WO2018145386A1 - 一种样本染色装置 - Google Patents

一种样本染色装置 Download PDF

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Publication number
WO2018145386A1
WO2018145386A1 PCT/CN2017/089497 CN2017089497W WO2018145386A1 WO 2018145386 A1 WO2018145386 A1 WO 2018145386A1 CN 2017089497 W CN2017089497 W CN 2017089497W WO 2018145386 A1 WO2018145386 A1 WO 2018145386A1
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WO
WIPO (PCT)
Prior art keywords
dyeing
liquid
platform
sample
slide
Prior art date
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Ceased
Application number
PCT/CN2017/089497
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English (en)
French (fr)
Inventor
丁建文
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AVE Science and Technology Co Ltd
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AVE Science and Technology Co Ltd
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Publication date
Application filed by AVE Science and Technology Co Ltd filed Critical AVE Science and Technology Co Ltd
Priority to RU2019126569A priority Critical patent/RU2737469C1/ru
Priority to BR112019016359-0A priority patent/BR112019016359B1/pt
Priority to JP2019563656A priority patent/JP6853386B2/ja
Priority to US16/483,885 priority patent/US11513040B2/en
Priority to EP17895950.8A priority patent/EP3570001B1/en
Priority to KR1020197026352A priority patent/KR102276322B1/ko
Publication of WO2018145386A1 publication Critical patent/WO2018145386A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/28Preparing specimens for investigation including physical details of (bio-)chemical methods covered elsewhere, e.g. G01N33/50, C12Q
    • G01N1/30Staining; Impregnating ; Fixation; Dehydration; Multistep processes for preparing samples of tissue, cell or nucleic acid material and the like for analysis
    • G01N1/31Apparatus therefor
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/28Preparing specimens for investigation including physical details of (bio-)chemical methods covered elsewhere, e.g. G01N33/50, C12Q
    • G01N1/30Staining; Impregnating ; Fixation; Dehydration; Multistep processes for preparing samples of tissue, cell or nucleic acid material and the like for analysis
    • G01N1/31Apparatus therefor
    • G01N1/312Apparatus therefor for samples mounted on planar substrates
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L9/00Supporting devices; Holding devices
    • B01L9/52Supports specially adapted for flat sample carriers, e.g. for plates, slides, chips
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N1/00Sampling; Preparing specimens for investigation
    • G01N1/28Preparing specimens for investigation including physical details of (bio-)chemical methods covered elsewhere, e.g. G01N33/50, C12Q
    • G01N1/44Sample treatment involving radiation, e.g. heat
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N35/00Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor
    • G01N35/00029Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor provided with flat sample substrates, e.g. slides
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/08Geometry, shape and general structure
    • B01L2300/0809Geometry, shape and general structure rectangular shaped
    • B01L2300/0822Slides
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N35/00Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor
    • G01N35/00029Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor provided with flat sample substrates, e.g. slides
    • G01N2035/00099Characterised by type of test elements
    • G01N2035/00138Slides
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N35/00Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor
    • G01N2035/00346Heating or cooling arrangements

Definitions

  • the present invention relates to the field of medical examination technology, and more particularly to a sample dyeing apparatus.
  • dyeing is a method of dyeing different tissues and intracellular structures of a specimen to be detected by means of one or more dyes, so that the internal structure of the cells can be clearly observed under the microscope, and the clinical Diagnosis makes a correct judgment.
  • the existing specimens are divided into manual dyeing and automatic dyeing.
  • the automatic dyeing is completed by an automatic dyeing device.
  • the existing automatic dyeing device mainly includes two mainstream structures, one of which uses multiple dyeing boxes to dye each smear and work. The efficiency is low, it is difficult to adapt to the needs of large-scale work.
  • Another dyeing execution device uses dyeing tray to dye multiple smears at the same time, but its structure is complicated and complicated; it is mainly reflected in: the dyeing device using dyeing box needs to set a variety of transport clips.
  • the holding mechanism transports the dyeing box and the clamping smear, and the structure is complicated and high.
  • the dyeing device using the dyeing tray needs to set the dyeing disc moving mechanism, and the smear enters and exits the dyeing disc mechanism, and the structure is complicated and high in cost.
  • the relative manual dyeing has higher requirements on the operator's skill, and the dyeing efficiency is low, which is not suitable for large-scale specimen inspection.
  • an object of the present invention is to provide a sample dyeing apparatus whose structural design can effectively solve the technical problem that the implementation of specimen dyeing is difficult to achieve both operational efficiency and equipment cost.
  • the present invention provides the following technical solutions:
  • a sample dyeing device comprises a dyeing platform for respectively supplying a dyeing liquid and a cleaning liquid, and a convex supporting structure is arranged on both sides of the dyeing platform to form a gap between the glass slide and the surface of the dyeing platform for liquid in the glass
  • the sheet is diffused and infiltrated between the surface of the dyeing platform, and further includes a slide driving mechanism that maintains the gap between the slide and the dyeing platform.
  • the dyeing platform is provided with a dyeing zone and a washing zone along the direction of the glass slide, and the dyeing zone and the washing zone are respectively provided with independent working liquid output structures.
  • the working liquid output structure comprises a liquid outlet hole disposed on a surface of the dyeing platform for supplying a working fluid to the dyeing platform.
