
- NURS FPX 4045 Assessment 3 Evidence-Based Proposal and Annotated Bibliography on Technology in Nursing.
Evidence-Based Proposal and Annotated Bibliography on Technology in Nursing
I chose smartwatches for this research due to their growing role in healthcare, particularly in remote tracking and continuous health management. The benefit of this is that they can identify critical symptoms and combine them with virtual health statistics (EHRs) to help improve outcomes for affected individuals and streamline the healthcare workflow. The emerging adoption of a wearable era in medical settings highlights the need to assess its effectiveness, potential concerns, and the long-term impact on healthcare delivery.
The use of smartwatch technologies is an integral part of modern nursing. Thanks to smartwatches, nurses are able to monitor their patients’ health state online, detect any anomalies, control chronic diseases, and make evidence-based decisions in the field of nursing. It is important to emphasize that smartwatches contribute greatly to improving patients’ health and cooperation within the healthcare system.
Furthermore, the study’s machine provided an overview of peer-reviewed magazine articles to recognize the advantages and boundaries of using smartwatches in fitness care. Relevant literature was compiled from PubMed, CINAHL, Google Scholar, and other sources. These terms include “smartwatches in healthcare,” “wearable fitness generation,” “wearable character monitoring gadgets,” and “scientific packages of smartwatches.” This research examines various assets and goals to provide comprehensive information on how smartwatches contribute to patient care and interdisciplinary collaboration. Explore NURS FPX 4045 Assessment 4 Informatics and Nursing-Sensitive Quality Indicators for more information.
Annotated Bibliography
oköhler, C., Bartschke, A., Fürstenau, D., Schaaf, T., & Salgado-Baez, E. (2024). The price of smartwatches in the fitness care area for tracking, nudging, and predicting: a view on 25 years of research. Magazine of Clinical Internet Studies, 26(1). https://doi.org/10.2196/58936
This newsletter categorizes smartwatch features within the context of healthcare monitoring, nudging, and prediction. It highlights their functionality for monitoring the health of affected individuals, promoting healthier behaviours, and utilizing artificial intelligence (AI) for predictive analytics. The look addresses challenges related to fact accuracy, privacy dangers, usability, and machine integration. Smartwatches enhance personal protection and care by enabling non-invasive health tracking, early disease detection, and personalized interventions.
Smartwatch Integration in Healthcare
However, to be adopted in clinical placement, a few problems concerning information protection and tool reliability remain. The real-time data made available through the use of smartwatches offers nurses and interdisciplinary teams valuable information for individuals to track and implement preventive health strategies. Integrating smartwatch data with Electronic Health Records (EHRs) enhances collaborative decision-making and care coordination. For healthcare specialists, this is a critical delivery, as it may provide an extensive assessment of the use of smartwatch technology, highlighting both its benefits and limitations, which are essential to recognize in advance of implementing it in a clinical setting.
Jafleh, E. A., Alnaqbi, F. A., Almaeeni, H. A., Faqeeh, S., Alzaabi, M. A., & Zaman, ok. A. (2024). The Location of Wearable Gadgets in Persistent Illness Tracking and Care for Affected Individuals: A Comprehensive Review. Cureus, sixteen(9). https://doi.org/10.7759/cureus.68921
This evaluation article discusses wearable health devices, including smartwatches, in the management of chronic illnesses across all scientific disciplines. As explored in NURS FPX 4045 Assessment 3 Evidence-Based Proposal and Annotated Bibliography on Technology in Nursing, these devices are emphasized for their potential to offer real-time, affected character tracking, facilitate better patient outcomes, and enhance engagement in care. The article highlights applications in cardiology, respiratory health, neurology, endocrinology, orthopaedics, oncology, and mental health, showcasing their effectiveness in detecting conditions, supporting rehabilitation, and improving disease management.
