NURS FPX 4000 Assessment 5 Analyzing a Current Healthcare Problem or Issue

NURS FPX 4000 Assessment 5
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NURS FPX 4000 Assessment 5 Analyzing a Current Healthcare Problem or Issue

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NURS-FPX4000 Developing a Nursing Perspective

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    Analyzing a Current Healthcare Problem or Issue

    This evaluation is aimed at examining the existing healthcare challenge of health information privacy, which has become a burning problem because of increased utilization of electronic health records (EHRs) and electronic health technologies. Since data breaches, unethical access to sensitive data or patients have been on the rise, health data security has become an essential consideration when it comes to maintaining patient trust and performance in healthcare systems. The criticality of privacy of health data, ethical concern of safeguarding of such data, and potential solutions to this situation, such as encryption tools, to safeguard patient data shall be discussed in the light of maintaining the privacy of patient information.

    Health Information Privacy: A Critical Healthcare Issue

    The issue of health information privacy has become a burning concern in modern healthcare due to the active development of electronic health records (EHRs) and health technologies that are performed online. By 2024, data safety on patients could not be ignored since over 275 million health records had been disclosed, stolen, or compromised in an unacceptable way (Alder, 2025).

    The importance of this issue can hardly be overestimated, and the contribution of the theft of sensitive health information is not only the destruction of privacy of patients but also a loss of trust in the system. This breach of trust can discourage the patients to provide valuable information about their health which includes such information that is vital in correct diagnosis and treatment.

    Health information privacy is one of the most important ethical concerns since health data breach can lead to severe consequences and harm patients, including identity theft, financial losses, and emotional distress. In addition, care providers that did not prioritize patient information security were the ones that would be likely to suffer the law, as well as lose the trust of the population, which negatively affected their reputation and financial viability (Shojaei et al., 2024).

    These concerns can be best reduced by implementing robust data security practices that involve the use of encryption, routinely conducting audit, and educating staff. All these are not only obligatory as per the legal requirements like HIPAA, but also as per the ethical requirements of beneficence, nonmaleficence, and justice ethics, in case of a healthcare facility; therefore, the data stored on the patients should be secured, and the trust should be maintained.

    Analysis of Health Information Privacy Issue

    Health information privacy is a widespread problem that is increasing due to the introduction of EHRs and digital health technologies. Healthcare institutions store large quantities of personal health information and are vulnerable to cyberattacks and access by unauthorized access. The significance of the problem was demonstrated by the data breach and more than 275 million health records that were disclosed in the United States in 2024 (Alder, 2025).

    The importance of the issue lies in the fact that the breaches undermine patient trust that is the key to effective care. Loss of trust can lead to hiding of information that would be of utmost importance to protect the treatment process by the patient. Besides that, breaches can lead to identity theft, finances, and distress among audience in patients.

    • Areas of Uncertainty and Further Research

    It is not evident that the current cybersecurity practices have been effective in preventing data breaches. Despite the developments, data security remains a major issue that remains unaddressed and as such, it makes future endeavors in coming up with more effective solutions. The blockchain technologies and AI were prospective, yet they had not been implemented in the healthcare sector yet (Shinde et al., 2023). In addition, research is also needed to determine how medical practitioners may interfere with access to patient information with privacy needs, especially in emergency situations, and how patient education can foster privacy behavior.

    Comparison of Potential Solutions for Health Information Privacy

    Some of the solutions that can be embraced to reduce the issue of health information privacy include encryption technologies, artificial intelligence (AI)-based security systems, and blockchain. The idea of encryption was not new and provided safety to patient information as it cannot be deciphered by the unauthorized individuals (Basil et al., 2022). The AI built security systems will be able to monitor any potential breach and notify the staff, an added form of security. Blockchain offers a de-centralized solution which ensures the data integrity and prevents unauthorized modifications.

