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1. A patient undergoing hemodialysis suddenly exhibits a drop in blood pressure from
140/80 mmHg to 90/50 mmHg, accompanied by yawning and dizziness. What is the most
immediate appropriate intervention by the dialysis technician?
A. Administer a 500 mL hypertonic saline bolus immediately
B. Place the patient in a Trendelenburg position and reduce the blood flow rate
C. Increase the ultrafiltration rate to remove excess plasma water quickly
D. Discontinue the treatment immediately without notifying the nurse
Rationale: Intradialytic hypotension is a common complication. Placing the patient in a
Trendelenburg position helps improve venous return to the heart, and reducing the blood flow
rate decreases the rate of fluid removal, stabilizing blood pressure. Hypertonic saline is
typically reserved for severe symptoms unresponsive to other measures, and immediate
discontinuation without physician or nurse assessment is premature.
2. Which of the following components of the water treatment system is primarily
responsible for removing dissolved ionic contaminants and minerals through a
semipermeable membrane?
A. Sediment filter
B. Water softener
C. Reverse osmosis system
D. Carbon tank
Rationale: The reverse osmosis (RO) system uses high pressure to force water across a
semipermeable membrane, rejecting up to 95-99% of dissolved inorganic and organic
contaminants. Sediment filters trap particulate matter, water softeners remove calcium and
magnesium ions via ion exchange, and carbon tanks remove chlorine and chloramines.
3. Prior to initiating a hemodialysis treatment, the technician performs pre-treatment
water quality testing. Total chlorine levels measured after the primary carbon tank are
found to be 0.22 mg/L. What is the correct action to take?
A. Proceed with initiating the treatment since this level is well within safe limits
B. Do not initiate treatment and immediately notify the nurse and biomedical technician
C. Flush the dialyzer with sterile saline to neutralize the residual chlorine
D. Increase the water heater temperature to vaporize the remaining chlorine
,Rationale: The maximum allowable limit for total chlorine after the primary carbon tank is
typically less than 0.1 mg/L to prevent patient hemolysis and chloramine toxicity. A reading of
0.22 mg/L indicates carbon exhaustion or breakthrough, requiring immediate halt of
preparation and notification.
4. A patient with an arteriovenous (AV) fistula in the left arm reports severe pain, coldness,
and numbness in the left hand during dialysis. What condition should the technician
suspect?
A. Infiltration of the needle site
B. Steal syndrome
C. Dialysis disequilibrium syndrome
D. First-use syndrome
Rationale: Dialysis-associated steal syndrome occurs when blood is diverted away from the
distal extremity into the high-flow fistula, leading to ischemia in the hand. Symptoms include
pain, pallor, coolness, and paresthesia. Infiltration causes localized swelling and pain at the
needle site, not distal hand ischemia.
5. During routine machine setup, the technician tests the blood leak detector using a
specialized optical filter. What is the primary safety purpose of the blood leak detector?
A. To measure the exact clearance rate of urea across the dialyzer membrane
B. To prevent blood loss to the dialysate stream in the event of a fiber bundle rupture
C. To detect micro-bubbles in the extracorporeal circuit before they reach the patient
D. To monitor dialysate temperature fluctuations during treatment
Rationale: The blood leak detector uses an optical sensor to identify the presence of red blood
cells in the spent dialysate. A positive reading indicates a fiber rupture within the dialyzer,
prompting an alarm and machine stop to prevent significant patient blood loss.
6. When cannulating a mature native AV fistula for hemodialysis, what is the
recommended minimum distance between the arterial and venous needle insertion sites to
prevent recirculation?
A. 1 inch
B. 2 inches
C. 4 to 6 inches
D. 8 inches
Rationale: Maintaining a distance of at least 4 to 6 inches between the arterial and venous
needles prevents the dialyzed blood returning from the venous needle from immediately
entering the arterial needle, which would significantly reduce dialysis efficiency
(recirculation).
, 7. A patient complains of sudden nausea, headache, muscular twitching, and high blood
pressure near the end of their first hemodialysis treatment. Which condition is most likely
occurring?
A. Dialysis disequilibrium syndrome
B. Pyrogen reaction
C. Air embolism
D. Anaphylactic reaction
Rationale: Dialysis disequilibrium syndrome is a neurological condition caused by the rapid
removal of urea and other toxins from the blood, creating an osmotic gradient that shifts fluid
into the brain cells, leading to cerebral edema. Symptoms include headache, nausea, muscle
twitching, and confusion.
8. Which of the following substances is added to municipal water supplies to disinfect
drinking water, but must be completely removed by carbon filtration in a dialysis clinic to
prevent patient hemolysis?
A. Sodium chloride
B. Calcium carbonate
C. Chloramines
D. Citric acid
Rationale: Chloramines are formed by combining chlorine and ammonia and are highly toxic
to red blood cells, causing severe hemolytic anemia if introduced into the blood path during
dialysis. Two carbon tanks in series are specifically used to remove chlorine and chloramines.
9. During a hemodialysis treatment, the venous pressure monitor suddenly alarms and the
pressure drops toward zero or becomes negative while the blood pump continues to run.
What is the most likely cause?
A. Obstruction in the blood tubing downstream from the monitoring site
B. Separation or disconnection of the blood tubing upstream from the venous monitor
C. Clotting within the dialyzer hollow fibers
D. Excessive ultrafiltration rate setting
Rationale: A sudden drop in venous pressure usually indicates a disruption or disconnection
in the extracorporeal circuit between the patient and the venous pressure monitor, posing a
severe risk of blood loss or air embolism. Downstream obstructions would cause venous
pressure to rise significantly.
10. What is the primary clinical goal of achieving an accurate estimated dry weight (EDW)
for a chronic hemodialysis patient?
A. To maximize the clearance of middle molecules during the final hour of treatment
B. To reach a state where the patient is normotensive without edema or signs of fluid overload
C. To ensure the hemoglobin levels remain stable without the use of erythropoiesis-stimulating agents
D. To prevent the dialyzer from clotting by keeping blood viscosity low