Smart bracelet
10765365 ยท 2020-09-08
Assignee
Inventors
Cpc classification
A61B5/0002
HUMAN NECESSITIES
A44C5/0015
HUMAN NECESSITIES
A61B5/02438
HUMAN NECESSITIES
A61B5/684
HUMAN NECESSITIES
A61B5/7445
HUMAN NECESSITIES
International classification
A61B5/00
HUMAN NECESSITIES
A44C5/00
HUMAN NECESSITIES
Abstract
A smart bracelet (100) is provided. The smart bracelet (100) has a length direction, and includes: a first pulse detector (12) and a blood flow sensor (11) sequentially arranged along the length direction, wherein, the blood flow sensor (11) is configured for identifying a blood flow direction and sending a blood flow direction signal; the first pulse detector (12) is configured for detecting a pulse signal. The smart bracelet (100) can intelligently detect whether it is worn on a left hand or a right hand and avoid manually input.
Claims
1. A smart bracelet, having a length direction, comprising: a first pulse detector and a blood flow sensor sequentially arranged along the length direction, wherein, the blood flow sensor is configured for identifying a blood flow direction and generating and sending a blood flow direction signal, the blood flow direction is a direction away from the smart bracelet or a direction that flows to the smart bracelet; the first pulse detector is configured for detecting a pulse signal, the smart bracelet further comprises a processor in communicatively connection with the blood flow sensor and the first pulse detector, the processor being configured for receiving the blood flow direction signal sent by the blood flow sensor, and determining whether the smart bracelet is worn on a left hand or a right hand of a human body according to both of the received blood flow direction signal and whether or not the first pulse detector detects a pulse signal.
2. The smart bracelet according to claim 1, wherein, the first pulse detector is configured to have a left-hand overlapping position which overlaps with a left-hand pulse line in a case where the smart bracelet is worn on a left hand of a human body, and have a right-hand overlapping position which overlaps with a right-hand pulse line in a case where the smart bracelet is worn on a right hand of a human body.
3. The smart bracelet according to claim 1, wherein, the first pulse detector is further configured for transmitting information that no pulse signal is detected to the processor in a case where no pulse signal is detected; or, the first pulse detector is further configured for transmitting no information to the processor in a case where no pulse signal is detected.
4. The smart bracelet according to claim 1, further comprising: a second pulse detector, wherein, the first pulse detector, the blood flow sensor, and the second pulse detector are sequentially arranged along the length direction, and the second pulse detector is configured for detecting a pulse signal.
5. The smart bracelet according to claim 4, further comprising: a processor communicatively connected with the blood flow sensor, the first pulse detector, and the second pulse detector, the processor being configured for receiving a blood flow direction signal sent by the blood flow sensor, and determining whether the smart bracelet is worn on a left hand or a right hand of a human body according to the received blood flow direction signal and whether or not the first pulse detector and the second pulse detector detect a pulse signal.
6. The smart bracelet according to claim 4, wherein, the second pulse detector is configured to have a left-hand overlapping position which overlaps with a left-hand pulse line in a case where the smart bracelet is worn on a left hand of a human body, and have a right-hand overlapping position which overlaps with a right-hand pulse line in a case where the smart bracelet is worn on a right hand of a human body.
7. The smart bracelet according to claim 5, wherein, the second pulse detector is further configured for transmitting information that no pulse signal is detected to the processor in a case where no pulse signal is detected; or, the second pulse detector is further configured for transmitting no information to the processor in a case where no pulse signal is detected.
8. The smart bracelet according to claim 1, wherein, the smart bracelet can be spread out as a flat band.
9. The smart bracelet according to claim 4, wherein, the blood flow sensor, the first pulse detector, and the second pulse detector are located on one end of the smart bracelet in the length direction.
10. The smart bracelet according to claim 1, wherein, the blood flow sensor is a Doppler blood flow sensor.
11. The smart bracelet according to claim 1, further comprising: an information transmitter in connection with the processor; the information transmitter is configured for receiving information that the smart bracelet is worn on a left hand or a right hand of a human body which is determined by the processor, and transmitting the information to a terminal.
12. The smart bracelet according to claim 1, further comprising: an information receiver in connection with the processor; the information receiver being configured for receiving information transmitted by the terminal, and transmitting the information to the processor.
13. The smart bracelet according to claim 1, further comprising: a display screen connected with the processor and configured for displaying information determined by the processor; the information at least including an information determined by the processor that the smart bracelet is worn on a left hand or a right hand of a human body.
14. The smart bracelet according to claim 1, wherein, the first pulse detector is configured to have a left-hand overlapping position which overlaps with a left-hand pulse line in a case where the smart bracelet is worn on a left hand of a human body, and have a right-hand overlapping position which overlaps with a right-hand pulse line in a case where the smart bracelet is worn on a right hand of a human body.
15. The smart bracelet according to claim 1, further comprising: a second pulse detector, wherein, the first pulse detector, the blood flow sensor, and the second pulse detector are sequentially arranged along the length direction, and the second pulse detector is configured for detecting a pulse signal.
16. The smart bracelet according to claim 2, further comprising: a second pulse detector, wherein, the first pulse detector, the blood flow sensor, and the second pulse detector are sequentially arranged along the length direction, and the second pulse detector is configured for detecting a pulse signal.
17. The smart bracelet according to claim 3, further comprising: a second pulse detector, wherein, the first pulse detector, the blood flow sensor, and the second pulse detector are sequentially arranged along the length direction, and the second pulse detector is configured for detecting a pulse signal.
