HESI LPN
Pediatric HESI Test Bank
1. A healthcare professional plans to discuss childhood nutrition with a group of parents whose children have Down syndrome in an attempt to minimize a common nutritional problem. What problem should be addressed?
- A. Rickets
- B. Obesity
- C. Anemia
- D. Rumination
Correct answer: B
Rationale: Childhood obesity is a prevalent issue in children with Down syndrome due to factors such as decreased physical activity, slower metabolism, and potential overeating tendencies. Addressing obesity is crucial to promoting healthy lifestyles and preventing associated health complications. Rickets, a condition caused by a deficiency of vitamin D, is not commonly associated with Down syndrome. While anemia can occur in individuals with Down syndrome, obesity is a more common concern. Rumination, the regurgitation of food without nausea, is not a typical nutritional problem in children with Down syndrome.
2. When teaching an adolescent with type 1 diabetes about dietary management, what should the nurse include?
- A. Meals should be eaten at home.
- B. Foods should be weighed using a gram scale.
- C. A ready source of glucose should be available.
- D. Specific foods should be cooked for the adolescent.
Correct answer: C
Rationale: The correct answer is C: A ready source of glucose should be available. When managing type 1 diabetes, it is crucial to have a quick source of glucose readily available in case of hypoglycemia. This ensures that the adolescent can quickly raise their blood sugar levels to prevent complications. Choices A, B, and D are incorrect as they do not address the immediate need for glucose in managing hypoglycemia. While it is important for meals to be consumed regularly and in a controlled manner, specifying that they should be eaten at home or foods weighed using a gram scale is not as critical as ensuring a quick source of glucose in emergency situations.
3. The nurse is conducting a physical examination of a 9-month-old baby with a flat, discolored area on the skin. The nurse documents this as a:
- A. Papule
- B. Macule
- C. Vesicle
- D. Scale
Correct answer: B
Rationale: A macule is defined as a flat, discolored area on the skin that is different from surrounding tissue due to a change in color. In this case, the baby has a flat, discolored area on the skin, which fits the description of a macule. A papule is a small, raised solid bump, a vesicle is a small fluid-filled blister, and a scale is a flake of skin that is often dry and rough. Therefore, choices A, C, and D do not accurately describe the flat, discolored area on the baby's skin, making them incorrect.
4. During a primary survey of a child with partial thickness burns over the upper body areas, what action should the nurse take first?
- A. Inspect the child's skin color.
- B. Assess for a patent airway.
- C. Observe for symmetric breathing.
- D. Palpate the child's pulse.
Correct answer: B
Rationale: The correct answer is B: Assess for a patent airway. When dealing with a child who has sustained partial thickness burns, the priority is ensuring a patent airway due to the risk of respiratory compromise. Checking the child's skin color (choice A) may be important but is secondary to assessing the airway. While observing for symmetric breathing (choice C) is crucial, assessing the airway takes precedence in this situation. Palpating the child's pulse (choice D) is not the initial priority when managing burns and potential airway compromise.
5. Congenital heart defects have traditionally been divided into acyanotic or cyanotic defects. Based on the nurse’s knowledge of congenital heart defects, this system in clinical practice is
- A. helpful because it explains the hemodynamics involved
- B. helpful because children with cyanotic defects are easily identified
- C. problematic because cyanosis is rarely present in children
- D. problematic because children with acyanotic heart defects may develop cyanosis
Correct answer: D
Rationale: The classification is problematic because children with acyanotic heart defects may develop cyanosis, complicating the differentiation between acyanotic and cyanotic defects. Choice A is incorrect because the system is not solely based on explaining hemodynamics. Choice B is incorrect because the classification is not based on the ease of identifying children with cyanotic defects. Choice C is incorrect because cyanosis can indeed be present in children with congenital heart defects, especially acyanotic defects that may lead to cyanosis under certain circumstances.
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