  • the working liquid output structure comprises a liquid supply tank disposed on a surface of the dyeing platform, and a liquid outlet is disposed in the liquid supply tank.
  • both ends of the liquid supply tank extend to both edges of the dyeing platform.
  • a working fluid replenishing tank communicating with the liquid outlet is further disposed along a direction of passage of the slide glass and a rear side of the liquid supply tank, and the dyeing zone working fluid replenishing tank is used for The dyeing liquid is output to the dyeing zone, and the cleaning zone working fluid replenishing tank is configured to output a cleaning liquid to the cleaning zone to wash the residual dyeing liquid.
  • an overflow tank is disposed around the dyeing platform, and the overflow tank is configured to discharge excess dye liquor and cleaning fluid.
  • the overflow groove is disposed parallel to the longitudinal direction of the dyeing platform.
  • the sample dyeing device further includes a main control module, wherein the main control module is configured to control the operation of the slide transport mechanism and the output of the dye liquid and the cleaning liquid.
  • the sample dyeing device further includes a detector for detecting whether the slide glass reaches the corresponding working area.
  • the detector is communicatively coupled to the master device.
  • the preset area on the dyeing platform is provided with a heating assembly that heats the slide or the working liquid.
  • the slide driving mechanism is specifically a screw driving assembly.
  • the sample dyeing device provided by the invention comprises a dyeing platform for respectively supplying a dyeing liquid and a cleaning liquid, and a convex supporting structure is arranged on both sides of the dyeing platform to form a gap between the glass slide and the surface of the dyeing platform for liquid A diffusion infiltration between the slide and the surface of the staining platform, and a slide drive mechanism that maintains the gap between the slide and the staining platform.
  • the sample dyeing device provided by the invention performs the dyeing of the sample slide on the surface of the dyeing platform, and the dyeing liquid can form a liquid film on the surface of the dyeing platform by the principle of surface tension, and the height of the liquid surface exceeds the lower surface of the slide glass.
  • the gap formed between the surface of the slide and the surface of the platform enables the dyeing working fluid to fully diffuse to the sample area on the entire slide; and when the slide is driven by the slide driving mechanism
  • the liquid film formed by the dyeing solution can fully infiltrate the glass slide, so that the dyeing liquid can fully achieve the dyeing on the corresponding glass slide of the dyeing platform.
  • the design is simple in structure, and the single slide driving mechanism capable of linear transportation can simultaneously drive one or more slides carrying samples to be dyed through the dyeing platform in a pipeline manner, thereby efficiently performing all dyeing of the batch samples.
  • the work effectively solves the technical problems that the implementation of the standard dyeing in the existing medical inspection technology is difficult to balance the operation efficiency and the equipment cost.
  • FIG. 1 is a schematic top plan view of a sample dyeing apparatus according to an embodiment of the present invention.
  • FIG. 2 is a schematic cross-sectional structural view of a sample dyeing apparatus according to an embodiment of the present invention, which is cut away from a liquid supply tank;
  • FIG. 3 is a schematic top plan view of another sample dyeing apparatus according to an embodiment of the present invention.
  • FIG. 4 is a schematic top plan view of a third sample dyeing apparatus according to an embodiment of the present invention.
  • Dyeing platform 1 slide driving mechanism 2, support structure 3, liquid supply tank 5, liquid outlet 6, overflow tank 7, working fluid replenishing tank 8, detector 10, dyeing zone 11, washing zone 12, glass Sheet 13, fixed area 14.
  • the embodiment of the invention discloses a sample dyeing device, which solves the technical problem that the implementation of the dyeing of the specimen in the existing medical inspection technology is difficult to balance the operation efficiency and the equipment cost.
  • FIG. 1 is a top plan view of a sample dyeing apparatus according to an embodiment of the present invention
  • FIG. 2 is a cross-sectional structural view of a sample dyeing apparatus according to an embodiment of the present invention, which is cut away from a liquid supply tank.
  • the sample dyeing apparatus comprises a dyeing platform 1 for respectively supplying a dyeing liquid and a cleaning liquid, and a supporting structure 3 is arranged on both sides of the dyeing platform 1 to make the glass slide 13 and the dyeing A gap is formed on the surface of the platform 1 for diffusing and infiltrating the liquid between the slide 13 and the surface of the dyeing stage 1, and further includes a slide driving mechanism 2 for maintaining the gap between the slide 13 and the dyeing stage 1.
  • the slide driving mechanism can be a conveyor belt or a more precise nut screw mechanism, etc., only need to ensure that the slide can be driven to move linearly along the length of the dyeing platform surface due to gravity. And the structure of the dyeing platform itself, so the slide can be stably placed on the dyeing platform during transportation and dyeing, without separately setting for clamping
  • a complex mechanism such as a fixed; the slide drive mechanism drives the slide movement on the slide support platform, and the moving speed and stroke are adjusted according to the dyeing time.
  • the supply of the dye liquor or the cleaning solution means that the dye liquor for dyeing is supplied to a specific area of the dyeing platform by a specific mechanism, or the liquid medicine for pretreating the sample, or the cleaning liquid for cleaning the dyed sample. and many more.
  • the sample dyeing apparatus performs the dyeing of the sample slide on the surface of the dyeing platform, and the dyeing liquid can form a liquid film on the surface of the dyeing platform by the principle of surface tension, and the height of the liquid surface exceeds the lower surface of the slide glass.
