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August 1, 1976Circulation266 citationsOpen Access

Mechanism of abnormal septal motion in patients with right ventricular volume overload: a cross-sectional echocardiographic study.

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AWArthur E. WeymanSWSamuel WannHFHarvey Feigenbaum

Key Result

Short axis cross-sectional echocardiography in 19 patients with RVVO and 20 normal subjects revealed that paradoxical septal motion results from a change in the diastolic shape of the left ventricle.

Key Points

  • This study aims to evaluate the mechanism behind paradoxical septal motion in patients with right ventricular volume overload.
  • Conducted cross-sectional echocardiographic studies of the left ventricle and interventricular septum in 19 patients with RVVO and 20 normal subjects.
  • Assessed diastolic and systolic shapes of the left ventricle to identify changes related to septal motion.
  • Normal left ventricle is circular during diastole and systole; patients with RVVO showed flattening of the left ventricle and interventricular septum during diastole.
  • IVS experienced a reversal in curvature, becoming concave towards the right ventricle and convex towards the left ventricle during diastole.
  • Paradoxical septal motion was linked to diastolic shape changes rather than systolic configuration changes.

Study Design

Type

Cross-Sectional (n=39)

Structured PICO

What is the mechanism of paradoxical septal motion in patients with right ventricular volume overload?

P
Population
39 subjects total: 19 patients with paradoxical septal motion due to right ventricular volume overload (RVVO) and 20 normal subjects.
I
Intervention
Short axis cross-sectional echocardiographic evaluation of the left ventricle and interventricular septum.
C
Comparator
Normal subjects (n=20).
O
Outcome
Mechanism of paradoxical septal motion (evaluation of LV and IVS shape during diastole and systole).surrogate

Paradoxical septal motion in right ventricular volume overload is caused by a change in the diastolic shape of the left ventricle, which returns to a normal circular configuration during systole.

Abstract

To evaluate the mechanism of paradoxical septal motion in patients with right ventricular volume overload (RVVO), short axis cross-sectional, echocardiographic studies of the left ventricle (LV) and interventricular septum (IVS) were performed in 19 patients with paradoxical septal motion due to RVVO and in 20 normal subjects. Short axis study in normal subjects revealed the left ventricle to be a relatively circular structure during both diastole and systole. In patients with RVVO a change in LC diastolic shape was observed. This change in shape varied from a slight flattening of the LV and IVS during diastole to total reversal of the normal direction of septal curvature such that the IVS became concave toward the RV and convex toward the LV. During systole the LV and IVS returned to their normal relatively circular configuration. This change in LV shape from diastole to systole resulted in net motion of the IVS toward the right ventricle (paradoxically). This study therefore suggests that paradoxical septal motion in patients with right ventricular volume overload is a result of a change in the diastolic shape of the left ventricle.

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Cite This Study

Weyman et al. (1976) conducted a cross-sectional in Right ventricular volume overload (n=39). Short axis cross-sectional echocardiography vs. Normal subjects was evaluated on Mechanism of paradoxical septal motion. Short axis cross-sectional echocardiography in 19 patients with RVVO and 20 normal subjects revealed that paradoxical septal motion results from a change in the diastolic shape of the left ventricle.

synapsesocial.com/papers/6a09064729af591ab7017294https://doi.org/10.1161/01.cir.54.2.179
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