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| Section | Objectives |
|---|---|
| Professional Practice | - Ethics and patient confidentiality (HIPAA) - Communication and professionalism |
| Specimen Collection | - Capillary puncture procedures - Order of draw and tube handling - Venipuncture techniques |
| Safety and Compliance | - Needlestick prevention and biohazard disposal - OSHA standards and safety protocols - Infection control and PPE usage |
| Patient Preparation | - Explaining procedures and obtaining consent - Patient identification and communication - Site selection and preparation |
| Specimen Processing and Handling | - Specimen transport and storage - Quality control and rejection criteria - Labeling and documentation |
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NEW QUESTION # 42
Which of the following actions is required before using a new lot number of point-of-care testing strips?
Answer: A
Explanation:
Quality control testing should be performed before using a new lot number of point-of-care testing strips. Lot-to-lot variation can affect test performance, and QC confirms that the strips, controls, meter, and operator process are producing acceptable results before patient testing begins. Freezing strips is incorrect unless a manufacturer specifically requires a storage condition, and most reagent strips have controlled storage requirements that must not be improvised. Mixing old and new lots is unsafe because it creates traceability problems and can invalidate quality control. Using strips only for "control patients" is meaningless; patient specimens should not be used to validate unverified supplies. For waived testing and point-of-care testing, the phlebotomist must follow manufacturer instructions, document QC results, check expiration dates, store materials properly, and stop patient testing when controls fail. If QC is outside range, patient results should not be reported until corrective action is completed. Reference topics: Safety and Compliance; Special Collections; point-of-care testing; quality control; reagent lot verification.
NEW QUESTION # 43
Which of the following is related to diabetes mellitus?
Answer: A
Explanation:
Glycosuria is related to diabetes mellitus because it means glucose is present in the urine. In diabetes mellitus, blood glucose can rise above the renal threshold, causing glucose to spill into the urine. This finding is classically associated with hyperglycemia and impaired glucose regulation. Proteinuria means protein in the urine and is more closely associated with kidney disease, glomerular injury, hypertension, or diabetic nephropathy as a complication rather than the direct defining finding tested here. Bacteriuria means bacteria in urine and suggests urinary tract infection or contamination. Oliguria means decreased urine output and is associated with dehydration, renal dysfunction, shock, or urinary obstruction. The key relationship is that diabetes mellitus involves abnormal glucose metabolism, so glycosuria is the most direct answer. From a phlebotomy standpoint, this links to glucose testing, fasting status, point-of-care glucose monitoring, urine testing, and patient preparation. The technician does not diagnose diabetes but must understand common terms tied to ordered specimens and clinical testing. Reference topics: Phlebotomy Fundamentals; glucose metabolism; urine terminology; diabetes-related testing; point-of-care glucose.
NEW QUESTION # 44
A phlebotomist centrifuges a serum specimen before it has fully clotted. Which of the following is most likely to occur?
Answer: A
Explanation:
If a serum specimen is centrifuged before it has fully clotted, fibrin strands can form in the serum. These strands can interfere with testing instruments, cause sample aspiration problems, and lead to inaccurate results or specimen rejection. Serum specimens must be allowed to clot for the required time before centrifugation. Centrifugation does not increase specimen volume, neutralize additives, or sterilize blood. Blood specimens remain potentially infectious regardless of processing. This question tests the difference between serum and plasma. Serum is the liquid portion after clotting; plasma is the liquid portion of anticoagulated blood. If the phlebotomist rushes serum processing, the specimen may look separated but still contain fibrin. The correct workflow includes observing required clot time, balancing centrifuge tubes, using the correct speed and duration, and removing specimens promptly after centrifugation when required. Speed is not quality; specimen integrity is quality. Reference topics: Processing Specimens; clotting time; serum processing; centrifugation; fibrin formation.
NEW QUESTION # 45
Which of the following tube colors is commonly used for coagulation testing?
Answer: C
Explanation:
Light-blue tubes are commonly used for coagulation testing because they contain sodium citrate. Citrate binds calcium reversibly, preventing clotting while preserving the specimen for coagulation analysis such as PT, INR, and aPTT. The tube must be filled to the required level because coagulation testing depends on a precise blood-to-anticoagulant ratio. Underfilling a light-blue tube can falsely prolong clotting results and cause specimen rejection. Lavender tubes contain EDTA and are commonly used for hematology tests such as CBC. Gray tubes often contain sodium fluoride and potassium oxalate and are used for glucose or lactate testing depending on facility protocol. Red tubes are generally serum tubes without anticoagulant or with clot activator depending on manufacturer. The phlebotomist must collect light-blue tubes in the correct order of draw and inspect for proper fill. This is a high-yield NHA-style concept because it combines tube color, additive, test department, and specimen acceptability. Reference topics: Routine Blood Collections; coagulation tubes; sodium citrate; fill volume; order of draw.
NEW QUESTION # 46
Which of the following patient positions is safest for a patient who reports a history of fainting during blood draws?
Answer: C
Explanation:
A patient with a history of fainting should be positioned reclining or lying down before collection. Syncope is a common phlebotomy complication and can lead to falls, head injury, needle injury, or specimen loss if the patient is not positioned safely. Standing is never appropriate for venipuncture because a fainting patient can collapse. Sitting on an unsupported exam table is also unsafe because the patient may fall from a height. Sitting with legs crossed can affect circulation and does not protect against syncope. The phlebotomist should ask about prior fainting, observe the patient's color and behavior, explain the procedure calmly, and stop the draw if the patient becomes pale, diaphoretic, dizzy, nauseated, or unresponsive. If syncope occurs, the phlebotomist should remove the needle when safe, activate the safety device, call for assistance, lower the patient's head or follow facility policy, and monitor the patient until help arrives. Reference topics: Patient Preparation; syncope prevention; patient positioning; adverse reactions; venipuncture safety.
NEW QUESTION # 47
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