CN106290869A - The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework - Google Patents

The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework Download PDF

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Publication number
CN106290869A
CN106290869A CN201510254348.8A CN201510254348A CN106290869A CN 106290869 A CN106290869 A CN 106290869A CN 201510254348 A CN201510254348 A CN 201510254348A CN 106290869 A CN106290869 A CN 106290869A
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China
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micro
substrate
fluidic chip
controller used
sample introduction
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Inventor
李榕生
王家雨
冯小彬
王叶
何佳丽
朱云云
李天华
吴大珍
干宁
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Ningbo University
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Ningbo University
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/48Biological material, e.g. blood, urine; Haemocytometers
    • G01N33/50Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
    • G01N33/53Immunoassay; Biospecific binding assay; Materials therefor
    • G01N33/569Immunoassay; Biospecific binding assay; Materials therefor for microorganisms, e.g. protozoa, bacteria, viruses
    • G01N33/571Immunoassay; Biospecific binding assay; Materials therefor for microorganisms, e.g. protozoa, bacteria, viruses for venereal disease, e.g. syphilis, gonorrhoea
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/48Biological material, e.g. blood, urine; Haemocytometers
    • G01N33/50Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
    • G01N33/53Immunoassay; Biospecific binding assay; Materials therefor
    • G01N33/543Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals
    • G01N33/54306Solid-phase reaction mechanisms
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/48Biological material, e.g. blood, urine; Haemocytometers
    • G01N33/50Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing
    • G01N33/53Immunoassay; Biospecific binding assay; Materials therefor
    • G01N33/543Immunoassay; Biospecific binding assay; Materials therefor with an insoluble carrier for immobilising immunochemicals
    • G01N33/54393Improving reaction conditions or stability, e.g. by coating or irradiation of surface, by reduction of non-specific binding, by promotion of specific binding

Abstract

The present invention relates to the controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of a kind of easily-disassembled framework, belong to analysis field tests.A series difficult problem is there is to the substrate making controller used in syphilis diagnosis micro-fluidic chip with the polydimethylsiloxane i.e. PDMS inexpensively and easily processed;This case is for this series difficult problem.This case is characterized by, the PDMS with ecosystem surface selected by substrate, and the elastic clip of miniature ultrasonic transducer units will be attached on its clamping limb with elastic force snap-in location in sample its neighbor positions of liquid stream terminal of this micro-fluidic chip, interfacial tension is reduced with ultrasound wave, utilize the PDMS strong absorbability to ultrasound wave simultaneously, reach ultrasonic intensity rapid decrement in short distance, thus interfacial tension difference is formed at the two ends of this chip, this difference provides a kind of and drives the strength that sample liquid stream flows to this terminal direction along hydrophobic capillary channel, this strength and simultaneously intercoupling with its mechanicalness of Micropump pumping strength of comprising in structure, Collaboration.

Description

The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework
Technical field
The present invention relates to the controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of a kind of easily-disassembled framework, this micro fluidic device It is the special purpose device carrying out Diagnosis of Syphilis antigen based on antigen/antibody specific reaction, belongs to analysis field tests.
Background technology
Associated multi-channel micro-fluidic controller used in syphilis diagnosis technical background, may refer to CN 200910152141.4 application for a patent for invention such as grade Case.
Only for itself overall general picture of microflow control technique, may refer to famous micro-fluidic expert Mr. Lin Ping Cheng and go out not long ago Monograph " diagram Microfluid based Lab on a chip ", this monograph is published by Science Press, and this monograph is to microflow control technique Past, now, and, vision of the future etc. aspect, suffer from detailed, to be deep into detail long discussion.
So, the Important Problems that this case to be had a talk is paid close attention to.
The basic framework of micro-fluidic chip, including the substrate being etched with small fluid course and the cover plate fit together therewith, Small fluid course on described substrate, before fit on cover plate, apparent on see to be exactly some micro-channel, wait until thereon After covering cover plate, just real Guan Bi forms described small fluid course, and the conduit inner surface of this micro-channel is together with surround this The part cover plate of micro-channel constitutes described small fluid course together;So, it is clear that this after assembling completes is small Fluid course, the major part of its inner surface area is the inner surface area of that micro-channel, in other words, in this micro-channel The state on surface or character substantially determine integrality or the character of this small fluid course;Therefore saying, this builds at base Inner surface state or the inner surface character of the micro-channel on sheet are key factors;In principle, any can keep or substantially protect Hold the material of its solid forms, can be used to make substrate and cover plate, such as, it is possible to the material as substrate and cover plate is permissible It is monocrystalline silicon piece, piezoid, sheet glass, high polymer such as polydimethylsiloxane, polymethyl methacrylate, Merlon etc. Deng;Certainly, the selection of substrate can be identical with the selection of cover plate, it is also possible to differs;From material consumption, manufacture difficulty and From the point of view of application popularization prospect etc. aspect, there is the selection of the least difference, especially that substrate between these materials, impact is relatively Greatly.
In various substrates make material, polydimethylsiloxane, i.e. PDMS, the easiest molding, so Substrate on to make micro-channel extremely simple, and this lower cost for material, make substrate with this polydimethyl siloxane material, Suppress or etch micro-channel thereon, and the cover plate made with glass or the cheap material such as polypropylene or other plastic sheet matches, It is a kind of more satisfactory selection seemingly;Certainly, patch material can also select to use cheap polydimethyl siloxane material: So, this substrate selection is the scheme of polydimethyl siloxane material, and material is extremely cheap, makes extremely simple, seems and should also be as It is extremely easy to popularize, promote.
But, thing is really not so simply.
