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Multicenter Normal Reference Study of Carotid Artery Ultrafast Pulse Wave Velocity (UFPWV)

The Multi-center Normal Reference Study of Carotid Artery Ultrafast Pulse Wave Velocity (UFPWV) in Chinese Han Adults (CAR-PWV Study)

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03351127
Enrollment
1200
Registered
2017-11-22
Start date
2017-10-01
Completion date
2024-12-31
Last updated
2020-05-29

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Carotid Artery Diseases, Healthy Volunteers

Brief summary

To establish the range of BS and ES (m/s) of normal carotid artery by using ultrafast pulse wave velocity (UFPWV), and to explore the influencing factors.

Detailed description

With the gradual aging of Chinese population and continuous development of economy and society, the incidence of cardiovascular disease and the number of patients have increased rapidly. The National Heart Center has reported that the number of patients with clinically diagnosed cardiovascular disease in China has reached 290 million in 2016 (240 million in 2014). Cardiovascular disease is the most common cause of death in humans, accounting for nearly 60% of all deaths worldwide. The updated data from World Health Organization (WHO) in 2008 have shown that atherosclerosis and hypertension are the major diseases of the cardiovascular system. Therefore, early detection of arteriosclerosis, timely treatment and early evaluation of therapeutic efficacy are of great significance for the overall control and reduction of the incidence and mortality of cardiovascular disease. Carotid artery intima-media thickness (IMT) is often used to evaluate early atherosclerosis, but IMT reflects the change of vascular wall structure. In the early stage of atherosclerosis, the changes of vascular elasticity and resistance occur earlier than those of arterial wall thickening. Therefore, accurate evaluation of vascular function plays an important role in the early diagnosis of atherosclerosis. Basic and clinical studies and clinical data have shown that pulse wave velocity (PWV) is a reliable index for early evaluation of atherosclerosis. The blood is pumped from the left ventricle during systole, and travels along the arterial system to form pulse wave. Its propagation velocity between two fixed points is the PWV. Atherosclerosis leads to the increased PWV. The detection of PWV can accurately reflect the distensibility and stiffness of arterial wall, thereby early detecting atherosclerosis. There are three main methods for non-invasive pulse wave measurement: Photoelectric sensor is used to measure and record photoplethysmography signal. Pressure sensor is utilized to record pressure wave signals produced by arterial pulsation on the body surface. Ultrasonic Doppler sensor is applied to collect photoplethysmography signal. Photoelectric sensor acquisition system is difficult to distinguish the pulse waves between the large artery and the capillary arteriole, cannot detect the signal of the deep aorta, is easily affected by the electrical signals of perivascular tissue, and has not been widely used in the clinic. Pressure sensor can be used to collect pressure wave signals, such as brachial-ankle pulse wave. This method has relatively low cost, is often used in clinic, but cannot directly get the pulse wave form and the distance of blood vessel, has many influencing factors and low accuracy. Ultrasonic Doppler technique, such as Echo Tracking and QSA, can reveal deep vein pulse waveforms. However, limited by the traditional ultrasonic processing platform, signal acquisition and formula calculation are complex, and the repeatability is poor. Therefore, the clinical application value is limited. It is urgent to establish a new, simple and precise method for the detection of PWV.

Interventions

Carotid pulse wave velocity of all participants were measured by ultrafast ultrasound imaging technology using SuperSonic Imagine's Aixplorer ultrasound system.

Sponsors

SuperSonic Imagine
CollaboratorINDUSTRY
Shengjing Hospital
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 79 Years
Healthy volunteers
Yes

Inclusion criteria

* Han nationality * Age between 18 and 79 years old * Normal body mass index (18-25 kg/m2) * Normal blood pressure (139-90/89-60 mmHg) * No history of cardiovascular disease or respiratory diseases * Physical examination reveals no abnormalities in cardiovascular and respiratory systems * Normal blood glucose, blood lipid and electrocardiogram (ECG) * Echocardiography shows no structural heart disease and normal cardiac function * Normal carotid ultrasound * No history of cardiovascular drug use

Exclusion criteria

* Heart valve regurgitation with clinical significance or moderate symptom and above * Respiratory system disease: acute or chronic respiratory disease * Endocrine diseases: thyroid disease, diabetes mellitus, aldosteronism, pheochromocytoma, and adrenal cortex dysfunction. * Metabolic syndrome * Anemia * Pregnant or lactating women * Abnormal liver function (more than twice the normal upper limit), abnormal renal function (creatinine \> 2 mg/dl), total cholesterol \> 190 mg/dl. If Pro-BNP is detected, Pro-BNP is abnormal or in high limit of normal value. * Connective tissue disease * Tumor * Aortic and peripheral vascular diseases: aortic dilatation, aortic dissection, coarctation of the aorta, polyarteritis, atherosclerosis * Daily drinking: liquor greater than 50 ml; red wine more than 100 ml; beer more than 300 ml * Professional sportsman * The poor quality of ultrasonic images cannot meet parameter measurement and analysis

Design outcomes

Primary

MeasureTime frameDescription
Carotid pulse wave velocity at the beginning and end of systole1 dayTo establish the range of pulse wave velocity at the beginning of the systole (BS) and at the ending of the systole (ES) of normal carotid artery, and to identify the influencing factors for BS and ES in the carotid artery.

Secondary

MeasureTime frameDescription
Carotid artery intima-media thickness (IMT)1 dayIMT reflects the change of vascular wall structure, which is used to evaluate early atherosclerosis and .
Serum biochemical index1 daySerum laboratory testing for blood cholesterol level (total cholesterol, HDL (high-density lipoprotein), LDL (low-density lipoproteins), triglycerides), fasting blood-glucose will be examed.

Countries

China

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026