17919214. Blood Pressure Detection Method and Apparatus simplified abstract (Huawei Technologies Co., Ltd.)

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Blood Pressure Detection Method and Apparatus

Organization Name

Huawei Technologies Co., Ltd.

Inventor(s)

Chenggong Zheng of Shenzhen (CN)

Shaojian Wang of Shenzhen (CN)

Zhenlong Huang of Shenzhen (CN)

Blood Pressure Detection Method and Apparatus - A simplified explanation of the abstract

This abstract first appeared for US patent application 17919214 titled 'Blood Pressure Detection Method and Apparatus

Simplified Explanation

The patent application describes a method for detecting blood pressure by using wrist circumference data, wrist fat thickness data, and blood pressure data. The blood pressure data is corrected based on the wrist circumference and wrist fat thickness.

  • The method involves obtaining wrist circumference data, wrist fat thickness data, and blood pressure data.
  • The blood pressure data is corrected using the wrist circumference and wrist fat thickness data.
  • The method provides a more accurate measurement of blood pressure by taking into account the individual's wrist characteristics.
  • The innovation can be used in wearable devices or medical devices for monitoring blood pressure.
  • It can potentially improve the accuracy of blood pressure measurements and reduce the need for invasive procedures.
  • The method may be particularly useful for individuals with larger or smaller wrists, as it accounts for wrist circumference.
  • By considering wrist fat thickness, the method can account for variations in tissue composition that may affect blood pressure measurements.
  • The technology has the potential to improve the overall accuracy and reliability of blood pressure monitoring.

Potential Applications

  • Wearable devices for monitoring blood pressure.
  • Medical devices for measuring blood pressure.
  • Health monitoring systems for individuals with hypertension or cardiovascular diseases.

Problems Solved

  • Inaccurate blood pressure measurements due to variations in wrist size and tissue composition.
  • Limited accuracy of traditional blood pressure monitoring methods.
  • Invasive procedures for measuring blood pressure.

Benefits

  • Improved accuracy of blood pressure measurements.
  • Non-invasive and convenient method for monitoring blood pressure.
  • Personalized blood pressure monitoring based on individual wrist characteristics.
  • Potential for early detection and management of hypertension or cardiovascular diseases.


Original Abstract Submitted

A blood pressure detection method is provided. The method comprising: obtaining wrist circumference data, wrist fat thickness data, and blood pressure data and correcting the blood pressure data based on the wrist circumference data and the wrist fat thickness data.