One, this polydimethyl siloxane material, the material that i.e. abbreviation letter PDMS is referred to, itself is a kind of strong Hydrophobic material, builds micro-channel on this material, if not carrying out the modified operation for this micro-channel surface, then, After entirety has been assembled, after i.e. covering cover plate, lead to because its inner surface of described micro-channel in structure occupies most liquid stream The inner surface in road, then, this its strong hydrophobic property of PDMS micro-channel inner surface, is deciding factor, and it can make class Be similar to aqueous solution the fine liquid stream of polar liquid by becoming the most difficult, its flow resistance is big, and the most general Micropump is all It is difficult to promote, certainly, if cover plate also selects to use this PDMS material, then, problem is substantially identical, similar; Therefore, among prior art, it is modified modifying particular for the micro-channel inner surface on this PDMS material, is necessary Operation;So, this operates pretty troublesome for the modification of PDMS micro-channel inner surface?That is not this problem, structure Become serious technical puzzlement, be another problem: the PDMS polymer molecule tool that this its body of PDMS material substrate is internal mutually Having the characteristic automatically diffusing to the surface, migrating, this substrate body internal PDMS polymer molecule mutually automatically diffuses to the surface, moves The characteristic moved, can not maintain foot by making the state after the modification of that its inner surface of micro-channel of surface modification modification The enough long time, holding time of its inner surface state of the micro-channel after that is surface-modified has substantially been only sufficient in laboratory The time of portion's test experiments needs;In other words, through this PDMS micro-channel inner surface that surface modification or surface are modified, its After modification or say the apparent condition formed after modification can not be lasting, but automatically tend to soon or say become surface again and change Apparent condition before property, returns to the most hydrophobic apparent condition of that script in relatively short period of time, then, just think, Such micro-fluidic chip can make in a large number, mass storage, be widely popularized, and answer is clearly, that is, it is impossible to. Micro-channel on this PDMS material, if not doing surface modification, the fine liquid stream of polar solvent being similar to aqueous solution cannot pump Sending and pass through, chip the most just cannot use;And if done surface modification, the state after cannot persistently keeping again it to modify, also It is equally cannot popularization and application.
So, how to accomplish to utilize cheap PDMS material to make substrate, and table in described micro-channel can be released Face decorating state cannot persistently, chip cannot make in a large number, lay in a large number and then be widely popularized and such a make this area numerous specially The puzzlement that industry personnel are entangled with for a long time, it is simply that the highly difficult problem that its obvious technology barrier can not be despised.
Having there are a lot of days in this highly difficult problem, up to now, is not yet properly settled.
Its two, the PDMS material of non-surface modification, above it is stated that, its surface is the most hydrophobic, this most hydrophobic Material surface and also another problem, that is, biomacromolecule can be adsorbed in the most hydrophobic this PDMS surface, and And, the depression that these adsorbed biomacromolecules also can be further on PDMS surface further, gradually falls into gradually deep, directly To the heavy body phase being trapped in PDMS substrate, in fact, this process, partly it is also due to PDMS material body internal mutually Polymer molecule have diffuse to the surface, travel motion is caused;This situation, it is also possible to explain from another angle, i.e. Internal to its diffusion into the surface, those polymer molecules of migration, the result of its motion mutually by PDMS body continuously, be by Within those gradually have been involved in the body phase of PDMS substrate by the biomacromolecule of surface adsorption, briefly, these are inhaled Attached biomacromolecule is swallowed up mutually by PDMS substrate body exactly;So, this PDMS substrate body swallows up biomacromolecule mutually Phenomenon, its impact caused, necessarily cause the severe deviations relating to all kinds of test data of experiment of biomacromolecule.
As it has been described above, the problem of PDMS substrate is, its not only surface adsorption biomacromolecule, and swallow up biomacromolecule, So, its disappearance of biomacromolecule as experiment test object will not stop because of the saturated absorption in surface, but, no Disconnected adsorbed, the most constantly swallowed up.
About PDMS substrate in related experiment test process its body the most constantly swallow up test associated biomolecule macromole phenomenon, separately A kind of explanation is to say, PDMS body mutually in there is substantial amounts of Minute pores, associated biomolecule macromole by after surface adsorption, depression Enter these Minute pores, and then swallowed up;But, inventor thinks, those can allow that the air of miniature scale divides Son clamp-ons described Minute pores therebetween, is not equal to them and also can directly allow that the biomacromolecule of relatively large yardstick enters, and two Person's difference on yardstick is huge, must not make sweeping generalizations.Bypass explanation, in any case, analyze the biology of object as dependence test Macromole is adsorbed by PDMS substrate micro-channel inner surface, and then is constantly swallowed up by PDMS substrate body phase, and this is known objective The phenomenon existed.
In order to stop the effect of swallowing up relative to biomacromolecule of this PDMS substrate body, can be from containment PDMS surface to life The absorption of thing macromole addresses, and way is aiming at this PDMS material surface and is chemically modified modification, for From the point of view of PDMS is the situation of substrate material, it is simply that the surface of described micro-channel part is chemically modified modification, Jing Guohua Learn the described micro-channel inner surface of modification, it is possible to contain its absorption to biomacromolecule, and then avoid biomacromolecule quilt PDMS substrate body is swallowed up mutually;But, or that old problem, that is, the chemical modification on PDMS material surface changes Apparent condition after property cannot persistently keep, the internal mutually polymer molecule of this PDMS substrate body its automatically diffuse to the surface, The process migrated, can become that again script strong through the micro-channel inner surface state that surface chemical modification is modified soon and dredge Water and the state of strong adsorption biomacromolecule, in other words, no matter how professionals in the field turn from side to side, this PDMS Its micro-channel inner surface of substrate is the most rapidly to strong hydrophobic surface state evolution.
So, how can either obtain that PDMS material price is the cheapest, substrate makes extremely easy benefit, can reach again Growth stage contains this PDMS substrate micro-channel inner surface absorption process to biomacromolecule, and then stops PDMS substrate body phase The effect of swallowing up to biomacromolecule so that related chip manufactured goods are able to maintain that a shelf-life the most long, rational, It it is exactly a difficult problem the most thorny.This difficult problem, as another difficult problem addressed above, makes the numerous specialty in this area equally Personnel are entangled with for a long time, perplex, and this difficult problem is the highly difficult problem that its obvious technology barrier can not be despised equally.This difficulty Having there are a lot of days in topic, up to now, is the most not yet properly settled.
