Outcome
Type |
Measure |
Description |
Time frame |
Safety issue |
Primary |
Determination of the comparative characteristics of the pulse wave parameters registered by a single- lead ECG monitor CardioQvark and indicators of systolic function of the left ventricle detected during echocardiography. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
Diagnostic accuracy of the pulse wave and electrocardiogram parameters registered by a single- lead ECG monitor CardioQvark. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
Determination of the sensitivity of left ventricular systolic dysfunction detected by analysis of the pulse wave and electrocardiogram registered by a single- lead ECG monitor CardioQvark. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
Determination of specificity of left ventricular systolic dysfunction detected by analysis of the pulse wave and electrocardiogram registered by a single- lead ECG monitor CardioQvark. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
Determination of prognostic value of positive and negative results of left ventricular systolic dysfunction detected by analysis of the pulse wave and electrocardiogram registered by a single-channel ECG monitor CardioQvark. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
Determination of area under receiver operating characteristic curve of left ventricular systolic dysfunction detected by analysis of the pulse wave and electrocardiogram registered by a single- lead ECG monitor CardioQvark. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
Determination of correlation coefficient of left ventricular systolic dysfunction detected by analysis of the pulse wave and electrocardiogram registered by a single-channel ECG monitor CardioQvark. |
comparison of left ventricular systolic dysfunction detected by echocardiography with the results of the presence of left ventricular systolic dysfunction obtained using the mathematical model of pulse wave and electrocardiogram parameters. |
Through study completion, an average of 1 year. |
|
Primary |
assessment of the accuracy of the blood pressure measurement using a single-channel ECG monitor CardioQvark. |
comparison of blood pressure values obtained on the basis of a mathematical model of pulse wave parameters and measured using a cuff-based device. |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter TpTe on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter VAT on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QTc on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QT / TQ on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QRS_E on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter T_E on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter TP_E on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter BETA on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter BETA_S on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter BAD_T on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QRS_D1_ons on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QRS_D1_offs on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QRS_D2 on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter QRS_Ei on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter T_Ei on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter HFQRS on the ECG in the determination of left ventricular systolic dysfunction |
an ECG spectral analysis will be performed using the Fourier Transform |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter B1 on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter B0 on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter SEP on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter DER3 on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter SEPMAX on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter SRP on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter DP on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|
Secondary |
significance of the parameter perfusion index on the pulse wave in the determination of left ventricular systolic dysfunction |
the analysis of the pulse wave registered by a single-lead ECG monitor with the photoplethysmography CardioQvark |
Through study completion, an average of 1 year. |
|