TWM333564U - Structure of body fluid examination tester - Google Patents

Structure of body fluid examination tester Download PDF

Info

Publication number
TWM333564U
TWM333564U TW96219570U TW96219570U TWM333564U TW M333564 U TWM333564 U TW M333564U TW 96219570 U TW96219570 U TW 96219570U TW 96219570 U TW96219570 U TW 96219570U TW M333564 U TWM333564 U TW M333564U
Authority
TW
Taiwan
Prior art keywords
body fluid
bio
test strip
circuit layer
fluid test
Prior art date
Application number
TW96219570U
Other languages
Chinese (zh)
Inventor
Ying Ouyang
Serif Kamalak
qing-he Lian
Original Assignee
Ying Ouyang
Serif Kamalak
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ying Ouyang, Serif Kamalak filed Critical Ying Ouyang
Priority to TW96219570U priority Critical patent/TWM333564U/en
Publication of TWM333564U publication Critical patent/TWM333564U/en

Links

Landscapes

  • Investigating Or Analyzing Materials By The Use Of Electric Means (AREA)

Description

M333564 八、新型說明: _ 【新型所屬之技術領域】 , 本創作為一種體液檢驗試片,尤指一種於檢驗量測完成後可以被 ·. 生物感測裝置推出裝置外的體液檢驗試片構造。 【先前技術】 目前常見的體液檢測例如,血液檢驗時,將檢驗試片***生物感 • 測裝置後,再將血液滴入檢驗試片上,該感測裝置立即進行血液分析, 讓使用者或醫療人員可由該感測檢驗裝置上所分析之數據得知血液現 階段的狀況。 但是’目前市面上所使用的各種檢驗試片在檢驗完畢時,皆需由 人類手部將試片取出,該時由於試片為目標微小之薄片由手指拿取出 不易,且忒片上之體液檢體很難避免玷污手指,恐有污染之虞。因此, 使用時仍有不便之處,且容易讓使用者接觸到體液吸入端,而亦不必 響要的感染。 〆再^市場之制檢驗試片,其採集口之採集接觸端,因為檢體 、木集里$雜集不足之情況,而採集接處端並紐辨認不足之情 況:造成檢測儀器無法件驗出正確的檢體數據,所以檢驗則之採集 ^有㈣収細檢驗試體,亦為糊作欲探討及克服之 【新型内容】 本創作之目的在提供_種體液檢驗試 裝置,可以由生物感測f f㈣ΰ、ρ φ 用以配,生物感測 财置料片退出,以改進由人類手部退出試片 5 M333564 之缺點,以利進行體液檢驗。 •為達上述之目的,將體液檢驗試片***生物感測裝置,本創作於 體液檢驗試片構造中,使用直接印刷生物碳電路層的基板,該基板上 方缺口利用虹吸作用將體液吸入,而導入於生物碳電路層中,使生物 碳電路層與體液反應,以檢驗體液。 本創作之體液檢驗試片,因在***檢驗裝置的基板一端有止擋構 造,讓使用者操作生物感測裝置,由裝置之夾門將試片退出裝置外, 而勿需由手抽出,亦不至於接觸到體液吸入端,故可避免不必要的感 染0 而針對檢驗試片採集口,是否採集到足夠之檢體,本創作在上述 之生物碳電路層,於採集口除設有至少一個採集接觸端外,另有設置 至少一偵測接觸端在通氣口底部,在唯有採集足夠之檢體情況下,檢 體得以虹吸至通氣口底部滲入接觸偵測接觸端,由於檢體足_,所以 訊號得以由偵測接觸端傳達於生物感測裝置,以啟動生物感測裝置讀 取檢體數據。 【實施方式】 茲配合圖式將本創作較佳實施例詳細說明如下。 .明芩閱第一圖至第二圖,其分別係為本創作之立體圖及分解示意 圖。 本創作之-種體液檢驗試片構造,包括··一上層板⑴〇)、一中層 板(120)、—生物碳電路層⑽)、—基板⑽),該上層歲_一端 设有-採集孔(111)用以採集體液處;該中層板(⑽—端讀一虹吸 M333564 孑L(121)用以吸入採集體液,該中層板(120)虹吸孔(12ι)接合於該上 層板(110)採集孔(111)的下方;該生物碳電路層(13〇) 一端設有至少一 '個採集接觸端(131),以及一偵測接觸端(133),該偵測接觸端(133) ; 位於虹吸孔(121)底部,該生物碳電路層(130)另一端設有複數個量測 接觸端(132);該基板(140)用以印刷上述生物碳電路層(ι3〇),所述之 量測接觸端(132),及偵測接觸端(133),可以進一安排為例如第七、 八、九、十、十一、十二、圖之任一種生物碳電路層形態,可以適用 • 於不同接點腳位之感測儀器上使用,且基板(140)接合於中層板(12〇) 的下方;其中,該基板(140)—端兩側各設有一止擔部(mi),本實施 例中止擋部(141)為與***方向垂直的水平型。 將印刷該生物碳電路層(130)量測接觸端(132)的基板(140)*** 生物感測裝置(200),該上層板(110)的採集孔(in)用以採集體液處, 該採集孔(111)下方接合該中層板(12〇)的虹吸孔(12ι),利用虹吸作用 而吸入所採集之體液,所述之虹吸孔(121)為使其虹吸作用效果更佳, •本創作之中層板(120)進一步設有一通氣槽(123),該通氣槽(123)垂直 銜接如述之虹吸孔(121),在虹吸孔(121)吸入體液產生阻礙時,通氣 槽(123)具有向中層板兩側協助虹吸孔疏通導流功效,該體液導入於該 中層板(120)下方所接合的印刷,於該基板(14〇)的生物碳電路層(13〇) 才木集接觸端(131),當所採集之檢體量足以被虹吸至虹吸孔(121)底 部,而與偵測接觸端(133)接觸,此時足夠量之檢體得以由偵測接觸端 (133),傳達訊號至生物感測裝置(2〇〇),以啟動生物感測裝置(2〇〇), 檢體使用該生物碳電路層(130)的反應信號將傳輸至生物感測裝置 7 M333564 (200) ’该生物感測裝置(200)即可分析體液,所述之生物碳電路層(130) 底下可以進一步接合一金屬層(1301)以增加其實施之導電性【如第二 A圖所示】。 , 請麥閱第三圖至第五圖,其分別係為本創作體液檢驗試片(丨〇〇) ***生物感測裝置(200)前之示意圖、與生物感測裝置(200)結合立體 示意圖、及體液檢驗試片(100)退出生物感測裝置(2〇〇)之示意圖。