Its three, as it has been described above, this PDMS micro-channel inner surface is the most hydrophobic, and surface chemical modification targetedly or come to the surface Learning to modify is difficult to again persistently, therefore, actual can only still belong to the shortest in the apparent condition after its surface modification or surface are modified It is used within phase;If have passed through that ofer short duration expiry date, and if using by force, due to surface shape State, the most again near hydrophobic state, uses usual Micropump to drive sample liquid stream then to certainly exist bigger flow resistance, So, just test liquid can only be forced to flow to target direction flowing by strengthening Micropump pump power and pumping pressure, as it has been described above, This PDMS material is soft, pumps sample liquid stream with pumping pressure too high, machinery, and it enters will to cause this substrate Sample end include sample introduction end near zone described micro-channel generation bubbling, expanded, distort, deform, and, this high-pressure situations Under, it is in this sample introduction end and the micro-channel of near zone thereof and periphery is also susceptible to the stripping between substrate and cover plate, these feelings Under shape, sample solution will enter the crack of the appearance between substrate and the cover plate formed after described stripping and flow over everywhere, and this is real Border causes the damage of this micro-fluidic chip;Certainly, if this surface modification or surface are modified the most not in place, also result in Within of short duration usual effect duration, said circumstances occurs;In the case of the additional Micropump of simple employing carries out liquid stream driving, above-mentioned This problem exists all the time.If as it has been described above, entirely without doing the pre actions such as any described surface modification or surface modification, So, this problem above-mentioned by even more serious, even without occur micro-channel bubbling described in sample introduction end and near zone thereof, expanded, Distortion, the problem such as stripping between deformation and substrate and cover plate, merely because this flow resistance is excessive, use high pressure Micropump the most not Sample liquid stream must be driven to march forward towards terminal side.
Summary of the invention
The technical problem to be solved is to provide a package solution, solves three addressed above simultaneously The a series of difficult problem the most mutually involved together of aspect, and, this solution is applied to controller used in syphilis diagnosis manifold Micro-fluidic chip field, road, forms a kind of novel controller used in syphilis diagnosis multichannel micro-fluidic device.
The present invention solves described technical problem by following scheme, and the device that the program provides is that the double of a kind of easily-disassembled framework drive The controller used in syphilis diagnosis micro fluidic device of dynamic CGCM, the structure of this micro fluidic device includes multichannel micro-fluidic chip, this miniflow The structure of control chip includes bonded to each other being installed in substrate together and cover plate, and described substrate and cover plate are plate object or lamellar Thing, the channel structure formed via mould pressing process or etching technics is contained in that face towards this cover plate of this substrate, bonded to each other This substrate being installed together and this cover plate have been built into the micro-fluidic chip containing pipeline configuration jointly, the locations of structures of this pipeline Be positioned at the juncture area that this substrate is bonded to each other with this cover plate, the two ends of this pipeline respectively with the sample introduction end of this micro-fluidic chip and Terminal connects, and this sample introduction end is the injection end of this micro-fluidic chip sample solution, and this terminal is that the actual sample introduction of this micro-fluidic chip is surveyed The terminal of sample solution flowing in its chip during examination, this terminal is located remotely from each other with this sample introduction end, between this terminal and this sample introduction end Distance between 3 centimetres and 10 centimetres, be sequentially equiped with on diverse location in this pipeline working electrode and to electrode with And reference electrode, described working electrode is resisted by conductive electrode and the syphilis specific that embedded that is attached on this conductive electrode The gold size sensitive membrane of body is constituted, and the structure of this pipeline is parallel construction, and the described pipeline in parallel construction is by four laterals also Connection is constituted, and the quantity of described working electrode is four, and the installation position of these four working electrodes lays respectively at described four branched pipes In road, and, the specific antibody in its top layer gold size sensitive membrane structure of these four working electrodes is can be special to Treponema pallidum antigen respectively Four kinds of anisogamy syphilis antibody materials, these four kinds of antibody materials be respectively syphilis specific antibody TP0684, TP0453, TP0821 and TP0319, its material of described working electrode is gold material or thermal decomposition conducting polymer material, described work electricity Extremely pattern presents lamellar or thread, it is important that, its material of this substrate is polydimethylsiloxane material, and its surface of this substrate is The surface of primary form, the surface of this primary form its be intended to refer to not through any surface chemical modification or any come to the surface Learning the surface of the primary form of this modified material, the structure of this device also includes elastic clip, two folders in opposite directions of this elastic clip Gripping arm snap-in location, in the position of the neighbouring described terminal of this micro-fluidic chip, a described clamping limb at least in attaches Fix and be equiped with miniature ultrasonic transducer units, and, higher-order of oscillation electric signal transmission cable, this higher-order of oscillation electric signal transmission electricity One end of cable links together with this miniature ultrasonic transducer units;This elastic clip provides a function facilitating this device to disassemble; Its major function of this miniature ultrasonic transducer units is when the actual sample introduction of micro-fluidic chip is tested, and utilizes its ultrasound wave launched Reduce the interfacial tension between sample solution and the inwall of this its inner passage of micro-fluidic chip so that it is can be compatible, and, profit With the distance difference between described sample introduction end and described terminal and this miniature ultrasonic transducer units installation position and its experienced To ultrasonic intensity on difference, difference between its interfacial tension of sample introduction end and its interfacial tension of described terminal described in induced synthesis Different, the interfacial tension difference between these two ends of this micro-fluidic chip can form pressure differential between these two ends of this micro-fluidic chip Different, this pressure gap can drive sample solution to described end flow;Its function of this miniature ultrasonic transducer units also includes with its institute The ultrasound wave launched checks its suction on its inner passage inner surface of this micro-fluidic chip of biomacromolecule contained in sample Attached, and then check its body of the substrate effect of swallowing up relative to this biomacromolecule of this polydimethylsiloxane material;Softness also has bullet Its function of substrate of this polydimethylsiloxane material of property includes, with the character of its absorption strong to ultrasound wave, carrying out ultrasound wave Strong absorb, and it is strong thereby to realize ultrasound wave within limited short distance between this terminal of this micro-fluidic chip to this sample introduction end The rapid decrement of degree;And, Micropump, this Micropump is connected with this sample introduction end;The function of this Micropump is, this sample solution with should Before interfacial tension between the inwall of its inner passage of micro-fluidic chip is reduced by this ul-trasonic irradiation, the alternate compatibility increases Under the conditions of carrying, with the mechanicalness of this Micropump pump strength come the interfacial tension difference between the described two ends of this ultrasound wave induction its The driving force brought is supported mutually, adjusts mutually, is mutually coupled, and pools one and drive sample in the way of Collaboration The strength that liquid stream flows to described terminal direction.
