Patient Safety Presentation
Final Project: Final Submission: Patient Safety Presentation
Submit your final project for the course, a patient safety presentation that evaluates an information management strategy in place (ideally in your current or former workplace) to determine if it improves patient safety and patient outcomes.
You have completed the background support in the first three milestones of this project. Incorporate instructor feedback from those milestones and submit your presentation by the end of Module Seven.
Final Presentation: Topic – Pxyis Machine
- It should be 10-15 slides (not including the title page or reference pages).
- You can add speaker notes, or you can add voiceover. Don’t worry, voiceover is optional. If you need help in adding speaker notes, here is a link to help: https://support.office.com/en-us/article/video-add-speaker-notes%E2%80%8B-65dacbfb-8aec-496e-b9a1-d96cfa86fb52
- Slide Presentation suggestions. Think about slide presentations you have seen in the past.
- Don’t overcrowd the slide. Keep it simple. Use the notes section to “tell” your story.
- No more than 5 bullet points per slide with 5ish words per bullet.
- Use 18 point size
- Use color and graphics, but not too much. No more than 4 colors per slide and 1-2 graphics
- I am including a template of a PowerPoint presentation for this course if you need assistance in getting started. Just change the design and make it your own.
Attached below is the RUBRIC that must be followed and the first 3 Pyxis Machine projects to use for the FINAL project
PYXIS MEDICATION DISPENSING SYSTEM 5
Pyxis Medication Dispensing System
Part One
The Healthcare Technology has highly improved over the last few years with the introduction of Automated Medication Dispensing Systems (AMDS) being the latest milestone. Pyxis Medication Dispensing System (PMDS) is one of the most effective AMDS that has been adopted by pharmacists and clinicians in the bid to improve and enhance efficiency in healthcare services provision. PMDS uses a more sophisticated software that makes it efficient in handling patient request, manage the inventory, document the medication dosage, as well as billing the patients for the drugs (Anyanwu & Egwim, 2016).
Notably, the PMDS has had a huge positive impact on the nursing practice. Clinicians, pharmacists and nurses in various healthcare facilities across United States have embraced the use of PMDS as a mechanism of improving efficiency and patient safety. The system has been of great importance to them since it offers a decentralized system of distributing medications to patients. The automation medications dispensing machine is capable of providing a computer-enabled way of storage drugs, dispensing them, and tracking the medication. The machine has helped pharmacists to deliver medication in a more efficient, accurate, and timely manner. By using the system, nurses are able to monitor by medications are prepared, packaged, selected, and delivered to patients in their care units. Moreover, PMDS helps clinicians and pharmacists to assess the medication for a particular patient –something that helps to eradicate errors (de-Carvalho, Alvim-Borges & Toscano, 2017). Generally, automated medication dispensing machines have been of great importance to the healthcare sector since they have improved the efficiency and safety of patients through the administration of efficient and appropriate medication at the right time.
There are various vulnerable groups of people in the society who require specialized medical attention –one of them being the elderly. Older people are faced with multiple chronic ailments, which require specialized medical attention and management. Most of the ailments affecting the elders require different kinds of medications, which come in various doses (Tsao et al., 2014). If not well managed, the older people may end up taking the wrong medication or inappropriate dosage, which could worsen their situation leading to death. Considerably, the elderly need to be monitored carefully and have the medication administered to them carefully. In order to achieve this, PMDS has made it possible for clinicians to attend to this group of people since the machine helps to ensure that there are no medical errors made when administering medication to the elderly (de-Carvalho, Alvim-Borges & Toscano, 2017). Moreover, the machine ensures that elderly people in hospital or at home are receiving the medication in the right dosage –something that improves their life expectancy.
Nurses and other healthcare practitioners have been advocating for the automated medication dispensing machines due to a string of advantages associated with them. The first advantage is that it helps the nurses to reduce medical errors when administering medication to patients simply because patients are given medications in the right dosage. Secondly, the system helps to reduce the workload for the medical practitioners. This is because everything is automated as compared to traditional means of dispensing drugs, which was tedious and slow. PMDS helps nurses to reduce the time required to dispense drugs to the patients (Tsao et al., 2014). Finally, the use of the system improves the overall performance of clinicians and other medical practitioners.
