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April 1, 1994Cardiovascular Research23 citations

Mechanically induced changes in action potential duration and left ventricular segment length in acute regional ischaemia in the in situ porcine heart

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SHS M HornerWhitchurch HospitalMLM J LabUniversity of LondonCMConrad MurphyCharing Cross Hospital

Key Result

Transient aortic occlusion during acute ischaemia caused greater action potential shortening in the ischaemic area compared to the control area (10 ms vs 5 ms, p=0.008).

Key Points

  • This research aims to explore how mechanical forces affect the electrical activity of the heart during early regional ischaemia.
  • Subjected 11 landrace pigs to pneumatic aortic clamping and recorded monophasic action potentials.
  • Monitored changes in intraventricular and systemic arterial pressures during ischaemia.
  • Conducted control recordings before tying the coronary artery.
  • Aortic clamp before ischaemia led to reduced action potential duration in all areas (p < 0.001).
  • After 10 minutes of ischaemia, action potential shortening was significantly greater in the ischaemic area (10 ms vs. 5 ms, p = 0.008).
  • Shortening decreased over the subsequent 20 minutes, indicating varied mechano-electric feedback over time.

Structured PICO

P
Population
11 landrace pigs subjected to acute regional myocardial ischaemia to investigate mechano-electric feedback.
I
Intervention
Transient aortic occlusion (5-10 s every 5 min) during 30 min of acute regional myocardial ischaemia induced by coronary artery snare
C
Comparator
Aortic occlusion before ischaemia and recordings from non-ischaemic areas
O
Outcome
Change in action potential duration in response to increased ventricular loadingsurrogate

In a porcine model, mechano-electric feedback in ischaemic myocardium varies over time during the first 30 minutes of acute regional ischaemia.

Main Result

Absolute Event Rate: 10% vs 5%

p-value: p=0.008

Abstract

OBJECTIVE: The electrophysiological events accompanying early ischaemia are important. The aim of this study was to investigate mechano-electric feedback in acute regional myocardial ischaemia in the intact heart in situ by measuring the change in action potential duration in response to increased ventricular loading imposed by transient aortic occlusion. METHODS: 11 landrace pigs were anaesthetised and their hearts exposed. A pneumatically operated blood pressure clamp was placed around the aorta. Monophasic action potentials and an index of segment motion were recorded from the epicardium in and around the ischaemic area produced by a snare placed around a coronary artery. Ventricular and systemic arterial pressures were measured. An initial aortic clamp was performed during which control recordings were taken. The coronary artery was then tied and the aorta clamped for 5-10 s every 5 min for the duration of the 30 min tie. Recordings were taken from the ischaemic area and non-ischaemic areas. RESULTS: Aortic clamp before ischaemia increased intraventricular diastolic and systolic pressure and reduced action potential duration in all the areas studied (p < 0.001). During acute regional myocardial ischaemia aortic clamping resulted in significantly more shortening of the action potential in the ischaemic area after 10 min of ischaemia than in the control area (5 ms v 10 ms, p = 0.008). Over the following 20 min the degree of shortening decreased. The greater shortening at 10 min could not be attributed to changes in the end diastolic segment length or peak ventricular pressure and could thus represent a change in the expression of mechano-electric feedback by ischaemic myocardium rather than a change in loading conditions. CONCLUSIONS: During the first 30 min following a coronary artery occlusion mechano-electric feedback in the ischaemic myocardium varies with time.

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Cite This Study

Horner et al. (1994) studied acute regional myocardial ischaemia (n=11). transient aortic occlusion vs. non-ischaemic control area was evaluated on change in action potential duration (p=0.008). Transient aortic occlusion during acute ischaemia caused greater action potential shortening in the ischaemic area compared to the control area (10 ms vs 5 ms, p=0.008).

synapsesocial.com/papers/6a6a1fa702245592faf1972bhttps://doi.org/10.1093/cvr/28.4.528
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