其 中包括: 一體液檢驗試片(100); —設有一插槽(22〇)的生物感測裝置 (200) 〇 該體液檢驗試片(100)之採集孔(111)採集體液檢體,而設有止擋 部(141)的試片一端***該生物感測裝置(2〇〇)的插槽(22〇),使檢驗試 片(100)量測接觸端(132)與該生物感測裝置(2〇〇)的電連接插頭(21〇) 電性連接,且該基板(140)之止擋部(141)抵頂該插槽(220)的夾門 (221),且該生物感測裝置(200)的夾門(221)抵頂該基板(140)之止擋 部(141) ’該生物感測裝置(200)即可進行讀取該檢體之貪説。當士體 檢測資訊讀取完畢,使用者操作生物感測裝置(2〇〇)之推桿卫推動夾門 (221),由裝置之夾門(221)將檢驗試片(1〇〇)退出生物感測裝置(2〇〇) 外【如第五圖所示】,而勿需由手部抽出,亦不至於接觸到體液採集 孔(111),故可避免不必要的感染。 , 上述檢驗试片基板(140)之止擒部(141)及配合對應之生物感測裝 置(200)之夾門(221),在實施上可以採用例如***方向垂直的水平型 (請參閱第一圖)、有斜度的斜坡型(請參閱第六圖),該斜坡型止檔部 8 M333564 (141)椎狀兩側容易***所述之插槽(22〇),更增進其試片***装置速 度,或者亦可以設計為凹入型或凸出型等之任一種形式,同業間之技 術人員由$述之各種止擒部形式得知其皆可以達成上述之由生物感測 名置(2GG)主動退出檢驗試片於裝置外之目的,在此不再進 資述。M333564 VIII. New description: _ [New technical field], this creation is a body fluid test piece, especially a body fluid test piece structure that can be pushed out by the bio-sensing device after the test measurement is completed. . [Prior Art] At present, common body fluid testing, for example, in blood testing, inserts a test piece into a biological sensory device, and then drops the blood into the test piece, which immediately performs blood analysis for the user or medical The person can know the current state of the blood from the data analyzed on the sensing test device. However, the current test strips used on the market are required to be taken out by human hands when the test is completed. At this time, it is not easy to take out the test piece as a small piece of the target, and the body fluid test on the bracts is not easy. It is very difficult to avoid smudging your fingers and fearing pollution. Therefore, there is still inconvenience in use, and it is easy for the user to come into contact with the body fluid inhalation end without the need for an infection. 〆再^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ The correct sample data is obtained, so the test is collected. (4) The test sample is also used for the purpose of exploring and overcoming the new content. The purpose of this creation is to provide a body fluid test device, which can be Sensing f f (four) ΰ, ρ φ is used to match, and the bio-sensing financial material is withdrawn to improve the shortcomings of the human hand to withdraw the test piece 5 M333564 for the purpose of performing body fluid testing. • For the above purposes, the body fluid test strip is inserted into the biosensing device. The present invention is used in the body fluid test strip structure, and the substrate directly printed on the bio-carbon circuit layer is used, and the gap above the substrate is used to suck the body fluid by siphoning. It is introduced into the bio-carbon circuit layer to react the bio-carbon circuit layer with the body fluid to test the body fluid. The body fluid test piece of the present invention has a stop structure at one end of the substrate inserted into the test device, allowing the user to operate the bio-sensing device, and the test piece is taken out of the device by the clamp door of the device, without being pulled out by the hand, nor As for the contact with the body fluid inhalation end, it can avoid unnecessary infection. 