18127445. ELECTRONIC DEVICE AND METHOD OF ESTIMATING BLOOD FLOW INFORMATION USING THE SAME simplified abstract (Samsung Electronics Co., Ltd.)

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ELECTRONIC DEVICE AND METHOD OF ESTIMATING BLOOD FLOW INFORMATION USING THE SAME

Organization Name

Samsung Electronics Co., Ltd.

Inventor(s)

Bok Soon Kwon of Suwon-si (KR)

Kyeongha Kwon of Daejeon (KR)

Do Yun Park of Seoul (KR)

Young Min Sim of Daejeon (KR)

Chulyoon Jung of Daejeon (KR)

Sang Kyu Kim of Suwon-si (KR)

Sungho Kim of Suwon-si (KR)

So Young Lee of Suwon-si (KR)

Ho Taik Lee of Suwon-si (KR)

Hong Soon Rhee of Suwon-si (KR)

ELECTRONIC DEVICE AND METHOD OF ESTIMATING BLOOD FLOW INFORMATION USING THE SAME - A simplified explanation of the abstract

This abstract first appeared for US patent application 18127445 titled 'ELECTRONIC DEVICE AND METHOD OF ESTIMATING BLOOD FLOW INFORMATION USING THE SAME

Simplified Explanation

The electronic device described in the patent application is designed to estimate body temperature by measuring blood temperature difference and blood flow information using a sensor with multiple temperature sensors.

  • The device includes a heat source, a pair of horizontally spaced first temperature sensors, and a pair of vertically spaced second temperature sensors.
  • The processor in the device calculates the blood temperature difference based on the readings from the temperature sensors and estimates blood flow information.

Potential Applications

This technology could be used in various medical settings for monitoring body temperature and blood flow in patients. It could also have applications in wearable health devices for continuous monitoring.

Problems Solved

This device provides a non-invasive way to estimate body temperature and blood flow, which can be useful in medical diagnosis and monitoring without the need for invasive procedures.

Benefits

The electronic device offers a convenient and efficient method for estimating body temperature and blood flow, potentially improving patient care and monitoring in healthcare settings.

Potential Commercial Applications

This technology could be integrated into medical devices, wearable health trackers, and other healthcare products for monitoring body temperature and blood flow in real-time.

Possible Prior Art

One possible prior art for this technology could be infrared thermometers used for non-contact temperature measurement. However, the specific design and functionality of this electronic device for estimating body temperature and blood flow may be unique.

Unanswered Questions

How does this technology compare to traditional methods of measuring body temperature and blood flow?

This article does not provide a direct comparison between this electronic device and traditional methods such as oral or ear thermometers for measuring body temperature. Further research or testing would be needed to determine the accuracy and effectiveness of this technology compared to existing methods.

What are the potential limitations or challenges in implementing this technology in medical settings?

The article does not address any potential limitations or challenges that may arise when implementing this technology in medical settings, such as regulatory approval, cost-effectiveness, or user acceptance. Further investigation would be necessary to understand these aspects of the technology's practical application.


Original Abstract Submitted

An electronic device for estimating body temperature may include: a sensor including a heat source, a pair of first temperature sensors horizontally spaced apart from each other at two opposing sides of the heat source, and a pair of second temperature sensors vertically spaced apart from the pair of first temperature sensors in a thickness direction of the electronic device; and at least one processor configured to estimate a blood temperature difference based on temperatures measured by the pair of first temperature sensors and the pair of second temperature sensors, and estimate blood flow information based on the estimated blood temperature difference.