  • the gap formed between the surface of the slide and the surface of the platform enables the dyeing working fluid to diffuse sufficiently to the sample area on the entire slide; and when the slide is driven by the slide driving mechanism
  • the dyeing platform is translated through the dyeing platform, the liquid film formed by the dyeing solution can fully infiltrate the glass slide, so that the dyeing liquid can fully perform dyeing on the slide glass corresponding to the whole dyeing platform.
  • the design is simple in structure, and the single slide driving mechanism capable of linear transportation can simultaneously drive one or more slides carrying samples to be dyed through the dyeing platform in a pipeline manner, thereby efficiently performing all dyeing of the batch samples.
  • the work effectively solves the technical problems that the implementation of the standard dyeing in the existing medical inspection technology is difficult to balance the operation efficiency and the equipment cost.
  • the raised support structure itself can realize the translational movement of the driving slide on the dyeing platform, for example, the support structure itself is disposed on both sides of the edge of the dyeing platform. Belt and other structures.
  • the dyeing platform 1 includes a dyeing zone 11 and a cleaning zone 12 respectively disposed along the direction of passage of the slide glass 13 . Both the dyeing zone 11 and the washing zone 12 are provided with independent working liquid output structures.
  • the distinction between the dyeing zone and the cleaning zone may be through a special separation structure on the dyeing platform, and the partition structure may be a convex frame structure protruding from the dyeing platform to prevent the dyeing of a region or
  • the cleaning solution spreads to another area and can also be dyed flat
  • the spatial distance of the table itself is separated, and no separate structure is provided, so that different areas can realize different dyeing functions.
  • the basic design is a dyeing area, and a cleaning area is arranged at the rear; further, it can be arranged along the direction of the slides, and the arrangement is more side by side.
  • Dyeing areas with the same function to enhance the dyeing effect, and finally set one or more washing areas can also include a plurality of different dyeing areas, each dyeing area provides different kinds of dyeing Liquid, in order to cope with the test content that requires different staining observation areas of the same sample, can complete the dyeing of multiple different observation areas at one time; on this basis, in order to meet the needs of some special observation tests, such as different kinds of
  • a plurality of different dyeing zones and washing zones may be arranged at intervals, and after dyeing a specific observation zone, cleaning is performed, and dyeing is performed in other observation zones.
  • the working liquid output structure includes a liquid outlet hole 6 provided in a corresponding region of the surface of the dyeing platform 1 for dyeing.
  • the platform 1 supplies working fluid.
  • the corresponding area on the dyeing platform is provided with a liquid outlet, which means that the cleaning liquid is output through the liquid outlet of the cleaning area, and the dye liquid is output through the liquid outlet of the dyeing area.
  • the liquid is output through the structure of the liquid supply hole, and the liquid outlet is connected to the liquid output mechanism for liquid supply, and the pipeline can be hidden in the bottom of the platform for liquid output.
  • the liquid output mechanism may specifically be a liquid supply pump connecting the pipeline and the liquid storage structure, actively supplying liquid through the structure of the pump, or simplifying the structure in order to save cost, and the liquid output structure may also be a liquid supply connector, and the liquid supply tank can be A liquid supply that reaches a preset level.
  • FIG. 4 is a schematic top plan view of a third sample dyeing apparatus according to an embodiment of the present invention.
  • the diffusion effect is better, and a plurality of liquid outlet holes can be further disposed in the same working area, which is specifically A row of juxtaposed outlet holes are provided in each work area to achieve a larger liquid coverage area.
  • the working liquid output structure further includes a liquid supply tank 5 disposed on a surface of the dyeing platform 1, and the liquid discharge hole 6 is disposed in the liquid supply tank 5.
  • the working liquid output structure includes the structure of the liquid supply tank, and the liquid supply tank itself is a narrow groove.
  • the support structure When the glass slide is dyed, both ends are supported by the support structure, and the middle portion is supported by the support structure.
  • the area corresponding to the dyeing platform is used for dyeing, so the design of the liquid supply tank can cover the larger width direction of the dyed area on the slide glass, and the structure of the opposite hole is more favorable for the diffusion of the liquid.
  • the liquid supply tank supplies different kinds of liquids, and the dye liquor, the cleaning liquid or the mordant liquid is supplied according to the demand, and the mordant is: treating the substance with chemicals, thereby giving the latter
  • the mordant is: treating the substance with chemicals, thereby giving the latter
  • a better dyeing effect can be achieved by supplying the mordant before or after dyeing.
  • the both ends of the liquid supply tank 5 reach the edge of the support structure 3 on both sides of the dyeing platform 1, the liquid discharge hole 6 is disposed at a midpoint position in the longitudinal direction of the liquid supply tank 5.
  • the two ends of the liquid supply tank respectively reach the edge of the support structure. Since the slide glass is dyed, both ends are supported by the support structure, and the area corresponding to the dyeing platform is used for dyeing.
  • the design of the liquid supply tank covers the width direction of the dyed area of the entire slide; the liquid supply tank can be arranged perpendicular to the edge of the support structure, but the area of the liquid supply tank covering the surface of the slide is larger. It can be set to have a certain inclination angle; similarly, in order to achieve a larger coverage area, a bifurcated structure can be arranged on the linear liquid supply tank to optimize the diffusion of liquid on the slide sample.