Part Two
The most significant benefit of using PMDS is because it ensures patient safety. Notably, there are a number of ways through which PMDS can be used to ensure patient safety in a healthcare facility. First, the system can be used to reduce medical errors linked to over or under dosage. Secondly, the system ensures that patients are given the right medication and at the right time without wasting time. Moreover, the patients are given medication in the right time in order to avoid dangers linked to delayed administration of medication (de-Carvalho, Alvim-Borges & Toscano, 2017). Finally, the machine helps to store medications in the rights conditions –hence ensuring that they are safe for human consumption.
Notably, patient safety outcomes linked to PMDS ensures that there are minimal interruptions in the way medications are administered to patients seeking medical help. Patient safety is linked to the wellbeing of the patient in terms of medical administration in the effort to help him/her recover from the illness affecting him or her. The outcomes of patient safety include the ability of clinicians to respond to patients’ requests in time. That is, PMDS ensures that medical practitioners deliver the medication to patients at the right time by avoiding any delay. Patient well-being and good health is another outcome of patient safety whereby patients are given medications that are suitable to heal them from certain kind of illnesses (Mackert et al., 2016). The patient safety is linked to how well he or she is attended to. PMDS ensures that patients are given the medication in the right dosage hence there are chances of living a healthier life. Generally, patient safety outcomes are linked to the wellbeing of an individual –something that is assured through the use of PMDS that ensures that patients are given medication at the right time and dosage.
It is beyond no doubt that PMDS has been embraced and adopted by most hospitals across United States. The adoption of this automated medication dispensing machine has been linked to efficiency and patient safety in hospitals. Despite all the positive impacts associated with the system, it is the right time to ensure that more improvements are made to the system to ensure that it becomes more efficient. First, it is crucial to ensure that the system is integrated to the overall strategy of the hospital, which includes a Computerized Physician Order Entry (CPOE). Further, PMDS should be integrated with a strong Clinical Decision Support System (CDSS) (Tsao et al., 2014). Moreover, the system should have a bar-code at the bedside to ensure that patient’s medications are scanned to ensure that they are correct and specific to that a particular patient. Finally, the system should be integrated with an electronic charting system in order to improve its efficiency.
References
Anyanwu, C., & Egwim, O. (2016). The prevalence and determinants of controlled substance discrepancies in a Level I trauma hospital. American health & drug benefits, 9(3), 128.
de-Carvalho, D., Alvim-Borges, J. L., & Toscano, C. M. (2017). Impact assessment of an automated drug-dispensing system in a tertiary hospital. Clinics, 72(10), 629-636.
Mackert, M., Mabry-Flynn, A., Champlin, S., Donovan, E. E., & Pounders, K. (2016). Health literacy and health information technology adoption: the potential for a new digital divide. Journal of medical Internet research, 18(10), e264.
Tsao, N. W., Lo, C., Babich, M., Shah, K., & Bansback, N. J. (2014). Decentralized automated dispensing devices: systematic review of clinical and economic impacts in hospitals. The Canadian journal of hospital pharmacy, 67(2), 138.
Technology
Your Name
SNHU
Introduction
Technology selected
Role it plays in patient safety or quality outcomes
Advantages of __
Advantages
Disadvantages
Legal Implications
Legal Implication
Example/justification
Legal Implication
Example/justification
Ethical Implications
Ethical Implication
Example or justification
Ethical Implication
Example or justification
Adaptation for Vulnerable Populations
Why or why not adaptation is needed
examples
Patient Safety Outcomes
Identify specific patient or quality outcomes
Patient Safety: Improved
How can the technology improve the patient outcome?
Provide claims with research and examples
Impact on Professional Nursing
Provide examples from research
Impact: Vulnerable Populations
Implications of technology for vulnerable populations with regard to professional nursing practice
Impact: Current Practice
Implications of practicing in a setting that already employs the technology
Substantiates claims with specific scholarly evidence
Reflection: Changes
What changes might need to be made to existing policies
Reflection: Personal Ethical Standpoint
Is the technology supported?
Use scholarly research and examples to defend your examples
References
References
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