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Automated Medication Dispensing Cabinets In today’s fast-paced healthcare enviro

June 14, 2024

Automated
Medication Dispensing Cabinets
In today’s fast-paced healthcare environment, patient
safety is a top priority. One way to enhance patient safety is through the
implementation of Automatic Medication Dispensing Cabinets (AMDCs). These
cabinets are designed to store and dispense medications in a secure and
controlled manner. They can be programmed to ensure that medications are
dispensed accurately and safely according to each patient’s prescription. These
cabinets provide a secure and efficient way to dispense medications to
patients, reducing the risks associated with human error and medication-related
incidents. However, careful planning and change management strategies are
required to successfully communicate the benefits, address human factors and
resistance to change, and implement measurable processes to assess the positive
impact of this new technology on patient care.
Safety
Contributions of AMDCs
The
issue at hand is the potential for medication errors to occur in healthcare
settings. Studies have shown that medication errors are a leading cause of
adverse events in hospitals, resulting in patient harm and sometimes even
death. Medication error is a
global healthcare concern because it has been associated with 5% to 6% of
hospital admissions and significant patient harm across the world (Alanzi, 2022).
These errors can occur at various stages of the medication process, including
prescribing, dispensing, and administration. Manual medication dispensing
processes are not foolproof and can be prone to errors such as incorrect dosage,
wrong medication, or missed doses. Therefore, there is a pressing need to
implement technological solutions that can improve the medication dispensing
process and enhance patient safety.
By
using automated technology, healthcare providers can reduce the risk of
medication errors, improve efficiency, and enhance patient safety (Alanzi,
2022). With the ability to track medication usage and generate reports, these
cabinets also provide valuable data for monitoring and quality improvement
purposes. The technology behind automatic medication dispensing cabinets is
sophisticated and offers several key features to support patient safety. These
cabinets are equipped with barcode scanning technology to verify medication
accuracy and patient identity. They are also integrated with electronic health
record systems to ensure that medications are dispensed based on the most
up-to-date information. Some cabinets even have built-in safety mechanisms,
such as alerts for potential drug interactions or allergies. Overall, this
technology streamlines the medication dispensing process and reduces the
likelihood of errors occurring. to measure outcomes.
Communication Of New Changes
Nursing
professionals are constantly required to adapt to technological changes
(Mansour, 2022).  To effectively
communicate the new changes to the staff, a comprehensive communication
strategy should be implemented. Provide thorough training sessions to
familiarize the staff with the new technology and its benefits. Highlight the
importance of patient safety and how the automatic medication dispensing
cabinets contribute to that goal. Create user manuals and guidelines that
clearly explain how to use the automatic medication dispensing cabinets. Ensure
that the staff has access to these resources for reference. Establish open
lines of communication between the staff and the implementation team. Encourage
staff members to ask questions, provide feedback, report and address any issues
or concerns they may have. Send regular updates and reminders about the new
change through emails, staff meetings, or bulletin boards.  Involve key stakeholders, such as nursing
leadership, pharmacy staff, and patient safety committees, in the planning and
decision-making process. Seek their input and address any concerns or feedback
(Mansour, 2022). Reinforce the importance of patient safety and the role of
automatic medication dispensing cabinets in achieving that goal. Encourage
staff members to provide feedback on their experience with the new technology.
Conduct regular evaluations to identify any challenges or areas for improvement
and address them promptly.
Human
Factors Related to Change
Some staff members
may be resistant to change due to a lack of familiarity or comfort with new
technology. To address this concern, provide comprehensive training and support
to ensure that staff members feel confident and competent in using the automated
dispensing cabinets. Highlight the benefits of the technology, such as improved
accuracy, reduced medication errors, and streamlined workflows (Grissinger,
2012). Change can disrupt established routines and workflows, leading to
resistance. Acknowledge the potential disruption and emphasize the long-term
benefits of the change. Engage staff members in the planning and implementation
process to ensure their concerns are heard and addressed. Provide clear
communication about the timeline and expectations during the transition period (Al-Abri,
2007).  Staff members may express concerns about the potential for
medication errors or system failures with automated dispensing cabinets.