  • the liquid outlet hole is set at the midpoint of the longitudinal direction in the liquid supply tank. For the optimized diffusion effect, the consistency of the dyeing effect of the sample on the slide glass in all directions is better, and the midpoint here is not strictly speaking. The midpoint, but within a certain area near the midpoint.
  • the liquid sampling hole 6 is provided along the direction of passage of the slide glass 13 and the front side of the liquid supply tank 5 in addition to the above embodiment.
  • a working fluid replenishing tank 8 in contact with the working fluid replenishing tank 8 in the dyeing zone 11 for outputting dye liquor to the dyeing zone 11, and a working fluid replenishing tank 8 located in the washing zone 12 It is used to output a cleaning liquid to the cleaning zone 12 to wash the remaining staining liquid.
  • a working fluid replenishing tank is disposed behind the liquid supply tank for replenishing the working liquid of the dyeing liquid or the cleaning liquid to the dyeing platform, and further adding the working fluid on the basis that the liquid supply tank has been provided.
  • the replenishing tank is mainly used to replenish the working fluid. Since the working liquid such as the disposable dyeing liquid may be difficult to meet the actual dyeing requirements, the supplement tank can increase the amount of the working fluid, so that the sample on the slide can be longer. Dyeing or cleaning in a working fluid environment for continuous time.
  • one end of the working fluid replenishing tank reaches the vicinity of the center line of the dyeing platform, that is, the position of the liquid outlet hole of the liquid supply tank in the above embodiment, and the other end reaches the edge of the supporting structure, and is mainly used for setting the supplementary tank.
  • the slides corresponding to the half zones are supplemented to prevent insufficient supply of the working fluid to the dyed area of the entire slide, and the supplementation effect is not good enough.
  • a liquid outlet hole is also arranged, and the end portion located in the inner side of the groove, that is, the center line of the dyeing platform, can be arranged in the middle portion for quick liquidization due to the liquid surface tension.
  • the diffusion reaches the edge, whereas if the liquid outlet is placed at the edge, the time required for the liquid to reach the middle will be longer.
  • the dyeing platform 1 is provided with an overflow tank 7 for discharging the surface of the dyeing platform 1 excessively.
  • Dyeing solution or cleaning solution is provided in the above sample dyeing apparatus.
  • the overflow tank 7 is parallel to the edge of the support structure 3, and is disposed in the dyeing zone 11 and the cleaning zone 12 and The position at which the support structure 3 is handed over.
  • the inner side of the supporting structure adjacent to the dyeing platform is provided with an overflow tank for discharging excess dyeing liquid or cleaning liquid, so that the working liquid level in the dyeing platform is maintained at a stable height.
  • an overflow tank for discharging excess dyeing liquid or cleaning liquid, so that the working liquid level in the dyeing platform is maintained at a stable height.
  • the sample dyeing device further includes a main control module and a connected slide detector 10, and the main control module passes the slide detector 10
  • the working area of the dyeing table 1 is detected to have a slide glass, and the conveying operation of the slide driving mechanism 2 and the supply of the dyeing liquid and the cleaning liquid are controlled accordingly.
  • the detector provided in this embodiment is used for detecting the position of the slide, determining whether the slide enters the detection area corresponding to the detector, and feeding back the detection result to the main control module, and the main control module controls the dye according to the control module.
  • the output of the liquid or cleaning solution ensures that the liquid is supplied to the dyeing platform only when needed, saving the liquid solution and reducing the cost of dyeing detection; in addition, since the main control module is also connected to the slide driving mechanism that drives the slide translation Therefore, more precise control of the dyeing of the sample can be achieved. For example, when the slide to be dyed is detected to enter a certain working area, the transport speed can be changed or the transport can be stopped by the slide driving mechanism, so that the slide is placed on the slide.
  • the sample is infiltrated in the dyeing or cleaning solution for a certain period of time and can be adapted to the needs of diverse dyeing tests.
  • the main control module controls the slides to pass through different working areas, and can also control the time that the slides stay in each functional area according to different test objects, test dye liquor and ambient temperature, so as to achieve the best. The staining effect.
  • the predetermined area on the dyeing platform 1 is provided with a heating assembly for heating the slide 13 or the working liquid.
  • the heating assembly is in communication with the main control module.
  • the present embodiment also provides a preheating design, that is, setting a heating component in a preset area on the dyeing platform, and the heating component can be set according to specific test requirements.
  • the pretreatment is carried out before the dyeing zone, or directly in the dyeing zone, the coloration is enhanced by high temperature, or some cleaning is required by special heating conditions, and the heating component can be placed in the cleaning zone.
  • the dyeing test is carried out by using the apparatus of the present invention, and it is preferable to provide a heating unit in the dyeing zone to color the glass sheet under heating.
  • the dyeing platform provided by the present invention may include not only the dyeing zone and the cleaning zone mentioned above, but also various types of dyeing methods according to different dyeing methods.
  • the dyeing solution and process are designed to achieve multiple dyeing areas.
  • a buffer zone may be provided between the dyeing zone and the washing zone, and the buffer may be combined with the dyeing solution to produce a slide effect, for example, Wright's
  • the dyeing method is suitable for the dyeing test using a buffer zone; in addition, a decolorizing zone may be provided after the dyeing zone, for example, for Gram staining, after the ammonium oxalate crystal violet and the iodine liquid are dyed, a decolorizing zone is preferably provided, by supplying alcohol The sample was decolorized.
