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MARYVILLE UNIVERSITYNURS 611 EXAM 3 PATHO 2025 EXAM 2 LATEST VERSIONS ACTUAL EXAM TEST BANK 2025 COMPLETE 250 QUESTIONS AND ANSWERS WITH CORRECT DETAILED RATIONALES| GRADED A+ advanced Pathophysiology

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MARYVILLE UNIVERSITYNURS 611 EXAM 3 PATHO 2025 EXAM 2 LATEST VERSIONS ACTUAL EXAM TEST BANK 2025 COMPLETE 250 QUESTIONS AND ANSWERS WITH CORRECT DETAILED RATIONALES| GRADED A+ advanced Pathophysiology MULTIPLE CHOICE MULTIPLE CHOICE ANS: A 1. Most cardiovascular developments occur between which weeks of gestation? a. Fourth and seventh weeks b. Eighth and tenth weeks c. Twelfth and fourteenth weeks d. Fifteenth and seventeenth weeks Cardiogenesis begins at approximately 3 weeks’ gestation; however, most cardiovascular development occurs between 4 and 7 weeks’ gestation. PTS: 1 REF: Page 1194 2. The function of the foramen ovale in a fetus allows what to occur? a. Right-to-left blood shunting c. b. Left-to-right blood shunting Blood flow from the umbilical cord d. Blood flow to the lungs ANS: A The nonfused septum secundum and ostium secundum result in the formation of a flapped orifice known as the foramen ovale, which allows the right-to-left shunting necessary for fetal circulation. The foramen ovale is not involved in the blood flow described by the other options.

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PATHOPHYSIOLOGY 9TH EDITION MCCANCE TEST

MARYVILLE UNIVERSITYNURS 611 EXAM 3 PATHO
2025 EXAM 2 LATEST VERSIONS ACTUAL EXAM TEST
BANK 2025 COMPLETE 250 QUESTIONS AND
ANSWERS WITH CORRECT DETAILED RATIONALES|
GRADED A+ advanced Pathophysiology




MULTIPLE CHOICE

MULTIPLE CHOICE

1. Most cardiovascular developments occur between which weeks of gestation?
a. Fourth and seventh weeks c. Twelfth and fourteenth weeks
b. Eighth and tenth weeks d. Fifteenth and seventeenth weeks

ANS: A

Cardiogenesis begins at approximately 3 weeks’ gestation; however, most cardiovascular
development occurs between 4 and 7 weeks’ gestation.

PTS: 1 REF: Page 1194


2. The function of the foramen ovale in a fetus allows what to occur?
a. Right-to-left blood shunting c. Blood flow from the umbilical cord
b. Left-to-right blood shunting d. Blood flow to the lungs

ANS: A

The nonfused septum secundum and ostium secundum result in the formation of a flapped
orifice known as the foramen ovale, which allows the right-to-left shunting necessary for
fetal circulation. The foramen ovale is not involved in the blood flow described by the
other options.

NURSINGTB.COM

, PATHOPHYSIOLOGY 9TH EDITION MCCANCE TEST
PTS: 1 REF: Pages 1195-1196

3. At birth, which statement is true?NURSINGTB.COM
a. Systemic resistance and pulmonary resistance fall.
b. Gas exchange shifts from the placenta to the lung.
c. Systemic resistance falls and pulmonary resistance rises.
d. Systemic resistance and pulmonary resistance rise.

ANS: B

From the available options, the only change that takes place in the circulation at birth is the
shift of gas exchange from the placenta to the lungs.

PTS: 1 REF: Page 1197

4. When does systemic vascular resistance in infants begin to increase?
a. One month before birth
b. During the beginning stage of labor
c. One hour after birth
d. Once the placenta is removed from circulation

ANS: D

The low-resistance placenta is removed from circulation, which causes an immediate
increase in systemic vascular resistance to approximately twice of that before birth.

PTS: 1 REF: Page 1197




NURSINGTB.COM

, PATHOPHYSIOLOGY 9TH EDITION MCCANCE TEST
5. Which event triggers congenital heart defects that cause acyanotic congestive
heart failure?
a. Right-to-left shunts c. Obstructive lesions
b. Left-to-right shunts d. Mixed lesions

ANS: B

Congenital heart defects that cause acyanotic congestive heart failure usually involve
left-to-right shunts (see Table 33-4). Acyanotic congestive heart failure does not involve
any of the other options.

PTS: 1 REF: Pages 1201-1202 | Table 33-4


6. Older children with an unrepaired cardiac septal defect experience cyanosis because
of which factor?
a. Right-to-left shunts c. Obstructive lesions
b. Left-to-right shunts d. Mixed lesions

ANS: A

Older children who have an unrepaired septal defect with a left-to-right shunt may become
cyanotic because of pulmonary vascular changes secondary to increased pulmonary blood
flow. None of the other options accurately describe the process that results in cyanosis.

PTS: 1 REF: Page 1202


7. Which congenital heart defects occur in trisomy 13, trisomy 18, and Down syndrome?
a. Coarctation of the aorta (COA) and pulmonary stenosis (PS)
b. Tetralogy of Fallot and persistent truncus arteriosus
c. Atrial septal defect (ASD) andNdUeRxStIrN
o cGaTrBd.iCa OM
d. Ventricular septal defect (VSD) and patent ductus arteriosus (PDA)
ANS: D

Congenital heart defects that are related to dysfunction of trisomy 13, trisomy 18, and
Down syndrome include VSD and PDA (see Table 33-2). The other defects are not
associated with dysfunction of trisomy 13, trisomy 18, and Down syndrome.

PTS: 1 REF: Page 1200 | Table 33-2

8. An infant has a continuous machine-type murmur best heard at the left upper
sternal border throughout systole and diastole, as well as a bounding pulse and a
thrill on palpation. These clinical findings are consistent with which congenital
heart defect?
a. Atrial septal defect (ASD) c. Patent ductus arteriosus (PDA)
b. Ventricular septal defect (VSD) d. Atrioventricular canal (AVC) defect

ANS: C

If pulmonary vascular resistance has fallen, then infants with PDA will characteristically
have a continuous machine-type murmur best heard at the left upper sternal border
throughout systole and diastole. If the PDA is significant, then the infant also will have
bounding pulses, an active precordium, a thrill on palpation, and signs and symptoms of
pulmonary overcirculation. The presentations of the other congenital heart defects are not
consistent with the described the symptoms.
NURSINGTB.COM

, PATHOPHYSIOLOGY 9TH EDITION MCCANCE TEST
PTS: 1 REF: Pages 1203-1204




NURSINGTB.COM

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