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| Section | Weight | Objectives |
|---|---|---|
| Surveillance and Epidemiologic Investigation | 22-26% | |
| Identification of Infectious Disease Processes | 17-19% | |
| Education and Research | 6-9% | |
| Environment of Care | 10-13% | |
| Preventing/Controlling the Transmission of Infectious Agents | 17-19% | |
| Employee/Occupational Health | 10-13% | |
| Management and Communication | 10-13% | |
| Cleaning, Sterilization, Disinfection, Asepsis | 10-13% |
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NEW QUESTION # 210
A task force formed to focus on Clostridioides difficile infections (CDIs). The topic of the meeting discussed selecting the correct germicidal wipe. What important factor does the infection preventionist review?
Answer: A
Explanation:
The correct answer is C, "Time the surface remains wet," as this is the most important factor the infection preventionist (IP) should review when selecting a germicidal wipe for controlling Clostridioides difficile infections (CDIs). According to the Certification Board of Infection Control and Epidemiology (CBIC) guidelines, effective environmental cleaning is a critical component of infection prevention, particularly for pathogens like C. difficile, which forms hardy spores that are resistant to many disinfectants. The efficacy of a germicidal wipe depends on the contact time-the duration the surface must remain wet with the disinfectant to ensure the killing of C. difficile spores. This is specified by the manufacturer and supported by guidelines from the Centers for Disease Control and Prevention (CDC) and the Environmental Protection Agency (EPA), which emphasize that the disinfectant must remain wet on the surface for the full recommended contact time (typically 1-10 minutes for sporicidal agents) to achieve the desired level of disinfection (CBIC Practice Analysis, 2022, Domain III: Infection Prevention and Control, Competency 3.4 - Implement environmental cleaning and disinfection protocols).
Option A (cost of a case of wipes) is a practical consideration for budgeting but is secondary to efficacy in infection control, especially for a high-priority pathogen like C. difficile. Option B (size of individual wipes) may affect coverage and convenience but does not directly impact the wipe's ability to eliminate the pathogen. Option D (correct disposal of the wipe) is important for preventing cross-contamination and ensuring compliance with waste management protocols, but it is a procedural step after use and not the primary factor in selecting the wipe.
The IP's review of contact time aligns with CBIC's focus on evidence-based practices to prevent healthcare- associated infections (HAIs). For C. difficile, which is a leading cause of HAIs, selecting a wipe with an appropriate sporicidal agent and ensuring adequate wet contact time is essential to disrupt transmission, particularly in outbreak settings (CDC Guidelines for Environmental Infection Control in Healthcare Facilities, 2019). This factor directly influences the wipe's effectiveness, making it the critical review point for the task force.
References: CBIC Practice Analysis, 2022, Domain III: Infection Prevention and Control, Competency 3.4 - Implement environmental cleaning and disinfection protocols. CDC Guidelines for Environmental Infection Control in Healthcare Facilities, 2019.
NEW QUESTION # 211
Which performance improvement model should the infection preventionist use to aid in the evaluation of the infection control plan?
Answer: A
Explanation:
The Plan, Do, Study, Act (PDSA) model is a widely used performance improvement tool in infection prevention. It focuses on continuous quality improvement through planning, implementing, analyzing data, and making adjustments. This model aligns with infection control program evaluations and The Joint Commission's infection prevention and control standards.
Why the Other Options Are Incorrect?
* A. Six Sigma - A data-driven process improvement method but not as commonly used in infection control as PDSA.
* B. Failure Mode and Effects Analysis (FMEA) - Used to identify risks before implementation, rather than ongoing evaluation.
* D. Root Cause Analysis (RCA) - Used to analyze failures after they occur, rather than guiding continuous improvement.
CBIC Infection Control Reference
The PDSA cycle is a recognized model for evaluating and improving infection control plans.
NEW QUESTION # 212
A hospital is experiencing an increase in multidrug-resistant Acinetobacter baumannii infections in the intensive care unit (ICU). The infection preventionist's FIRST action should be to:
Answer: B
Explanation:
Epidemiologic Investigation:
* The first step in an outbreak response is to characterize cases by person, place, and time.
* Identifying common exposures (e.g., ventilators, catheters, or contaminated surfaces) helps determine the source.
* Why Other Options Are Incorrect:
* A. Universal contact precautions: Premature; precautions should be tailored based on transmission patterns.
* C. Environmental sampling: Should be done after identifying epidemiologic links.
* D. Decolonization protocols: Not routinely recommended for Acinetobacter outbreaks.
CBIC Infection Control References:
* CIC Study Guide, "Epidemiologic Investigations in Outbreaks," Chapter 4.
NEW QUESTION # 213
Operating room records indicate that 130 joint replacements have been performed. These include 70 total hip replacements, 55 total knee replacements, and 5 shoulder replacements. Two postoperative surgical site infections (SSIs) were identified in total hip replacements. What is the infection rate/100 procedures for total hip replacements?
Answer: A
Explanation:
To determine the infection rate per 100 procedures for total hip replacements, use the following formula:
Thus, the correct answer is B. 2.9 per 100 procedures.
CBIC Infection Control Reference
The methodology of calculating SSI rates aligns with guidelines from the National Healthcare Safety Network (NHSN) and standardized infection ratio (SIR) models used for hospital-specific SSI rates.
NEW QUESTION # 214
When designing a physical construction containment barrier to contain dust as well as potentially infectious microorganisms generated, reduced air pressure in the contained space relative to adjacent occupied spaces results in airflow from the:
Answer: A
Explanation:
The Certification Study Guide (6th edition) explains that during construction, renovation, or maintenance activities in healthcare facilities, negative (reduced) air pressure within the contained work area is a critical engineering control to prevent the spread of dust and potentially infectious microorganisms. When the pressure inside the containment is lower than in adjacent occupied areas, air naturally flows from areas of higher pressure to areas of lower pressure.
As a result, airflow moves from the clean adjacent space into the contained work space, rather than allowing contaminated air to escape outward. Once inside the containment, the air is then exhausted directly to the outside of the building or through appropriate filtration systems. This airflow pattern protects patients, visitors, and healthcare personnel in occupied areas by preventing construction-related contaminants-such as fungal spores (e.g., Aspergillus)-from spreading into patient care environments.
The study guide emphasizes that this principle is foundational to Infection Control Risk Assessments (ICRAs) and construction containment planning. Improper airflow direction can result in airborne contamination and has been associated with outbreaks, particularly among immunocompromised patients.
The incorrect options either reverse the airflow direction or allow contaminated air to re-enter the building, both of which violate infection prevention standards. Understanding airflow dynamics and pressure differentials is a frequently tested concept on the CIC exam and is essential for ensuring safe construction practices in healthcare facilities.
Reference: Certification Study Guide (CBIC/CIC Exam Study Guide), 6th edition, Chapter 9: Environment of Care.
NEW QUESTION # 215
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