18. The smart bracelet according to claim 5, wherein, the second pulse detector is configured to have a left-hand overlapping position which overlaps with a left-hand pulse line in a case where the smart bracelet is worn on a left hand of a human body, and have a right-hand overlapping position which overlaps with a right-hand pulse line in a case where the smart bracelet is worn on a right hand of a human body.
19. The smart bracelet according to claim 5, further comprising: an information transmitter in connection with the processor; the information transmitter is configured for receiving information that the smart bracelet is worn on a left hand or a right hand of a human body which is determined by the processor, and transmitting the information to a terminal.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to clearly illustrate the technical solution of the embodiments of the disclosure, the drawings of the embodiments will be briefly described in the following; it is obvious that the described drawings are only related to some embodiments of the disclosure and thus are not limitative of the disclosure.
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DETAILED DESCRIPTION
(11) The technical solutions of the embodiment will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the disclosure. It is obvious that the described embodiments are just a part but not all of the embodiments of the disclosure. Based on the described embodiments herein, those skilled in the art can obtain other embodiment(s), without any inventive work, which should be within the scope of the disclosure.
(12) An embodiment of the present disclosure provides a smart bracelet 100, capable of intelligently detecting whether it is worn on a left hand or a right hand and avoid manual input. As shown in
(13) Referring to
(14) The first pulse detector 12 is configured for detecting a pulse signal.
(15) The processor 15 is configured for determining whether the smart bracelet is worn on a left hand or a right hand of a human body according to the received blood flow direction signal and whether or not the first pulse detector 12 detects a pulse signal.
(16) It should be noted that, in ultrasound imaging systems, Doppler Effect is widely applied in blood flow detecting. The principle is: ultrasonic transducer transmitting ultrasonic into the human body and receiving ultrasonic echo returned from the human body; because moving red blood cells in the blood vessels have a scattering effect on ultrasonic, which leads to ultrasonic echo frequency deviation, and the amount of the frequency deviation being related with the center frequency that transmits ultrasonic and the moving speed of red blood cells, and thus, as long as ultrasonic echo frequency deviation is measured, movements of red blood cells can be known by calculation, so as to extract blood flow state in the blood vessel. In the embodiments and the drawings of the disclosure, the blood flow sensor being a Doppler blood flow sensor is taken as an example to illustrate in details. The blood flow sensor has a transmitting terminal E and a receiving terminal R.
(17) It should be noted that, because the human pulse can only be detected at a position of arm near thumb which is illustrated by pulse lines as an example in
(18) For example, as shown in
(19) As shown in
(20) In the smart bracelet provided by the embodiment of the disclosure, the first pulse detector is configured for detecting a pulse signal, the blood flow sensor is configured for detecting a blood flow direction, and the processor is configured for determining whether the smart bracelet is worn on a left hand or a right hand according to the blood flow direction signal detected by the blood flow sensor and whether or not the first pulse detector detects a pulse signal.
(21) It should be noted that, in order to determine whether the smart bracelet is worn on the left hand or the right hand, the first pulse detector and the blood flow sensor of the smart bracelet provided by the embodiment of the disclosure are made to be located on an inner side of the arm for detecting, for example, referring to
(22) Optionally, the first pulse detector is further configured for transmitting information that no pulse signal is detected to the processor in a case where no pulse signal is detected. In this case, the processor receives the information that no pulse signal is detected which is sent by the first pulse detector and determines whether the smart bracelet is worn on a left hand or a right hand of a human body.
(23) Or, the first pulse detector is further configured for transmitting no information to the processor in a case where no pulse signal is detected. Therefore, the processor only receives the blood flow direction signal sent by the blood flow sensor. In a case where the processor does not receive the information transmitted by the first pulse detector, it can be regarded that the first pulse detector does not detect the pulse signal, so as to determine whether the smart bracelet is worn on a left hand or a right hand.
(24) For example, as shown in
(25) The processor 15 also can be configured for determining whether the smart bracelet is worn on a left hand or a right hand of a human body according to the received blood flow direction signal and whether or not the first pulse detector 12 and the second pulse detector 13 detect a pulse signal.
(26) In a case where the smart bracelet further comprises a second pulse detector, because the first pulse detector 12 and the second pulse detector 13 are located on both sides of the blood flow sensor 11, one of the first pulse detector and the second pulse detector detects a pulse signal when the smart bracelet is worn on a left hand or a right hand.
(27) For example, as shown in
(28) As shown in
(29) Optionally, the second pulse detector 13 is further configured for transmitting information that no pulse signal is detected to the processor in a case where no pulse signal is detected. Therefore, the processor receives the information that no pulse signal is detected which is transmitted by the second pulse detector and the pulse signal sent by the first pulse detector, and determines whether the smart bracelet is worn on a left hand or a right hand according to the blood flow direction.
(30) Or, the second pulse detector is further configured for transmitting no information to the processor in a case where no pulse signal is detected. Therefore, in a case where the second pulse detector transmits no information to the processor, it is can be regarded that the second pulse detector does not detect the pulse signal.
(31) For example, as shown in
(32) For example, referring to
(33) Optionally, referring to
(34) For example, referring to
(35) It is obvious for the skilled in the art that although the disclosure has been explained in detail in connection with general descriptions and specific embodiments, certain modifications or improvements can be made thereto on the basis of the present disclosure. Therefore, these modifications or improvements without departing from the spirit and scope of the present disclosure belong to the scope sought for protection in the present disclosure.