Impact of Wearable Devices
The research indicates the unjustified yet significant effect of wearable devices on character care, pride, and protection by delivering timely monitoring, early detection of complications, and personalized interventions. It highlights demanding states, data accuracy issues, privacy threats, integration problems, and the impact on individual persons. This article’s findings, particularly from interdisciplinary and nursing perspectives on individuals, suggest that wearables facilitate scientific decision-making that aligns with patient-centered care. This transport was previously chosen because it is an effective method for evaluating the benefits and drawbacks of wearable technology in contemporary healthcare practice.
Ferrara, E. (2024). huge language fashions for wearable sensor-based human interest popularity, fitness tracking, and behavioural modelling: A survey of early inclinations, datasets, and demanding conditions. Sensors (Basel, Switzerland), vol. 24, no. 15. https://doi.org/10.3390/s24155045
This passage discusses the applicability of massive language models (LLMs) in interpreting wearable sensor statistics, such as those from smartwatches, fitness tracking, human hobby recognition, and conduct modeling. It explains the pros and cons of incorporating LLMs with sensor facts evaluation, bringing innovation in real-time monitoring and tailor-made healthcare. Patient safety is facilitated through the software of smartwatches with sensors that display patients’ heart rates, activity, and physiological data, presenting us with advanced techniques for providing and alerting us about health issues early.
NURS FPX 4045 Assessment 3 Evidence-Based Proposal and Annotated Bibliography on Technology in Nursing
It offers extra sustained contamination control, emergency remedy, and standard excellence of care. The element emphasizes that LLMs can enhance the accuracy of fitness information interpretation and provide beneficial, helpful resources to nurses and interdisciplinary agencies, enabling them to make better-informed decisions. The supply was once as quick as initially decided upon, as it utilizes wearable technology coupled with AI-based analysis to provide a valuable understanding of future healthcare advancements. Healthcare practitioners should be aware of how smartwatches and AI can assist in maximizing the effects of impacted persons and combined care.
Lee, S. M., & Lee, D. (2020). Healthcare wearable devices: An evaluation of key factors for non-saved user purposes. organisation organization enterprise, 14(four), 503. https://doi.org/10.1007/s11628-020-00428-3
This remark examines inner and outer factors affecting the declaration of the forestall use of healthcare wearable devices, smartwatches, fitness professionals, and most individuals. It investigates homodimer conduct, the desire for more potent health benefits, and the social impact of prolonged gadget use. They have observed and discovered that every part of the inner (statistics, concept set, assumption) and outer (generation, social effect) effects is conducted considerably. Medical doctors questioned stronger links between the properties and motives used than the general population.
AI-Powered Wearable Monitoring
Social impact has become an essential purpose for non-prevention software programs. Smartwatches enhance the protection of men and women by providing real-time body fitness monitoring, early disease detection, and remote treatment, thereby improving the effectiveness of treatment. The devices optimize monitoring for impacted persons in healthcare agencies and among nurses, providing real-time health control within the marketplace. This transparency is integral, as it captures empirical evidence regarding the components of f adoption and non-preventive use, prompting clinicians and policymakers to integrate wearable technology into patient care.
Kumar, S., & Banerjee, A. (2023). Artificial Genius-enabled smartwatch used for detecting idiopathic ventricular tachycardia: A case record. Cureus, 15(7). https://doi.org/10.7759/cureus.42054
This case reports data on the software application of AI and smartwatches for detecting cardiomyopathy-delivered approximately idiopathic ventricular tachycardia (VT). The test demonstrates how production with AI-based total wearables and cardiac rhythm sensor technology can detect an abnormal cardiac rhythm and prompt on-the-spot clinical treatment. A fifty-three-hundred-and-sixty-five-day-old male patient visited a scientific doctor’s hospital as soon as his smartwatch informed him of a very high heart rate, the challenge of the report. VT was ultimately tested, which was as fast as it once was, as soon as it showed, and was taken on a pleasure treatment and everyday manipulation.
Synthetic Genius-based truly smartwatches can help detect cardiac problems within the device, so severe complications may be averted. With clinical sports activities, such devices offer a significant advantage for medical companies, enabling early detection and intervention to preserve cardiovascular health. Furthermore, AI development has a long way to go in tracking and treating nurses and multidisciplinary corporations. Most relevant to clinical physicians, this text presents the strategies wherein AI is growing as a pinnacle problem of the wearable era and posits that perhaps there is more to be done to make it possible and scientifically sound to quantify its capability to detect cardiac illness.