0 For the test sample collection port, whether enough samples are collected, the creation is in the above bio-carbon circuit layer, and at least one collection is provided in the collection port. Outside the contact end, at least one detecting contact end is disposed at the bottom of the vent hole, and only when sufficient sample is collected, the sample is siphoned to the bottom of the vent hole to penetrate the contact detecting contact end, due to the sample foot _, Therefore, the signal can be transmitted from the detecting contact end to the bio-sensing device to activate the bio-sensing device to read the sample data. [Embodiment] The preferred embodiment of the present invention will be described in detail below with reference to the drawings. The first to second figures of the Ming Dynasty are respectively a perspective view and an exploded schematic diagram of the creation. The creation of the body fluid test test piece structure includes: an upper plate (1) 〇), a middle plate (120), a bio-carbon circuit layer (10), a substrate (10), and the upper layer is provided with an _ end The hole (111) is used for collecting the body fluid; the middle plate ((10) - end reading a siphon M333564 孑 L (121) is used for inhaling the collected body fluid, and the middle plate (120) siphon hole (12 ι) is joined to the upper plate (110) The bottom of the collection hole (111); the bio-carbon circuit layer (13〇) has at least one collection contact end (131) at one end, and a detection contact end (133), the detection contact end (133) Located at the bottom of the siphon hole (121), the other end of the bio-carbon circuit layer (130) is provided with a plurality of measurement contact ends (132); the substrate (140) is used for printing the bio-carbon circuit layer (ι3〇) The measuring contact end (132) and the detecting contact end (133) may be further arranged into a bio-carbon circuit layer form such as the seventh, eighth, ninth, tenth, eleventh, twelveth, and the Applicable • Used on sensing instruments with different contact pins, and the substrate (140) is bonded under the middle plate (12〇); Wherein, the substrate (140) is provided with a stop portion (mi) on both sides of the end. In the embodiment, the stop portion (141) is of a horizontal type perpendicular to the insertion direction. The amount of the bio-carbon circuit layer (130) will be printed. The substrate (140) of the measuring contact end (132) is inserted into the bio-sensing device (200), and the collecting hole (in) of the upper layer plate (110) is used for collecting the body fluid, and the middle layer plate is joined under the collecting hole (111) ( 12 〇) of the siphon hole (12 ι), using siphoning to inhale the collected body fluid, the siphon hole (121) for better siphon effect, • the layer (120) is further provided with a ventilation a groove (123), the venting groove (123) vertically engages the siphon hole (121) as described above, and when the siphon hole (121) inhales the body fluid to block, the venting groove (123) has a function to assist the siphon hole on both sides of the middle plate Flow effect, the body fluid is introduced into the printing under the middle layer