    Encryption has been regarded as the viable and economical method of data security and the serviceability is evaluated through the regular updating and maintenance to deal with the arising threats. Being possibly promising in their nature, the AI-based security systems could be very expensive and required a training and adaptation process that required constant work (Shinde et al., 2023). The challenge of adoption is problematic with blockchain since it is complex and costly to apply. I think that encryption will best suit since it can be implemented without any changes to other systems and provide sufficient value concerning the loss of data.

    • Factors Contributing to or Hindering Success

    Encryption in healthcare organizations is quite successful as it is implemented with a number of reasons. These included staff training, adherence to regulations, including HIPAA, and maintaining the software regularly to meet the new vulnerabilities (Shojaei et al., 2024). However, the encryption can be averted due to economic constraints on a general basis, particularly in smaller health facilities that do not have as much finance. It is also shown that change is not always easy and that the technical expertise can become a challenge as well as the fact that organizations might not be able to introduce the concept of encryption into the systems that they already have. Also, effectiveness might be expensive since auditing and monitoring are supposed to occur on a regular basis.

    Ethical Principles in Implementing Health Information Privacy Solutions

    To be successfully implemented in the healthcare industry, encryption technology must be installed in the health information systems that are in place. The health professionals were required to go through training on the encryption regulations that would promote secure storage and transfer of EHRs (Keshta & Odeh, 2021).

    In addition, the updates and security audit must be regularly undertaken to provide assurance on the integrity of the data and the assumption of other privacy policies such as HIPAA. The encryption is not a security measure only, but it also assists in establishing the trust between the healthcare provider, on the one hand, and patients, on the other hand, as the personal health information remains confidential.

    The ethical principles of beneficence, nonmaleficence, autonomy, and justice should be used in the application of encryption. Beneficence was considered to make sure that the solution was focused on ensuring the well-being of patients through the preservation of sensitive health information (Cheraghi et al., 2023). Nonmaleficence would prevent harm by making sure that the health information does not get into the hands of an unauthorized individual and this will help to avoid identity theft or emotional distress.

    The autonomy was critical because patients were to be informed about their right to privacy and make the decisions concerning those who could access their health information (Narkhede et al., 2025). Justice implies that the encryption will be helpful to every patient, and treatment disparities will not occur, and access to better privacy guarantees will not enhance.

    • Examples from the Literature

    These ethical principles are important when it comes to privacy of health information as various analyses have shown. Shojaei et al. (2024) demonstrated that the encryption technology promotes beneficence because it increases patient trust and security. The nonmaleficence was evident, in which the protection of data breaches was applied in order to mitigate harm such as identity theft and fraud (Formosa et al., 2021). The autonomy is affirmed through mentioning the need of a patient to understand and control access to their health information. The importance of justice was also prioritized, as it was necessary to grant the data protection to all demographic groups equally without any discrimination (Entwistle et al., 2020).

    Benefits of Implementing Encryption in Health Information Privacy

    By taking encryption measures to protect privacy of health information, various spheres of care can be positively impacted to improve patient outcomes and instill more trust in different healthcare environments. Wellness and disease prevention have encryption to ensure that sensitive information in health such as preventive health checks and health examinations is safely stored and transferred. This gave the patients confidence to the extent that they were more ready to be part of wellness programs without the fear that their data may be stolen (Shojaei et al., 2024). This means that the healthcare providers can closely follow and address preventative health services to produce better health outcomes to the population.

    In disease management, patients can exchange information of their health with their healthcare systems through the encrypted information, which will give the healthcare providers current data on their patients and can then make necessary adjustments in their treatment plan. Patients were willing to share information with their care teams when they felt that their data was secure, which increased medication adherence and reduced hospital admissions (Alder, 2025). In order to achieve regenerative and restorative care, it is swept off the grid with encryption of sensitive genetic and clinical information essential to treatment, like stem cell therapy or organ regeneration.

