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| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Prevention and Control of Transmission of Infectious Agents | 28% | - Antimicrobial stewardship - Standard and transmission-based precautions - Cleaning, disinfection, and sterilization - Hand hygiene and aseptic techniques - Isolation and patient placement |
| Topic 2: Education, Research, and Quality Improvement | 9% | - Development and delivery of education programs - Evidence-based practice and research application - Regulatory and accreditation compliance - Performance measurement and quality improvement |
| Topic 3: Surveillance and Epidemiologic Investigation | 24% | - Benchmarking and reporting - Outbreak investigation and response - Data collection, validation, and analysis - Surveillance system design and implementation |
| Topic 4: Identification of Infectious Disease Processes | 19% | - Emerging and re-emerging pathogens - Risk factors and transmission mechanisms - Epidemiologic principles - Microbiology and pathogenesis |
| Topic 5: Environment of Care | 10% | - Safety and risk assessment - Facility design, construction, and renovation - Water and air quality management - Waste management and environmental services |
| Topic 6: Employee and Occupational Health | 10% | - Immunization programs - Workplace safety policies - Health screening and surveillance - Exposure management and post-exposure prophylaxis |
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NEW QUESTION # 139
At a facility with 10.000 employees. 5,000 are at risk for bloodbome pathogen exposure. Over the past five years, 100 of the 250 needlestick injuries involved exposure to bloodborne pathogens, and 2% of exposed employees seroconverted. How many employees became infected?
Answer: C
Explanation:
To determine the number of employees who seroconverted (became infected) after a needlestick exposure, we use the given data:
* Total Needlestick Injuries: 250
* Needlestick Injuries Involving Bloodborne Pathogens: 100
* Seroconversion Rate: 2%
Calculation:
Why Other Options Are Incorrect:
* A. 1: Incorrect calculation; 2% of 100 is 2, not 1.
* C. 5: Overestimates the actual number of infections.
* D. 10: Exceeds the calculated value based on given data.
CBIC Infection Control References:
* APIC Text, "Occupational Exposure and Seroconversion Risks".
* APIC Text, "Bloodborne Pathogens and Needlestick Injury Prevention"
NEW QUESTION # 140
The appropriate method to obtain cultures for the diagnosis of catheter-associated urinary tract infections (CAUTI) is:
Answer: C
NEW QUESTION # 141
A director of the Infection Prevention and Control Department has received permission to hire more staff to a total of 3.8 full-time equivalents (FTEs), based on 40 hours/week. The director works 40 hours/week, one infection preventionist (IP) works 32 hours/week, another works 16 hours/week, and secretarial support works
40 hours/week. How many additional FTEs may the director hire?
Answer: C
Explanation:
The Certification Study Guide (6th edition) stresses that infection prevention leaders must understand basic workforce and FTE calculations to ensure appropriate staffing and compliance with approved resource allocations. An FTE is defined as 40 hours worked per week, and part-time hours must be converted proportionally.
First, calculate the FTEs already in use:
* Director: 40 hours/week ÷ 40 = 1.0 FTE
* Infection preventionist: 32 hours/week ÷ 40 = 0.8 FTE
* Infection preventionist: 16 hours/week ÷ 40 = 0.4 FTE
* Secretarial support: 40 hours/week ÷ 40 = 1.0 FTE
Total current FTEs:
1.0 + 0.8 + 0.4 + 1.0 = 3.2 FTEs
The approved staffing total is 3.8 FTEs. To determine how many additional FTEs may be hired, subtract current FTE usage from the approved total:
3.8 # 3.2 = 0.6 FTE
Therefore, the director may hire 0.6 additional FTE, which could be fulfilled by a part-time infection preventionist or split among staff roles, depending on organizational needs.
CIC exam questions frequently test practical management skills, including staffing calculations, budgeting awareness, and resource allocation. Accurate FTE calculations ensure compliance with administrative approvals and support safe, effective infection prevention program operations.
Reference: Certification Study Guide (CBIC/CIC Exam Study Guide), 6th edition, Chapter 7: Management and Communication.
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NEW QUESTION # 142
A surgeon approaches an infection preventionist (IP) concerned that there are more surgical site infections (SSIs) in hysterectomies performed in the facility's stand-alone surgery center than in those performed in the acute-care operating room. The IP should
Answer: B
Explanation:
The infection preventionist (IP) should start by comparing SSI rates between the acute-care operating room and the stand-alone surgery center. This direct comparison will help determine if there is a statistically significant difference in infection rates and guide further investigation.
Step-by-Step Justification:
* Identify Trends:
* Compare SSI rates between the two locations over a set period to identify patterns.
* Assess Contributing Factors:
* Look at factors such as patient population, antibiotic prophylaxis, surgical techniques, environmental controls, and adherence to infection prevention protocols.
* Validate Surveillance Data:
* Ensure that consistent SSI surveillance methodologies are used at both locations to avoid discrepancies.
Why Other Options Are Incorrect:
* A. Initiate prospective surveillance for SSIs in hysterectomies performed at the stand-alone surgery center:
* Prospective surveillance is beneficial but does not immediately answer the surgeon's concern about existing infections.
* B. Compare the most recent post-hysterectomy SSI surveillance data from the surgery center with those of the previous 12 months:
* This approach only looks at trends at the surgery center without comparing it to the acute-care setting.
* C. Initiate post-hysterectomy SSI surveillance in hysterectomy patients to verify accuracy of current surveillance methodology:
* This step is secondary. Before initiating new surveillance, a direct comparison should be made using existing data.
CBIC Infection Control References:
* APIC Text, "Surgical Site Infection Surveillance and Prevention Measures".
NEW QUESTION # 143
An infection preventionist is observing the cleaning and disinfection process of semi-critical devices. To ensure these items have been reprocessed meeting the minimum requirements, which of the following is required?
Answer: C
Explanation:
The Certification Study Guide (6th edition) emphasizes that thorough cleaning is the most critical step in the reprocessing of all reusable medical devices, including semi-critical devices (those that contact mucous membranes or nonintact skin). A foundational requirement is that initial cleaning begins as soon as possible after use. Prompt cleaning prevents organic material-such as blood, secretions, and tissue-from drying on device surfaces and within lumens, which can shield microorganisms and significantly reduce the effectiveness of subsequent disinfection.
The study guide explains that delayed cleaning increases the risk of biofilm formation and makes removal of soil more difficult, potentially compromising patient safety. For this reason, point-of-use pre-cleaning and rapid transport to reprocessing are considered minimum expectations. Cleaning must occur before any high- level disinfection or sterilization; without effective cleaning, even correctly selected disinfectants may fail.
The other options are incorrect or misleading. There is no universal requirement for detergents with pH lower than 7; detergent selection should follow manufacturer instructions. Waiting 24 hours before cleaning is contrary to best practice and increases risk. Soaking devices in liquid chemical sterilants for extended periods does not address the prerequisite of cleaning and may not be appropriate for semi-critical devices unless specified by the manufacturer.
This question reflects a key CIC exam principle: timely cleaning is non-negotiable and is the cornerstone of safe device reprocessing.
Reference: Certification Study Guide (CBIC/CIC Exam Study Guide), 6th edition, Chapter 10: Cleaning, Sterilization, Disinfection, and Asepsis.
NEW QUESTION # 144
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