Artificial Intelligence (AI)
AI-equipped smartwatches monitor key signs and symptoms, including those related to coronary heart rate, blood pressure, and oxygen saturation, thereby enabling the evaluation of individual treatment, nursing care, and overall health status. AI-based, indeed easy algorithms enable real-time processing to detect anomalies and arrhythmias, alerting sufferers and medical teams in time for suitable intervention. Some distance-off patients occasionally need to receive artificial brains, which enable smartwatches to automate nurses’ work to eliminate manual-favored signal readings.
It enables the early detection of medical issues, maximizing the use of precious resources, and improving the standard of care for individual patients. Moreover, EHRs incorporate smartwatch statistics, primarily based on AI, to support evidence-based, informed medical decision-making and promote interprofessional collaboration. In each structure of the example, every individual has examined and validated the capability of an AI-driven smartwatch to locate VT, sparking a systematic interest now (Kumar & Banerjee, 2023). This acknowledges the need for ongoing research to enhance the accuracy and dependability of internal scientific software utility programs, as well as the potential of the AI-powered wearable era to improve outcomes for both males and females.
Summary of Recommendations
Exemplary care, patient protection, and interprofessional cooperation have a primary price impact. pPleasantöhleret et al. (2024) are aware of the advantages, particularly in the early prognosis of contamination and interventions that are entirely based on a person’s desires. Furthermore, one can classify their features as monitoring, nudging, and forecasting, although they can also recognize intense situations, such as those involving facts, accuracy, and privacy concerns. Jafleh et al. (privy to) their capacity to cope with continual situations across multiple medical fields, enhance broken persona developments, follow no save you monitoring, and early trouble discovery.
Ferrara (2024) discusses how smartwatch sensors reveal physiological information, enhance chronic disease management and emergency response, and support clinical decision-making. Consistent with Lee and Lee (2020), conscious determinants of extended smartwatch use highlight the impact of customer behavior and social consequences on beauty aid and healthcare experts. In 2023, a study by Kumar and Banerjee demonstrated how coronary heart disease monitoring with smartwatches enabled the early identification of a life-threatening event, retaining their trademark of early intervention. Smartwatches used in treatment may also require meticulous attention to detail when handling integration, safety, and costs.
| Smartwatch Benefit | Nursing Impact |
|---|---|
| Real-Time Monitoring | Early intervention |
| Heart Rate Tracking | Improved patient safety |
| Remote Patient Monitoring | Reduced hospital visits |
| EHR Integration | Better care coordination |
| AI Alerts | Faster clinical response |
Organizational Factors
Organizational coverage, help provision, business enterprise lifestyle, personal identification, educational use, work framework of human body engagement, and control/configuration of healthcare smartwatch options. Precision, dependability, and uptake tissues are critical because data protection, privacy policies, and valuable product assets are all concerns (ample enough, Hilliger et al., 2024). Ultimately, the opportunity for clean recommendations within the region should guide compliance and facilitate effective implementation. Lee (2020) argues that economic assets and aging infrastructure help define feasibility.
Moreover, the smartwatch utilizes the government center’s e-enterprise functionality to manage real-time fitness tracking and statistics schemes. Through the place of business lifestyle, encouragement in adoption permits manual people to adopt ideas and cultural norms that impact extended usage.,as gseen in oodgoodenoughöhler et al. Stipulate that the strength of will manipulation is a top detail of successful execution, and proper training for the human body permits them to direct it to make inexperienced use of the length. Smartwatches will enable authorized individuals in the long term to access the most advanced medical tracking tools and rarely require intervention promptly, thereby enhancing their social and clinical outcomes. However, incorporating this technology into medical and physical games implies that fitness clubs must allow energy use.
