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| Section | Weight | Objectives |
|---|---|---|
| Technology Environment | 27% | - IT Infrastructure
|
| Related Topics | 20% | - Management and Leadership
|
| Healthcare Environment | 26% | - Healthcare Data and Information
|
| Systems Management | 27% | - Systems Analysis and Design
|
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NEW QUESTION # 39
Which of the following technologies directly reduces adverse medication events through the use of additional checks and balances in the clinical information system?
Answer: B
Explanation:
Bar coded medication administration (BCMA) is specifically designed to reduce medication administration errors by adding real-time, system-enforced verification steps at the point of care. In a typical BCMA workflow, clinicians scan the patient's identification band and the medication barcode; the clinical information system then confirms whether the medication aligns with the active order and key safety checks (commonly framed as the "five rights": right patient, drug, dose, route, and time). If there is a mismatch- wrong patient, wrong medication, wrong dose, or wrong timing-the system can generate an alert and block or discourage administration until the discrepancy is resolved. This creates the "additional checks and balances" referenced in the question and is a hallmark of closed-loop medication administration processes.
By contrast, wearable devices primarily support monitoring and patient-generated data, medication diversion management focuses on controlled-substance oversight and security, and an EMR is a broad platform that may enable safety tools but does not inherently provide bedside barcode verification unless paired with BCMA functionality. HIMSS informatics guidance explicitly describes BCMA as hardware/software used to electronically verify these "five rights," directly supporting reduction of medication-related errors at administration.
NEW QUESTION # 40
The planning, execution, and controlling of the switch from an existing manual or automated system to a new system is called
Answer: C
Explanation:
The coordinated planning, execution, and control of transitioning from an old system to a new one is known as Cutover Management . In healthcare IT implementations-such as EHR go-lives-cutover represents the structured set of activities that occur during the final transition period when the organization switches operational use from the legacy system to the new solution. This includes detailed scheduling, data migration validation, downtime procedures, system activation timing, communication plans, command center setup, contingency planning, rollback strategies, and stabilization support.
Cutover management ensures continuity of clinical operations and patient safety during the transition. It often involves mock cutovers, dress rehearsals, checklist-driven execution, role assignments, and real-time issue tracking. The goal is to minimize disruption, prevent data loss, ensure accurate patient information transfer, and maintain clinical workflow integrity.
Option C (Change Management) refers more broadly to organizational readiness, training, stakeholder engagement, and behavioral adoption-not the technical switch itself. Option A (Command Center Management) relates to post-go-live support coordination. Option D (Support Management) focuses on ongoing operational support after implementation.
Therefore, the specific discipline governing the actual transition from old to new system operations is Cutover Management , making option B correct.
NEW QUESTION # 41
After a new pharmacy dispensing system is implemented, issues are reported regarding pharmacies not being able to process prescriptions that were received before the cutover to the new system. Which testing phase could have identified this issue?
Answer: C
Explanation:
Acceptance testing (User Acceptance Testing/UAT) is the testing phase most likely to identify an inability to process prescriptions that existed before cutover , because UAT validates that the solution supports real operational workflows and business requirements under conditions that mirror production use. A key go-live risk in pharmacy system replacement is data conversion and continuity of care : prescriptions entered in the legacy system prior to cutover must be accessible and actionable in the new environment (e.g., visible in work queues, eligible for verification, dispensing, labeling, adjudication, and documentation). In well-designed acceptance testing, users execute scripted scenarios that include "pre-cutover" items-converted orders, historical prescriptions, and in-flight work-specifically to confirm that the new system can safely continue processing without interruption.
By comparison, unit testing focuses on individual components and would not validate end-to-end prescription processing across converted legacy data. System integration testing emphasizes interfaces between systems (e.
g., EHR-to-pharmacy, claims, automation) but may not adequately validate business readiness with converted pre-cutover prescriptions unless explicitly included. Regression testing checks that changes did not break previously working functions, but it is not the primary phase for validating cutover continuity. Therefore, acceptance testing is the best answer.
NEW QUESTION # 42
Protocol and integration of an oncology Electronic Medical Record (EMR) with a hospital electronic health record system is an example of which of the following?
Answer: C
Explanation:
Integrating an oncology EMR with a hospital EHR using defined protocols is an example of interoperability because it focuses on the ability of two different health information systems to communicate, exchange data, and use the information that has been exchanged . In practice, oncology care often involves specialized workflows (chemotherapy ordering, regimen management, infusion documentation, staging, tumor markers) that may be supported by a dedicated oncology system. When that system is integrated with the enterprise EHR, key data such as medication orders, allergies, lab results, problem lists, care plans, and treatment summaries can flow between systems to support coordinated care, reduce duplicate entry, and improve safety (e.g., ensuring the hospital record reflects high-risk oncology medications and related monitoring requirements).
This scenario is not best described as Health Information Exchange (HIE) , which typically refers to exchanging health information across organizations or through regional/national exchange networks. It is also not telehealth , which is care delivery at a distance, nor a patient portal , which is a patient-facing access tool. The core concept here is system-to-system integration enabling data exchange and usability- therefore, interoperability is the correct answer.
NEW QUESTION # 43
Which of the following is a standard for clinical healthcare terminology for electronic health records (EHR)?
Answer: A
Explanation:
SNOMED (commonly implemented as SNOMED CT) is a widely adopted standard clinical terminology used in EHRs to represent patient problems, diagnoses, findings, procedures, organisms, substances, and other clinical concepts in a consistent, computable way. In clinical informatics, terminology standards are essential because they allow clinicians to document care using structured concepts that support clinical decision support, quality measurement, analytics, population health reporting, and interoperability . When different clinicians or organizations use the same standardized clinical terms, the meaning is preserved and can be accurately interpreted by receiving systems, reducing ambiguity that often occurs with free-text documentation.
The other options are not clinical terminology standards. SSAE 16 relates to service organization controls reporting (an assurance/audit framework). DICOM is a standard for medical imaging data and related information exchange
NEW QUESTION # 44
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