WO2016065713A1 - 一种全自动即时检验仪用检测装置 - Google Patents

一种全自动即时检验仪用检测装置 Download PDF

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Publication number
WO2016065713A1
WO2016065713A1 PCT/CN2014/094941 CN2014094941W WO2016065713A1 WO 2016065713 A1 WO2016065713 A1 WO 2016065713A1 CN 2014094941 W CN2014094941 W CN 2014094941W WO 2016065713 A1 WO2016065713 A1 WO 2016065713A1
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WIPO (PCT)
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base
detecting module
channel
disposed
gold
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PCT/CN2014/094941
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English (en)
French (fr)
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周旭一
洪龙斌
徐文杰
陈晓东
周宋兵
沈国金
胡瑞
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杭州中翰盛泰生物技术有限公司
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Publication of WO2016065713A1 publication Critical patent/WO2016065713A1/zh

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    • 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

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  • the utility model relates to the technical field of medical inspection equipment, in particular to a detection device for a full-automatic instant inspection instrument.
  • the POCT product is a branch of the in vitro diagnostic industry (IVD). It is popular in the clinic for its rapid and easy access to test results. At present, the instant tester has been widely used in hospitals, clinics and patients' homes, and can perform most routine clinical indicators. The global real-time tester market has exceeded $40 billion. In the early 1980s and 1990s, the European and American real-time tester market achieved an average annual growth rate of nearly 30%. With the development of China's economy and the aging of the population, the incidence of rheumatoid arthritis, diabetes, cardiovascular and cerebrovascular diseases has increased year by year, and the instant tester is more and more widely used in clinical practice. With the implementation of China's new medical reform, the popularization of medical insurance, and the improvement of disease prevention and health knowledge, the demand for real-time testers in health care and disease prevention and control will be more in the future, and will play a greater role.
  • the name applied for on December 26, 2013 is a fully automatic instant tester with the publication number 203616325U, including the outer casing, frame, sample holder, sample input device, shaker device, test card stack, and sample reaction device.
  • the detection card conveying device, the detecting device and the control panel integrate the two technical categories of immunocolloidal gold technology and immunofluorescence technology on one instrument to provide a fully automatic, multi-project automatic fast immunoassay analyzer with integration Automation, automation, support for non-stop loading and other advantages.
  • the structure of the detecting device is not specifically described therein.
  • the utility model provides a detection device for a fully automatic instant test instrument which has a simple structure and integrates a fluorescence detection module and a gold detection module to the same detection device.
  • the utility model relates to a detecting device for a full-automatic real-time tester, which is used for detecting a reaction strip, comprising a casing, a base, a reaction strip moving seat, a fluorescence detecting module, a gold label detecting module and a control module, the fluorescence detecting module, the gold label detecting module and
  • the control module is disposed on the upper surface of the base
  • the reaction strip moving seat is disposed on the upper surface of the base and is slidably coupled to the upper surface of the base by a sliding mechanism, and the reaction strip moves along the upper surface of the base Sliding and passing under the fluorescence detecting module and the gold detecting module
  • the fluorescent detecting module and the gold detecting module are electrically connected to the control module
  • the outer casing is disposed above the base and enclosing the reaction strip moving seat
  • the fluorescent detecting module, the gold detecting module and the control module are provided with an inlet on one side of the outer casing, an outlet on the base,
  • the fluorescence detecting module comprises a mounting seat, a laser head, a spectroscopic mirror and a photocell, wherein the mounting seat is provided with an inlet optical channel, a reflective channel and a fluorescent channel, and the reflective channel and the fluorescent channel are coaxially arranged, and the light is inserted a channel is disposed perpendicular to the reflective channel, the reaction strip is located directly below the reflective channel, the laser head is disposed at a port of the light entrance channel, and the light entrance channel is located inside the laser head a collimating lens is disposed at the intersection of the light entrance channel, the reflective channel and the fluorescent channel, and the first convex mirror is disposed under the spectroscopic mirror in the reflective channel, a filter is disposed above the spectroscopic mirror, a second convex mirror is disposed above the filter, a light shielding plate is disposed above the second convex mirror, and a through hole is disposed on the light shielding plate
  • the photocell is disposed above the visor, and the laser head and
  • the spectroscopic mirror is fixed by pressing, and the laser head is fixed in the first fixing seat
  • the collimating lens is fixed in the light entrance channel by the second fixing seat
  • the first convex mirror is pressed into the reflective channel through the bottom plate
  • the second convex mirror passes through