Described miniature ultrasonic transducer units can certainly be all installed on two clamping limbs;But, only installing one is miniature Ultrasonic transducer is the most enough dealt with and is employed.
Itself art-recognized meanings of elastic clip one word is known.
Itself art-recognized meanings of described Micropump one word is known for the professional in micro-fluidic chip field.
Described Micropump both can be with the Micropump being external form;This Micropump can also be to do into or say inside this micro-fluidic chip of embedding The Micropump of the built in version of its sample introduction end structure position or this sample introduction end Near-neighbor Structure position.
Piezoelectric pump, miniature peristaltic pump or the miniature air driven pump that described Micropump is the most miniature.
Described gold size sensitive membrane is chitosan gold size solution and syphilis specific antibody-solutions to be sufficiently mixed uniformly, uses point sample instrument Point sample or coat specified structure position, and make its drying and forming-film form.Syphilis specific antibody in described gold size sensitive membrane is equal For horseradish peroxidase or the syphilis antibody of glucose oxidase labelling, described gold size sensitive membrane be included as fixing above-mentioned respectively Syphilis specific antibody and introduce complementary medium therein, described complementary medium such as chitosan, cellulose acetate, gelatin Therein a kind of or their mixture.
Described pipeline in described microfluidic chip structure includes described lateral, and its internal diameter size may each be arbitrarily selected Size, but, for as far as possible less with liquid sample to be measured and the consideration that reduces the aspects such as reagent loss, described in described pipeline includes Lateral the most all selects the passage of capillary level, the passage of described capillary level to imply that its internal diameter and the capillary on ordinary meaning The passage that the internal diameter of pipe is suitable.The shape of cross section of described its inner passage of capillary tube can be arbitrary shape, described cross section Shape is the most circular, oval, square, rectangle, bar shaped, naturally it is also possible to be arbitrary to there is the linear of bending, and, The interior shape of described capillary tube is along with the extension of pipeline, and the shape of cross section of different parts can also allow to be different shapes. Only for capillary tube one word, its art-recognized meanings is known.
Relate in structure is minute sized electrode to electrode and reference electrode, and its electrode shape may each be arbitrarily choosing Fixed shape, described arbitrarily selected shape such as square piece shape, rectangular patch, strip or round sheet etc..Described to electricity Itself the art-recognized meanings of vocabulary of pole and described reference electrode is known.
Only for itself the art-recognized meanings of the ultrasonic transducer one word professional for ultrasonic technology field, it is public Know.
Various sizes, variously-shaped ultrasonic transducer are commercially available;Its size of commercially available miniature ultrasonic transducer units is permissible Little to the magnitude only calculated with millimeter.
Only with regard to its technique for fixing on general industry application solid body surface of miniature ultrasonic transducer units itself and Speech, for the professional in ultrasonic technology field, is known general technology.This is not launched superfluous words by this case.
Only itself micro-channel of naked PDMS substrate is molded or for lithographic technique, be open-and-shut known technology.
The industrial products market of involved higher-order of oscillation electric signal its all size of transmission cable is the most on sale.
The structure of this micro fluidic device can also include higher-order of oscillation electric signal generator;Described higher-order of oscillation electric signal transmission electricity Its other end of cable can be connected with this higher-order of oscillation electric signal generator.
Itself technology of involved higher-order of oscillation electric signal generator, for the professional in ultrasonic technology field, be Simple and known;Described higher-order of oscillation electric signal generator can customize to ultrasonic instrument specialized factory.
The preferred scope of its specified ultrasonic emitting power of this miniature ultrasonic transducer units be between 5 milliwatts and 5000 milliwatts it Between;The preferred scope of the frequency of its ultrasound wave operationally launched of this miniature ultrasonic transducer units be between 100KHz with Between 12MHz.
This case device can further include some adnexaes certainly, described adnexa such as multiple tracks electrochemical workstation etc., institute The art-recognized meanings stating multiple tracks electrochemical workstation is known.Each working electrode of relating in this case microfluidic chip structure and To electrode and reference electrode etc., can be respectively via the most special the corresponding interface got lines crossed with described multiple tracks electrochemical workstation Couple.Described special each the corresponding interface being used to each described electrode with described multiple tracks electrochemical workstation of getting lines crossed is carrying out phase The private cable being mutually coupled with.Described micro-fluidic chip in this case device, its structure can also include micro-valve, the number of described micro-valve Amount does not limits, according to actual needs, and any need position to be mounted that described micro-valve can be installed in this microfluidic chip structure; This micro-valve one word is for the professional of micro fluidic chip technical field, and the art-recognized meanings of itself is known;This micro-valve The manufacturing technology of itself and use technology are also known;This optional component of micro-valve.
The diameter of described working electrode can allow the suitable diameter being easily installed use being arbitrarily set, it is however recommended to Or say preferred its scope of described diameter between 0.1 micron to 2000 micron;The length of described working electrode can permit Permitted the length being easily installed use being arbitrarily set, it is however recommended to or to say preferred its scope of described length be at 1 micron Between 15000 microns.
The described gold size being installed in described working electrode surface layer by spraying or point sample instrument point sample or the coating of other appropriate process is quick Sense film, its thicknesses of layers can allow the thickness that the sample measuring liquid the treated generation electrical signals being arbitrarily set responds, but, push away The thickness recommended the most preferably thickness is between 10 nanometers and 200 nanometers.
