Valentin Oleynikov
Penza, 440026, Russia
Location status: Recruiting
Location contact
Nadezhda Burko, PhD
CONTACT
Valentin Oleynikov, Prof.
CONTACT
NCT Number: NCT04347434
In a single-center, open-label, prospective, controlled, clinical study, it is planned to include 300 patients hospitalized in the cardiology department of SBHI Penza regional clinical hospital n.a. N.N. Burdenko. Recruitment of patients will be carried out at the Department of Therapy of the Medical Institute of the Penza State University. Patients meeting the inclusion criteria and not meeting the exclusion criteria will be included in the study.
Initially, lipid-lowering treatment with atorvastatin is prescribed at a dose of 80 mg / day from the first 24-96 hours of AMI in addition to the standard therapy.
If there is no achievement of the target level of LDL-C, ≤1.5 mmol / L after 5-6 weeks from the AMI onset, patients additionally receive ezetimibe at a dose of 10 mg 1 time / day.
Standard AMI treatment includes dual antiplatelet therapy, ACE inhibitors, beta-blockers (if indicated). Prescription of proton pump inhibitors and nitrates is possible (if indicated).
The total follow-up is 96 weeks. Prescreening - 600 people; screening and randomization - 300 people. Parameters of electrical myocardial heterogeneity, myocardial deformation characteristics, vascular rigidity, and quality of life will be assessed according to the study plan.
Interested in participating?
Request Info30 year–70 year
All sexes
Interventional
Phase 4
Penza, 440026, Russia
Location status: Recruiting
Nadezhda Burko, PhD
CONTACT
Valentin Oleynikov, Prof.
CONTACT
Methods
The analysis of standard indicators of echocardiography: biplane ejection fraction according to the Simpson method, 3D ejection fraction, EDV (end-diastolic volume), ESV (end-systolic volume) and their indices. The left ventricular myocardial mass index (LVMI).
Using a tissue doppler, the parameters characterizing the diastolic function are recorded: the LA volume, the early diastolic velocity of the mitral valve fibrous ring, the ratio of the early diastolic transmitral flow E to the average early diastolic speed of the fibrous ring e´, and the maximum tricuspid regurgitation rate.
Myocardial strain is analyzed using specialized software - EchoPac Software Only (General Electric Co., 2018). For three-dimensional strain analysis, the left ventricle is automatically divided into 17 segments using standard segmentation schemes. The software allows obtaining strain values in the endocardial, middle and epicardial layers of the myocardium. Over a period of time, indicators for each segment are automatically calculated:
longitudinal strain/strain rate (LS,%/LSR, cm / s-1), circumferential strain/strain rate (CS,%/CSR, cm / s-1), radial strain/strain rate(RS,%/RSR, cm / s-1), area strain), rotation, rotation along the axis of the left ventricle (Torsion).
Pauses of rhythm, rhythm disturbances - extrasystole, unstable tachycardia, AF paroxysm and atrial flutter, ventricular fibrillation, conduction disturbance will be recorded.
Assessment of the ST segment dynamics will be carried out with detection of ischemia episodes, which will be detected when the ST segment is displaced ≥10 mV from the baseline 80 ms after the J point for at least 1 min - episodes of elevation and depression of the ST segment.
According to the long-term ECG monitoring recordings, the following parameters will be analyzed (separately for 3 intervals - 24, 72 and 120 hours):
circadian dynamics of heart rate; late ventricular potentials (LVP); variance and duration of the QT interval; heart rate variability (HRV); heart rate turbulence (TCP); chronotropic load (CL). Circadian dynamics of heart rate. The circadian dynamics of heart rate will be analyzed with an estimate of the minimum, average and maximum heart rate per day, during waking hours and night sleep. The circadian index (CI) will be defined as the ratio of the average heart rate in the daytime and the average heart rate in the night.
LVP. The LVP will be evaluated in the standard averaging mode in the range of 40-100 Hz by the noise level not exceeding 0.9 μV. Records of the 24-h ECG in patients who have a decrease in intraventricular conduction, bundle branches blockade, will not be subjected to LVP analysis. An automatic analysis of late post-depolarization begins with a search for the QRS reference complex, which will be used later as a reference for averaging. Subsequently, the ECG signal will be processed programmatically by the time analysis method, at the end of which the following parameters will be evaluated: the width of the filtered QRS complex (QRSf), the duration of the low-amplitude potentials at the end of the QRS complex of the final part of the complex (HFLA), the rms value of the last 40 ms QRS (RMS ) Dispersion and QT interval duration. For a detailed study of the repolarization process in the analysis of records, close attention will be paid to the analysis of the duration, variability and variance of the QT interval.
HRV. The following HRV time indicators will be considered:
HRV frequency parameters:
TCP is characterized by two independent parameters - the beginning of turbulence (TO) and the slope of turbulence (TS).
Heart CL is assessed by the level and duration of exceeding the actual (observed in the patient during monitoring) heart rate values of the threshold heart rate calculated individually according to the proposed formulas with differentiation for periods of wakefulness and night sleep:
THR-W (bpm) = HRmax (bpm) × 0.45, where THR-W is the threshold value of the heart rate during wakeful hours in beats per minute, heart rate max is the age-appropriate value of the maximum possible heart rate in beats per minute, 0.45 is the coefficient of the threshold level of heart rate; THR-S (bpm) = THR-W (bpm): 1.24, where THR-S (bpm) is the threshold value of the heart rate during the night's sleep.