  • the pressure ring and the lower pressing ring are pressed in the fluorescent passage, and the photovoltaic cell is sealed by a top plate, and the other end of the optical path is sealed by a plug.
  • the sliding mechanism includes a motor, a driving wheel, a driven wheel and a guide rail.
  • the driving wheel is disposed on an output end of the motor, and the driven wheel is fixed on an upper surface of the base through a supporting base, the driving wheel And a driven belt is connected to the driven belt, and a slider is slidably engaged with the guide rail, the reaction strip moving seat is disposed on the slider, and the reaction strip moving seat passes through the connecting block and the timing belt Connected.
  • the fluorescence detecting module is fixed on the upper surface of the base by the fluorescence detecting module, and a reaction strip moving space is disposed between the lower surface of the fluorescent detecting module and the upper surface of the base.
  • the gold label detecting module is fixed on the upper surface of the base by a gold label detecting module, and a reaction strip moving space is disposed between a lower surface of the gold label detecting module and an upper surface of the base.
  • a step is arranged in the fluorescent channel, the filter is disposed above the step, and a ring of sealing ring is disposed between the filter and the upper surface of the step.
  • a guide plate is disposed on the lower surface of the base at the outlet, and the guide plate is disposed to be inclined downward.
  • Two fixing legs are disposed on the lower surface of the base, and are fixed by the fixing legs.
  • the detection device for the fully automatic instant tester comprises two fluorescence detection modules and a gold detection module.
  • the detecting device for the automatic instant tester comprises a casing, a base, a reaction strip moving seat, a fluorescence detecting module, a gold label detecting module and a control module, wherein the outer casing isolates the outside
  • the fluorescence detection module utilizes the gold standard detection module when it is required to perform immunocolloidal gold technology detection. Therefore, the detection device has two detection functions, which can be compatible with more detection items.
  • the fluorescent detection module comprises a mount, a laser head, a collimating lens, a spectroscopic mirror, a first convex mirror, a second convex mirror, a filter and a photocell, wherein the laser head is used for emitting laser light, laser After the collimating lens becomes parallel light, the fluorescence on the reaction strip is excited when reflected to the detection area on the reaction strip when the spectroscopic mirror is reached, and the fluorescent light is filtered through the spectroscopic mirror and filtered through the filter mirror to filter out some impurities.
  • the fluorescence after the aggregation reaches the photocell through the through hole, and finally passes the light
  • the pool converts the received fluorescent signal into an electrical signal output;
  • the sliding mechanism comprises a motor, a driving wheel, a driven wheel and a guide rail, the motor rotates, and the power is transmitted through the synchronous belt, and the reaction strip moves the seat with the reaction strip in the fluorescence
  • the detection module and the gold mark detection module move underneath, and corresponding detection is performed. After the detection is completed, the reaction strip moving seat moves to the push rod with the reaction strip, so that one end of the reaction strip is in conflict with the push rod, and then the reaction strip moving seat is further moved.
  • reaction strip remains in place due to the interaction force with the push rod, and the reaction strip moving seat continues to move until the reaction strip leaves the reaction strip moving seat. At this time, the reaction strip is located just above the outlet, because there is no reaction strip The action of the seating force is such that the reaction strip falls from the outlet and exits the detection device.
  • FIG. 1 is a schematic structural view of a detecting device for a fully automatic instant tester according to the present invention.
  • FIG. 2 is a schematic structural view showing the front side of the state in which the detecting device for the fully automatic instant tester is removed.
  • Figure 3 is a view showing the reverse state of the outer casing state of the detecting device for the automatic instant tester according to the present invention Schematic diagram of the structure.
  • Figure 4 is a schematic view showing the structure of the front side of the drawer type dry powder reaction cup holder of the present invention.
  • the detecting device for the fully automatic instant tester of the present invention for detecting the reaction strip 1, including the outer casing 2, the base 3, and the reaction strip moving a 4, two fluorescence detection modules 44, a gold detection module 45 and a control module 5, the fluorescence detection module 44, the gold detection module 45 and the control module 5 are disposed on the upper surface of the base 3, the reaction a strip moving seat 4 is disposed on the upper surface of the base 3 and is slidably coupled to the upper surface of the base 3 by a sliding mechanism, and the reaction strip moving seat 4 slides along the upper surface of the base and is detected from the fluorescence detecting module 44 and the gold standard
  • the detection module 45 passes underneath, and the fluorescence detection module 44 and the gold detection module 45 are electrically connected to the control module 5.
  • the outer casing 2 is disposed above the base 3 and wraps the reaction strip moving seat 4, and detects fluorescence.
  • the mouth 6 is provided with an outlet 7 on the base 3, and a push rod 8 is arranged on one side of the outlet 7.
  • the outer casing 2 functions to isolate external light.
