METHOD OF OBTAINING SYMMETRIC TEMPERATURE CHANGE
20170224224 ยท 2017-08-10
Inventors
Cpc classification
G01K1/026
PHYSICS
G01K13/20
PHYSICS
G01K3/10
PHYSICS
A61B5/01
HUMAN NECESSITIES
International classification
A61B5/01
HUMAN NECESSITIES
Abstract
A method of obtaining symmetric temperature change, comprising the following steps of preparing a temperature sensing device; measuring and collecting temperature change: placing the temperature sensing device (1) on a predetermined position of a participant to measure and collect the participant's body temperature change data; extracting data; removing the temperature sensing device from the participant's body when running out of the battery and then connecting a reading device to extract the body temperature change data out of the temperature sensing device in order to apply the body temperature change data in precision medicine; the body temperature change data is used as the key marker without affecting the participant's daily activity, preventing the participant from inaccuracy of the body temperature change data caused by psychological and/or physiological factors, so the body temperature change data can be applied in the symmetry precision medicine.
Claims
1. A method of obtaining symmetric temperature change, comprising the following steps of preparing a temperature sensing device (1), the temperature sensing device (1) comprising a first sensing assembly (11), a second sensing assembly (12), and a plurality of temperature sensing patches (2) disposed on both first sensing assembly (11) and the second sensing assembly (12); measuring and collecting temperature change: placing the temperature sensing device (1) on a predetermined position (20) of a participant (10) to measure and collect the participant's body temperature change data (A); the predetermined position (20) comprising a first position group (201) where the first sensing assembly (11) is placed and a second position group (202) where the second sensing assembly (12) is placed; and extracting data: removing the temperature sensing device (1) from the participant's body after running out of the battery for a certain period of time (T), and then connecting a reading device (3) to extract the body temperature change data (A) out of the temperature sensing device (1), in order to apply the body temperature change data (A) in precision medicine.
2. The method of obtaining symmetric temperature change according to claim 1, wherein the certain period of time (T) is at least 24 hours.
3. The method of obtaining symmetric temperature change according to claim 1, wherein the first position group (201) and the second position group (202) symmetrically distribute on the participant's body surface.
4. The method of obtaining symmetric temperature change according to claim 1, wherein the temperature sensing patch (2) further comprises a temperature sensing terminal (21) configured to attach to the human body surface for sensing temperature, a memory unit (22) configured to store the body temperature change data (A), and a battery (23).
5. The method of obtaining symmetric temperature change according to claim 1, wherein the temperature sensing patch (2) comprises a housing (24), a circuit board (25), a processor chip (26) electrically connected with the circuit board, a lighting unit (27), and a port (28); wherein the housing (24) comprises a receiving space (241) defined therein; wherein the circuit board (25) is stalled in the receiving space (241) and electrically connected with the temperature sensing terminal (21), memory unit (22), and battery (23); wherein the processor chip (26) is installed on the circuit board (25) and be capable of converting the body temperature change data (A) from the continuing digital information of the temperature sensing terminal (21) within a predetermined time and storing in the memory unit (22); wherein the light unit (27) is installed within the receiving space (241) and configured to indicate the operating status by lighting; and wherein the port (28) is installed in the receiving space (241), one end of which is located at a peripheral edge of the housing (1) and configured to connect with the reading device (3).
6. The method of obtaining symmetric temperature change according to claim 1, wherein the housing (24) comprises a through hole (242) corresponding to the temperature sensing terminal (21); wherein the temperature sensing patch (2) further comprises an adhesive unit (29) disposed on a surface of the housing (24) and a periphery of the through hole (242) for attaching on the human body surface; the adhesive unit (29) comprising an adhesive layer (291) and a release layer (292) laminating with the adhesive layer (291).
7. The method of obtaining symmetric temperature change according to claim 1, wherein the housing (24) comprises a first housing (243) and a second housing (244) correspondingly disposed on the first housing (243); the second housing (244) having a receiving groove (245) disposed in a side on top thereof; the receiving groove (245) having an identification sticker (246) configured to identify the temperature sensing patch (2).
8. The method of obtaining symmetric temperature change according to claim 1, wherein the lighting unit (27) is a LED light; wherein the port (28) is one of the following: Type-A USB port, Type-B USB port, Type-C USB port, Micro-A USB, Micro-B USB, Mini-A USB port, Mini-B USB port.