Described cover plate in chip structure, its material can allow to be any electrical insulating property material, such as: polypropylene, glass Glass, polymethyl methacrylate, polydimethylsiloxane, etc., in order to make smaller size of micro-fluidic chip, such as do Become the micro-fluidic chip of the super-small of length only 2.0 centimetres to 3.0 centimetres, and realize ultrasound wave in the distance that this is extremely short Extremely fast decay, it may be preferred to polydimethylsiloxane is used as cover plate.Certainly, large-sized micro-fluidic chip selects Use polydimethylsiloxane to be used as described cover plate, be also that this case technical scheme is allowed.
Described cover plate and its thickness of substrate can allow the thickness being easy to assembling being arbitrarily set, it is recommended that thickness or say preferably Thickness be between 1.0 millimeters and 5.0 millimeters.Less thickness is conducive to saving material.
The using method of this case micro-fluidic chip:
This case drives liquid stream to flow in the capillary channel of this four-way micro-fluidic chip with described Dual Drive coupling operating mode, Four-way electrochemical analytical instrument is utilized respectively four kinds of controller used in syphilis diagnosis antigens to be detected.
The concrete detection of this case micro-fluidic chip uses step as follows:
1, adding blood serum sample liquid in micro-pipeline, under described Dual Drive coupling operating mode drives, various Treponema pallidum antigen divide Son is by the syphilis specific antibody of the corresponding horseradish peroxidase-labeled of gold size sensitive membrane embedding on electrode surface in each passage Capture.
2, the syphilis specific antibody of horseradish peroxidase-labeled forms immune complex with the Treponema pallidum antigen in blood serum sample.
3, use multi-channel electrochemical analyzer, add the electron mediators such as catechol, use the above-mentioned reaction of amperometric detection The curent change caused, is derived from kind and the content of various analyte.
4, result is comprehensively analyzed, Treponema pallidum antigen is carried out comprehensive diagnos.
It is an advantage of the invention that at elastic clip described in its close position snap-in location of described terminal of described micro-fluidic chip, with Being attached the miniature ultrasonic transducer units installed on the clamping limb of this elastic clip, it is launched to utilize this miniature ultrasonic transducer units Low-power, the ultrasound wave of high-frequency band so that without this most hydrophobic micro-fluidic chip internal pipeline of surface chemical modification The compatibility between its tube wall and test object water solution is significantly increased, and what this was sample liquid stream is possible by providing a reality Property;Meanwhile, its strong absorbability to ultrasound wave of polydimethylsiloxane substrate is utilized, in comparatively short distance, the most just It is, in the shortest distance of the only several centimeters yardstick from described terminal to described sample introduction end, to reach the quick of ultrasonic intensity Successively decreasing, thereby the difference of described interfacial tension is caused at the described two ends at this micro-fluidic chip, the interfacial tension between these two ends Difference can cause a kind of driving force, and its function of driving force that this kind causes because of interfacial tension difference is to drive sample liquid stream to exist Flow to described terminal direction in the most hydrophobic capillary channel;And simultaneous described Micropump in structure, its function It is that the interfacial tension between the inwall of this sample solution and this its inner passage of micro-fluidic chip is dropped by this ul-trasonic irradiation Under the precondition that the compatibility low, alternate increases, pump strength with the mechanicalness of this Micropump and come and described the two of the induction of this ultrasound wave Its driving force brought of interfacial tension difference between end is supported mutually, adjusts mutually, is mutually coupled, with Collaboration Mode pools one and drives test liquid to flow to the strength of described terminal direction flowing;The existence of this Micropump so that this miniature ultrasonic Its ultrasonic emitting intensity of wave transducer can be allowed to appropriateness reduction, and this is for containing ultrasound wave sensitive composition in detection object Situation is particularly suitable for;And due to this ultrasonic transducer and the existence of radiated ultrasound wave thereof, it is possible to increase the alternate compatibility, fall Low interfacial tension, and provide this two ends interfacial tension difference its special driving force brought, then, in this case, Its flow resistance in this micro-channel of sample liquid stream is greatly reduced, and correspondingly, its running resistance of this Micropump is greatly reduced, so, This Micropump just can be to carry out the pumping work for described sample solution than relatively low pumping pressure, due to mechanical pumping Pressure is greatly reduced, and therefore, in such a situation, is just not susceptible to cause because sample introduction terminal tool pumping pressure is excessive Described sample introduction end and the described micro-channel bubbling of near zone thereof, expand, deform, distort and between this region substrate and cover plate Stripping etc. problem;This Dual Drive of this case couples the scheme of running and adds the manipulation for this sample fluid flow action Property, it is possible to allow to use ultrasonic intensity, ultrasonic frequency, Micropump pump power, Micropump pumping pressure etc. multiple indexs Flow rate, flowing action for this flowing include that flow forward or time-out flowing or acceleration flowing etc. flowing action carry out many Parameter accurately manipulates;By the scheme of this Dual Drive of this case coupling running, entirely without must be to the base of this polydimethylsiloxane material Its micro-channel of sheet etc. relevant surfaces carries out any surface chemical modification or surface chemical modification, has altogether dispensed with this surface chemistry Modify or the laborious procedures of surface chemical modification;On the other hand, the ultrasound wave of this low-power, high-frequency band, additionally it is possible to containment examination The absorption on this literalness naked its inner surface of pipeline of polydimethylsiloxane substrate of the biomacromolecule in sample, and then containment The effect of swallowing up of this polydimethylsiloxane substrate the most described biomacromolecule of its body;Described antigen, antibody and antigen are with anti- The Reversible binding thing of body is the most all belonging to the type of described biomacromolecule;Due to described adsorption and described gulping down No effect is not contained effectively, and therefore, dependence test result will be better able to reflect practical situation objectively;This low-power, height Again and again the effect of section ultrasound wave, the most also includes facilitating what the Reversible binding between antigen, antibody reacted quickly to reach, and this makes Dependence test operation can be to complete than speed faster.