  • the arrangement of the dyeing zone and the cleaning zone may be arranged in a straight line, or the dyeing zone and the cleaning zone may be arranged in parallel.
  • a second slide driving mechanism may be arranged to transport the slide to the dyeing zone or the cleaning zone arranged side by side.
  • FIG. 3 is a schematic top plan view of another sample dyeing apparatus according to an embodiment of the present invention.

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Abstract

一种样本染色装置,包括设有染色液及清洗液供应部的染色平台(1),位于染色平台(1)两侧使载玻片(13)与染色平台(1)形成一定间隙的载玻片支撑结构(3),使载玻片(13)与染色平台(1)保持一定间隙运动的载玻片驱动机构(2)。本装置工作时染色液供应到达染色平台(1),由于表面张力形成凸起的液面,载玻片(13)运动到该染色液凸起液面时,染色液在染色平台(1)与载玻片(13)形成的空隙之间浸润扩散而覆盖载玻片(13)对样本染色,染色时间由载玻片(13)在染色液区域运动行程和速度确定;载玻片(13)染色完成后供应清洗液清洗残留染色液,完成染色过程。该设计结构简单,通过载玻片驱动机构(2)可以实现多个载玻片(13)以流水线的方式依次通过染色平台(1)完成染色,用于批量样本染色时工作效率高。

Description

一种样本染色装置
本申请要求于2017年2月08日提交中国专利局、申请号为201710068920.0、发明名称为“一种样本染色装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及医疗检验技术领域,更具体地说,涉及一种样本染色装置。
背景技术
在医疗检验领域中,染色是借助于一种或多种染料,使待检测标本的组织和细胞内结构分别着不同的染色的试验方式,这样在显微镜下能清楚地观察细胞内部结构,以为临床诊断作出正确判断。
现有标本染色分为手工染色与自动染色,自动染色由自动染色装置完成,现有的自动染色装置主要包括两种主流结构,其中一种采用多个染色盒对每一片涂片进行染色,工作效率低,难以适应大批量工作需求,另一种染色执行装置采用染色盘同时对多个涂片进行染色,但是本身结构精密复杂;主要体现在:采用染色盒的染色装置需要设置多种运输夹持机构以运输染色盒与夹持涂片,结构复杂成本高,采用染色盘的染色装置需要设置染色盘运动机构,涂片进出染色盘机构,结构复杂成本高。
而相对的手工染色对操作者的技能要求较高,且染色效率低,不适用于大批量标本检验。
综上所述,如何有效地解决标本染色的实施难以兼顾操作效率及设备成本等的技术问题,是目前本领域技术人员急需解决的问题。
发明内容
有鉴于此,本发明的目的在于提供一种样本染色装置,该样本染色装置的结构设计可以有效地解决标本染色的实施难以兼顾操作效率及设备成本等的技术问题。
为了达到上述目的,本发明提供如下技术方案:
一种样本染色装置,包括分别供应染色液及清洗液的染色平台,位于所述染色平台两侧设置有凸起的支撑结构,使载玻片与所述染色平台表面形成间隙供液体在载玻片与染色平台表面之间扩散浸润,还包括使所述载玻片与所述染色平台保持间隙运动的载玻片驱动机构。
优选的,上述样本染色装置中,所述染色平台沿所述载玻片通过方向,设置有染色区及清洗区,所述染色区及清洗区分别设置有独立的工作液体输出结构。
优选的,上述样本染色装置中,所述工作液体输出结构包括设置于所述染色平台表面的出液孔,用于向染色平台供应工作液。
优选的,上述样本染色装置中,所述工作液体输出结构包括设置于所述染色平台表面的供液槽,所述供液槽内设置有出液口。
优选的,上述样本染色装置中,所述供液槽两端延伸至所述染色平台的两边缘。
优选的,上述样本染色装置中,沿所述载玻片的通过方向、所述供液槽的后方还设置有与出液口相通的工作液补充槽,所述染色区工作液补充槽用于向所述染色区输出染液,所述清洗区工作液补充槽用于向所述清洗区输出清洗液清洗残留的染色液。
优选的,上述样本染色装置中,所述染色平台周边设置有溢流槽,所述溢流槽用于排出过量的染液及清洗液。
优选的,上述样本染色装置中,所述溢流槽平行于所述染色平台长度方向设置。
优选的,上述样本染色装置中,还包括主控模块,所述主控模块用于控制所述玻片输送机构的动作及染液、清洗液的输出。
优选的,上述样本染色装置中,还包括用于检测载玻片是否到达对应工作区域的检测器。所述检测器与所述主控装置通信连接。
优选的,上述样本染色装置中,所述染色平台上的预设区域设置有对载玻片或者工作液体加热的加热组件。
优选的,上述样本染色装置中,所述载玻片驱动机构具体为螺杆驱动组件。
