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Methods for Acute and Subacute Murine Hindlimb Ischemia
Published on: June 21, 2016
The dilemma of ischemia testing with different methods
Maria Pia Donataccio1, Claudio Reverberi2, Nicola Gaibazzi2
1Parma University Hospital , Parma , Italy ; Verona University Hospital , Verona , Italy.
Insights
Contrast high-dose dipyridamole stress echocardiography (cSE) with myocardial perfusion (MP) assessment effectively detects multivessel coronary artery disease (CAD), even when wall motion analysis is negative. This advanced echocardiography method offers superior detection of perfusion defects compared to cardiac magnetic resonance imaging (aCMR).
Area of Science:
- Cardiovascular Imaging
- Non-invasive Cardiac Diagnostics
- Coronary Artery Disease (CAD) Detection
Background:
- Pharmacologic stress testing is crucial for diagnosing coronary artery disease (CAD).
- Traditional stress echocardiography relies on wall motion analysis, which can be insensitive to multivessel disease.
- Adenosine cardiac magnetic resonance (aCMR) is a recognized imaging modality for CAD detection.
Observation:
- A 52-year-old man with effort angina presented with normal treadmill ECG but positive aCMR for left anterior descending (LAD) territory perfusion defects.
- Contrast high-dose dipyridamole stress echocardiography (cSE) revealed perfusion defects in lateral and apical segments, alongside reduced LAD flow reserve.
- Wall motion analysis during cSE and treadmill ECG was normal, while aCMR only identified LAD disease.
Findings:
- cSE with myocardial perfusion (MP) assessment detected both LAD and circumflex obstructive lesions, surpassing the sensitivity of wall motion assessment.
- MP analysis during cSE demonstrated multivessel subendocardial perfusion defects, a key marker for balanced CAD.
- Doppler measurement of coronary flow reserve further supported the detection of obstructive CAD.
Implications:
- Myocardial perfusion assessment during cSE overcomes the limitations of wall motion analysis in detecting multivessel CAD and balanced ischemia.
- Advanced echocardiographic techniques, particularly MP analysis, can provide more comprehensive results than aCMR in selected cases.
- cSE with MP assessment is a valuable tool for identifying significant multivessel obstructive CAD, a finding with dismal prognostic implications.
Unlabelled:
A 52-year-old man presented after one episode of effort angina, normal treadmill electrocardiogram (ECG), and clearly positive adenosine cardiac magnetic resonance (aCMR) for reversible perfusion defects in the left anterior descending (LAD) coronary artery territory. Contrast high-dose dipyridamole (0.84 mg/kg per 6 min) stress echocardiography (cSE) demonstrated normal myocardial perfusion (MP) and wall motion at rest, while perfusion defects were shown in the lateral and apical segments after dipyridamole. Wall motion at stress was completely normal and stress/rest Doppler diastolic velocity ratio on the LAD demonstrated reduced flow reserve. In this case, cSE was the provocative test detecting both the LAD and circumflex obstructive lesions, thanks to MP analysis, while wall motion assessment was negative, not different from treadmill ECG, and aCMR highlighted only the LAD disease.
Learning Points:
In spite of the low sensitivity of wall motion assessment during stress-echocardiography to detect coronary artery disease (CAD) in patients with multivessel disease and balanced ischemia, the addition of cSE with myocardial perfusion assessment, is not only able to overcome this limitation of false negative rate on a per-patient basis, but may also depict multivessel myocardial perfusion defects more efficiently than aCMR, as in the reported case, thanks to high spatial resolution.Myocardial perfusion assessment during cSE, although not always technically feasible, has a very high spatial and temporal resolution which can easily demonstrate multivessel subendocardial perfusion defects during maximal vasodilation, which is often the only detectable marker of multivessel, balanced CAD.It is known that wall motion analysis during pharmacologic stress may result in falsely negative multivessel disease; in these cases perfusion imaging or Doppler measurement of coronary flow reserve may be helpful to detect multivessel obstructive CAD, which is a significant and dismal prognostic finding. aCMR is assumed as the perfect imaging modality for CAD detection, but in selected cases, such as the one presented, an advanced echocardiographic method in experienced hands can provide even more comprehensive results.
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Purposes
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