TWI812118B - Miniature multiplex testing chip, multiplex testing equipment and testing method thereof - Google Patents
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Abstract
Description
本發明是有關一種微型檢測晶片、檢測設備及其檢測方法,特別是有關一種可同時進行數種檢測項目的微型多重檢測晶片、多重檢測設備及其檢測方法。The present invention relates to a micro-detection chip, detection equipment and detection methods, and in particular to a micro-multiple detection chip, multiple detection equipment and detection methods that can perform several detection items simultaneously.
隨著檢測科學之進步,目前除了透過實驗室的專業實驗流程進行檢測外,亦發展出許多方便使用的檢測試片。習知的檢測試片通常包含檢測槽,檢測槽中容置有特定試劑,試劑的種類取決於檢測的目標物質。使用習知的檢測試片時,僅需將檢體加入檢測槽中,待檢體與試劑反應完畢後觀察或測量試劑的性質變化,即可得知檢測結果。With the advancement of testing science, in addition to testing through professional laboratory experimental procedures, many convenient-to-use test strips have also been developed. Conventional test strips usually include a detection tank containing specific reagents. The type of reagent depends on the target substance to be detected. When using conventional detection test strips, you only need to add the specimen into the detection tank, and after the reaction between the specimen and the reagent is completed, observe or measure the property changes of the reagent to obtain the detection result.
然而,習知的檢測試片一次僅能針對一種目標物質進行檢測,若要檢測多種目標物質,則需準備對應各種目標物質的檢測試片,且所需的檢體量也大幅增加,不僅拉長了檢測時間,檢測流程也較為繁瑣,且蒐集大量檢體更可能造成被採檢者的不適。However, the conventional test strips can only detect one target substance at a time. If you want to detect multiple target substances, you need to prepare test strips corresponding to various target substances, and the required amount of specimens also increases significantly. Not only does it require The testing time is long, the testing process is also more cumbersome, and collecting a large number of specimens is more likely to cause discomfort to the subjects.
有鑑於此,如何有效率地檢測多種目標物質,以簡化檢測流程並降低被採檢者的不適,仍為待解決之問題。In view of this, how to efficiently detect multiple target substances to simplify the detection process and reduce the discomfort of the subjects is still a problem to be solved.
本發明之一目的是提供一種微型多重檢測晶片,其可同時容納多種檢測試劑,且能同時進行多項檢測。One object of the present invention is to provide a miniature multiplex detection chip that can accommodate multiple detection reagents at the same time and can perform multiple detections at the same time.
本發明之一態樣提供一種微型多重檢測晶片,其包含檢測部以及識別部。檢測部包含校準區、蓄留區以及複數個檢測區,校準區設於檢測部之表面,蓄留區環設於校準區之周圍且連通外界,檢測區依序排列於蓄留區之周圍,且各檢測區分別連通蓄留區或外界。識別部連接檢測部,識別部具有識別記號,以供使用者識別檢測之內容。其中,校準區、蓄留區及檢測區呈同心設置。One aspect of the present invention provides a micro multiple detection chip, which includes a detection part and an identification part. The detection part includes a calibration area, a storage area and a plurality of detection areas. The calibration area is located on the surface of the detection part. The storage area is surrounding the calibration area and connected to the outside world. The detection areas are arranged in sequence around the storage area. And each detection area is connected to the storage area or the outside world respectively. The identification part is connected to the detection part, and the identification part has an identification mark for the user to identify the content of the detection. Among them, the calibration area, storage area and detection area are arranged concentrically.
據此,本發明之微型多重檢測晶片具有由內而外依序設置的校準區、蓄留區及檢測區,進行檢測時,僅需在各檢測區中置入不同檢測試劑,並將檢體加至蓄留區和/或檢測區中,即可同時進行多項檢測,藉此可大幅縮減檢測時間及檢測流程,更能減少檢體之需求量。According to this, the micro multiple detection chip of the present invention has a calibration area, a storage area and a detection area arranged sequentially from the inside out. When performing detection, it is only necessary to place different detection reagents in each detection area and place the specimen By adding it to the storage area and/or testing area, multiple tests can be performed at the same time, thereby significantly reducing the testing time and testing process, and also reducing the demand for specimens.
