Evolve HESI Medical Surgical Practice Exam Quizlet

Questions 60

HESI RN

HESI RN Test Bank

Evolve HESI Medical Surgical Practice Exam Quizlet Questions

Question 1 of 5

After a client with peripheral vascular disease undergoes a right femoral-popliteal bypass graft, their blood pressure drops from 124/80 to 94/62. What should the nurse assess first?

Correct Answer: B

Rationale: Assessing pedal pulses is crucial in this situation as it helps determine the adequacy of perfusion to the lower extremity following a bypass graft. A decrease in blood pressure postoperatively could indicate decreased perfusion, making the assessment of pedal pulses a priority to ensure proper circulation. Checking IV fluid infusion, nasal cannula oxygen flow rate, or capillary refill time are not the immediate priorities in this scenario and would not provide direct information about perfusion to the affected extremity.

Question 2 of 5

A client tells the clinic nurse about experiencing burning on urination, and assessment reveals that the client had sexual intercourse four days ago with a person who was casually met. Which action should the nurse implement?

Correct Answer: B

Rationale: Obtaining a urethral drainage specimen for culture is crucial in diagnosing a potential sexually transmitted infection (STI) in this client. While assessing for perineal symptoms like itching, erythema, and excoriation (Choice C) may provide additional information, obtaining a culture is more definitive. Observing for a chancroid-like lesion (Choice A) is not as pertinent as obtaining a culture for a broader diagnostic approach. Identifying all sexual partners in the last four days (Choice D) is important for contact tracing but obtaining a specimen for culture takes priority in this scenario.

Question 3 of 5

Which of the following lipid abnormalities is a risk factor for the development of atherosclerosis and peripheral vascular disease?

Correct Answer: C

Rationale: The correct answer is C: High levels of low-density lipoprotein (LDL) cholesterol. High levels of LDL cholesterol contribute to the development of atherosclerosis and peripheral vascular disease by being deposited in the blood vessel walls, leading to the formation of plaques that can obstruct blood flow. Choice A is incorrect as a low concentration of triglycerides is not typically associated with an increased risk of atherosclerosis or PVD. Choice B is incorrect as high levels of high-density lipoprotein (HDL) cholesterol are actually considered protective against atherosclerosis as it helps remove cholesterol from arteries. Choice D is incorrect as low levels of LDL cholesterol are not typically considered a risk factor for atherosclerosis or PVD.

Question 4 of 5

When planning care for a client newly diagnosed with open-angle glaucoma, the nurse identifies a priority nursing problem of 'visual sensory/perceptual alterations.' This problem is based on which etiology?

Correct Answer: C

Rationale: The correct answer is 'C: Decreased peripheral vision.' Open-angle glaucoma leads to a gradual loss of peripheral vision due to damage to the optic nerve. This loss of peripheral vision is a hallmark sign of the condition and a primary reason for the visual sensory/perceptual alterations experienced by the client. Blurred distance vision (choice A) may occur but is not the priority nursing problem. Limited eye movement (choice B) and photosensitivity (choice D) are not typically associated with the sensory/perceptual alterations seen in open-angle glaucoma.

Question 5 of 5

A young adult client, admitted to the Emergency Department following a motor vehicle collision, is transfused with 4 units of PRBCs (packed red blood cells). The client's pretransfusion hematocrit is 17%. Which hematocrit value should the nurse expect the client to have after all the PRBCs have been transfused?

Correct Answer: D

Rationale: The expected increase in hematocrit after transfusion is approximately 3% per unit of PRBCs. Since the client received 4 units, the expected increase would be 4 x 3% = 12%. Therefore, adding this to the pretransfusion hematocrit of 17% would result in an expected post-transfusion hematocrit of 29%. Choice A (0.19) is incorrect as it doesn't consider the incremental increase per unit of PRBCs. Choices B (0.09) and C (0.39) are also incorrect as they do not align with the expected increase in hematocrit following the transfusion of 4 units of PRBCs.

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