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action or later. Please see Debugging in WordPress for more information. (This message was added in version 6.7.0.) in /home/intelligentwr/nursingassignmentcrackers/wp-includes/functions.php on line 6114New health care innovations offer the advanced registered nurse an opportunity to apply emerging technologies in practice to improve quality and patient outcomes. For this assignment, research an emerging health care technology that you think has the potential to overcome current or emerging barriers to care.
\nWrite a 500-750-word brief. Include the following:
\n1. Provide an overview of the emerging technology and its role\/function in health care. Consider its potential for improving access to care and promoting patient safety and quality.
\n2. Describe ethical or legal issues that would accompany the incorporation of the technology.
\n3. Explain the nurse’s informatics role in regard to the technology. Provide examples of the roles and job functions.
\n4. Outline the role of workflow analysis, human factors, and user-centered design concepts for your chosen technology example.
\nRefer to the study materials for samples and resources to help you construct your brief.
\nYou are required to cite three to five sources to complete this assignment. Sources must be published within the last 5 years and appropriate for the assignment criteria and nursing content.
\nComplete the “APA Writing Checklist” to ensure that your paper adheres to APA style and formatting criteria and general guidelines for academic writing. Include the completed checklist as an appendix at the end of your paper.
\nPrepare this assignment according to the guidelines found in the APA Style Guide, located in the Student Success Center.
\nThis assignment uses a rubric. Please review the rubric prior to beginning the assignment to become familiar with the expectations for successful completion.
\nYou are required to submit this assignment to LopesWrite. A link to the LopesWrite technical support articles is located in Course Materials if you need assistance.<\/p>\n
The drastically advancing technology<\/a> in the evolving world plays a significant role in solving healthcare problems and improving the quality of care provided at a reduced cost. Recent technology has not only been beneficial to the healthcare providers in their line of duty but also improves the well-being of the diverse population. Such advanced technology utilized in healthcare include genomics, robotics, wearable sensors, management system, and telehealth (Wang, & Kricka, 2018). One point of focus is the utilization of three-dimensional (3D) printing as an emerging technology that has displayed significant impact in overcoming current healthcare barriers.<\/p>\n The 3D printing technology, previously referred to as rapid prototype technology, enables customized fabrication of three-dimensional constructs based on images obtained from magnetic resonance imaging (MRI) and computed tomography (CT) or the computer-aided design (CAD) software. The main purpose of this technology in healthcare is the fabrication of anatomical replicas. Models produced by the 3D printing machines are currently utilized by healthcare professionals <\/a>in enhancing disease diagnosis, treatment clarification, and practice in certain surgical interventions to enhance outcomes. The models also help in promoting patient education as clinicians utilize them in demonstrating certain medical conditions and the available interventions for the treatment of such conditions (Hornick, 2017). 3D printing is also utilized in orthopedics, in manufacturing custom-made prosthetic limbs which help in promoting movement hence improving the quality of life of the patient. The prosthetic ensures that the specifications of the model match the actual anatomical structure of the user.<\/p>\n Despite the benefits associated with 3D printing in the current healthcare system, the technology tends to raise several ethical issues. The main ethical issue is justice and access, as most 3D products are costly, hence only affordable by the rich, such as prosthetic limbs. The other ethical issue is safety. Medical professionals are trained to adopt the evidence-based practice to enhance the safety of the patient and promote well-being (Ripley et al., 2017). However, limited studies have revealed the safety of custom-made prosthetics despite their effectiveness in solving current healthcare problems. As such, more studies need to be conducted to ascertain the safety of 3D products such as prosthetic limbs among patients across all ages, from children to the geriatric population.<\/p>\n Several advantages are associated with 3D printing in the current healthcare system. However, with maximum utilization of this technology, patient safety and access to quality and effective care can be attained. For instance, enhancing pre-surgical practice using 3D models can help hasten the surgical procedure with increased accuracy and safety of the patient (Wang & Kricka, 2018). Additionally, the technology will help shorten theatre time per patient hence increasing the accessibility for more patients undergoing similar procedures. Lastly, 3D printing can help enhance the patient outcome, as demonstrations using actual models that are similar to the patient\u2019s anatomical structure can help boost their understanding.<\/p>\n The incorporation of technology in the current healthcare system has played a significant role in solving healthcare problems. Different forms of technology have been utilized in promoting the safety and quality of care provided at a reduced cost. For instance, the utilization of 3D printing has helped enhance diagnostic procedures, surgical interventions, and the use of prosthetic limbs for those who have undergone amputation. Further advancements are expected in the future to attain safe and readily accessible healthcare services.<\/p>\n Hornick, J. (2017). 3D printing in Healthcare.\u00a0Journal of 3D printing in medicine<\/em>,\u00a01<\/em>(1), 13-17. https:\/\/doi.org\/10.2217\/3dp-2016-0001<\/a><\/p>\n Liaw, C. Y., & Guvendiren, M. (2017). Current and emerging applications of 3D printing in medicine.\u00a0Biofabrication<\/em>,\u00a09<\/em>(2), 024102. DOI: 10.1088\/1758-5090\/aa7279.<\/p>\n Ripley, B., Levin, D., Kelil, T., Hermsen, J. L., Kim, S., Maki, J. H., & Wilson, G. J. (2017). 3D printing from MRI data: harnessing strengths and minimizing weaknesses.\u00a0Journal of Magnetic Resonance Imaging<\/em>,\u00a045<\/em>(3), 635-645. https:\/\/doi.org\/10.1002\/jmri.25526<\/a><\/p>\n Wang, P., & Kricka, L. J. (2018). Current and emerging trends in point-of-care technology and strategies for clinical validation and implementation.\u00a0Clinical chemistry<\/em>,\u00a064<\/em>(10), 1439-1452. https:\/\/doi.org\/10.1373\/clinchem.2018.287052<\/a><\/p>\n <\/p>\n Despite uncertainties concerning the future, embracing and deploying technological advancements is important for creating and developing sustainable healthcare systems and creating more effective treatments for healthier populations and communities. Artificial intelligence is allowing providers to improve diagnostics and other aspect of healthcare (Ali et al., 2023). Machine learning as a form of artificial intelligence (AI) helps providers to analyze CT scans in the treatment of the effects of emerging and reemerging diseases like the coronavirus disease of 2019 (COVID-19). The purpose of this brief paper is to discuss artificial<\/p>\nOverview of 3D Printing<\/strong><\/h2>\n
Ethical Issues<\/strong><\/h2>\n
Improving Access to Care, Patient Safety and Quality<\/strong><\/h2>\n
Conclusion NUR 514 Emerging Technology Brief Assignment<\/strong><\/h2>\n
References NUR 514 Emerging Technology Brief Assignment<\/strong><\/h2>\n