依據前述之微型多重檢測晶片,其中蓄留區可透過開口與外界連通,檢測部更可包含封閉件,封閉件可移除地封閉開口,且封閉件可由具溶解性之材料所製成。According to the aforementioned micro multiple detection chip, the storage area can be connected to the outside through the opening, and the detection part can further include a sealing member, which can removably seal the opening, and the sealing member can be made of a dissolvable material.
依據前述之微型多重檢測晶片,其中檢測區可不連通外界,當封閉件封閉開口時,蓄留區與檢測區內之壓力可小於外界,且各檢測區可分別包含微流道以連通蓄留區。According to the aforementioned micro multi-detection chip, the detection area may not be connected to the outside world. When the sealing member closes the opening, the pressure in the storage area and the detection area may be less than the outside world, and each detection area may include a micro-channel to connect the storage area. .
本發明之另一態樣提供一種多重檢測設備,其包含前述之微型多重檢測晶片以及晶片分析裝置,晶片分析裝置乘載微型多重檢測晶片,且用於測量及分析微型多重檢測晶片的檢測結果,且包含處理器、攝影模組以及輸出模組。攝影模組耦接處理器,攝影模組用以拍攝微型多重檢測晶片的影像,並將所述影像傳送至處理器進行分析。輸出模組耦接處理器,輸出模組用以輸出處理器分析所得的檢測結果。Another aspect of the present invention provides a multiplex detection device, which includes the aforementioned micro multiplex detection chip and a chip analysis device. The chip analysis device carries the micro multiplex detection chip and is used to measure and analyze the detection results of the micro multiplex detection chip. And includes processor, camera module and output module. The photography module is coupled to the processor. The photography module is used to capture images of the micro multi-detection chip and transmit the images to the processor for analysis. The output module is coupled to the processor, and the output module is used to output detection results analyzed by the processor.
依據前述之多重檢測設備,其中晶片分析裝置更可包含電物化模組,電物化模組耦接處理器,電物化模組可包含電物化感測元件,電物化感測元件可設置於微型多重檢測晶片的蓄留區和/或檢測區內,電物化模組可用以檢測蓄留區和/或檢測區內的物理性質或化學性質,並將所述物理性質或化學性質傳送至處理器進行分析。According to the aforementioned multiple detection equipment, the chip analysis device may further include an electrophysical module. The electrophysical module is coupled to the processor. The electrophysical module may include an electrophysical sensing element. The electrophysical sensing element may be disposed on a micro multiplexer. In the storage area and/or detection area of the detection chip, the electrophysical module can be used to detect the physical or chemical properties in the storage area and/or the detection area, and transmit the physical or chemical properties to the processor for processing. analyze.
依據前述之多重檢測設備,其中晶片分析裝置更可包含嵌入式模組,嵌入式模組耦接處理器,嵌入式模組可用以控制晶片分析裝置對微型多重檢測晶片進行影像拍攝、數據分析及結果輸出。According to the aforementioned multiple detection equipment, the chip analysis device can further include an embedded module. The embedded module is coupled to the processor. The embedded module can be used to control the chip analysis device to perform image shooting, data analysis and processing on the micro multi-detection chip. Result output.