plate (120), and the bio-carbon circuit layer (13〇) of the substrate (14〇) is set to the contact end (131), when the collected sample The amount is sufficient to be siphoned to the bottom of the siphon hole (121), and is in contact with the detecting contact end (133), A sufficient amount of the sample is transmitted from the detecting contact end (133) to the bio-sensing device (2〇〇) to activate the bio-sensing device (2〇〇), and the sample uses the bio-carbon circuit layer ( 130) The reaction signal is transmitted to the biosensing device 7 M333564 (200) 'The biosensing device (200) can analyze the body fluid, and the bio-carbon circuit layer (130) can be further joined to a metal layer (1301). ) to increase the conductivity of its implementation [as shown in Figure A]. Please read the third to fifth figures, which are the biosensor test pieces (丨〇〇) inserted into the biosensing device. (200) The schematic diagram of the front, the stereoscopic diagram combined with the bio-sensing device (200), and the schematic diagram of the body fluid test strip (100) exiting the bio-sensing device (2〇〇). The method includes: a one-piece liquid test piece (100); a biological sensing device (200) having a slot (22 inches), and a body fluid sample (111) of the body fluid test piece (100) for collecting a body fluid sample, and One end of the test piece provided with the stopper portion (141) is inserted into the slot (22〇) of the bio-sensing device (2〇〇), so that the test piece (100) measures the contact end (132) and the biological sensing The electrical connection plug (21〇) of the device (2〇〇) is electrically connected, and the stopping portion (141) of the substrate (140) abuts the clamping door (221) of the slot (220), and the biological sense The clamping door (221) of the measuring device (200) abuts against the stopping portion (141) of the substrate (140). The bio-sensing device (200) can perform the craving for reading the sample. When the body detection information is read, the user operates the bio-sensing device (2〇〇) to push the door (221), and the test piece (221) exits the test piece (1〇〇). The bio-sensing device (2〇〇) is externally [as shown in the fifth figure], and it is not necessary to take it out from the hand, nor to contact the body fluid collection hole (111), so unnecessary infection can be avoided. The shackle portion (141) of the test test piece substrate (140) and the keeper door (221) of the corresponding bio-sensing device (200) may be implemented in a horizontal type such as a vertical insertion direction (see the (Fig. 6), a slope type with a slope (see the sixth figure), the slope type stop portion 8 M333564 (141) is easily inserted into the slot (22〇) on both sides of the vertebra, and the test piece is further enhanced. Inserting the device speed, or it can be designed as either a concave type or a convex type, and the skilled person knows that the various types of shackles can be used to achieve the above-mentioned biosensing name. (2GG) The purpose of actively withdrawing the test piece outside the device is not to be described here.

