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July 1, 1989Circulation Research25 citationsOpen Access

Nonhomogeneous left ventricular regional shortening during acute right ventricular pressure overload.

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YGYoichi GotoBSB. K. SlinkerMLMartin M. LeWinter

Key Points

  • This research aims to investigate how acute right ventricular pressure overload affects regional shortening of the left ventricle.
  • Measured LV minor axis circumferential segment lengths in seven open-chest dogs during pressure overload.

Structured PICO

Does acute right ventricular pressure overload alter regional shortening in the left ventricular minor axis in open-chest dogs?

P
Population
7 open-chest dogs with intact pericardia
I
Intervention
Pulmonary artery constriction (acute right ventricular pressure overload)
C
Comparator
Venae caval constriction
O
Outcome
Left ventricular minor axis circumferential segment lengths (systolic shortening, end-diastolic length, end-systolic length) of the septum and anterior, lateral, and posterior wallssurrogate

Acute right ventricular pressure overload causes nonuniform regional changes in left ventricular minor axis systolic shortening, which are enhanced by the pericardium.

Abstract

Acute right ventricular pressure overload shifts the interventricular septum leftward and decreases systolic shortening of the left ventricular (LV) septal-lateral diameter. These changes should alter regional shortening in the LV minor axis. To test this hypothesis, LV minor axis circumferential segment lengths of the septum and anterior, lateral, and posterior walls were measured during pulmonary artery or venae caval constriction in seven open-chest dogs with intact pericardia. Starting at an end-diastolic pressure of 10 mm Hg, venae caval constriction decreased LV end-systolic pressure by 19 +/- 6% and stroke volume by 40 +/- 15% and produced uniform decreases in systolic shortening and end-diastolic length around the minor axis. However, during pulmonary artery constriction resulting in similar decreases in end-systolic pressure (22 +/- 7%) and stroke volume (39 +/- 11%), decreases in systolic shortening were significantly larger in the anterior (-34 +/- 10%) and posterior (-33 +/- 21%) walls than in the septum (-10 +/- 9%) or lateral wall (-8 +/- 13%). The mechanisms of these large anterior and posterior shortening decreases differed: anterior end-diastolic length decreased more than posterior and lateral end-diastolic lengths, while posterior end-systolic length decreased less than anterior and lateral end-systolic lengths. Similar changes were seen at starting end-diastolic pressures of 5 and 15 mm Hg. Propranolol did not alter this nonuniform response, while pericardiectomy attenuated the regional variations. Thus, changes in LV geometry during acute right ventricular pressure overload are associated with nonuniform regional changes in systolic shortening in the LV minor axis that are enhanced by the pericardium.

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Cite This Study

Goto et al. (1989) studied this question.

synapsesocial.com/papers/6a199a224b45427442ea75adhttps://doi.org/10.1161/01.res.65.1.43
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