Smartwatch Integration in Healthcare
Implementing smartwatches is justified due to their significant impact on enhancing healthcare, improving organizational performance, and facilitating interdisciplinary collaboration. Research highlights their characteristic in non-savvy fitness monitoring, enabling early detection of conditions that include irregular heartbeats and facilitating timely interventions (Kumar & Banerjee, 2023). This improves the consequences for affected characters and ordinary safety. Furthermore, facilitate persistent health by utilizing real-time enabling customized treatment plans and preventive care strategies (Jafleh et al., 2024).
The use of smartwatches in healthcare is justified based on their advantages in terms of affected individual care, overall organizational performance, and interdisciplinary collaboration. Miles emphasized that they are indispensable in non-stop fitness monitoring and might permit early detection of situations like abnormal heart rhythms and activated HHA (Kumar & Banerjee, 2023). It allows decorative surfaces and protection in modern society. Smartwatches also help manage chronic illnesses by providing real-time data to help customize treatment plans and preventive care techniques (Jafleh et al., 2024).
Verbal exchange among healthcare teams is strengthened through EHR integration, which is essential for superior decision-making. Proper training, decision-making, and leadership commitment also affect adoption, as the actual body of employees can use the technology effectively (Lee & Lee, 2020). Individual tracking is also completed easily with the help of smartwatches as they reduce manual work and increase he productivity of the workforce (Ferrara, 2024). In the long run, their adoption enables enhanced patient satisfaction, retention of healthcare staff , and improved healthcare; therefore, they are a valuable addition to clinical practice
Conclusion
Healthcare is enhanced through the implementation of smartwatches, which improve patient monitoring, early disease detection, and interdisciplinary collaboration. As discussed in NURS FPX 4045 Assessment 3 Evidence-Based Proposal and Annotated Bibliography on Technology in Nursing, the mixture of EHRs simplifies workflow and decision-making. Information safety and usefulness, on the one hand, pose stressful situations; however, having proper recommendations and education promotes their adoption. In the long run, smartwatches can have a positive impact on employee safety, productivity, and the quality of care, making them excellent devices in contemporary healthcare.
Related assessments for this class:
NURS FPX 4045 Assessment 2
NURS FPX 4045 Assessment 1
NURS FPX 4045 Assessment 4
References
Ferrara, E. (2024). Massive language models for wearable sensor-based truly human interest reputation, health tracking, and behavioural modelling: A survey of early trends, datasets, and challenges Sensors (Basel, Switzerland), 22 vol 4(no. 5) https://doi.org/10.3390/s24155045
Jafleh, E. A., Alnaqbi, F. A., Almaeeni, H. A., Faqeeh, S., Alzaabi, M. A., & Zaman, g. (2024). The role of gadgets in persistent disease monitoring and personalized care: A comprehensive review. Cureu. 16(9). https://doi.org/10.7759/cureus.68921
oköhler, C., Bartschke, A., Fürstenau, D., Schaaf, T., & Salgado-Baez, E. (2024). The charge of smartwatches in the healthcare setting for monitoring, nudging, and predicting: a viewpoint on 25 years of studies. Mag of Scientific Net studies, 26(1). https://doi.org/10.2196/58936
Kumar, S., & Banerjee, A. (2023). SyntheticGenius-enabled smartwatch used to detect idiopathic ventricular tachycardia: A case document. Cureus, 15(7). https://doi.org/10.7759/cureus.42054
Lee, S. M., & Lee, D. (2020). Healthcare wearable devices: An evaluation of key elements. N. Non-case service industrial company, 14(4), 503. https://do. Non-preventive1628-020-00428-3
FAQs
What is the primary purpose of NURS FPX 4045 Assessment 3?
The primary purpose of NURS FPX 4045 Assessment 3 is to evaluate the selected healthcare technology on the basis of evidence-based literature and develop an annotated bibliography which would help improve nursing practices.
How do smartwatches improve patient care?
Patient care is improved by the use of smartwatches due to the provision of health monitoring, health detection, remote patient tracking, and enhanced communication between healthcare professionals.
What is the role of smartwatches in nursing?
Smartwatches could help nurses monitor patients’ health on a continuous basis, eliminate manual documentation process, implement preventive measures and clinical decision-making.




