Pressure-diameter relations during early diastole in dogs. Incompatibility with the concept of passive left ventricular filling.
نویسندگان
چکیده
We studied left ventricular (LV) pressure-diameter relations in 13 open-chest mongrel dogs to explore whether ventricular filling is passive, active, or a combination of both. Left ventricular internal diameter along the minor axis and thickness of the LV free wall were measured with ultrasonic dimension gauges. Pressures in the LV, left atrium (LA), and aorta were measured with catheter-tip micromanometers. Pressure in the LV during the rapid filling phase of diastole decreased from 13 +/- 1 mm Hg to 3 +/- 0.4 mm Hg (mean +/- SE). During this period, LV internal diameter increased from 32.6 +/- 1.5 to 36.7 +/- 1.5 mm, and this represented 49% of the total change of LV diameter that occurred during diastole. The pressure-diameter relation that we observed during the rapid phase of filling suggests that active enlargement rather than passive distension of the left ventricle occurred. Reduction of pressure within the left ventricle during rapid filling, while the ventricular diameter increased, appears to be due to forces within the LV wall that act to restore the LV to its diastolic dimensions. This allows the LV to draw blood from the atrium by creating a pressure in the LV that is lower than in the LA. On the other hand, during the latter part of diastole, following atrial contraction, the pressure-diameter relation suggests that the left ventricle undergoes passive distention.
منابع مشابه
Comments on "Pressure-Diameter Relations during Early Diastole in Dogs: Incompatibility with the Concept of Passive Left Ventricular Filling" and "Negative Diastolic Pressure in the Intact Canine Right Ventricle: Evidence of Diastolic Suction"
that, even if distensibility varies, pressure cannot fall as volume increases. Even if distensibility could become infinitely large as the ventricle continues to relax, the pressure would be required to increase as volume increases. Using this equation, our data showed a calculated negative value of distensibility. In our judgment, the very measurement of a negative distensibility means that th...
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Computations of compliance of the left ventricle (LV) during diastole assume passive tissue characteristics. To evaluate this assumption, we measured diastolic LV intramyocardial pressure simultaneously in the subepicardium and subendocardium in 18 open-chest dogs, using 1-mm in diameter micromanometers. Subepicardial pressure, 26 +/- 1 mm Hg (mean +/- SEM) exceeded subendocardial pressure, 14 ...
متن کاملLeft ventricular filling and diastolic pressure-volume relations in the conscious dog.
In 7 conscious dogs, left ventricular diastolic volume (V) was estimated by taking biplane cineradiographs with the left ventricular cavity previously outlined by permanent radiopaque markers. Left ventricular pressure (P) was measured with an implanted miniature transducer. There were two rapid filling periods during early and late diastole; little filling occurred during the middle third of d...
متن کاملLeft Ventricular Filling and Diastolic Pressure-Volume Relations
In 7 conscious dogs, left ventricular diastolic volume (V) was estimated by taking biplane cineradiographs with the left ventricular cavity previously outlined by permanent radiopaque markers. Left ventricular pressure (P) was measured with an implanted miniature transducer. There were two rapid filling periods during early and late diastole; little filling occurred during the middle third of d...
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Background Increased left atrial (LA) size measured at left ventricular (LV) end systole is associated with cardiovascular morbidity and mortality in population based studies. LA function can be divided into 3 components: LA filling during LV systole, a passive emptying phase during early diastole and active atrial systole during LV late diastole. We sought to assess the relationships of LA vol...
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ورودعنوان ژورنال:
- Circulation research
دوره 48 3 شماره
صفحات -
تاریخ انتشار 1981