22 Jun It is a project that intends to be offered to a health institution for possible implementation (Hypothetically) Topic: Smart beds to support ICU unity for premature bab
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It is a project that intends to be offered to a health institution for possible implementation (Hypothetically)
Topic: Smart beds to support ICU unity for premature babies' care
Continuing with the project designed in File 1 (attached) continue with the following questions.
1. Financial Proposal analysis (Three paragraphs)
2. Alternative plan of action (Three paragraphs)
3. Proposed project plan to include: (Eight paragraphs)
a. Project activities (Two paragraphs)
b. Timeline (Two paragraphs)
c. Budget (Two paragraphs)
d. Evaluation Plan (Two paragraphs)
4. Executive Summary at end of project (One paragraph)
Smart beds can be used to improve the level of care for premature babies. They can help to track the body temperatures of premature babies. Smart beds can also be used to prevent health issues in premature babies. They can alert the nurses whenever premature babies are experiencing problems (Abbas et al., 2021). Premature babies might be unable to regulate body temperatures. This creates issues such as breathing issues and poor metabolism.
Premature babies need specialist neonatal care. They have to be kept at appropriate temperatures to ensure that they do not develop complications. Smart gadgets have been introduced in many areas. Tech companies have implemented the concept of artificial intelligence into devices such as phones and speakers. Smart beds are among the devices that have been developed with technological advancements (Benner et al., 2021). The beds have smart warning systems that can provide heat through the mattresses. Premature babies have to spend more time at the hospital. They have to be monitored closely to ensure that they do not face health complications.
Smart beds to support ICU unity for premature babies' care
Topic project Proposal
The topic of the project is the use of smart beds to support ICU unity for premature babies' care. Caring for premature babies has been a significant problem due to their vulnerability. However, new technologies can help to ensure that premature babies receive good medical treatment. The med-tech industry has not focused on premature babies (Abbas et al., 2021). That is because very young patients are not allowed to use many devices, even though they have more medical needs. Lack of focus on premature babies has led to very few technological devices that can improve the level of care for the babies.
Smart beds have sensor chips for monitoring premature babies. The beds can monitor the temperature, pulse, and breathing of the babies. The information is transferred to a computer that is located in the health professional’s room. The health professional supervising premature babies can have small details about the premature babies. These beds are part of the technological advancements in hospitals. They play a significant role in improving patient care and safety (Benner et al., 2021). They also improve operational efficiency. Smart beds can help medical professionals and healthcare providers to perform their tasks efficiently. They can help to reduce medical errors. The smart bed is an application of the internet of medical things. The technology has helped to transform medical equipment into smart equipment.
Smart beds have iPads attached to them to display the medical status of the babies and other alerts. The babies' condition can be monitored by the health professionals remotely as they can check the altered signs and medical status indicators on the iPad. Smart beds can provide a safe space where babies can live as their organs develop. They can improve the quality of care for premature babies. The smart beds ensure that newborns have developmental supportive care (Abbas et al., 2021). They help in assessing premature babies as they receive newborn care. premature babies need certain quantities of fluids. Smart beds can help healthcare professionals to monitor fluids and ensure that the fluid levels of the baby are on target.
Description of the project
The project focuses on the use of technology to support ICU unity for premature babies' care. The specific technology to be applied is smart beds. Smart beds can help to achieve ICU unity for premature babies as they can perform various functions. Various tasks performed in the ICU could be performed by the smart beds (Ncube et al., 2018). These include remote monitoring and diagnosis of premature babies. Some of the tests for premature babies include blood tests, breathing and heart rate monitoring, fluid input and output, eye exam, and ultrasound scan.
The project also explains the role of smart beds in providing supportive care to achieve ICU unity for premature babies. Smart beds can help to protect babies from excessive noise, light levels, allergens, or infections. They can be used to determine the blood flow, blood pressure, peripherals body temperature, blood oxygen levels, core body temperature, respiration, and heart rate (Zhang et al., 2021). However, the smart beds have to be installed with sensors. ICU unity for premature babies' care can be achieved if the smart beds have sensors and other technological equipment for monitoring and diagnosing the premature baby.
There have been new technologies such as wireless sensor networks. These technologies have enhanced the provision of healthcare services. They have eased data collection about the patients. In hospitals, technologies such as smart beds and wireless sensor networks are used to improve care for premature babies. Smart beds can help to prevent bedsores in premature babies as they contain wireless sensor networks (Whitlow, 2020). The beds can be used in combination with other procedures such as medications, ventilation, and monitoring of vital functions. Smart beds can provide adequate support for ICU unity due to their ability to perform various functions and combine many medical procedures. If they are deployed in hospitals and other healthcare institutions, the smart beds could be very useful.