    The patient trust will give the guarantee of the privacy of such information hence the likelihood of seeking new treatment and giving relevant information to aid medical research will be improved. The patient information stored under end-of-life conditions and sensitive decision-making in hospice and palliative care conditions was kept confidential with the use of encryption, where a patient made his or her end-of-life choices and transferred the care information safely and ethically, in-between providers of health care services (Akdeniz et al., 2021). This will make the patients even more dignified in their end-of-life process with the highest degree of secrecy.

    Conclusion

    The privacy of health information is the greatest in maintaining patient trust and success of the medical systems. Such configurations as encryption may play a significant role in the security of information across many varieties of healthcare organizations, including wellness programs and chronic disease management, and palliative care.

    Though encryption is a solution that is viable and ethical, it is important to factor ethical principles of beneficence, nonmaleficence, autonomy, and justice such that all the patients can have decent and equal access and protection. The additional work on cybersecurity, periodic inspections, and patient education will assist in overcoming the existing problems and providing an opportunity to establish a secure medical environment in which the significance of patient welfare and confidentiality will become dominant.

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          References For
          NURS FPX 4000 Assessment 5

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            Akdeniz, M., Yardımcı, B., & Kavukcu, E. (2021). Ethical Considerations at the end-of-life Care. SAGE Open Medicine9(9), 1–9. https://doi.org/10.1177/20503121211000918

            Alder, S. (2025, May 21). April 2025 Healthcare Data Breach Report. The HIPAA Journal. https://www.hipaajournal.com/april-2025-healthcare-data-breach-report/?utm_source=chatgpt.com

            Basil, N., Ambe, S., Ekhator, C., & Fonkem, E. (2022). Health records database and inherent security concerns: A review of the literature. Cureus14(10), 1–6. https://doi.org/10.7759/cureus.30168

            Cheraghi, R., Valizadeh, L., Zamanzadeh, V., Hassankhani, H., & Jafarzadeh, A. (2023). Clarification of ethical principle of the beneficence in nursing care: An integrative review. BioMed Central Nursing22(89), 1–9. https://doi.org/10.1186/s12912-023-01246-4

            Entwistle, V. A., Carter, S. M., Cribb, A., & McCaffery, K. (2020). Supporting patient autonomy: The importance of clinician-patient relationships. Journal of General Internal Medicine25(7), 741–745. https://doi.org/10.1007/s11606-010-1292-2

            NURS FPX 4000 Assessment 5 Analyzing a Current Healthcare Problem or Issue

            Formosa, P., Wilson, M., & Richards, D. (2021). A principlist framework for cybersecurity ethics. Computers & Security109(109). https://doi.org/10.1016/j.cose.2021.102382

            Keshta, I., & Odeh, A. (2021). Security and Privacy of Electronic Health records: Concerns and Challenges. Egyptian Informatics Journal22(2), 177–183. https://doi.org/10.1016/j.eij.2020.07.003

            Narkhede, M. R., Wankhede, N. I., & Kamble, A. M. (2025). Enhancing patient autonomy in data ownership: privacy models and consent frameworks for healthcare. Journal of Digital Health4(1), 1–23. https://doi.org/10.55976/jdh.4202513361-23

            Shinde, R., Patil, S., Kotecha, K., Potdar, V., Selvachandran, G., & Abraham, A. (2023). Securing AI‐based healthcare systems using blockchain technology: A state‐of‐the‐art systematic literature review and future research directions. Transactions on Emerging Telecommunications Technologieshttps://doi.org/10.1002/ett.4884

            Shojaei, P., Gjorgievska, E. V., & Chow, Y.-W. (2024). Security and privacy of technologies in health information systems: A systematic literature review. Computers13(2), 1–25. https://www.mdpi.com/2073-431X/13/2/41

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              • Marissa Grimley.
              • Lisa Kreeger.
              • Michelle Rose.
              • Buddy Wiltcher.
              • Anne-Marie Coleman.

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