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  2. The Best Blood Pressure Monitors to Have at Home ... - AOL

    www.aol.com/best-blood-pressure-monitors-home...

    This Omron monitor is a blood pressure and EKG monitor in one, which therein tracks systolic and diastolic blood pressures, pulse, atrial Fibrillation, tachycardia, bradycardia, and sinus rhythm ...

  3. Omron - Wikipedia

    en.wikipedia.org/wiki/OMRON

    In the consumer and medical markets, it is known for medical equipment such as digital thermometers, blood pressure monitors and nebulizers. Omron developed the world's first electronic ticket gate, [5] which was named an IEEE Milestone in 2007, [6] and was one of the first manufacturers of automated teller machines (ATM) [7] with magnetic ...

  4. Sphygmomanometer - Wikipedia

    en.wikipedia.org/wiki/Sphygmomanometer

    A sphygmomanometer (/ ˌ s f ɪ ɡ m oʊ m ə ˈ n ɒ m ɪ t ə r / SFIG-moh-mə-NO-mi-tər), also known as a blood pressure monitor, or blood pressure gauge, is a device used to measure blood pressure, composed of an inflatable cuff to collapse and then release the artery under the cuff in a controlled manner, [1] and a mercury or aneroid manometer to measure the pressure.

  5. Blood pressure monitor - Wikipedia

    en.wikipedia.org/?title=Blood_pressure_monitor&...

    Retrieved from "https://en.wikipedia.org/w/index.php?title=Blood_pressure_monitor&oldid=220587491"

  6. Blood pressure - Wikipedia

    en.wikipedia.org/wiki/Blood_pressure

    Blood pressure (BP) is the pressure of circulating blood against the walls of blood vessels. Most of this pressure results from the heart pumping blood through the circulatory system. When used without qualification, the term "blood pressure" refers to the pressure in a brachial artery, where it is most commonly measured.

  7. Continuous noninvasive arterial pressure - Wikipedia

    en.wikipedia.org/wiki/Continuous_noninvasive...

    When the heart ejects stroke volume to the arteries, it takes a certain transit time until the blood pressure wave arrives in the periphery. This pulse transit time (PTT) indirectly depends on blood pressure – the higher the pressure, the faster PTT. This circumstance can be used for the noninvasive detection of blood pressure changes.