The RF signal technology includes two programs: RF-QIMT and RF-QAS. The following CCA indicators are analyzed: IMT - intima-media thickness, loc Psys - local systolic pressure in the carotid artery, loc Pdia - local diastolic pressure, P (T1) - pressure at the local point, stiffness indices β and α, DC is the coefficient of lateral distensibility, CC - coefficient of lateral compliance, Aix is the augmentation index, AP is the amplification pressure, PWV is the local pulse wave velocity in the carotid artery.
Quantitative analysis of atherosclerotic plaque includes determining the extent and degree of narrowing of the lumen of the vessel (percentage of stenosis) by the cross-sectional area (Sa) of the vessel:
Sa = (A1 - A2) × 100% / A1, where A1 is the true cross-sectional area of the vessel, A2 is the passable cross-sectional area of the vessel.
The applanation tonometry technique includes two programs: PWA and PWV. The first allows to record central aortic pressure indicators: systolic aortic pressure - SBPao, diastolic - DBPao, pulse - PPao, mean hemodynamic - MBPao based on registration of the radial artery PWV. Using the PWV program, sequential recording of PWV from the common carotid and femoral arteries simultaneously with the ECG channel analyzes the PWV in the aorta (cfPWV).
PWV is evaluated in different parts of the circulatory system (i.e., aorta (PWV), predominantly elastic arteries (R/L-PWV) and predominantly muscular arteries (B-PWV)).
Cardio-Ankle Vascular Index (CAVI) is determined - an indicator that reflects the true stiffness of the vascular wall. CAVI is calculated by registering PWV at two points and measuring SBP and DBP. Additionally augmentation index and biological age will be calculated automatically.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Atorvastatin is prescribed at a dose of 80 mg / day from the first 24-96 hours of AMI in addition to the standard therapy
Other names: Ezetimibe
Time frame: up to 48 months
Statistically significant differences in the frequency of ventricular arrhythmias as compared to controls
Time frame: up to 48 months
Statistically significant differences in systolic function of the left ventricle according to transthoracic echocardiography as compared to controls;
Time frame: up to 48 months
Statistically significant differences in the myocardial deformation of the LA and LV as compared to controls
Time frame: up to 48 months
Statistically significant differences for major coronary events - PCI / CABG for a new case of coronary atherosclerosis, hospitalization for unstable angina as compared to controls
Time frame: up to 120 hours for 2 years period
Statistically significant differences in the late ventricular potentials, heart rate variability, QT interval dispersion (ms) as compared to controls
Time frame: up to 120 hours for 2 years period
Statistically significant differences in the parameters of heart rate turbulence (%) as compared to controls
Time frame: up to 48 months
Statistically significant differences for incidence of CV events as compared to controls
Time frame: up to 48 months
Statistically significant differences in the frequency of repeated fatal / non-fatal MI as compared to controls
Time frame: up to 48 months
Statistically significant differences according to the frequency of hospitalization due to acute decompensation of heart failure as compared to controls
Time frame: up to 48 months
Statistically significant differences in pulse wave velocities in arteries of various calibers, as compared to controls
Time frame: up to 48 months
Statistically significant differences in intima-media thickness of carotid artery according ultrasound, as compared to controls
Time frame: up to 48 months
Statistically significant differences in flow-mediated dilation parameters (diameter of brachial artery, mm) assessed by ultrasound, as compared to controls
Time frame: up to 48 months
Statistically significant differences in 6-minute walk test (distance covered, m), as compared to controls
Time frame: up to 48 months
Statistically significant differences in BNP level (pg/ml), as compared to controls
Time frame: up to 48 months
Statistically significant differences echocardiographic parameters of left ventricle pathological remodeling (ejection fraction, %, EDVi, ESVi) as compared to controls
Time frame: up to 48 months
Statistically significant differences of lipid profile (mmol/l) as compared to controls
Time frame: up to 48 months
Statistically significant differences of CRP (mg/l) as compared to controls
Time frame: up to 48 months
Statistically significant differences on angina episodes assessed by Seattle Angina Questionnaire (min - 19, max - 108 better outcome), as compared to controls
Time frame: up to 48 months
Statistically significant differences according to the quality of life of patients assessed by Minnesota Questionnaire (min -0, max-105, worse outcome), as compared to controls
Time frame: up to 48 months
Statistically significant differences according to the quality of life of patients assessed by Clinical Assessment Scale for CHF(min -0, max-20, worse outcome), as compared to controls
Time frame: up to 48 months
Statistically significant differences of patients wellbeing according to the analog-visual scale , as compared to controls
Contact information is provided by the study sponsor or research team.
Penza State University
Other
Assessment of the Effects of Long-term Lipid-lowering Therapy on Parameters of Electrical Myocardial Heterogeneity, Myocardial Deformation Characteristics, Vascular Rigidity, and Quality of Life in Patients With Primary STEMI or NSTEMI
Acronym: CONTRAST-2
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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