-organizational collaboration, a shared vision on re-shaping existing care processes, integrated care ICT infrastructures, clear eligibility criteria for end-users, and flexible care reimbursement systems. CONCLUSIONS Our findings can guide the value-driven development and implementation of UM technology for home-based dementia care. Stakeholder values were mostly aligned, although stakeholders all had their own perspective on what UM technology should accomplish. Besides, our study highlights the complexity of implementing novel UM technology in home-based dementia care. To achieve successful implementation, organizational and financial preconditions, as well as digital data exchange between home care organizations, will be important.
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Affiliation(s)
- Christian Wrede
- grid.6214.10000 0004 0399 8953Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Drienerlolaan 5, Enschede, 7522 NB The Netherlands
| | - Annemarie Braakman-Jansen
- grid.6214.10000 0004 0399 8953Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Drienerlolaan 5, Enschede, 7522 NB The Netherlands
| | - Lisette van Gemert-Pijnen
- grid.6214.10000 0004 0399 8953Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Drienerlolaan 5, Enschede, 7522 NB The Netherlands
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van Gemert-Pijnen JEWC(L. Implementation of health technology: Directions for research and practice. Front Digit Health 2022; 4:1030194. [PMID: 36440459 PMCID: PMC9685419 DOI: 10.3389/fdgth.2022.1030194] [Citation(s) in RCA: 2] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/28/2022] [Accepted: 10/19/2022] [Indexed: 03/03/2024] Open
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Kip H, Keizer J, da Silva MC, Beerlage-de Jong N, Köhle N, Kelders SM. Methods for Human-Centered eHealth Development: Narrative Scoping Review. J Med Internet Res 2022; 24:e31858. [PMID: 35084359 PMCID: PMC8832261 DOI: 10.2196/31858] [Citation(s) in RCA: 23] [Impact Index Per Article: 11.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/07/2021] [Revised: 10/29/2021] [Accepted: 11/15/2021] [Indexed: 12/16/2022] Open
Abstract
Background Thorough holistic development of eHealth can contribute to a good fit among the technology, its users, and the context. However, despite the availability of frameworks, not much is known about specific research activities for different aims, phases, and settings. This results in researchers having to reinvent the wheel. Consequently, there is a need to synthesize existing knowledge on research activities for participatory eHealth development processes. Objective The 3 main goals of this review are to create an overview of the development strategies used in studies based on the CeHRes (Center for eHealth Research) Roadmap, create an overview of the goals for which these methods can be used, and provide insight into the lessons learned about these methods. Methods We included eHealth development studies that were based on the phases and/or principles of the CeHRes Roadmap. This framework was selected because of its focus on participatory, iterative eHealth design in context and to limit the scope of this review. Data were extracted about the type of strategy used, rationale for using the strategy, research questions, and reported information on lessons learned. The most frequently mentioned lessons learned were summarized using a narrative, inductive approach. Results In the included 160 papers, a distinction was made between overarching development methods (n=10) and products (n=7). Methods are used to gather new data, whereas products can be used to synthesize previously collected data and support the collection of new data. The identified methods were focus groups, interviews, questionnaires, usability tests, literature studies, desk research, log data analyses, card sorting, Delphi studies, and experience sampling. The identified products were prototypes, requirements, stakeholder maps, values, behavior change strategies, personas, and business models. Examples of how these methods and products were applied in the development process and information about lessons learned were provided. Conclusions This study shows that there is a plethora of methods and products that can be used at different points in the development process and in different settings. To do justice to the complexity of eHealth development, it seems that multiple strategies should be combined. In addition, we found no evidence for an optimal single step-by-step approach to develop eHealth. Rather, researchers need to select the most suitable research methods for their research objectives, the context in which data are collected, and the characteristics of the participants. This study serves as a first step toward creating a toolkit to support researchers in applying the CeHRes Roadmap to practice. In this way, they can shape the most suitable and efficient eHealth development process.
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Affiliation(s)
- Hanneke Kip
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands.,Department of Research, Transfore, Deventer, Netherlands
| | - Julia Keizer
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands
| | - Marcia C da Silva
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands
| | - Nienke Beerlage-de Jong
- Department of Health Technology & Services Research, University of Twente, Enschede, Netherlands
| | - Nadine Köhle
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands
| | - Saskia M Kelders
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands.,Optentia Research Focus Area, North-West University, Vanderbijlpark, South Africa
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Two Sides of the Same Coin? A Dual Multiple Criteria Decision Analysis of Novel Treatments Against Rheumatoid Arthritis in Physicians and Patients. Clin Ther 2021; 43:1547-1557. [PMID: 34366150 DOI: 10.1016/j.clinthera.2021.07.005] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/17/2021] [Revised: 07/02/2021] [Accepted: 07/03/2021] [Indexed: 10/20/2022]
Abstract
PURPOSE Available treatment options for rheumatoid arthritis (RA) differ in important aspects. In this sense, each RA treatment option is accompanied by a spectrum of characteristics that collectively constitute its comprehensive "value," as viewed from the physician's or the patient's perspective. The objective of this study was to perform a multiple criteria decision analysis of different RA treatments from the perspective of physicians and patients and to outline the respective aspects of value for each treatment METHODS: A literature review was performed for constructing a set of criteria (N = 8) for the multiple criteria decision analysis. Workshops for the elicitation of preferences occurred separately for physicians and patients. A performance matrix was populated via 2 network meta-analyses plus converged clinical opinion. Criteria were hierarchically classified by application of pairwise comparisons, and criteria weights were attributed by point allocation through convergence of opinions. Performances in both panels were scored by using a 100-point scale. A linear additive value function was used for the calculation of total value estimates. FINDINGS Both panels provided their consensus. The hierarchical classification of attributes from the physician perspective placed the highest values on the criteria of severe adverse events, clinical efficacy, route of administration, and cost per year for the third-party payer. From the patient perspective, the highest ranking criteria were clinical efficacy, severe adverse events, percentage of patients remaining with the same targeted immune modulator for 1 year ("drug survival"), and cost per year for the third-party payer. IMPLICATIONS In an era of multiple options and varying preferences, RA treatments must be evaluated by taking into consideration patients' preferences as well, as to cover the full spectrum of value elements rather than simply clinical outcomes. The results of this analysis show that physicians and patients share similarities but also marked differences in terms of the aspects of treatment that they perceive as more valuable.