本发明提供的样本染色装置,包括分别供应染色液及清洗液的染色平台,位于所述染色平台两侧设置有凸起的支撑结构,使载玻片与所述染色平台表面形成间隙供液体在载玻片与染色平台表面之间扩散浸润,还包括使所述载玻片与所述染色平台保持间隙运动的载玻片驱动机构。本发明提供的这种样本染色装置通过在染色平台表面执行样本玻片的染色,通过表面张力的原理,染液能够在染色平台表面形成液膜,而液面的高度超过载玻片的下表面,在支撑结构的作用下,载玻片表面与平台表面之间形成的空隙能够供染色工作液体充分扩散至整个载玻片上的样本区域;且当载玻片在载玻片驱动机构的驱动下,平移通过染色平台时,染液形成的液膜能够充分浸润载玻片,令染液能够充分的在整个染色平台所对应的载玻片上实现染色。该设计结构简单,通过能够进行直线输送的简单的载玻片驱动机构,同时驱动一个或多个携带样本的载玻片依次以流水线的方式通过染色平台完成染色,能够高效完成批量样本的全部染色工作,有效地解决了现有的医疗检验技术中标本染色的实施难以兼顾操作效率及设备成本等的技术问题。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例提供的样本染色装置的俯视结构示意图;
图2为本发明实施例提供的样本染色装置从供液槽中剖开的剖面结构示意图;
图3为本发明实施例提供的另一种样本染色装置的俯视结构示意图。
图4为本发明实施例提供的第三种样本染色装置的俯视结构示意图。
附图中标记如下:
染色平台1、载玻片驱动机构2、支撑结构3、供液槽5、出液孔6、溢流槽7、工作液补充槽8、检测器10、染色区11、清洗区12、载玻片13、固定区14。
具体实施方式
本发明实施例公开了一种样本染色装置,以解决现有的医疗检验技术中标本染色的实施难以兼顾操作效率及设备成本等的技术问题。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1、图2,图1为本发明实施例提供的样本染色装置的俯视结构示意图;图2为本发明实施例提供的样本染色装置从供液槽中剖开的剖面结构示意图。
本发明的实施例提供的样本染色装置,包括分别供应染色液及清洗液的染色平台1,位于所述染色平台1两侧设置有凸起的支撑结构3,使载玻片13与所述染色平台1表面形成间隙供液体在载玻片13与染色平台1表面之间扩散浸润,还包括使所述载玻片13与所述染色平台1保持间隙运动的载玻片驱动机构2。
其中需要说明的是,载玻片驱动机构可以为传送皮带或者更精确的螺母丝杠机构等,只需保证能够驱动载玻片在染色平台表面沿其长度方向进行直线运动即可,由于重力作用及染色平台本身结构,因此载玻片能够在输送及染色的过程中稳固放置于染色平台上,而不需要另行设置用于夹持 固定等的复杂机构;载玻片驱动机构驱动位于载玻片支撑平台上的载玻片移动,移动速度和行程根据染色的时间调节。做流水线同时多个标本批量染色时,多种染色步骤时间存在差异,多标本难以实现多种染色步骤同步,可以用变速驱动或多级驱动机构实现不同区域不同的染色时间;此外此处提到的供应染液或清洗液是指,通过特定的机构在染色平台的特定区域供给用于染色的染液,或者用于对样本进行预处理的药液,或者用于清洗染色完成样本的清洗液等等。
本实施例提供的这种样本染色装置通过在染色平台表面执行样本玻片的染色,通过表面张力的原理,染液能够在染色平台表面形成液膜,而液面的高度超过载玻片的下表面,在支撑结构的作用下,载玻片表面与平台表面之间形成的空隙能够供染色工作液体充分扩散至整个载玻片上的样本区域;且当载玻片在载玻片驱动机构的驱动下,平移通过染色平台时,染液形成的液膜能够充分浸润载玻片,令染液能够充分的在整个染色平台所对应的载玻片上实现染色。该设计结构简单,通过能够进行直线输送的简单的载玻片驱动机构,同时驱动一个或多个携带样本的载玻片依次以流水线的方式通过染色平台完成染色,能够高效完成批量样本的全部染色工作,有效地解决了现有的医疗检验技术中标本染色的实施难以兼顾操作效率及设备成本等的技术问题。
在本实施例的基础上,进一步的提出一种技术方案,即凸起的支撑结构本身可以实现驱动载玻片在染色平台上平移运动,如支撑结构本身为设置在染色平台边缘两侧的传送皮带等结构。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,所述染色平台1包括沿载玻片13的通过方向、分别设置有染色区11及清洗区12,所述染色区11及清洗区12均设置有独立的工作液体输出结构。
本实施例提供的技术方案中,染色区与清洗区的区分可以通过染色平台上专门设置的分隔结构,分隔结构可以为凸出于染色平台上的凸出边框结构,阻止一个区域的染液或清洗液向另一个区域扩散,也可通过染色平 台本身的空间距离实现分开,不另行设置分隔的结构,以便不同的区域实现不同的染色功能。
可以根据不同的具体工作需求,进行不同方式的染色区及清洗区的排列,基础的设计是一个染色区,后方设置一个清洗区;进一步的,可以沿载玻片的通过方向,并排的设置多个均有相同功能的染色区,以加强染色的效果,最后再设置一个或多个清洗区;当然上面的技术方案中也可包含多个不同的染色区,每个染色区提供不同种类的染液,以便应对需要同一样本具有不同的染色观察区域的试验内容,可以完成一次性进行多个不同观察区域的染色;在此基础上,为应对某些特殊的观察试验的需求,如不同种类的染液会相互影响着色效果的情况下,可以将多个不同的染色区及清洗区间隔设置,完成对某一特定观察区域的染色后,进行清洗,再进行其他观察区域的染色。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,所述工作液体输出结构包括设置于所述染色平台1表面对应区域的出液孔6,用于向染色平台1供应工作液。
