All questions
Question 1
A phlebotomist must prepare specimens for transport to a reference laboratory. The shipment includes: plasma for vitamin B12 (requires freezing), serum for thyroid panel (refrigerated), whole blood for lead levels (room temperature), and urine for culture (refrigerated). What is the correct packaging approach?
- Place all specimens in one insulated container with dry ice to maintain the lowest required temperature for all tests
- Package refrigerated and room temperature specimens together with gel packs, and ship frozen specimens separately with dry ice the following day
- Place all specimens in a refrigerated container since most require cooling, and the room temperature specimen will not be affected by brief cooling
- Use separate containers: frozen specimens with dry ice, refrigerated specimens with gel packs, and room temperature specimens without coolant (correct answer)
Explanation: When handling specimens for transport to reference laboratories, you must maintain each specimen's specific temperature requirements to preserve analyte stability. Different tests require different storage conditions, and compromising these requirements can lead to inaccurate results and specimen rejection.
The correct approach is option D: use separate containers with appropriate temperature controls for each specimen type. The vitamin B12 plasma must be frozen with dry ice to prevent degradation of this heat-sensitive vitamin. The serum for thyroid panel and urine for culture need refrigeration with gel packs to maintain 2-8°C, which preserves hormone stability and prevents bacterial overgrowth in urine. The whole blood for lead levels requires room temperature storage because refrigeration can affect the lead measurement.
Option A is wrong because exposing room temperature and refrigerated specimens to freezing temperatures with dry ice will compromise their integrity. Option B creates unnecessary delays by splitting the shipment over two days, potentially affecting specimen viability, and still inappropriately mixes temperature requirements. Option C fails because while brief cooling might not harm the lead specimen, the frozen vitamin B12 specimen will thaw in a refrigerated environment, destroying its analyte stability.
Remember this key principle for specimen transport: never compromise individual temperature requirements for convenience. Each specimen type has specific storage needs based on the analyte's biochemical properties. When you encounter transport questions on the CPT exam, always prioritize maintaining each specimen's optimal temperature over logistical simplicity.
Question 2
A batch of specimens requires processing for both routine chemistry and stat glucose levels. The laboratory's protocol requires glucose analysis within 2 hours of collection, while routine chemistry can be processed within 8 hours. How should processing priorities be managed when multiple specimens arrive simultaneously?
- Process all specimens in order of arrival to maintain fairness and prevent processing errors from changing sequence
- Alternate between glucose and routine specimens to balance workflow efficiency while meeting all timing requirements
- Process stat glucose specimens first, followed by routine specimens, regardless of collection times or arrival sequence
- Separate all glucose specimens for immediate processing, then process routine chemistry specimens in order of collection time (correct answer)
Explanation: When you encounter specimen processing questions on the CPT exam, focus on how timing requirements and clinical urgency drive laboratory workflow decisions. Patient safety always takes precedence over administrative convenience.
Answer D correctly prioritizes specimens based on clinical urgency and analytical stability. Glucose levels are time-sensitive because glucose continues to be metabolized by cells after blood collection, causing falsely decreased results if analysis is delayed. The 2-hour requirement for glucose analysis reflects this biological reality. By separating glucose specimens for immediate processing, you ensure accurate results that could be critical for patient care decisions. Processing routine chemistry specimens afterward, in order of collection time, maintains proper specimen handling while respecting the less urgent 8-hour timeframe.
Answer A fails because treating all specimens equally ignores the different stability requirements and clinical urgency levels. Following arrival order could delay time-sensitive glucose analyses beyond the 2-hour window. Answer B's alternating approach seems balanced but creates unnecessary risk of missing the glucose deadline when multiple specimens arrive simultaneously. The workflow interruption could also increase processing errors. Answer C processes glucose specimens first, which is appropriate, but ignores collection times for routine specimens entirely. This could lead to some routine specimens exceeding their 8-hour processing window.
Remember this key principle: Laboratory processing priorities are determined by specimen stability and clinical urgency, not administrative factors like arrival order. Always identify the most time-sensitive tests first, then organize remaining specimens by their collection sequence to maintain proper chain of custody and quality control.
Question 3
A phlebotomist collects specimens for multiple tests at 8:30 AM and places them in a transport container. The container experiences a 30-minute delay due to traffic, arriving at the laboratory at 10:00 AM. Which specimen would be MOST compromised by this delay and require immediate recollection?
- Serum glucose in a red-top tube stored at room temperature
- Ammonia in a lavender-top tube stored on wet ice (correct answer)
- Complete blood count in a lavender-top tube stored at room temperature
- Prothrombin time in a light blue-top tube stored at room temperature
Explanation: Ammonia is extremely temperature and time-sensitive, requiring immediate transport on wet ice and analysis within 20 minutes of collection to prevent falsely elevated results due to cellular metabolism. The 90-minute total delay would significantly compromise this specimen. Serum glucose is stable for several hours at room temperature, CBC specimens are stable for 24 hours when properly stored, and PT specimens are stable for 24 hours at room temperature.
Question 4
A centrifuge containing serum specimens stops abruptly due to power failure after running for only 3 minutes of a 10-minute cycle. When power is restored 15 minutes later, what is the appropriate action for specimens requiring complete serum separation?