As it has been described above, the existence of this Micropump so that its ultrasonic emitting intensity of this miniature ultrasonic transducer units can be allowed to fit Degree reduces, then, this feature contributes to protecting its sensitive coating of described working electrode, is allowed to from ultrasound injury.
Based on this case scheme, completely without carrying out repairing for the surface chemistry of this polydimethylsiloxane its relevant surfaces of substrate Decorations or surface chemical modification operation, therefore, this surface chemical modification layer or surface chemical modification layer not need to exist, So, its body phase interior polymeric thing molecule of this polydimethylsiloxane substrate the most automatically diffuses to the surface, migrates what it was caused The damaging influence of described surface chemical modification layer or surface chemical modification layer is not existed.
The technical scheme of this case has dissolved relevant to its application of polydimethylsiloxane substrate addressed above totally Row technical barrier.Based on this case scheme, this kind the most inexpensively and easily polydimethyl siloxane material of processing and fabricating just has can Can at this micro-fluidic chip, it be prepared, produces, application etc. field plays bigger effect.
Fix on its clamping limb of this elastic clip in this case structure and installed described miniature ultrasonic transducer units, this architecture provides One facilitates the function that this device is disassembled, and so, this elastic clip just can facilitate together with miniature ultrasonic transducer units appended on it Ground is mutually disengaged with this micro-fluidic chip, then, the component that this part can freely depart from just can be reused perhaps with circulating benignly Repeatedly;This architectural feature is conducive to saving the use cost of this device.
Accompanying drawing explanation
Fig. 1 is its rough outside side view of this device of this case.
In figure, 1 is elastic clip, and 2,7 is two clamping limbs of elastic clip respectively, and 3 is the described terminal of this micro-fluidic chip, 4 is the described sample introduction end of this micro-fluidic chip, and 5 is the substrate of polydimethylsiloxane material, and 6 is cover plate, and 8 is miniature super Acoustic wave transducer, 9 is higher-order of oscillation electric signal transmission cable, and 10 is tension spring, and 11 is infusion tube, and 12 is Micropump; This spring clamp structure in legend is only the legend structure of signal, and actual spring clamp structure is not limited to this legend spring clamp structure;Figure Arrow in example indicate this micro-fluidic chip its when actual motion, driven by pressure at two ends difference, the flowing of its sample liquid stream Direction.
Detailed description of the invention
In this embodiment of this case that Fig. 1 is shown, the structure of this micro fluidic device includes multichannel micro-fluidic chip, and this is micro- The structure of fluidic chip includes bonded to each other being installed in substrate 5 together and cover plate 6, and described substrate 5 and cover plate 6 are tabular Thing or tablet, the conduit knot formed via mould pressing process or etching technics is contained in that face towards this cover plate 6 of this substrate 5 Structure, this substrate 5 being installed together bonded to each other has been built into the micro-fluidic chip containing pipeline configuration jointly with this cover plate 6, The locations of structures of this pipeline is positioned at the juncture area that this substrate 5 is bonded to each other with this cover plate 6, and the two ends of this pipeline are micro-with this respectively Sample introduction end 4 and the terminal 3 of fluidic chip connect, and this sample introduction end 4 is the injection end of this micro-fluidic chip sample solution, and this is eventually The terminal of sample solution flowing in its chip, this terminal 3 and this sample introduction end 4 when end 3 is the test of this micro-fluidic chip actual sample introduction Being located remotely from each other, the distance between this terminal 3 and this sample introduction end 4 is between 3 centimetres and 10 centimetres, different in this pipeline Sequentially being equiped with working electrode on position and to electrode and reference electrode, described working electrode is by conductive electrode and attaching The gold size sensitive membrane having embedded syphilis specific antibody on this conductive electrode is constituted, and the structure of this pipeline is parallel construction, The described pipeline in parallel construction is made up of four lateral parallel connections, and the quantity of described working electrode is four, these four work The installation position of electrode lays respectively in described four laterals, and, its top layer gold size sensitive membrane knot of these four working electrodes Specific antibody in structure is four kinds of syphilis antibody materials that can be specific binding to Treponema pallidum antigen respectively, and these four kinds of antibody materials divide Not being syphilis specific antibody TP0684, TP0453, TP0821 and TP0319, its material of described working electrode is gold material Or thermal decomposition conducting polymer material, its pattern of described working electrode presents lamellar or thread, it is important that, this its material of substrate 5 Being polydimethylsiloxane material, this its surface of substrate 5 is the surface of primary form, the surface of this primary form its be meant to It is not through the surface of primary form of this material of any surface chemical modification or any surface chemical modification, the knot of this device Structure also includes elastic clip 1, neighbouring at this micro-fluidic chip of two of this elastic clip 1 clamping limb 2,7 snap-in location in opposite directions The position of described terminal 3, on a described clamping limb at least in, attaching is fixing is equiped with miniature ultrasonic transducer units, this In example, this miniature ultrasonic transducer units 8 is fixed on clamping limb 7 by attaching, and, higher-order of oscillation electric signal transmission cable 9, One end of this higher-order of oscillation electric signal transmission cable 9 links together with this miniature ultrasonic transducer units 8;Can also be at two folders Fix installing miniature ultrasonic transducer units in gripping arm 2,7 the most respectively, but in general, only install micro-on a clamping limb Type ultrasonic transducer just be enough to deal with use needs, and this elastic clip 1 provides a function facilitating this device to disassemble;This is micro- Its major function of type ultrasonic transducer 8 is when the actual sample introduction of micro-fluidic chip is tested, and utilizes its ultrasound wave launched to drop Interfacial tension between the inwall of low sample solution and this its inner passage of micro-fluidic chip so that it is can be compatible, and, utilize Distance difference between described sample introduction end 4 and described terminal 3 and this miniature ultrasonic transducer units 8 installation position and its felt The difference on ultrasonic intensity being subject to, its interfacial tension of sample introduction end 4 described in induced synthesis and described its interfacial tension of terminal 3 it Between difference, the interfacial tension difference between these two ends 3,4 of this micro-fluidic chip can be at these two ends 3,4 of this micro-fluidic chip Between formed pressure gap, this pressure gap can drive sample solution to flow to described terminal 3 direction;This miniature ultrasonic transducing Its function of device 8 also include with its ultrasound wave launched check in sample contained biomacromolecule its at this micro-fluidic chip Absorption on its inner passage inner surface, and then big relative to this biology point of its body of substrate 5 checking this polydimethylsiloxane material The effect of swallowing up of son;Soft and this polydimethylsiloxane material of having elasticity its function of substrate 5 includes with it strong to ultrasound wave The character of strong absorption, absorbs strongly to ultrasound wave, and thereby between this terminal 3 of this micro-fluidic chip to this sample introduction end 4 Limited short distance within realize the rapid decrement of ultrasonic intensity;And, Micropump 12, this Micropump 12 and this sample introduction end 4 Connect;The function of this Micropump 12 is, the interface between the inwall of this sample solution and this its inner passage of micro-fluidic chip is opened Under the precondition that power is reduced by this ul-trasonic irradiation, the alternate compatibility increases, pump strength with the mechanicalness of this Micropump 12 Its driving force brought of interfacial tension difference come between the described two ends 3,4 of this ultrasound wave induction is supported mutually, mutually Adjust mutually, be mutually coupled, in the way of Collaboration, pool one drive test liquid to flow to the power of described terminal 3 direction flowing Amount.