  • the reaction strip 1 enters from the inlet 6 on the outer casing 2 to the reaction strip moving seat 4 inside the outer casing 2, and then moves to the lower side of the fluorescence detecting module 44 and the gold detecting module 45.
  • the detection uses the fluorescence detection module 44 when immunofluorescence detection is required, and the gold detection module 45 is used when the immunocolloidal gold technology is required to be detected. Therefore, the detection device has two detection functions and is compatible with more detection items. .
  • the fluorescence detecting module 44 includes a mounting seat 9, a laser head 10, a beam splitting mirror 11 and a photocell 12, and the mounting seat 9 is provided with a light entrance channel 13, a reflection channel 14 and a fluorescent channel 15,
  • the reflection channel 14 and the fluorescence channel 15 are disposed coaxially, the light entrance channel 13 is disposed perpendicular to the reflection channel 14, the reaction strip 1 is located directly below the reflection channel 14, and the laser head 10 is disposed at the At the port of the light path 13 , a collimator lens 16 is disposed inside the laser light path 13 , and the beam splitting mirror 11 is disposed on the light path 13 , the reflection channel 14 and the fluorescent device.
  • a first convex mirror 17 is disposed in the reflective channel 14 below the spectroscopic mirror 11 , and a filter 18 is disposed in the fluorescent channel 15 above the spectroscopic mirror 11 .
  • a second convex mirror 19 is disposed above the filter 18, and a light shielding plate 20 is disposed above the second convex mirror 19.
  • the light shielding plate 20 is provided with a through hole 21, and the photocell 12 is disposed on the Above the visor 20, the laser head 10 and the photovoltaic cell 12 are respectively connected to the control module 5.
  • the laser 10 is used to emit laser light, and the laser light is converted into parallel light by the collimator lens 16.
  • the fluorescence on the reaction strip 1 is excited, and the fluorescent light is split.
  • the mirror 11 is then filtered by the filter lens 18 to filter out some stray light, and then condensed by the second convex mirror 19.
  • the concentrated fluorescence passes through the through hole 21 to reach the photocell 12, and finally is received by the photocell 12.
  • the fluorescent signal is converted into an electrical signal output.
  • the spectroscopic mirror 11 is fixed by a pressing piece 22, and the laser head 10 is connected.
  • the first fixing seat 23 is fixed at the port of the light entrance passage 13
  • the collimating lens 16 is fixed in the light entrance passage 13 through the second fixing seat 24
  • the first convex mirror 17 is pressed by the bottom plate 25 .
  • the second convex mirror 19 is pressed into the fluorescent channel 15 by an upper pressing ring 26 and a lower pressing ring 27, and the photocell 12 is sealed by a top plate 28, the light entering channel 13 The other end is sealed by a plug 29.
  • the sliding mechanism includes a motor 30, a driving wheel 31, a driven wheel 32 and a guide rail 33.
  • the driving wheel 31 is disposed on an output end of the motor 30, and the driven wheel 32 is fixed by a support base 34.
  • the reaction strip moving seat 4 moves under the fluorescence detecting module 44 and the gold label detecting module 45 with the reaction strip 1 to perform corresponding detection, and the reaction strip moves after the detection is completed.
  • the seat 4 is moved to the push rod 8 with the reaction strip 1, so that one end of the reaction strip 1 is in conflict with the push rod 8, and then the reaction strip moving seat 4 is further moved, and the reaction strip 1 is affected by the mutual contact force with the push rod 8. Keeping the position in place, and the reaction strip moving seat 4 continues to move until the reaction strip 1 leaves the reaction strip moving seat 4. At this time, the reaction strip 1 is located just above the outlet 7, and since there is no reaction strip moving the seat 4 to support the force, The reaction strip 1 then falls from the outlet 7 and exits the detection device.
  • the fluorescence detecting module 44 is disposed on the upper surface of the base 3 through the fluorescent detecting module fixing base 38.
  • the lower surface of the fluorescent detecting module 44 and the upper surface of the base 3 are disposed.
  • Reaction strip movement space facilitates the passage of the reaction strip.
  • the gold label detecting module 45 is mounted on the upper surface of the base 3 through the gold label detecting module fixing seat 39.
  • the lower surface of the gold label detecting module 45 and the upper surface of the base 3 There is a reaction strip movement space between them.
  • the reaction strip movement space facilitates the passage of the reaction strip.
  • a circle of steps 40 is disposed in the fluorescent channel 15, the filter 18 is disposed above the step 40, and a ring of seals 41 is disposed between the filter 18 and the upper surface of the step 40. .
  • the arrangement of the sealing ring 41 provides a good barrier to light.
  • a guide plate 42 is disposed on the lower surface of the base 3 at the outlet 7, and the guide plate 42 is inclined downward.
  • the guide plate 42 facilitates the falling reaction strip 1 to smoothly reach the waste bin.
  • two fixing legs 43 are disposed on the lower surface of the base 3, and are fixed by the fixing legs 43.
  • the detection device for the fully automatic instant tester includes two fluorescence detection modules 44 and a gold detection module 45.
  • top plate 28 and the bottom plate 25 are both connected to the mounting seat 9 by screws (not shown).
  • fluorescence detection modules and two or three gold detection modules can also be set at the same time. Then, it is also within the scope of protection of the present invention, and will not be further described herein.