本發明之又一態樣提供一種多重檢測方法,其包含下列步驟:提供前述之多重檢測設備、進行檢測步驟、進行分析步驟以及進行輸出步驟,其中微型多重檢測晶片的各檢測區內分別容置檢測試劑。在檢測步驟中,係將檢體滴至微型多重檢測晶片的蓄留區和/或檢測區中,使檢體與各檢測區內的檢測試劑進行反應。在分析步驟中,係利用晶片分析裝置之攝影模組對微型多重檢測晶片進行拍攝,以獲得所述影像,並將所述影像傳送至處理器進行分析,以獲得檢測結果。在輸出步驟中,係利用晶片分析裝置之輸出模組對檢測結果進行輸出。Another aspect of the present invention provides a multiplex detection method, which includes the following steps: providing the aforementioned multiplex detection equipment, performing a detection step, performing an analysis step, and performing an output step, wherein each detection area of the micro multiplex detection chip is respectively accommodated Detection reagents. In the detection step, the specimen is dropped into the storage area and/or the detection area of the micro multiplex detection chip, so that the specimen reacts with the detection reagents in each detection area. In the analysis step, the photography module of the chip analysis device is used to photograph the micro multi-detection chip to obtain the image, and the image is sent to the processor for analysis to obtain the detection result. In the output step, the detection results are output using the output module of the chip analysis device.
依據前述之多重檢測方法,其中微型多重檢測晶片的檢測區可不連通外界,各檢測區可分別包含微流道以連通蓄留區,且檢測試劑可容置於各檢測區的微流道中。According to the aforementioned multiplex detection method, the detection area of the micro multiplex detection chip may not be connected to the outside world, each detection area may include a microfluidic channel to connect to the storage area, and the detection reagents may be accommodated in the microfluidic channel of each detection area.
依據前述之多重檢測方法,其中多重檢測設備之晶片分析裝置更可包含電物化模組,電物化模組耦接處理器,電物化模組可包含電物化感測元件,電物化感測元件可設置於微型多重檢測晶片的蓄留區和/或檢測區內。進行分析步驟時,電物化模組可對微型多重檢測晶片進行檢測,以測得蓄留區和/或檢測區內的物理性質或化學性質,並將所述物理性質或化學性質傳送至處理器進行分析。According to the aforementioned multiple detection method, the chip analysis device of the multiple detection equipment may further include an electrophysical module, and the electrophysical module is coupled to the processor. The electrophysical module may include an electrophysical sensing element, and the electrophysical sensing element may It is arranged in the storage area and/or detection area of the micro multiplex detection chip. When performing the analysis step, the electrophysical and chemical module can detect the micro multiple detection chip to measure the physical or chemical properties in the storage area and/or the detection area, and transmit the physical or chemical properties to the processor. Perform analysis.
依據前述之多重檢測方法,其中分析步驟更可包含下列步驟:進行檢測內容確認步驟以及進行比色步驟。在檢測內容確認步驟中,可利用處理器讀取影像中的識別記號,並依照識別記號載入分析流程。在比色步驟中,可利用處理器比對校準區與反應後的檢測試劑之顏色差異,並將顏色差異按分析流程進行分析後獲得檢測結果。According to the aforementioned multiple detection method, the analysis step may further include the following steps: a detection content confirmation step and a colorimetric step. In the detection content confirmation step, the processor can be used to read the identification marks in the image and load the analysis process according to the identification marks. In the colorimetric step, the processor can be used to compare the color difference between the calibration area and the detection reagent after reaction, and the color difference can be analyzed according to the analysis process to obtain the detection result.
下述將更詳細討論本發明各實施方式。然而,此實施方式可為各種發明概念的應用,可被具體實行在各種不同的特定範圍內。特定的實施方式是僅以說明為目的,且不受限於揭露的範圍。Various embodiments of the invention are discussed in greater detail below. However, the embodiments are applicable to various inventive concepts and may be embodied in various specific scopes. The specific embodiments are provided for illustrative purposes only and do not limit the scope of the disclosure.
