BIOCHEMICAL DETECTION APPARATUS
20170219558 ยท 2017-08-03
Inventors
Cpc classification
H04N23/55
ELECTRICITY
International classification
Abstract
A biochemical detection apparatus includes an electronic computing device and an optical device. The optical device includes a main body. The main body includes an accommodating space provided in the main body, and an insertion slot, an optical lens and an opening that are in communication with the accommodating space. The optical lens and the opening are disposed on a same plane of the main body, and the optical lens is located above an image capturing unit of the electronic computing device. The optical device may be installed at a handheld electronic computing device commonly carried by an individual, and is capable of immediately performing detection for an environmental parameter or a biological parameter by a biochemical sheet. The optical device having a simple structure is small in volume, convenient and low in cost, and may replace expensive precision detection apparatuses.
Claims
1. A biochemical detection apparatus, comprising: an electronic computing device, comprising at least one display unit, and at least one image capturing unit coplanar with the display unit; and an optical device, comprising a main body, the main body comprising an accommodating space provided in the main body, an insertion slot in communication with the accommodating space, an optical lens in communication with the accommodating space, and an opening in communication with the accommodating space; wherein, the optical lens and the opening are disposed on same plane of the main body, and the optical lens is located above the image capturing unit.
2. The biochemical detection apparatus of claim 1, wherein the main body comprises a through hole located at one side of the main body opposite the optical lens and being in communication with the accommodating space.
3. The biochemical detection apparatus of claim 1, wherein the optical device comprises a fixing member for fixing the main body on the electronic computing device.
4. The biochemical detection apparatus of claim 1, further comprising: a biochemical sheet, inserted in the insertion slot, comprising a test area and a calibration area at one end thereof, the test area and the calibration area being located above the image capturing unit.
5. The biochemical detection apparatus of claim 4, wherein the electronic computing device comprises an application program electrically connected to the image capturing unit.
6. The biochemical detection apparatus of claim 5, wherein the application program controls a part of the display unit near the image capturing unit to form a light emitting area, and the opening of the main body is located above the light emitting area.
7. The biochemical detection apparatus of claim 5, wherein the application program controls a position of the display unit to form a display area.
8. The biochemical detection apparatus of claim 5, wherein the electronic computing device comprises a database electrically connected to the application program.
9. The biochemical detection apparatus of claim 4, wherein the calibration area comprises at least one comparison reference object.
10. The biochemical detection apparatus of claim 4, wherein the calibration area comprises at least one focusing target object.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0027] Referring to
[0028] Referring to
[0029] In the present invention, the optical lens 302 is disposed between the test area 40 and the image capturing unit 21. Thus, the image capturing unit 21 provides image extension through the properties of the optical lens 302, such that the test area 40 is allowed to detect the object under test using the biochemical reactant having a quite small area, thereby reducing the area that the test area requires and reducing the object amount under test , increasing the amount of detection and reducing investment costs of a business entrepreneur.
[0030] In the present invention, when the test area 40 and the calibration area 41 at one end of the biochemical sheet 4 are accommodated in the accommodating space 300, depending on actual conditions, the electronic computing device 2 may include an application program (not shown) electrically connected to the image capturing unit 21. Through the application program, the electronic computing device 2 of the present invention divides one part of the display unit 20 into a light emitting area 200, and locates the light emitting area 200 below the opening 303 of the main body 30 to have the illumination provided by the light emitting area 200 to serve as a main light source for the image capturing unit 21 to capture an image of the test area 40. Further, light beams from the light emitting area 200 irradiate into the accommodating space 300 through the opening 303 to provide the image capturing unit 21 with sufficient light beams for scanning and facilitating the observation for a change result of the test area 40. Alternatively, as shown in
[0031] As previous described, in the present invention, the light emitting area 200 on the display unit 20 provides a lighting function. Further, through the control of the application program, the shape of the light emitting area 200 may be made to be consistent with the shape of the main body 30, so as to allow the optical lens 302 of the main body 30 to align with a center point of the image capturing unit 21.