染色平台上的对应区域设置出液孔指的是,通过清洗区的出液孔输出清洗液,通过染色区的出液孔输出染液。通过供液孔这种结构输出液体,出液孔连通液体输出机构用于供液,可在平台底部内隐藏管路用于液体输出。液体输出机构具体可为连通管路及储液结构的供液泵,通过泵的结构主动供液,或者为了节约成本简化结构,液体输出结构也可为供液连通器,对供液槽进行能够到达预设的液位高度的液体供应。
请参阅图4,图4为本发明实施例提供的第三种样本染色装置的俯视结构示意图。
为此外为了保证通过出液孔向染色平台上输出的工作液体的覆盖范围较大,扩散效果较好,可进一步的在同一工作区域内设置多个出液孔,本实施例中具体的,可在每个工作区域内设置一排并列的出液孔,以便达到较大的液体覆盖面积。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样 本染色装置中,所述工作液体输出结构还包括设置于所述染色平台1表面的供液槽5,所述出液孔6设置于所述供液槽5内。
本实施例提供的技术方案中,工作液体输出结构包括了供液槽这种结构,供液槽本身为狭长凹槽,由于载玻片在进行染色时,其两端被支撑结构撑起,中间对应染色平台的区域用于染色,因此这种供液槽的设计能够覆盖载玻片上更大的需要染色区域的宽度方向,相对孔这种结构更有利于液体的扩散。
此外需要说明的是,根据染色平台上功能分区的不同,供液槽供给不同种类的液体,根据需求供给染液、清洗液或者媒染液,媒染为:以化学品处理某物,从而给予后者以与染料结合的能力,可通过在进行染色之前或之后供给媒染液达到更好的染色效果。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,所述供液槽5的两端到达染色平台1两侧的支撑结构3的边缘,所述出液孔6设置于所述供液槽5长度方向的中点位置。
本实施例提供的技术方案中,供液槽两端分别到达支撑结构的边缘,由于载玻片在进行染色时,其两端被支撑结构撑起,中间对应染色平台的区域用于染色,因此这种供液槽的设计覆盖了整个载玻片需要染色区域的宽度方向;供液槽的设置方向可以与支撑结构的边缘垂直,但是为了令供液槽在载玻片表面覆盖的面积更大,可以设置成具有一定的倾斜角度;同理的为了达到更大的覆盖面积,可以在直线状的供液槽上设置分叉的结构,以便优化液体在玻片样本上的扩散。将出液孔设置于供液槽内的长度方向的中点,出于优化扩散效果,令载玻片上的样本在各方向染色效果的一致性更好,且此处的中点并非严格意义的中点,而是在中点附近的一定区域范围内。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,沿所述载玻片13的通过方向、所述供液槽5的前方还设置有与出液孔6相通的工作液补充槽8,位于所述染色区11的工作液补充槽8用于向所述染色区11输出染液,位于所述清洗区12的工作液补充槽8 用于向所述清洗区12输出清洗液清洗残留的染色液。
本实施例提供的技术方案中,在供液槽的后方设置工作液补充槽用于向染色平台补充染液或清洗液的工作液体,在已经设置有供液槽的基础上进一步的增加工作液补充槽主要是用于补充工作液体,由于一次性的供应染液等的工作液体可能难以满足实际的染色需求,设置补充槽可以增加输出工作液的量,令玻片上的样本可以在更长的连续时间内处于工作液环境中进行染色或清洗。
优选的设置是,工作液补充槽一端到达染色平台的中线附近,也就是上述实施例中供液槽的出液孔的位置,另一端到达支撑结构边缘,在功能上主要用于对设置补充槽的半区对应的玻片进行补充,以防对整个个玻片染色区域供给工作液供给不充分,补充效果不够好。补充槽内同样设置出液孔,位于该槽靠内的端部、也就是染色平台的中线附近,出于液体表面张力的考虑,将出液的结构设置于中部区域可以实现较快的向四周扩散到达边缘,反之若将出液孔设置于边缘,液体扩散达到中部的所需的时间就会较长。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,所述染色平台1周边设置有溢流槽7,所述溢流槽7用于排出染色平台1表面过量的染色液或清洗液。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,所述溢流槽7平行于所述支撑结构3边缘,设置于所述染色区11及清洗区12与所述支撑结构3交接的位置。
本实施例提供的技术方案中,支撑结构与染色平台相邻的内侧设置有溢流槽,用于排出过量的染液或清洗液,令染色平台内的工作液体液位保持在稳定的高度,防止液体过量外溢,并且可以通过供液槽加上溢流槽的设置,不断的补充及排出工作液体保证了染色或清洗的效果;在设置有供液槽及工作液补充槽的基础上,三者都可以与溢流槽连通,或者也可隔离不与溢流槽连通,不影响液体的供给,溢流槽可以设置于两侧的支撑结构内侧也可仅在一侧支撑结构内侧设置,区别仅在于排液效果的明显程度。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,还包括主控模块及连接的载玻片检测器10,所述主控模块通过载玻片检测器10检测染色平台1工作区域是否有载玻片,并据此控制所述载玻片驱动机构2的输送动作及染液、清洗液的供应。