9. The method of obtaining symmetric temperature change according to claim 1, wherein the reading device (3) comprises a case (31), a plurality of plug groups (32) disposed in both sides on a top surface thereof, a screen (33) disposed on the top side thereof, an output unit (34) disposed within one side of the case (31), and a processing unit (35) disposed within the case (31) and electrically connected with the plug groups (32), screen (33), and output unit (34); wherein the plug groups (32) comprises a plurality of plugs (321) provided for the temperature sensing patch (2) inserted therein to recharge the battery and the body temperature change data (A); wherein the processing unit (35) is configured to process the body temperature change data (A) and display on the screen (33), and/or transmit the data through the output unit (34).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0031] The following description is a preferable embodiment according to the Figs.
[0032] Referring to
[0033] The main objective of the steps is to obtain the body temperature change data (A) as the key marker without affecting the participant's (10) daily activity, preventing the participant (10) from inaccuracy of the body temperature change data (A) caused by psychological and/or physiological factors, so the body temperature change data (A) can be applied in the symmetry precision medicine.
[0034] The second point of the steps is no age limit, lower cost, and non-invasive measurement that can build a huge database in a short period of time, achieving the development of precision medicine so that everyone can enjoy this benefit.
[0035] The temperature sensing patch (2) do not set up manually power switch, therefore when running out of battery, the collection of the body temperature change data (A) is completed, thereby simplifying operation steps without always having to check the battery level.
[0036] The certain period of time (T) is at least 24 hours.
[0037] At least 24 hours of time as a reference to meet people's daily activity is beneficial in the body temperature change data (A), which can quickly determine the participant's physical condition and identify problems on the body.
[0038] Wherein the first position group (201) and the second position group (202) symmetrically distribute on the participant's body surface.
[0039] Because the human body itself has the characteristics of symmetry, it's quite obvious if the data is changed between the first position group (201) and the second position group (202), so as to facilitate determining the participant's (10) physical condition.
[0040] Referring to
[0041] The temperature sensing patch (2) is used to measure the participant's (10) body temperature by the temperature sensing terminal (21), obtain the body temperature change data (A), and store the body temperature change data (A) through the memory unit (22); the entire operation process of the temperature sensing patch (2) is powered by the battery (23).
[0042] wherein the temperature sensing patch (2) comprises a housing (24), a circuit board (25), a processor chip (26) connected with the circuit board, a lighting unit (27), and a port (28); wherein the housing (24) comprises a receiving space (241) disposed therein; wherein the circuit board (25) is stalled in the receiving space (241) and electrically connected with the temperature sensing terminal (21), memory unit (22), and battery (23); wherein the processor chip (26) is installed on the circuit board (25) and be capable of converting the body temperature change data (A) from the continuing digital information of the temperature sensing terminal (21) at a predetermined time and storing in the memory unit (22); wherein the light unit (27) is installed within the receiving space (241) and configured to indicate the operating status by lighting; and wherein the port (28) installed in the receiving space (241), one end of which is located at a periphery of the housing (1) and configured to connect with the reading device (3).
[0043] Through the temperature sensing patch (2), the participant's body temperature change can be measured in a long period time to obtain the data for the precision medicine. Besides, the design of the small structure can reduce the burden and discomfort on the participant's body.
[0044] Unlike a thermometer of prior art, several temperature sensing patches (2) can be used simultaneously at a time to achieve the effect of multi-point temperature measurement, by which the temperature error generated by multi-point temperature measurement at different times will not happen.
[0045] Except for handling digital information transmitted from the temperature sensing terminal (21) within a predetermined time period, the processor chip (26) also can secure the data stored in the memory unit (22) before running out of the battery.
[0046] Referring to
[0047] The through hole (242) let the temperature sensing terminal (21) directly contact with the participant's (10) skin, which can avoid the body temperature change data (A) error occurred. Besides, for complying with the medical standards, the adhesive unit (29) can be reusable or disposable.
[0048] Referring to
[0049] The structure of the first and second housing (243, 244) is simple and easy to produce and assemble, and efficient to protect the internal devices; besides, in addition to making the temperature sensing patch (2) easy to fix, the receiving groove (245) can avoid the identification sticker (246) accidentally shedding off the second housing (244) caused by wear after using it for a long time.
[0050] Referring to
[0051] The LED light applied in the light unit (27) not only can be easy to determine the operation status of the temperature sensing patch (2), but also can save more power and extend the use life. Besides, the USB applied in the port (28) not only can transmit the data and recharge the battery at the same time, but also can reduce the size of the temperature sensing patch (2).
[0052] Referring to
[0053] It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrated embodiments and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.