Sudden, painful unilateral loss of vision may be caused by which of the following conditions?

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Jarvis Physical Examination and Health Assessment Practice Questions Questions

Question 1 of 5

Sudden, painful unilateral loss of vision may be caused by which of the following conditions?

Correct Answer: B

Rationale: A sudden, painful unilateral loss of vision is a medical emergency that may be caused by central retinal artery occlusion. This condition occurs when the main artery supplying blood to the retina becomes blocked, leading to a sudden and severe reduction in blood flow to the eye. The lack of blood flow can cause irreversible damage to the retina, resulting in a significant loss of vision. Patients with central retinal artery occlusion typically present with sudden, painless, and severe vision loss in one eye. Immediate medical attention is crucial to try to restore blood flow and minimize potential permanent vision loss in these cases. Vitreous hemorrhage, macular degeneration, and optic neuritis do not typically present with sudden, painful unilateral loss of vision as seen in central retinal artery occlusion.

Question 2 of 5

On auscultation her lung fields have normal breath sounds with no rhonchi, wheezes, or crackles. Percussion and palpation are unremarkable. Auscultation of the heart has an S and S 1 2 with no S or S . A scratching noise is heard at the lower left sternal border, coincident with 3 4 systole; leaning forward relieves some of her pain. She is nontender with palpation of the chest wall. What disorder of the chest best describes this disorder?

Correct Answer: B

Rationale: The clinical presentation described involves a patient with pericarditis. Pericarditis is inflammation of the pericardium, the sac surrounding the heart, which can lead to characteristic findings such as a scratching noise heard on auscultation, leaning forward relieving pain, and normal lung examination findings. The presence of pericarditis can also lead to a pericardial friction rub, which is often described as a scratching or grating sound heard best at the lower left sternal border.

Question 3 of 5

Which of the following percussion notes would you obtain over the gastric bubble?

Correct Answer: B

Rationale: Tympany is the percussion note you would obtain over the gastric bubble. Tympany is a drum-like sound and is typically heard over air-filled structures in the body, such as the stomach, intestines, and lungs. When percussing over the gastric bubble (air-filled stomach), you would expect to hear a tympanic note due to the presence of air in the stomach creating resonance. Resonance (choice A) is a low-pitched, hollow sound heard over normal lung tissue. Hyperresonance (choice C) is an abnormally loud, booming sound heard over hyperinflated lungs, as in conditions like emphysema. Flatness (choice D) is a dull sound heard over solid organs or areas of tissue consolidation, such as over the liver or a pleural effusion.

Question 4 of 5

How would you categorize this?

Correct Answer: C

Rationale: This categorization is based on the blood pressure readings. Stage 1 hypertension is defined as having a systolic blood pressure between 130-139 mmHg or a diastolic blood pressure between 80-89 mmHg. The blood pressure falls within this range, indicating mild hypertension. It is important to monitor and manage blood pressure to prevent complications associated with hypertension.

Question 5 of 5

Which is true of a third heart sound (S )?

Correct Answer: B

Rationale: The third heart sound (S3) is a low-frequency sound heard in early diastole, immediately following the second heart sound (S2). It is generated by the abrupt deceleration of the column of blood against the ventricular wall during the rapid passive filling phase (early diastole) when the ventricle is suddenly stretched by a large volume of blood. The S3 sound typically reflects decreased ventricular compliance, rather than normal compliance. An S3 sound is often considered pathological and is commonly associated with conditions such as heart failure, volume overload, and dilated cardiomyopathy. Therefore, the statement that the third heart sound reflects normal compliance of the left ventricle (Choice B) is incorrect.

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