請參照第1圖,第1圖為本發明一態樣的一實施例的微型多重檢測晶片100的俯視示意圖。微型多重檢測晶片100包含檢測部110以及識別部120,且識別部120連接檢測部110。Please refer to Figure 1. Figure 1 is a schematic top view of a miniature
詳言之,檢測部110包含校準區111,校準區111設於檢測部110之表面。校準區111係供檢測完畢後比對之用,舉例而言,若微型多重檢測晶片100所使用之檢測試劑為變色型試劑(如:石蕊試劑或丙酮試劑),則校準區111可為白色或檢測試劑之原始顏色,可藉由比對校準區111與反應後之檢測試劑,而得知檢測試劑的顏色變化程度,並依據上述的顏色變化推導出檢測結果。In detail, the
檢測部110包含蓄留區112,蓄留區112環設於校準區111之周圍且連通外界,蓄留區112係用以蓄留檢體,以利進行比對或觀察檢體之狀況。蓄留區112可透過開口A與外界連通,檢測部110更可包含封閉件(未繪示),且封閉件可移除地封閉開口A,避免存放時灰塵或雜質進入蓄留區112而影響檢測結果。值得一提的是,封閉件之結構可為物理性移除之結構,如封膜或拉環式封蓋,或者,封閉件可由具溶解性之材料所製成,且可製成薄膜狀以封閉開口A,當含有溶劑之檢體接觸到封閉件時,可溶解封閉件並進入蓄留區112中。The
除此之外,蓄留區112內可額外容置相對應檢體與檢驗方式之吸附材料,用以吸附檢體。吸附材料可為棉紙、海綿或短纖漿(fluff pulp),亦可為聚丙烯酸鈉(sodium polyacrylate)、聚丙烯醯胺(polyacrylamide)、乙烯-馬來酸酐共聚物(ethylene-maleic anhydride copolymer)、交聯羧甲基纖維素鈉(cross-linked sodium carboxymethyl cellulose)或聚乙烯醇(polyvinyl alcohol)等不影響檢驗方式與檢體之吸附材料。In addition, the
檢測部110包含複數個檢測區113,檢測區113依序排列於蓄留區112之周圍,且各檢測區113分別連通蓄留區112或外界,若各檢測區113連通蓄留區112,進行檢測時可將檢體加至蓄留區112內,使檢體自行流入各檢測區113中。此外,校準區111、蓄留區112及檢測區113呈同心設置,使得檢體於蓄留區112中均勻分散並平均進入各檢測區113中,藉此降低檢測誤差。各檢測區113內亦可分別容置吸附材料,其細節如同前述蓄留區112之吸附材料,於此恕不贅述。The
識別部120具有識別記號121,以供使用者識別檢測之內容,識別記號121可為圖片、文字、一維條碼、二維條碼(如QR碼)或是射頻標籤(如RFID標籤),惟本發明並不以此為限。The
請參照第2圖及第3圖,第2圖為本發明一態樣的另一實施例的微型多重檢測晶片200的俯視示意圖,第3圖為第2圖之微型多重檢測晶片200沿3-3線段的剖面示意圖。微型多重檢測晶片200與前一實施例的微型多重檢測晶片100之結構大致相同,其不同處在於,檢測區213係不連通外界,且當封閉件封閉蓄留區212的開口A'時,蓄留區212與檢測區213內之壓力可小於外界,而各檢測區213可分別包含微流道C以連通蓄留區212。透過營造負壓環境及建立微流道C,可幫助檢體由蓄留區212順利進入檢測區213,且不會產生回流,避免不同檢測區213內的檢體或檢驗試劑交互汙染之狀況發生。Please refer to Figures 2 and 3. Figure 2 is a schematic top view of a micro
請參照第4圖,第4圖為本發明另一態樣的多重檢測設備300的結構示意圖。多重檢測設備300包含前述之微型多重檢測晶片100以及晶片分析裝置310,晶片分析裝置310乘載微型多重檢測晶片100,且可測量及分析微型多重檢測晶片100的檢測結果,其包含處理器311、攝影模組312以及輸出模組313,且攝影模組312及輸出模組313分別耦接處理器311。Please refer to Figure 4. Figure 4 is a schematic structural diagram of a
攝影模組312用以拍攝微型多重檢測晶片100的影像,並將所述影像傳送至處理器311進行分析,詳細的分析流程將於後續段落中介紹,於此恕不贅述。The
輸出模組313用以輸出處理器311分析所得的檢測結果,是以輸出模組313可為顯示器或印表機等,而輸出模組313亦可為行動裝置或無線裝置,並透過藍芽或網際網路等訊號連接處理器311,是以使用者可透過手機或其他裝置遠距接收檢測結果,並提升使用上的便利性。The
晶片分析裝置310更可包含電物化模組314,電物化模組314耦接處理器311,電物化模組314可包含電物化感測元件315,其可設置於微型多重檢測晶片100的蓄留區112和/或檢測區113內。電物化模組314可用以檢測蓄留區112和/或檢測區113內的物理性質或化學性質,並將所述性質傳送至處理器311進行分析。The
晶片分析裝置310更可包含嵌入式模組316,嵌入式模組316耦接處理器311,嵌入式模組316可用以控制晶片分析裝置310對微型多重檢測晶片100進行影像拍攝、數據分析及結果輸出,亦即,使用者可透過控制嵌入式模組316,而間接控制處理器311、攝影模組312、輸出模組313及電物化模組314的運算及作動。The
