Blood Viscometer Market: Key Factors Impacting Growth During 2017 - 2025

Atherosclerotic plaques form into coronary arteries and vein grafts causing coronary heart diseases.
A coronary atherectomy device is used to remove this atherosclerotic plaques. The deposition of
atherosclerotic plaque in the arteries is known as atherosclerosis syndrome. Atherosclerosis
affecting the wall of the arteries by deposition of white blood cells and proliferation of intimal
smooth muscle cells, resulting in less blood flow in the heart. Atherosclerosis can lead to serious
problems such as strokes and heart attack. Inflammation, necrosis, fibrosis, and calcification are
some of the effects of the atherosclerotic plaque formation. Once the plaques shape, either a piece
of plaque may break and be carried by the bloodstream until it gets fixed or else blood clots and
deposited on the plaque's surface. If these happen, blood flow cut off and artery blocked.
Atherectomy devices are designed differently to either cut, shave, or vaporize the plaques.
Changing lifestyle and adopting new health care facilities can help avoid the problems of
atherosclerosis and live a long, healthy life.
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On the basis of technology, the coronary atherectomy devices market is segmented into directional
atherectomy device, rotational atherectomy device, orbital atherectomy device, and laser
atherectomy device. The directional atherectomy devices segment is projected to expand at a fast
growth rate during the forecast period compared to other types of coronary atherectomy devices due
to its ability to reduce atherosclerotic plaques in bulks and availability in various sizes. According to
the World Health Organization, in 2015 almost 7.4 million people around the globe died due to
coronary heart diseases. Moreover, increase in the number of cath labs, obese population, smokers
and growing diabetes patients are some of the factors that are driving the market growth for
coronary atherectomy devices. However, in underdeveloped countries, inadequate health care
facilities, infrastructure, and high cost of coronary atherectomy devices are restraining the market
growth.
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Geographically, North America dominates the global market for coronary atherectomy devices,
followed by Europe. In North America, the increasing awareness about the treatment of coronary
ailments boosts the market growth. Moreover, according to the American Heart Association, every
year more than 360,000 people die due to coronary heart diseases which give sound to the peoples
of its effect in life. In Europe, the dietary factor is one of the leading causes of cardiovascular
diseases. In addition, the prevalence of diabetes in Europe is high and increasing rapidly. In Latin
America countries such as Mexico, the growing prevalence of cardiovascular diseases such as heart
attack and heart failure has boosted the growth of the market. In 2016, the Global Cardiovascular
Community stated that 27.7% of the adult population in Latin America is affected with heart
diseases and the rate is increasing, which is expected to create market opportunities for coronary
atherectomy devices in the next few years. The Asia Pacific market is projected to grow during the
forecast period owing to rising population with extended levels of cholesterol that would be
expected to contribute a major increase in the general burden of cardiovascular diseases in this
region which helps to grow the coronary atherectomy devices market. Factors such as rise in
disposable income and development of health care infrastructure along with increasing health care
spending are projected to boost the market growth for coronary atherectomy devices in Africa.
Major companies operating in the coronary atherectomy devices market include Boston Scientific,
Medtronic, Arterial Remodeling Technologies, Atrium Medical, B. Braun Melsungen, Balton,
Biosensors International, Biotronik, and Blue Medical.
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Viscosity can be determined over a wide range of shear stresses, as infrared sensors are incorporated in the new capillary blood viscometer. The blood viscometer is designed in such a way that the blood flows through the capillary and the flow of the blood varies according to the time. In the blood viscometer there is an air chamber which has a suitable transducer to measure the pressure and the pressure varies according to the time. The blood flows through a compliant membrane to the sample in a fixed volume air chamber due to pressure.