Case Report Health Care Informatics: DNP 805 Week 7 Assignment

Case Report Health Care Informatics: DNP 805 Week 7 Assignment
Case Report Health Care Informatics: DNP 805 Week 7 Assignment
In this assignment, learners are required to write a case report addressing the personal knowledge and skills gained in the current course and potentially solving an identified practice problem.
General Guidelines for Case Report Health Care Informatics:
Use the following information to ensure successful completion of the assignment:
This assignment uses a rubric. Please review the rubric prior to beginning the assignment to become familiar with the expectations for successful completion.
Doctoral learners are required to use APA style for their writing assignments. The APA Style Guide is located in the Student Success Center.
This assignment requires that at least two additional scholarly research sources related to this topic, and at least one in-text citation from each source be included.
You are required to submit this assignment to Turnitin. Please refer to the directions in the Student Success Center.
Directions for Case Report Health Care Informatics:
For a specific focus of patient practice (e.g., acute care hospital, clinic, primary care, long-term care, home health), select a particular disease process. Identify and fully describe the required technology elements that will be involved in providing care and define how these technologies will integrate treatment and/or monitoring from the identified care setting to the home and then to ongoing care.
Your case report must include the following:
Introduction with a problem statement
Brief literature review
Description of the case/situation/conditions
Discussion that includes a detailed explanation of the synthesized literature findings
Summary of the case
Proposed solutions
Conclusion
Portfolio Practice Hours:
It may be possible to earn Portfolio Practice hours for this case report. Enter the following after the references section of your paper:
DNP 805 Topic 7 Discussion 1
Describe one technology that you use on a daily basis that you thoroughly like or appreciate. What features or elements does that technology provide to you that make it easy, enjoyable, or necessary to use? Name one element of the technology you would change to improve its functionality for your needs?
DNP 805 Topic 7 Discussion 2
Describe one technology that you use on a daily basis that you dislike or that is dissatisfying in some manner. What features or elements of that technology make it difficult, frustrating, or not enjoyable to use? Name one element of the technology you would change to improve its functionality for your needs?
DNP 805 Topic 8 Discussion 1
For a specific patient population, select one application or a technology that could effectively increase patient engagement and patient outcomes for your future practice area or work focus. What elements of this application or technology are the most valuable to you? How could you improve this technology?
DNP 805 Topic 8 Discussion 2
Describe how you can apply the spectrum of health care technology options to develop a plan to manage your patient from acute care to home care and then into the community. What organizational, societal, cultural, or other factors might impact your plan, and how could you address these?
What Degrees are Available for a Health Informatics Career?
The subfield of health informatics is one of the most popular degree programs in the world of healthcare management.
Because the area is largely technical and business-oriented, most positions require a bachelor’s or master’s degree.
People that are familiar with and understand medical coding, billing, and database management will have the best chance of progressing in the sector.
The following are some of the degrees available in the field of health informatics:
A bachelor’s degree in health informatics is available.
Information Technology Bachelor’s Degree
Bachelor of Science in Business Administration with a concentration in Information Technology Management
Health Informatics Master’s Degree
Information Systems Master’s Degree
Health Informatics Master’s Degree
Informatics in Nursing Master’s Degree
Students in medical informatics degree programs can also specialize in a variety of fields of information technology, such as:
Bioinformatics students study the software, databases, and analytical tools used to process biological data.
They must be able to quickly access and exchange information, think critically when solving problems, and make decisions based on the greatest patient outcomes possible.
Nursing informatics, chemical informatics, and dental informatics are all options for students.
Public health informatics students study ways to use information technology to educate the general public.
They study computer science and use their knowledge of computers to stay up to date on medical research.
They also gain experience designing and implementing innovative ways in the field.
The study of both communication within medical organizations and the collection of data used by such organizations is known as organizational informatics.
It, too, involves computer science and information technology.
Social informatics is the study of the social consequences of computerization as well as how information technology influences society’s view of these systems.
Despite the fact that social informatics is based on much more research and theory than other fields in the field, students who study it may eventually bring about greater change than students in other fields.
The study of how information technology influences clinical research and medical education is known as clinical informatics.
When used in conjunction with social informatics, it improves patient education and perceptions of the process.
What is the Salary Range and Job Outlook for Health Informatics Jobs?
The median wage for a health informatics professional in 2019 was $42,630.
The top ten percent of workers in the field make $71,150 or more each year.
The amount of money a person earns is also determined by their level of education.
An associate degree holder will earn significantly less than someone with a bachelor’s or master’s degree.
There were 341,600 jobs available in the field in 2019.
The field’s growth rate of 8% is twice that of most other occupations, implying that 27,328 new positions will be added by 2029.
These individuals work in a variety of settings, including medical clinics, long-term care institutions, clinics, and doctor’s offices, as well as companies that deal with health insurance, medical billing, and medical monitoring.
The electronic health record, or EHR, is responsible for the industry’s massive expansion.
The EHR is used by Medicare, Medicaid, and private insurers to transport patient data quickly and correctly from one location to another.
It’s also a simple thing for doctors in multiple places to see a patient’s medical records at the same time, making consultations far more convenient than before.
Healthcare prices will eventually fall due to the ease with which information may be disseminated in the twenty-first century.
As those expenses fall, it’s possible that reforms in the US healthcare system may follow.
In the field, executive wages are generally double those of their lower-level counterparts.
A director of clinical informatics can earn $160,000 or more per year, while even low-level management roles like charge nurse can earn around $85,000 per year.
In addition to the field’s overall expansion, incomes are expected to rise as well.
They may not grow at the same near-exponential rate, but they will expand nonetheless.
All health informatics personnel, from the most junior to the most senior, must be in charge of teaching all other healthcare professionals in the use of the necessary computer systems.
Users must understand what they are doing in order for them to work properly.
The highest-ranking executives will be in charge of teaching not only in-house employees, but also those in far-flung locations across the country and around the world.
One of the issues in the field of health informatics is getting computer systems from other countries to communicate with one another, especially those using alphabets other than English, in order to provide better patient outcomes globally than ever before.

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