以上所述者,僅為本創作之—可行實_的具體說明,並非用來 限定本創作實施之範圍。凡依本創作巾請專利範騎做的均等變化與 修飾,皆為本創作申請專利範 施例亦均屬摘彳钟請專利範圍 圍所/函盖,且在不變更本創作實質的實 9 M333564 【圖式簡單說明】 第一圖 本創作體液檢驗試片之立體示意圖。, 第二圖 本創作體液檢驗試片之分解示意圖。 第二A圖本創作體液檢驗試片之生物碳電路層結八公尸The above is only a specific description of the creation of the present invention, and is not intended to limit the scope of the implementation of this creation. All the changes and modifications made by the patent fan are required to be applied to the patent application. The application examples of the patent application are also excerpted from the scope of the patent, and the actual meaning of the creation is not changed. M333564 [Simple description of the diagram] The first picture is a three-dimensional diagram of the original body fluid test strip. , The second figure is an exploded view of the original body fluid test strip. The second A picture shows the bio-carbon circuit layer of the body fluid test strip.

意圖。 W 本創作體液檢驗試片與生物感測裝置接入立 口立體示思圖intention. W This body fluid test strip and bio-sensing device are connected to the stand stereoscopic diagram

層示 第三圖 第四圖 第五圖 第六圖 第七〜十 本創作體液檢驗試片***生物感測裝置一立 思圖。 本創作體液檢驗試片退出生物感㈣置 本創作體液檢驗試實施例之示意圖,。、思圖。 一圖本創作體液檢驗試片之生物碳路層料之_土 圖。 “不思、 【主要元件符號說明】The third diagram The fourth figure The fifth picture The sixth picture The seventh to the tenth of the creation of the body fluid test test piece inserted into the biological sensing device. The creation of the body fluid test piece withdraws from the biological sense (4). Thinking. A picture of the bio-carbon road layer of the body fluid test strip. "Do not think, [main component symbol description]

100體液檢驗試片 u〇上層板 111採集孔 12〇中層板 121虹吸 123通氣槽 U0生物碳電路層 1301金屬層 丨31採集接觸端 132量測接觸端 M333564 133偵測接觸端 140基板 141止擋部 200生物感測裝置 210電連接插頭 220插槽 221夾門 B 推桿100 body fluid test piece u〇 upper plate 111 collection hole 12〇 middle plate 121 siphon 123 vent groove U0 bio-carbon circuit layer 1301 metal layer 丨 31 collection contact end 132 measurement contact end M333564 133 detection contact end 140 substrate 141 stop The part 200 bio-sensing device 210 is electrically connected to the plug 220 slot 221 the door B push rod

Claims (1)