Arrow in legend indicate this micro-fluidic chip its when actual motion, driven by two ends 3,4 pressure differential, its examination The flow direction of sample liquid stream.
Fig. 1 is depicted without the associate members such as described higher-order of oscillation electric signal generator.
Described Micropump 12 can customize to specialized factory.
Involved elastic clip 1 is commercially available.Be available for this case structure use commercially available alternative spring clamp structure and moulding and Size etc., quality is various, and concrete elastic clip pattern can be selected as required.
Involved miniature ultrasonic transducer units 8 is commercially available;Can also customize to ultrasonic transducer producer.
Involved higher-order of oscillation electric signal transmission cable 9 is commercially available;Can also be to ultrasonic transducer producer or cable special manufacturer Family's customization.
Involved higher-order of oscillation electric signal generator market has the product close to needs commercially available;Can also customize to relevant manufacturers.
Involved its inner passage of this micro-fluidic chip of this case is the pipeline of hydrophobic capillary tube form.
Described Micropump both can be with the Micropump being external form;This Micropump can also be to do into or say inside this micro-fluidic chip of embedding The Micropump of the built in version of its sample introduction end structure position or this sample introduction end Near-neighbor Structure position.Micropump in legend is external form Micropump;This Micropump can certainly do into or say the embedding internal sample introduction end of this microfluidic chip structure or its Near-neighbor Structure position The Micropump of described built in version, its basic structure key element is identical with the Micropump of external form.
Each working electrode in this example structure and can be respectively via the most special cable or say to electrode and reference electrode Get lines crossed respectively with the corresponding cable interface of the multiple tracks electrochemical workstation as adnexa or say interface of getting lines crossed and couple.

Claims (10)

  1. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of the most easily-disassembled framework, the structure of this micro fluidic device includes many Channel microfluidic chip, the structure of this micro-fluidic chip includes substrate together and the cover plate of being installed in bonded to each other, described substrate and Cover plate is plate object or tablet, and that face towards this cover plate of this substrate is contained via mould pressing process or etching technics formation Channel structure, this substrate being installed together bonded to each other and this cover plate have been built into the micro-fluidic core containing pipeline configuration jointly Sheet, the locations of structures of this pipeline is positioned at the juncture area that this substrate is bonded to each other with this cover plate, and the two ends of this pipeline are micro-with this respectively The sample introduction end of fluidic chip and terminal connect, and this sample introduction end is the injection end of this micro-fluidic chip sample solution, and this terminal is this The terminal of sample solution flowing in its chip during the test of micro-fluidic chip actual sample introduction, this terminal is located remotely from each other with this sample introduction end, should Distance between terminal and this sample introduction end, between 3 centimetres and 10 centimetres, is sequentially equiped with on diverse location in this pipeline Working electrode and to electrode and reference electrode, described working electrode is by conductive electrode and is attached on this conductive electrode The gold size sensitive membrane having embedded syphilis specific antibody constitute, the structure of this pipeline is parallel construction, described in parallel construction Pipeline is made up of four lateral parallel connections, and the quantity of described working electrode is four, and the installation position of these four working electrodes divides It is not positioned at described four laterals, and, the specific antibody in its top layer gold size sensitive membrane structure of these four working electrodes Being the four kind syphilis antibody materials specific binding to Treponema pallidum antigen energy respectively, these four kinds of antibody materials are that syphilis specific resists respectively Body TP0684, TP0453, TP0821 and TP0319, its material of described working electrode is gold material or thermal decomposition conductive polymer Sub-material, its pattern of described working electrode presents lamellar or thread, it is characterised in that its material of this substrate is polydimethylsiloxanes Alkane material, its surface of this substrate is the surface of primary form, the surface of this primary form its be intended to refer to not through any table The surface of the primary form of this material of face chemical modification or any surface chemical modification, the structure of this device also includes elastic clip, Two of this elastic clip clamping limb snap-in location in opposite directions is in the position of the neighbouring described terminal of this micro-fluidic chip, at least in A described clamping limb on attach and fixing be equiped with miniature ultrasonic transducer units, and, higher-order of oscillation electric signal transmission cable, One end of this higher-order of oscillation electric signal transmission cable links together with this miniature ultrasonic transducer units;This elastic clip provides one Facilitate the function that this device is disassembled;Its major function of this miniature ultrasonic transducer units is when the actual sample introduction of micro-fluidic chip is tested, Utilize its ultrasound wave launched to reduce the interfacial tension between the inwall of sample solution and this its inner passage of micro-fluidic chip, Can be compatible, and, utilize between described sample introduction end and described terminal and this miniature ultrasonic transducer units installation position Difference in distance difference and its ultrasonic intensity experienced, its interfacial tension of sample introduction end described in induced synthesis and described end Holding the difference between its interfacial tension, the interfacial tension difference between these two ends of this micro-fluidic chip can being somebody's turn to do at this micro-fluidic chip Forming pressure gap between two ends, this pressure gap can drive sample solution to described end flow;This miniature ultrasonic transducer units Its function also include with its ultrasound wave launched check in sample contained biomacromolecule its at this micro-fluidic chip in it Absorption on portion's channel inner surface, and then check its body gulping down relative to this biomacromolecule of substrate of this polydimethylsiloxane material No effect;Soft and this polydimethylsiloxane material of having elasticity its function of substrate includes with its absorption strong to ultrasound wave Character, absorbs strongly to ultrasound wave, and thereby limited short distance between this terminal of this micro-fluidic chip to this sample introduction end The rapid decrement of ultrasonic intensity is realized within from;And, Micropump, this Micropump is connected with this sample introduction end;The function of this Micropump is, Interfacial tension between this sample solution with the inwall of this its inner passage of micro-fluidic chip is reduced by this ul-trasonic irradiation, phase Between under the precondition that increases of the compatibility, pump strength with the mechanicalness of this Micropump and come between the described two ends of this ultrasound wave induction Its driving force brought of interfacial tension difference support mutually, adjust mutually, be mutually coupled, converge in the way of Collaboration Being polymerized to one drives test liquid to flow to the strength of described terminal direction flowing.