請參照第5圖,第5圖為本發明之又一態樣的多重檢測方法400的步驟流程圖,多重檢測方法400包含步驟410、步驟420、步驟430及步驟440。Please refer to Figure 5. Figure 5 is a step flow chart of a
步驟410為提供前述之多重檢測設備,其中微型多重檢測晶片的各檢測區內分別容置檢測試劑,各檢測區中的檢測試劑之種類可互不相同,以同時進行多項檢測。Step 410 is to provide the aforementioned multiplex detection equipment, in which detection reagents are respectively stored in each detection area of the micro multiplex detection chip. The types of detection reagents in each detection area can be different from each other, so that multiple detections can be performed simultaneously.
步驟420為進行檢測步驟,其係將檢體滴至微型多重檢測晶片的蓄留區和/或檢測區中,使檢體與各檢測區內的檢測試劑進行反應。若檢測區不連通外界,則須將檢體滴至蓄留區,並待檢體流入檢測區後進行反應,因此檢測試劑可容置於各檢測區的微流道中,當檢體流過微流道後,反應也一併完成,故可有效縮短檢測時間。Step 420 is a detection step, which involves dropping the specimen into the storage area and/or detection area of the micro multiplex detection chip, allowing the specimen to react with the detection reagents in each detection area. If the detection area is not connected to the outside world, the specimen must be dropped into the storage area, and the reaction must be carried out after the specimen flows into the detection area. Therefore, the detection reagent can be accommodated in the microfluidic channel of each detection area. When the specimen flows through the microfluidic After the flow channel, the reaction is also completed at the same time, so the detection time can be effectively shortened.
步驟430為進行分析步驟,其係利用晶片分析裝置之攝影模組對微型多重檢測晶片進行拍攝,以獲得所述影像,並將所述影像傳送至處理器進行分析,以獲得檢測結果。所述影像可為靜態影像或動態影像,舉例而言,若分析方法為比對反應前後檢測試劑之顏色,則所述影像可為反應前後之靜態影像,若分析方法為觀察不同時間點的檢測試劑變化,則所述影像可為反應過程之動態影像。Step 430 is an analysis step, which uses the photography module of the chip analysis device to photograph the micro multi-detection chip to obtain the image, and transmit the image to the processor for analysis to obtain the detection result. The image can be a static image or a dynamic image. For example, if the analysis method is to compare the color of the detection reagent before and after the reaction, the image can be a static image before and after the reaction. If the analysis method is to observe the detection at different time points If the reagent changes, the image can be a dynamic image of the reaction process.
