Magnetocardiography (MCG) is a promising noninvasive and accurate method for detecting myocardial infarction. Although progress has been made in this area, there is a lack of studies using up-to-date examination instruments for the calibration of MCG analysis. This is a prospective single-center study aiming to build accurate analytical models of MCG to detect myocardial infarction. Myocardial infarction are diagnosed by electrocardiogram, biomarkers (high-sensitivity cardiac troponin, etc), or non-invasive imaging (cardiac magnetic resonance or single-photon-emission tomography). Myocardial infarction is also quantified by cardiac magnetic resonance or single-photon-emission tomography. Healthy volunteers and chest pain patients who will receive electrocardiogram, biomarkers (high-sensitivity cardiac troponin, etc), or non-invasive imaging (cardiac magnetic resonance or single-photon-emission tomography) examination will be enrolled in this study.
Study Type
OBSERVATIONAL
Enrollment
3,841
inspection equipment for magnetocardiography
Qilu Hospital of Shandong University
Jinan, Shandong, China
RECRUITINGAccuracy of MCG to detect myocardial infarction
To establish an algorithm model of MCG in detecting myocardial infarction and to assess the sensitivity and specificity of the above model in detecting myocardial infarction. Myocardial infarction are diagnosed by electrocardiogram, biomarkers (high-sensitivity cardiac troponin, etc), or non-invasive imaging (cardiac magnetic resonance or single-photon-emission tomography).
Time frame: 6 hours
Accuracy of MCG to detect the localization of myocardial infarct
To build up an algorithm model of MCG in detecting the localization of myocardial infarct. The sensitivity and specificity of the model in detecting infarct location were evaluated.
Time frame: 6 hours
Accuracy of MCG in identifying myocardial infarct sizes
To establish an algorithm model of MCG in detecting identifying myocardial infarct sizes and to assess the sensitivity and specificity of the above model in identifying myocardial infarct sizes. Myocardial infarction sizes is quantified by cardiac magnetic resonance or single-photon-emission tomography.
Time frame: 6 hours
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