  2. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, described pipeline includes that described lateral is capillary channel.
  3. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, described thermal decomposition conducting polymer is the electric conductivity material formed after anoxybiotic heat treatment by polyimides or polyacrylonitrile Material.
  4. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levy and be, the width of described working electrode or diameter between 0.1 micron to 2000 micron, and, described working electrode Length between 1 micron to 15000 micron.
  5. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, the thickness of described gold size sensitive membrane is between 10 nanometers and 200 nanometers.
  6. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, its material of described cover plate in structure is polydimethylsiloxane material.
  7. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, described Micropump is miniature piezoelectric pump, miniature peristaltic pump or miniature air driven pump.
  8. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, described cover plate in structure and its thickness of substrate are all between 1.0 millimeters and 5.0 millimeters.
  9. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, the structure of this micro fluidic device also includes higher-order of oscillation electric signal generator, described higher-order of oscillation electric signal transmission cable Its other end is connected with this higher-order of oscillation electric signal generator.
  10. The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework the most according to claim 1, it is special Levying and be, its specified ultrasonic emitting power of this miniature ultrasonic transducer units is between 5 milliwatts and 5000 milliwatts, and this is miniature The frequency of its ultrasound wave operationally launched of ultrasonic transducer is between 100KHz and 12MHz.
CN201510254348.8A 2015-05-11 2015-05-11 The controller used in syphilis diagnosis micro fluidic device of the Dual Drive CGCM of easily-disassembled framework Pending CN106290869A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106290870A (en) * 2015-05-26 2017-01-04 宁波大学 Dual Drive for hydrophobic substrate couples the controller used in syphilis diagnosis Multichannel device of running
CN106556709A (en) * 2015-09-24 2017-04-05 宁波大学 The micro flow control chip device comprising hydrophobic substrate of coupling Dual Drive pattern

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007120166A3 (en) * 2005-07-11 2008-12-04 Univ Florida Miniaturized in vitro protein expression array
CN101581724A (en) * 2009-06-19 2009-11-18 宁波大学 Special multichannel syphilis diagnosis device combined with quasi-one-dimensional specific antigen modified electrodes
CN101587124A (en) * 2009-07-12 2009-11-25 宁波大学 Micro-fluidic chip special for diagnosing syphilis by aid of organic conductor material technology
CN202146639U (en) * 2011-05-12 2012-02-22 内蒙古科技大学包头医学院 External clip type Soxhlet extraction ultrasonic accelerator
CN102645429A (en) * 2012-04-23 2012-08-22 宁波大学 Self-cleaning and vibration wave energy digestion link containing electrogenerated chemiluminescence analyzing and detecting device
CN103505774A (en) * 2013-10-24 2014-01-15 南京市秦淮医院 Ultrasonic transfusion alarm
WO2015002975A1 (en) * 2013-07-05 2015-01-08 University Of Washington Through Its Center For Commercialization Methods, compositions and systems for microfluidic assays

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007120166A3 (en) * 2005-07-11 2008-12-04 Univ Florida Miniaturized in vitro protein expression array
CN101581724A (en) * 2009-06-19 2009-11-18 宁波大学 Special multichannel syphilis diagnosis device combined with quasi-one-dimensional specific antigen modified electrodes
CN101587124A (en) * 2009-07-12 2009-11-25 宁波大学 Micro-fluidic chip special for diagnosing syphilis by aid of organic conductor material technology
CN202146639U (en) * 2011-05-12 2012-02-22 内蒙古科技大学包头医学院 External clip type Soxhlet extraction ultrasonic accelerator
CN102645429A (en) * 2012-04-23 2012-08-22 宁波大学 Self-cleaning and vibration wave energy digestion link containing electrogenerated chemiluminescence analyzing and detecting device
WO2015002975A1 (en) * 2013-07-05 2015-01-08 University Of Washington Through Its Center For Commercialization Methods, compositions and systems for microfluidic assays
CN103505774A (en) * 2013-10-24 2014-01-15 南京市秦淮医院 Ultrasonic transfusion alarm

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
JAMES FRIEND等: "Microscale acoustofluidics: microfluidics driven via acoustics and ultrasonics", 《REVIEWS OF MODERN PHYSICS》 *
覃国萍 等: "外置夹式索氏提取超声波加速器的研究与应用", 《内蒙古大学学报》 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106290870A (en) * 2015-05-26 2017-01-04 宁波大学 Dual Drive for hydrophobic substrate couples the controller used in syphilis diagnosis Multichannel device of running
CN106556709A (en) * 2015-09-24 2017-04-05 宁波大学 The micro flow control chip device comprising hydrophobic substrate of coupling Dual Drive pattern

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Application publication date: 20170104