This is the current news about centrifugal pump in heart lung machine|heart lung heat exchanger 

centrifugal pump in heart lung machine|heart lung heat exchanger

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centrifugal pump in heart lung machine|heart lung heat exchanger

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centrifugal pump in heart lung machine|heart lung heat exchanger

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The use of a centrifugal pump in a heart lung machine has revolutionized the field of cardiovascular surgery, allowing for more precise control of blood flow during cardiopulmonary bypass (CPB). This article will explore the role of the centrifugal pump in a heart lung machine, its benefits, and its impact on patient outcomes.

Upon leaving the venous reservoir, blood next travels into the heart-lung machine’s pump, which utilizes compression force or centrifugal force to drive blood flow. A

Heart Lung Machine

A heart lung machine, also known as a cardiopulmonary bypass machine, is a device used to temporarily take over the functions of the heart and lungs during cardiac surgery. It allows the surgeon to operate on a still heart while maintaining oxygenated blood flow to the rest of the body. The heart lung machine consists of several components, including a pump, an oxygenator, and tubing that connects the patient to the machine.

Heart Lung Machine Design

The design of a heart lung machine is crucial to its function and effectiveness during cardiac surgery. The machine must be able to mimic the functions of the heart and lungs, providing oxygenated blood to the body while removing carbon dioxide. The centrifugal pump plays a key role in maintaining and controlling blood flow through the CPB circuit.

Diagram of Heart Lung Machine

A typical diagram of a heart lung machine includes the following components: a reservoir for collecting and returning blood to the patient, tubing that connects the patient to the machine, an oxygenator for oxygenating the blood, a heat exchanger to regulate the temperature of the blood, and the centrifugal pump for controlling blood flow.

Heart Lung Machine Principles

The principles behind the function of a heart lung machine are based on the need to provide oxygenated blood to the body while bypassing the heart and lungs. The machine must be able to regulate blood flow, oxygen levels, and temperature to ensure the patient's safety during surgery. The centrifugal pump is a critical component in achieving these goals.

Livanova Heart Lung Pump

Livanova is a leading manufacturer of heart lung machines and related equipment, including centrifugal pumps. The Livanova heart lung pump is known for its reliability, precision, and ease of use. It is designed to provide consistent blood flow during CPB, allowing surgeons to perform complex cardiac procedures with confidence.

Lung Oxygenator Machine

The lung oxygenator machine is another essential component of the heart lung machine, responsible for oxygenating the blood and removing carbon dioxide. It works in conjunction with the centrifugal pump to ensure that the blood is adequately oxygenated before being returned to the patient's body.

Centrifugal Pump CPB

Many CPB circuits now employ a centrifugal pump for the maintenance and control of blood flow during CPB. By altering the speed of revolution (RPM) of the pump, surgeons can adjust the flow rate of blood to meet the specific needs of each patient. This level of control is crucial in ensuring optimal perfusion during cardiac surgery.

Heart Lung Heat Exchanger

CPB is commonly used in operations or surgical procedures involving the heart. The technique allows the surgical team to oxygenate and circulate the patient's blood, thus allowing the surgeon to operate safely on the heart. In many operations, such as coronary artery bypass grafting (CABG), the heart is arrested, due to the degree of the difficulty of operating on a beating heart.

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centrifugal pump in heart lung machine|heart lung heat exchanger
centrifugal pump in heart lung machine|heart lung heat exchanger.
centrifugal pump in heart lung machine|heart lung heat exchanger
centrifugal pump in heart lung machine|heart lung heat exchanger.
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