[0032] Further, the application program may control a position of the display unit 20 to form a display area 201, which is located at a center part of the display unit 20. The electronic computing device 2 of the present invention may simultaneously divide the display unit 20 into the light emitting area 200 and the display area 201 through the application program, hence allowing the user to at the same time observe the change result of the test area 40 while the image capturing unit 21 scans the change result of the test area 40. Alternatively, through the control of the application program, the display unit 20 is caused to form the light emitting area 200 or the display area 201 at different time points, e.g., the display unit 20 activates only the light emitting area 200 during the detection, and activates the display area 201 to display the detection result after the detection is complete.
[0033] In one embodiment of the present invention, the main body 30 may be provided as a housing having better reflectivity. When light beams enter the accommodating space 300, the light beams are less likely absorbed by the main body 30. Thus, more light beams can be reflected to the test area 40 and the calibration area 41, such that the image capturing unit 21 is provided with more sufficient light beams for scanning the change result of the object under test mixed with the biochemical reactant on the biochemical sheet 4.
[0034] The calibration area 41 includes at least one comparison reference object (not shown). The comparison reference object is comparison reference data that is embedded in the calibration area 41 according to the type of the object under test to be detected. More specifically, to detect an amount of a metal component or a pH value, corresponding data such a comparison value or a form is embedded into the calibration area 41 to serve as a comparison standard for the current detection. To detect blood sugar in blood, urine or saliva, corresponding data is similarly embedded into the calibration area 41, and so forth.
[0035] The present invention is suitable for various types of electronic computing devices. However, these electronic computing devices in different brands or models may have different screen display or brightness parameter settings, or numerous data settings (e.g. color temperature and white balance) of the image capturing unit 21 may also be different. Further, assuming that the image capturing unit 21 adopts non-automatic focusing and the precision levels by which the user operates and inserts the biochemical sheet 4 are different, undesired effects of image recognition and determination errors may be resulted if preceding calibration operations are not provided before the application of the biochemical sheet 4. Therefore, the calibration area 41 of the present invention further includes at least one focusing target object (not shown), which is embedded into the calibration area 41. Before the biochemical sheet 4 is inserted, calibration operations including insertion alignment, image focusing and white balance are first performed for the image capturing unit 21 of the electronic computing device 2 to enhance the detection accuracy. In one embodiment, the focusing target object may be implemented as a calibration object in form of a plurality of thick/thin strips or grids for aligning an object or a light source or calibrating white balance.
[0036] As previously described, one end of the biochemical sheet 4 is simultaneously embedded with the test area 40 and the calibration area 41, so that the user may directly compare the change result of the test area 40 with the comparison reference object at the calibration area 41, which is distinct from the drawback of the test area 40 and the calibration area 41 belonging to two different objects and being more costly and inconvenient of a conventional solution. It should be noted that, the comparison reference object or the focusing target object may be stored in the electronic computing device 2. Further, the focusing target object may be an identification password of the manufacturer of the biochemical sheet 4, hence allowing only predetermined biochemical sheets 4 to be activated and used for detection by the electronic computing device 2.
[0037] Further, when detection is performed using the biochemical sheet 4, the change result of the test area 40 can be manually observed. Alternatively, the image capturing unit 21 is controlled by the application program to cause the image capturing unit 21 to automatically scan the change result of the test area 40 and the comparison reference object. A difference between the change result of the test area 40 and the comparison reference object is then automatically calculated, and the calculated result is displayed on the display area 201 of the display unit 20.
[0038] Further, the electronic computing device 2 includes a database (not shown) electrically connected to the application program. The calculated result of the application program may be stored in the database to serve for data statistics and data analysis purposes, or to serve for subsequent support applications after a connection is established with a remote server.
[0039] Referring to