除此之外,多重檢測設備之晶片分析裝置更可包含電物化模組,其細節如同前述之電物化模組314,於此恕不贅述。在分析步驟中,電物化模組可對微型多重檢測晶片進行檢測,以測得蓄留區和/或檢測區內的物理性質或化學性質,如導電度變化,並將所述性質傳送至處理器進行分析,藉此可提供處理器不同的檢測資訊,共同與前述之影像進行綜合分析,有助於提升檢測結果之準確度。In addition, the chip analysis device of the multi-detection equipment may further include an electrophysical module, the details of which are the same as the
請一併參照第6圖,第6圖為第5圖之多重檢測方法400中步驟430的詳細流程圖,分析步驟430更可包含步驟431及步驟432。Please refer to Figure 6 as well. Figure 6 is a detailed flow chart of
步驟431為進行檢測內容確認步驟,係利用處理器讀取影像中的識別記號,並依照識別記號載入分析流程,亦即,處理器中已預先針對不同的檢測項目設有不同的分析流程,而處理器可透過識別記號判斷目前進行之檢測項目,並載入對應之分析流程進行後續分析。Step 431 is a test content confirmation step. The processor is used to read the identification marks in the image and load the analysis process according to the identification marks. That is, the processor has preset different analysis processes for different test items. The processor can determine the current detection item through the identification mark, and load the corresponding analysis process for subsequent analysis.
步驟432為進行比色步驟,係利用處理器比對校準區與反應後的檢測試劑之顏色差異,並將顏色差異按分析流程進行分析後獲得檢測結果。舉例而言,若步驟431中處理器判斷所使用之檢測試劑為石蕊試劑,處理器遂載入對應石蕊試劑之分析流程,接著透過比對影像中校準區與檢測試劑的顏色,運算出檢測試劑之三原色光數值,並依據三原色光數值讀取對應的酸鹼度做為檢測結果。Step 432 is a colorimetric step. The processor is used to compare the color difference between the calibration area and the detected reagent after reaction, and the color difference is analyzed according to the analysis process to obtain the detection result. For example, if the processor determines in
步驟440為進行輸出步驟,係利用晶片分析裝置之輸出模組對檢測結果進行輸出,有關輸出模組之細節已於前述段落中說明,於此恕不贅述。Step 440 is an output step, which uses the output module of the chip analysis device to output the detection results. The details of the output module have been explained in the previous paragraphs and will not be repeated here.
綜上所述,本發明之微型多重檢測晶片具有由內而外依序設置的校準區、蓄留區及檢測區,進行檢測時,僅需在各檢測區中置入不同檢測試劑,並將檢體加至蓄留區和/或檢測區中,即可同時進行多項檢測,藉此可大幅縮減檢測時間及檢測流程,更能減少檢體之需求量。To sum up, the micro multiple detection chip of the present invention has a calibration area, a storage area and a detection area arranged sequentially from the inside out. When performing detection, only different detection reagents need to be placed in each detection area, and By adding specimens to the storage area and/or testing area, multiple tests can be performed at the same time. This can significantly reduce the testing time and process, as well as reduce the demand for specimens.
雖然本發明已以實施例揭露如上,然其並非用以限定本發明,任何熟習此技藝者,在不脫離本發明之精神和範圍內,當可作各種之更動與潤飾,因此本發明之保護範圍當視後附之申請專利範圍所界定者為準。Although the present invention has been disclosed above through embodiments, they are not intended to limit the present invention. Anyone skilled in the art can make various modifications and modifications without departing from the spirit and scope of the present invention. Therefore, the protection of the present invention is The scope shall be determined by the appended patent application scope.
