Author Question: During a myocardial infarction (MI), a patient with a 97 occlusion of his left descending artery ... (Read 47 times)

kellyjaisingh

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During a myocardial infarction (MI), a patient with a 97 occlusion of his left descending artery develops ventricular arrhythmias due to the amount of ischemia occurring in the myocardium.
 
  While educating the patient about MIs, the nurse will base her teaching on the fact that
  A)
  permanent damage will occur in the myocardium if the vessel is not opened within a 1- to 2-minute window following the occlusion.
  B)
  treatment needs to be sought immediately so that the buildup of lactic acid is limited and cellular changes can be reversed.
  C)
  once the oxygen supply has been occluded, cellular changes are irreversible even if oxygenation is restored.
  D)
  the body will grow new genes through the process of angiogenesis, thereby avoiding any permanent damage to the myocardium.

Question 2

A cancer patient has been prescribed 5-fluorouracil, an antimetabolite chemotherapy agent. This medication stops normal development and division by interrupting the S-phase of the cell cycle.
 
  When teaching this patient, the nurse explains that during the S-phase of the cell cycle,
  A)
  the cell is in a prolonged resting state and only leaves this state when cellular destruction is occurring.
  B)
  the DNA synthesis stops, but RNA synthesis continues.
  C)
  nuclear division occurs.
  D)
  the synthesis of DNA occurs, causing two separate sets of chromosomes to develop.



Qarqy

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Answer to Question 1

Ans:
B

Feedback:

Ischemia is characterized by impaired oxygen delivery and impaired removal of metabolic end products such as lactic acid. Ischemia commonly affects blood flow through limited numbers of vessels and produces local tissue injury. In some instances, the cellular changes due to ischemia are reversible if oxygenation is restored. If not restored, permanent damage can occur.

Answer to Question 2

Ans:
D

Feedback:

During the S-phase, DNA synthesis occurs, causing two separate sets of chromosomes to develop. Antimetabolites can cause abnormal timing of DNA synthesis. Because of their S-phase specificity, the antimetabolites are more effective when given as a prolonged infusion.



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