M333564 九、申請專利範圍: ~ L 一種體液檢驗試片構造,包括: ♦ 一上層板(110),該上層板(Π0)—端設有—採集孔(111)用以採集 體液; 一中層板(120),该中層板(120)—端設有一虹吸孔(121)用以吸入 採集體液,該中層板(120)虹吸孔(121)接合於該上層板(11〇)採集 孑L(111)的下方; 一生物碳電路層(130),該生物碳電路層(13〇)一端設有至少二個採 集接觸端(131),以及至少-偵測接觸端⑽),該生物碳電路層 (130)另一端設有複數個量測接觸端(132); 基板(140),泫基板(140)用以印刷上述生物碳電路層(13〇),且 基板(140)接合於中層板(120)的下方; 其中,該基板(140)—端兩側各設有一止擋部(ι41)。 2·如明求項1所述之體液檢驗試片構造,其中,該止擋部(mi)為與 ***方向垂直的水平型。 3. 如請求項1所述之體液檢驗試片構造,其中,該止擔部⑽)為與 ***方向有斜度的斜坡型。 4. 如請求項1所述之體液檢驗試片構造,其中,該止擋部⑽)為與 ***方向凹入型。 5. 如請求項1所述之體液檢驗試片構造,其中,該止撞部⑽)為與 ***方向凸出型。 /、 π求項1所述之體液檢驗試片構造,其中,該生物碳電路層⑴〇) 12 M333564 可進一步接合一金屬層(1301),以增加導電性。 7. 如請求項6所述之體液檢驗試片構造,其中,該金屬層(1301)係為 銀或金、銀、銅之任一種。 8. 如請求項1所述之體液檢驗試片構造,其中,中層板(120)進一步 包含一通氣槽(123),該通氣槽(123)垂直銜接所述虹吸孔(121)。M333564 IX. Patent application scope: ~ L A body fluid test test piece structure, including: ♦ an upper plate (110), the upper plate (Π0) is provided with a collecting hole (111) for collecting body fluid; a middle plate (120), the middle plate (120) is provided with a siphon hole (121) for sucking and collecting body fluid, and the middle plate (120) siphon hole (121) is joined to the upper plate (11〇) for collecting 孑L (111) a bio-carbon circuit layer (130) having at least two collection contact ends (131) and at least a detection contact end (10) at one end of the bio-carbon circuit layer (13〇), the bio-carbon circuit layer (130) the other end is provided with a plurality of measuring contact ends (132); a substrate (140), a germanium substrate (140) for printing the bio-carbon circuit layer (13A), and a substrate (140) bonded to the middle plate ( 120); wherein the substrate (140) is provided with a stop portion (ι 41) on each side of the end. 2. The body fluid test strip structure according to claim 1, wherein the stopper portion (mi) is a horizontal type perpendicular to the insertion direction. 3. The body fluid test strip structure according to claim 1, wherein the stop portion (10) is a slope type having a slope with respect to the insertion direction. 4. The body fluid test strip structure according to claim 1, wherein the stopper portion (10) is recessed in the insertion direction. 5. The body fluid test strip structure according to claim 1, wherein the stopper portion (10) is of a convex type with respect to the insertion direction. /, π, the fluid test strip structure of claim 1, wherein the bio-carbon circuit layer (1) 12 12 M333564 can further bond a metal layer (1301) to increase conductivity. 7. The body fluid test strip structure according to claim 6, wherein the metal layer (1301) is silver or any one of gold, silver and copper. 8. The body fluid test strip construction of claim 1, wherein the middle plate (120) further comprises a venting groove (123) that vertically engages the siphon hole (121).
TW96219570U 2007-11-20 2007-11-20 Structure of body fluid examination tester TWM333564U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW96219570U TWM333564U (en) 2007-11-20 2007-11-20 Structure of body fluid examination tester

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW96219570U TWM333564U (en) 2007-11-20 2007-11-20 Structure of body fluid examination tester

Publications (1)

Publication Number Publication Date
TWM333564U true TWM333564U (en) 2008-06-01

Family

ID=44326762

Family Applications (1)

Application Number Title Priority Date Filing Date
TW96219570U TWM333564U (en) 2007-11-20 2007-11-20 Structure of body fluid examination tester

Country Status (1)

Country Link
TW (1) TWM333564U (en)

Similar Documents

Publication Publication Date Title
TW200422612A (en) Strips for analyzing samples
US7488216B2 (en) Connector to receive blood test chips for use with a blood-substance measuring device
CN204542086U (en) A kind of intelligent detection and analysis system based on Internet of Things and cloud computing
JP2011050734A (en) Diagnostic test strip having fluid transport features
US9347909B2 (en) Sample-retainable biosensor test strip
CN101019764A (en) Pyloric helicobacter detecting method
US8771485B2 (en) Test strip
TWM333564U (en) Structure of body fluid examination tester
CN201090980Y (en) Body fluid inspecting test piece
US20140138244A1 (en) Test strip for a medical meter
CN108037295A (en) External blood-sugar detection sensor
JP2021170037A (en) Glucose testing device and method
Pollack et al. Where have all the dreiling tubes gone?
TWI329740B (en)
TWI425207B (en) Biochemical test strip
CN204890009U (en) Blood glucose meter
WO2014037011A1 (en) Blood sampling needle incorporating measuring capabilities
CN220961543U (en) Blood sugar test paper auxiliary sleeve for hemodialysis
US20220099654A1 (en) Interstitial fluid capture device and method of measuring electrolyte levels using same
TW201028689A (en) Urine inspection apparatus and method of the same
TWM507429U (en) Biochemical reaction detector
TWM304032U (en) Test strip for measurement of liquid
TWI568417B (en) Biochemical reaction cartridge
TWM442505U (en) Biological inspection testpiece
CN201404817Y (en) Special test-tube rack for urine sediment instrument