Biosensor measuring system with bidirectionally checkable test piece information and detection test piece structure

A bio-sensing, two-way verification technology, applied in biological testing, material inspection products, etc., can solve problems such as lack of efficiency, misestimation of insulin dose, time-consuming, etc., to improve accuracy, simplify the structure of test strips, and reduce reading. The effect of chance of error or misjudgment

Active Publication Date: 2013-05-01
BIONIME
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Problems solved by technology

The pattern and mark are related to the test piece information of the detection test piece, for example, the type of the test piece, the lot number (lot number), etc., and the test piece information is used for reading by the biosensing measurement system and performing corresponding measurements accordingly However, the existing coded information can only be identified by specific personnel (such as nursing staff and manufacturers). For home users, they can only trust the measuring device unilaterally, and cannot detect the coded information on the test piece at all. In this way, when the above-mentioned biosensing measurement system reads wrongly or misjudges, the patient is very likely to misestimate the need for blood glucose based on the wrong measurement data displayed by the blood glucose meter without knowing it. Supplementary insulin doses, or miscalculation of the amount of glucose that needs to be supplemented, all of which pose great risks to patients
[0004] On the other hand, in terms of the structural manufacturing level of the coded information of the test strips, the structure design of the existing test strips is usually to punch a plurality of holes on the back of the test strips, and then, the operator then uses the information of this batch of test strips , fill the holes at different positions with induction blocks, and the corresponding position of the measurement device must be equipped with an induction mechanism, so as to cooperate with the induction block on the test piece to achieve the purpose of identification of the measurement device; only this type of existing structure It has been found in actual use experience that because the processing quantity of the test piece is often quite large, in the aforementioned prior art, it is obviously a rather time-consuming and inefficient working method; moreover, because the holes of the test piece must have specific size, which will easily lead to serious problems such as a high defect rate of the test piece and difficulty in controlling the quality of the finished product, and it will easily cause troubles in the inspection of the product and make relevant personnel extremely troubled; There is a setting type for testing the coding information of the test piece, so the coding information and the setting area are actually quite limited. This may be a pity for the measurement capability of the measuring device, so the functional requirements of its measurement capability cannot be fully utilized. problems and shortcomings

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[0028] In order to make the above objects, features and advantages of the present invention more comprehensible, specific implementations of the present invention will be described in detail below in conjunction with the accompanying drawings. First of all, it should be noted that the present invention is not limited to the following specific embodiments. Those skilled in the art should understand the present invention from the spirit embodied in the following embodiments, and each technical term can be optimized based on the spirit of the present invention. broad understanding. The same or similar components in the figures are denoted by the same reference numerals.

[0029] see figure 1 and figure 2 A first preferred embodiment of the biosensing and measuring system 1 whose test strip information can be bidirectionally checked includes a testing strip structure 2 and a measuring device 3. The biosensing and measuring system 1 is suitable for testing a testing body (not s...

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Abstract

The invention provides a biosensor measuring system with bidirectionally checkable test piece information and a detection test piece structure. The biosensor measuring system comprises the detection test piece structure and a measuring device. The detection test piece structure comprises a biosensor unit generating at least one reaction signal, a detection test piece of a surface and a character with identifiability arranged on the surface. The measuring device comprises an image acquisition unit used for acquiring an image, a test piece information acquisition unit used for acquiring an obtained character based on the image, a user interface unit for correspondence to output of the image and checking operation, a determination unit used for receiving a check operation signal to carry out determination and a signal measuring unit which obtains a measuring result based on the obtained character and a reaction signal when it is confirmed that the test piece information has no error.

Description

technical field [0001] The invention relates to a biosensor measuring system and a detection test strip structure used in the biosensor measuring system. Background technique [0002] Diabetes is a common disease. Due to the trend of population growth, aging, obesity, unhealthy diet and sedentary lifestyle, the incidence of diabetes worldwide is rapidly increasing. If diabetic patients are not properly treated or treated incorrectly, they are most likely to cause many complications, such as retinal Complications such as stripping, heart failure, unstable blood pressure, hyperlipidemia, stroke and hemiplegia, etc. Therefore, blood sugar control can be effectively prevented and treated in time to reduce the occurrence of regret. Furthermore, diabetes is a chronic disease that requires long-term care and treatment. In order to track the blood sugar index of diabetic patients at any time, and to accurately grasp the control of the patient's condition, some related companies have...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N33/50
Inventor 范力仁锺文峰
Owner BIONIME
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