- Resume the centrifuge cycle for the remaining 7 minutes since the specimens maintained their position in the rotor
- Restart the complete 10-minute centrifuge cycle to ensure adequate serum separation for all specimens (correct answer)
- Check each specimen individually for serum separation and only re-centrifuge those showing incomplete separation
- Allow specimens to sit for 30 minutes for gravity separation, then centrifuge for 5 minutes to complete the process
Explanation: When centrifugation is interrupted, the separation process is incomplete and specimens may have settled or mixed during the power outage. Restarting the complete cycle ensures proper serum separation and prevents hemolysis or contamination that could occur from partial separation. Simply resuming or checking individual specimens risks inadequate separation and compromised results.
Question 5
A phlebotomist receives a specimen for blood culture that was collected in the emergency department 45 minutes ago and stored at room temperature. The transport log shows the specimen was delayed due to a trauma alert. What is the appropriate processing action?
- Process the specimen immediately as blood cultures remain viable for up to 2 hours at room temperature before significant bacterial growth occurs (correct answer)
- Reject the specimen since blood cultures must be processed within 30 minutes of collection to prevent false-positive results from contamination
- Process the specimen but flag it as delayed collection to alert the microbiology laboratory of potential bacterial overgrowth
- Refrigerate the specimen for 2 hours to slow bacterial growth, then warm to room temperature before processing to optimize culture conditions
Explanation: Blood culture specimens can be held at room temperature for up to 2 hours without significant impact on results, as this timeframe does not allow substantial bacterial multiplication that would affect interpretation. The 45-minute delay is within acceptable limits. Refrigeration would harm bacterial viability, and rejection is unnecessary within this timeframe.
Question 6
During aliquoting of serum specimens for multiple tests, a phlebotomist notices that one specimen appears slightly hemolyzed. The tests ordered include: total bilirubin, AST, ALT, and electrolytes. Based on hemolysis interference patterns, which approach best ensures accurate results?
- Process all tests from the hemolyzed specimen and note the hemolysis on the report, allowing the physician to interpret results accordingly
- Reject the entire specimen for recollection since hemolysis affects all chemistry tests and accurate results cannot be obtained
- Process electrolytes and total bilirubin from the hemolyzed specimen, but reject AST and ALT tests for recollection due to significant interference (correct answer)
- Dilute the hemolyzed specimen 1:2 with saline to reduce interference effects, then process all tests with appropriate dilution factor corrections
Explanation: Hemolysis causes significant falsely elevated results for AST and ALT due to release of these enzymes from red blood cells, requiring recollection for accurate results. Electrolytes and total bilirubin are less affected by mild hemolysis and can often be reported with notation. This selective approach prevents unnecessary recollection while ensuring critical liver enzyme accuracy.
Question 7
During weekend processing, a phlebotomist discovers that the laboratory refrigerator temperature log shows it reached 12°C overnight before returning to 4°C. Specimens stored include: plasma for coagulation studies, serum for hormone levels, and whole blood for CBC. What action ensures specimen integrity?
- Continue processing all specimens since the temperature returned to normal and the exposure time was brief
- Reject all specimens and contact physicians for recollection orders due to temperature excursion outside acceptable limits
- Process CBC specimens immediately but hold coagulation and hormone specimens for supervisor review regarding temperature impact (correct answer)
- Document the temperature excursion and process all specimens with notation about storage conditions for physician interpretation
Explanation: Temperature excursions affect different specimens differently. CBC specimens (whole blood) are more stable and may still be viable, while coagulation factors and hormones are temperature-sensitive and may be compromised at 12°C. Supervisor review allows for assessment of specific test stability and determination of specimen viability based on the duration and degree of temperature deviation.
Question 8
A laboratory processes specimens for a clinical trial requiring strict chain of custody. A research specimen tube has a small crack in the plastic but the cap seal remains intact and no fluid has leaked. The specimen volume appears adequate for testing. What action maintains compliance with chain of custody protocols?
- Transfer the specimen to a new tube using sterile technique, maintaining the original label and documenting the transfer in the chain of custody log
- Process the specimen as collected since the crack does not affect specimen integrity and chain of custody requires original containers
- Reject the specimen and document the rejection in the chain of custody log, then contact the principal investigator for recollection authorization (correct answer)
- Place the cracked tube inside a secondary container with absorbent material and continue processing with documentation of the containment method
Explanation: Chain of custody protocols for clinical trials require strict documentation and specimen integrity. A cracked tube compromises specimen security and integrity, even if no leakage occurred. The specimen must be rejected with proper documentation, and the principal investigator contacted for guidance. Transferring specimens breaks chain of custody, and processing compromised specimens violates protocol requirements.
Question 9
A laboratory receives three STAT specimens that require immediate centrifugation: a red-top tube collected 45 minutes ago for troponin, a gold-top tube collected 20 minutes ago for comprehensive metabolic panel, and a red-top tube collected 5 minutes ago for drug levels. What is the correct processing sequence based on clotting time requirements?
- Process the troponin tube first, then the CMP tube, then wait for the drug level tube to clot completely (correct answer)
- Process all three tubes simultaneously since they are all STAT orders requiring immediate results
- Process the CMP tube first since gold-top tubes clot faster, then the troponin tube, then the drug level tube
- Wait for all tubes to reach 30-minute minimum clotting time before processing any specimens to ensure complete clot formation
Explanation: The troponin tube (45 minutes) has had adequate clotting time and should be processed first for the STAT cardiac marker. The CMP gold-top tube (20 minutes) with clot activator can be processed next. The drug level red-top tube needs to clot completely (typically 30-60 minutes) before centrifugation to prevent hemolysis and ensure accurate results. Processing incompletely clotted specimens can cause hemolysis and invalid results.