Address these concerns by highlighting the safety features and rigorous testing
that go into the design and implementation of these systems. Provide evidence
from studies that demonstrate the positive impact of automated dispensing
cabinets on reducing medication errors (Wu Yi Zheng, 2021). Change can be
challenging for individuals and organizations. Some staff members may resist
change simply because it disrupts their comfort zone. Acknowledge the
discomfort and emphasize the importance of adapting to new technologies and
practices to improve patient safety and outcomes. Provide ongoing support and
encouragement throughout the transition process (Nilsen, 2020).
Measure
outcomes
Measuring and monitoring outcomes of the
change process is essential for recognizing whether or not the change process
has fulfilled its purposes (Al-Abri, 2007). The impact of this change proposal
can be measured through various metrics. One way to measure the outcome is to
track the number of medication errors before and after the implementation of
automatic medication dispensing cabinets (Fanning, 2015). By comparing these
numbers, healthcare facilities can assess the effectiveness of the new
technology in reducing errors and improving patient safety. Monitor and record
the incidence of complications such as allergic reactions, overdoses, or
adverse effects, before and after the implementation of AMDCs. Analyze the
rates of medication diversion or misuse before and after the implementation of
AMDCs, using data from audits and inventory reconciliation (Fanning, 2015).
Conduct time-motion studies or surveys to evaluate the impact of AMDCs on
nursing workflow and time spent on medication-related tasks.
Conclusion
The proposed change to automatic medication dispensing cabinets will
have a significant positive impact on patient safety. Through the
implementation of advanced technology, medication errors will be reduced, and
the overall medication administration process will become more efficient. By
measuring indicators such as medication errors and time saved, the impact of
this change can be quantified and evaluated. Through effective communication
and addressing concerns related to change, the staff can be engaged and
supported throughout the transition, ensuring successful implementation.
References
Al-Abri R. Managing change in healthcare. Oman Med J. 2007
Oct;22(3):9-10. PMID:   22400086; PMCID:
PMC3294155.
Alanazi MF,
Shahein MI, Alsharif HM, Alotaibi SM, Alanazi AO, Alanazi AO, Alharbe UA,           Almfalh HSS, Amirthalingam P, Hamdan AM, Veeramani
VP, Mohamed SHP, Ali    MAS. Impact of
automated drug dispensing system on patient safety. Pharm Pract (     Granada). 2022 Oct-Dec;20(4):2744. doi:
10.18549/PharmPract.2022.4.2744. Epub 2022           Nov 11. PMID: 36793902; PMCID: PMC9891784
Fanning L, Jones
N, Manias E. Impact of automated dispensing cabinets on medication selection                 and preparation error rates in an emergency
department: a prospective and direct                             observational
before-and-after study. J Eval Clin Pract. 2016 Apr;22(2):156-63. doi:          10.1111/jep.12445. Epub 2015 Sep 7. PMID: 26346850
Grissinger M.
Safeguards for Using and designing automated dispensing cabinets. P T. 2012                 Sep;37(9):490-530. PMID: 23066340; PMCID:
PMC3462599.
Grissinger M. The
Five Rights: A Destination Without a Map. P T. 2010 Oct;35(10):542.                   PMCID: PMC2957754
Mansour S, Nogues S. Advantages of and Barriers to Crafting New
Technology in Healthcare                 Organizations: A Qualitative Study in the COVID-19 Context. Int J
Environ Res Public    Health. 2022 Aug 12;19(16):9951. doi: 10.3390/ijerph19169951. PMID:
36011586;         PMCID: PMC9408723
Nilsen, P., Seing,
I., Ericsson, C. et al. Characteristics of successful changes
in health care                 organizations: an
interview study with physicians, registered nurses and assistant                   nurses. BMC Health Serv Res 20,
147 (2020). https://doi.org/10.1186/s12913-020-4999-  8
Tariq, R. A.
(2024, February 12). Medication dispensing errors and prevention. StatPearls
[Internet]. https://www.ncbi.nlm.nih.gov/books/NBK519065/
Wu Yi Zheng,
Valentina Lichtner, Bethany A. Van Dort, Melissa T. Baysari, The impact of               introducing
automated dispensing cabinets, barcode medication administration, and       closed-loop electronic medication management
systems on work processes and safety of            controlled
medications in hospitals: A systematic review,Research in Social and                               Administrative
Pharmacy, Volume 17, Issue 5, 2021, Pages 832-84
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