其中需要说明的是,本实施例提供的检测器用于检测载玻片的位置,判断载玻片是否进入检测器对应的检测区域,将检测结果反馈至主控模块,主控模块据此控制染液或清洗液的输出,可以保证只有需要时,才向染色平台供给液体,节约了药液降低了染色检测成本;此外由于主控模块还与驱动载玻片平移的载玻片驱动机构控制连接,因此可以做到更加精确的控制对样本的染色,具体的例如,当检测到待染色载玻片进入某一工作区域时,可以通过载玻片驱动机构改变输送速度或停止输送,令玻片上的样本在染液或清洗液的环境中浸润一定的时间,能够适应多样化的染色试验需求。此外通过主控模块控制载玻片通过不同的工作区域,还可以根据不同的试验对象、试验用染液及环境温度具体控制载玻片在每个功能区内停留通过的时间,以便达到最佳的染色效果。
为进一步优化上述技术方案,在上述实施例的基础上优选的,上述样本染色装置中,所述染色平台1上的预设区域设置有对载玻片13或者工作液体加热的加热组件,所述加热组件与所述主控模块通信连接。
针对某些需要在加热条件下进行染色的特殊药剂,本实施例还提供了一种预先加热的设计即在染色平台上的预设区域设置加热组件,根据具体的试验需求,可将加热组件设置于染色区之前先进行预处理,或直接设置于染色区内,通过高温加强着色,或者某些清洗由特殊加热条件需要的,可将加热组件设置于清洗区。以石碳酸复红染色法为例,采用本发明的装置进行染色试验,优选在染色区设置加热组件,令玻片在加热条件下进行着色。
在以上各个实施例提供的技术方案的基础上,还需说明的是,本发明提供的染色平台可以不仅仅包含上述提到的染色区、清洗区,应用实施时可以根据不同染色方法采用多种染色液及流程设计为多个染色区域实现复 合染色或多种染色,例如:根据染色试验的具体要求不同还可以设置在染色区与清洗区之间设置缓冲区,通过缓冲液与染液共同对玻片产生作用,举例来说,瑞氏染色法就适合采用缓冲区进行染色试验;另外还可以在染色区后设置脱色区,如对于革兰氏染色来说,在草酸铵结晶紫及碘液染色之后优选设置脱色区,通过供给酒精对样本进行脱色处理。另外,染色区与清洗区的排列方式可以为直线排列,或者染色区与清洗区并行排列,并行排列时还可以设置第二玻片驱动机构从而将玻片运输至并列排列的染色区或者清洗区。然而需要说明的是,不论上述提到的缓冲区还是脱色区,其基本结构都与本申请中的染色区及清洁区基本一致,只是染色功能及供给的工作液体有所不同。
请参考图3,图3为本发明实施例提供的另一种样本染色装置的俯视结构示意图。
另外进一步的,还可以在整个染色流程开始之前,在染色平台1之前设置固定区14,在此区域内可以简单地对载玻片进行玻片的固定,以便后续染色的顺利进行。
本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (12)

  1. 一种样本染色装置,其特征在于,包括设置有染色液及清洗液供应部的染色平台,位于所述染色平台两侧使载玻片与所述染色平台表面形成间隙的载玻片支撑结构,使所述载玻片与所述染色平台保持间隙运动的载玻片驱动机构。
  2. 根据权利要求1所述的样本染色装置,其特征在于,所述染色平台沿所述载玻片通过方向,设置有染色区及清洗区,所述染色区及清洗区分别设置有独立的工作液体输出结构。
  3. 根据权利要求2所述的样本染色装置,其特征在于,所述工作液体输出结构包括设置于所述染色平台表面的出液孔,用于向染色平台供应工作液。
  4. 根据权利要求2所述的样本染色装置,其特征在于,所述工作液体输出结构包括设置于所述染色平台表面的供液槽,所述供液槽内设置有出液口。
  5. 根据权利要求4所述的样本染色装置,其特征在于,所述供液槽两端延伸至所述染色平台的两边缘。
  6. 根据权利要求4所述的样本染色装置,其特征在于,沿所述载玻片的通过方向、所述供液槽的后方还设置有与出液口相通的工作液补充槽,所述染色区工作液补充槽用于向所述染色区输出染液,所述清洗区工作液补充槽用于向所述清洗区输出清洗液清洗残留的染色液。
  7. 根据权利要求1-5任一项所述的样本染色装置,其特征在于,所述染色平台周边设置有溢流槽,所述溢流槽用于排出过量的染液及清洗液。
  8. 根据权利要求7所述的样本染色装置,其特征在于,所述溢流槽平行于所述染色平台长度方向设置。
  9. 根据权利要求8所述的样本染色装置,其特征在于,还包括主控模块,所述主控模块用于控制所述玻片输送机构的动作及染液、清洗液的输出。
  10. 根据权利要求9所述的样本染色装置,其特征在于,还包括用于 检测载玻片是否到达对应工作区域的检测器。所述检测器与所述主控装置通信连接。
  11. 根据权利要求9所述的样本染色装置,其特征在于,所述染色平台上的预设区域设置有对载玻片或者工作液体加热的加热组件。
  12. 根据权利要求1所述的样本染色装置,其特征在于,所述载玻片驱动机构具体为螺杆驱动组件。
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