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Cardiac Output

Cardiac output is the amount of blood the heart pumps into the body in a minute. Heart rate and stroke volume measurements are used to obtain the cardiac output of a person. Various cardiac output measurement methods are used. Analyzing cardiac output is important because it allows physicians to ensure that the heart and its associated organs function properly.

What is Cardiac Output?

Cardiac output (CO) is the measurement of blood pumped by the left ventricle of the heart in a minute. The cardiac output is calculated by the measurement of heart rate (HR) and stroke volume (SV). The cardiac output value is measured in liters (L) per minute.

Cardiac Output Definition

Cardiac output is defined as the volume of blood pumped by the heart per minute.



Cardiac output Normal range

The normal CO of a healthy human is 5-6 L/minute at rest and 3 to 4 times more while working or exercising. Measurement of Cardiac output can be essential for an early diagnosis of cardiovascular diseases.

Cardiac Output Diagram

The diagram below shows the cardiac output:

Cardiac Output Formula

The formula of cardiac output is represented as :

Cardiac output (CO) = Heart Rate (HR) x Stroke Volume (SV)

Cardiac Output Calculation

Cardiac output is calculated by multiplying stroke volume (SV) by the heart rate (HR).

  1. Heart rate is the heart muscle contractions per minute (or beats per minute, bpm), the number of times the heart beats in a minute. Stroke volume is the amount of blood pumped by each ventricle in one compression or the amount of blood released to the body in one heartbeat (ml/heartbeat).
  2. Your body sometimes needs more oxygen such as during physical activity. The more the need for oxygen, the more blood is pumped by the heart, subsequently changing the cardiac output. This shows that cardiac output is altered by the changes in the heart rate and stroke volume.

For example: If the heart rate is 70 bpm and stroke volume is 70 ml.

Using the formula: HR X SV

= 70 X 70

= 4900 ml/min or 4.9 liters per minute.

Also Read: Mechanism of Muscle Contraction – CBSE Class 11

Factors Affecting Cardiac Output

There are several factors determining the efficiency of cardiac output regulation of a person. The body’s demand for blood changes during heavy workouts or any physical activity. Thus the demand for blood increases the heart beat and increases the cardiac output. That is the cardiac output can be altered by the change in heart rate and stroke volume.

Factors that affect cardiac output are:

Also Read: Human Circulatory System – Organ, Diagrams and Its Functions

Cardiac Output Measurement Methods

The measurement of cardiac output is done by various invasive or non-invasive methods. Invasive methods are done by entering into the body part with the help of medical instruments while non-invasive means instruments used without breaking the skin or causing an injury. Some examples of such methods are given below:

Invasive methods

Oxygen Fick method

Lithium dilution method

Non-invasive methods

Cardiac Index

Cardiac index (CI) is the evaluation of cardiac output based on a person’s body size. It is calculated by dividing cardiac output by a person’s body surface area (BSA).

What is the Significance of Cardiac Output?

The Cardiac output and Cardiac index of a person are important to know if the patient’s heart is pumping enough blood and delivering sufficient oxygen to cells.

Low Cardiac Output

The low level of cardiac output indicates that the heart doesn’t pump enough blood. If there is a low level of blood-carrying capacity of the heart, it may be a signal to heart failure or other cardiovascular diseases.

High Cardiac Output

Diseases Associated with Cardiac Output

Also Read: Circulatory System Diseases – Causes Risks, and Symptoms

Conclusion – Cardiac Output

The cardiac output gives the analysis of the functioning of the heart. There are various factors affecting cardiac output like age, physical activity, contractability, preload and afterload. Many techniques are used to measure the cardiac output of a person. The value cannot be excessively low or high; it should be steady. It is always better to have a healthy lifestyle with constant exercise and good dietary foods to ensure a healthy heart.

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FAQs on Cardiac Output

What is Cardiac Output Class 11?

Cardiac output is the amount of blood pumped by the heart in a minute. It is measured in litres (L) per minute.

What is the Cardiac Output Formula?

Cardiac output is calculated by multiplying stroke volume by the heart rate. Cardiac output (CO) = Heart rate (HR) * Stroke volume (SV).

What Factors Determine the Cardiac Output of a Human Heart?

The factors determining the cardiac output are changes in the heart rate and stroke volume. These can be altered by the intensity of physical activity, age of the person, contractability of the heart, preload, and afterload.

What is Normal Cardiac Output?

The normal CO of a healthy human is 5-6 L/minute at rest and 3 to 4 times more while working or exercising.

Why is Cardiac Output Important?

The Cardiac output of a person is important to ensure the proper functioning of the heart and related organs. Measurement of Cardiac Output can be essential for an early diagnosis of cardiovascular diseases.

What is the Function of Cardiac Output?

Cardiac output is the measure of blood volume ejected by the heart per minute, crucial for delivering oxygen and nutrients to tissues and removing waste products. It reflects the heart’s efficiency in maintaining adequate circulation throughout the body.

What is Low Cardiac Output?

Low cardiac output is when the heart pumps blood at a rate insufficient to meet the needs of the body leading to decreased circulation.

What is the Difference Between Stroke Volume and Cardiac Output?

Stroke volume is the amount of blood pumped by the heart in one beat, while cardiac output is the total volume of blood pumped per minute, calculated by multiplying stroke volume by heart rate.

What are the 4 Determinants of Cardiac Output?

The four determinants of cardiac output are heart rate, stroke volume, preload, and afterload.


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