The birth of a baby is a complex process. Many emotional and physical changes occur. When a baby is born, the body should be able to perform various functions. For example, the lungs should breathe air, the immune systems should work on their own, and the digestive system has to process food. Some of the organs of babies might not be able to perform their functions. Babies that are too small, those who need special treatments, and those with birth defects have to be admitted to the neonatal intensive care unit (Whitlow, 2020). ICU unity can be achieved if more technologies are used. Technologies such as smart beds have been used in older patients for assessment and monitoring. They can be used for premature babies.
Premature babies are placed in incubators. Premature birth, breathing issues, and infections are some of the reasons why babies are placed in incubators. The incubators provide a safe and controlled place for premature babies. They provide climate control to the babies. Incubators also protect babies from various infections. These incubators are one of the elements of the neonatal intensive care unit. The neonatal intensive care unit should be able to provide life support for babies (Zhang et al., 2021). It should offer access to specialists. The unit should also perform imaging and provide respiratory support.
Various individuals care for premature babies in the neonatal intensive care unit. These include neonatologists, neonatal fellows, pediatric residents, neonatal nurse practitioners, and respiratory therapists. The specialists provide support to premature babies (Ncube et al., 2018). They ensure that babies get good nutrition and are taken care of. Smart beds could be implemented to help professionals provide healthcare services to premature babies.
One of the goals is to improve the quality of care that premature babies receive. Premature babies should receive high-quality healthcare. The babies should be protected from infections. There should be a system for collecting information and assessing premature babies to ensure that they receive high-quality care (Ncube et al., 2018). Another goal is to support ICU unity for premature babies’ care. There is a need to ensure that several functions. ICU unity can help improve the quality of care that premature babies receive.
One of the objectives of the project is to implement the use of smart beds in neonatal intensive care units. Smart beds could be adopted in healthcare institutions. They could help to prevent issues such as falls. Most importantly, smart beds can ensure that premature babies are monitored more appropriately. If the beds are adopted in healthcare institutions, they can make it easier for health professionals to diagnose, assess and treat premature babies (Whitlow, 2020). Another objective is to coordinate care among premature babies in neonatal intensive care units. There should be appropriate information sharing among healthcare professionals that provide care to premature babies.
The significance of the project is to increase ICU unity for premature babies' care. The project identifies a way that ICU unity can be supported by the use of smart beds. Smart beds can perform various functions to ensure that there is more coordination of care among health professionals. For example, they can be used to provide vital information about premature babies. The project helps to improve patient monitoring and assessment (Zhang et al., 2021). Close monitoring of premature babies is needed to avoid health complications. Technological advancements such as smart beds can help support ICU unity as they perform various roles in the ICU.
Hospitals should start using smart beds because they support ICU unity for premature babies' care. The hospitals should ensure that they adopt smart beds with sensors that can collect vital information about premature babies. Health professionals can perform their duties with ease if they implement the use of smart beds. Smart beds can send health information about the babies whenever they sense that there is a health problem. They can help to reduce medical errors committed by health professionals (Moghimi et al., 2020). Smart beds can support ICU unity as they can perform diagnoses of premature babies. They can be used to provide supportive care to the babies such as monitoring the vital signs and replenishing fluids.
Abbas, A. K., Heimann, K., Jergus, K., Orlikowsky, T., & Leonhardt, S. (2021). Neonatal non-contact respiratory monitoring based on real-time infrared thermography. Biomedical engineering online, 10(1), 1-17.
Benner, P. E., Hooper-Kyriakidis, P. L., & Stannard, D. (2021). Clinical wisdom and interventions in acute and critical care: A thinking-in-action approach. Springer Publishing Company.
Moghimi, H., Wickramasinghe, N., & Adya, M. (2020). Intelligent risk detection in health care: integrating social and technical factors to manage health outcomes. In Delivering Superior Health and Wellness Management with IoT and Analytics (pp. 225-257). Springer, Cham.
Ncube, R. K., Barlow, H., & Mayers, P. M. (2018). A life uncertain-My baby's vulnerability: Mothers' lived experience of connection with their preterm infants in a Botswana neonatal intensive care unit. Curationis, 39(1), 1-9.
Whitlow, J. F. (2020). Maternal perceptions of interaction and attachment to preterm infants in the neonatal intensive care unit. The University of Alabama at Birmingham.
Zhang, Z., & Zhu, H. (2021). Evaluation of the Effect of Intensive Nursing Intervention Based on Process Analysis. Computational and Mathematical Methods in Medicine, 2021.
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