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Asbjørnsen RA, Wentzel J, Smedsrød ML, Hjelmesæth J, Clark MM, Solberg Nes L, Van Gemert-Pijnen JEWC. Identifying Persuasive Design Principles and Behavior Change Techniques Supporting End User Values and Needs in eHealth Interventions for Long-Term Weight Loss Maintenance: Qualitative Study. J Med Internet Res 2020; 22:e22598. [PMID: 33252347 PMCID: PMC7735908 DOI: 10.2196/22598] [Citation(s) in RCA: 18] [Impact Index Per Article: 4.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/17/2020] [Revised: 08/23/2020] [Accepted: 09/15/2020] [Indexed: 02/07/2023] Open
Abstract
BACKGROUND An increasing number of eHealth interventions aim to support healthy behaviors that facilitate weight loss. However, there is limited evidence of the effectiveness of the interventions and little focus on weight loss maintenance. Knowledge about end user values and needs is essential to create meaningful and effective eHealth interventions, and to identify persuasive system design (PSD) principles and behavior change techniques (BCTs) that may contribute to the behavior change required for successful long-term weight loss maintenance. OBJECTIVE This study aimed to provide insight into the design of eHealth interventions supporting behavior change for long-term weight maintenance. The study sought to identify the values and needs of people with obesity aiming to maintain weight after weight loss, and to identify PSD principles, BCTs, and design requirements that potentially enable an eHealth intervention to meet end user values and needs. METHODS This study presents the concept of integrating PSD principles and BCTs into the design process of eHealth interventions to meet user values and needs. In this study, individual interviews and focus groups were conducted with people with obesity (n=23) and other key stakeholders (n=27) to explore end user values and needs related to weight loss maintenance. Design thinking methods were applied during the focus group sessions to identify design elements and to explore how eHealth solutions can support the needs to achieve sustainable weight loss maintenance. The PSD model and behavior change taxonomy by Michie were used to identify PSD principles and BCT clusters to meet end user values and needs. RESULTS A total of 8 key end user values were identified, reflecting user needs for weight loss maintenance support: self-management, personalized care, autonomy, feel supported, positive self-image, motivation, happiness, and health. Goals and planning, feedback and monitoring, repetition and substitution, shaping knowledge, social support, identity, and self-belief were some of the BCT clusters identified to address these concepts, together with PSD principles such as personalization, tailoring, self-monitoring, praise, and suggestions. CONCLUSIONS The process of translating end user values and needs into design elements or features of eHealth technologies is an important part of the design process. To our knowledge, this is the first study to explore how PSD principles and BCTs can be integrated when designing eHealth self-management interventions for long-term weight loss maintenance. End users and other key stakeholders highlighted important factors to be considered in the design of eHealth interventions supporting sustained behavior change. The PSD principles and BCTs identified provide insights and suggestions about design elements and features to include for supporting weight loss maintenance. The findings indicate that a combination of BCTs and PSD principles may be needed in evidence-based eHealth interventions to stimulate motivation and adherence to support healthy behaviors and sustained weight loss maintenance. TRIAL REGISTRATION ClinicalTrials.gov NCT04537988; https://clinicaltrials.gov/ct2/show/NCT04537988.
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Affiliation(s)
- Rikke Aune Asbjørnsen
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands.,Research and Innovation Department, Vestfold Hospital Trust, Tønsberg, Norway.,Department of Digital Health Research, Division of Medicine, Oslo University Hospital, Oslo, Norway
| | - Jobke Wentzel
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands.,Research Group IT Innovations in Health Care, Windesheim University of Applied Sciences, Zwolle, Netherlands
| | | | - Jøran Hjelmesæth
- Morbid Obesity Center, Vestfold Hospital Trust, Tønsberg, Norway.,Department of Endocrinology, Morbid Obesity and Preventive Medicine, Institute of Clinical Medicine, University of Oslo, Oslo, Norway
| | - Matthew M Clark
- Department of Psychiatry & Psychology, Mayo Clinic, College of Medicine & Science, Rochester, MN, United States
| | - Lise Solberg Nes
- Department of Digital Health Research, Division of Medicine, Oslo University Hospital, Oslo, Norway.,Department of Psychiatry & Psychology, Mayo Clinic, College of Medicine & Science, Rochester, MN, United States.,Institute of Clinical Medicine, Faculty of Medicine, University of Oslo, Oslo, Norway
| | - Julia E W C Van Gemert-Pijnen
- Centre for eHealth and Wellbeing Research, Department of Psychology, Health and Technology, University of Twente, Enschede, Netherlands.,University Medical Center Groningen, Groningen, Netherlands.,University of Waterloo, Waterloo, ON, Canada
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