100,200:微型多重檢測晶片 110:檢測部 111:校準區 112,212:蓄留區 113,213:檢測區 120:識別部 121:識別記號 300:多重檢測設備 310:晶片分析裝置 311:處理器 312:攝影模組 313:輸出模組 314:電物化模組 315:電物化感測元件 316:嵌入式模組 400:多重檢測方法 410,420,430,431,432,440:步驟 A,A':開口 C:微流道 100,200:Micro multiple detection chip 110:Testing Department 111:Calibration area 112,212:Retention area 113,213:Detection area 120:Identification Department 121:Identification mark 300:Multiple detection equipment 310:wafer analysis device 311: Processor 312:Photography module 313:Output module 314: Electrophysical module 315:Electrophysical sensing element 316: Embedded module 400:Multiple detection methods 410,420,430,431,432,440: Steps A,A': open C: Microfluidic channel
為讓本發明之上述和其他目的、特徵、優點與實施例能更明顯易懂,所附圖式之說明如下:
第1圖為本發明一態樣的一實施例的微型多重檢測晶片的俯視示意圖;
第2圖為本發明一態樣的另一實施例的微型多重檢測晶片的俯視示意圖;
第3圖為第2圖之微型多重檢測晶片沿3-3線段的剖面示意圖;
第4圖為本發明另一態樣的多重檢測設備的結構示意圖;
第5圖為本發明又一態樣的多重檢測方法的步驟流程圖;以及
第6圖為第5圖之多重檢測方法中步驟430的詳細流程圖。
In order to make the above and other objects, features, advantages and embodiments of the present invention more apparent and understandable, the accompanying drawings are described as follows:
Figure 1 is a schematic top view of a miniature multiplex detection chip according to an embodiment of the present invention;
Figure 2 is a schematic top view of a miniature multiplex detection chip according to another embodiment of the present invention;
Figure 3 is a schematic cross-sectional view of the micro multiple detection chip along line 3-3 in Figure 2;
Figure 4 is a schematic structural diagram of a multiple detection device of another aspect of the present invention;
Figure 5 is a step flow chart of another aspect of the multiplex detection method of the present invention; and
Figure 6 is a detailed flow chart of
100:微型多重檢測晶片 100:Micro multiple detection chip
110:檢測部 110:Testing Department
111:校準區 111:Calibration area
112:蓄留區 112:Retention area
113:檢測區 113:Detection area
120:識別部 120:Identification Department
121:識別記號 121:Identification mark
A:開口 A:Open your mouth
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Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20150160245A1 (en) * | 2013-11-05 | 2015-06-11 | Marya Lieberman | Ppm quantification of iodate using paper device |
TW201610426A (en) * | 2014-09-10 | 2016-03-16 | 威爾斯生物公司 | A microfluidic chip and a diagnostic apparatus containing the same |
US9726612B2 (en) * | 2011-04-12 | 2017-08-08 | Roche Diabetes Care, Inc. | Analytical aid |
CN107817244A (en) * | 2016-09-09 | 2018-03-20 | 美敦力公司 | Fluid sensor card |
CN108514899A (en) * | 2018-04-28 | 2018-09-11 | 福州大学 | A kind of paper substrate micro-fluidic chip system quickly detected for pollutant trace metal |
TWM630290U (en) * | 2022-03-25 | 2022-08-01 | 南投縣私立普台高級中學 | Ditch cover structure for preventing odor and mosquitoes |
-
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Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9726612B2 (en) * | 2011-04-12 | 2017-08-08 | Roche Diabetes Care, Inc. | Analytical aid |
US20150160245A1 (en) * | 2013-11-05 | 2015-06-11 | Marya Lieberman | Ppm quantification of iodate using paper device |
TW201610426A (en) * | 2014-09-10 | 2016-03-16 | 威爾斯生物公司 | A microfluidic chip and a diagnostic apparatus containing the same |
CN107817244A (en) * | 2016-09-09 | 2018-03-20 | 美敦力公司 | Fluid sensor card |
CN108514899A (en) * | 2018-04-28 | 2018-09-11 | 福州大学 | A kind of paper substrate micro-fluidic chip system quickly detected for pollutant trace metal |
TWM630290U (en) * | 2022-03-25 | 2022-08-01 | 南投縣私立普台高級中學 | Ditch cover structure for preventing odor and mosquitoes |
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