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  • Life Sciences & Earth Sciences (AREA)
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Abstract

一种检测反应条(1)的全自动即时检验仪用检测装置,包括外壳(2)、底座(3)、反应条移动座(4)、荧光检测模块(44)、金标检测模块(45)和控制模块(5);荧光检测模块(44)、金标检测模块(45)和控制模块(5)设于底座(3)上表面上;反应条移动座(4)设于底座(3)的上表面上并通过滑动机构与底座(3)的上表面滑动连接;反应条移动座(4)沿底座(3)上表面滑动并从荧光检测模块(44)和金标检测模块(45)下方通过;荧光检测模块(44)和金标检测模块(45)与控制模块(5)电连接;外壳(2)设于底座(3)上方并包裹住反应条移动座(4)、荧光检测模块(44)、金标检测模块(45)和控制模块(5);外壳(2)的其中一个侧面上设有入口(6),底座(3)上设有出口(7),出口(7)的一侧设有推杆(8)。

Description

一种全自动即时检验仪用检测装置 技术领域
本实用新型涉及医疗检验设备技术领域,具体地说是一种全自动即时检验仪用检测装置。
背景技术
POCT产品是体外诊断行业(IVD)的一个分支,它凭借便捷、快速的优势,实现在患者身边快速取得检验结果而深受临床的欢迎。目前即时检验仪已被广泛应用在医院、诊所及患者家中,能够进行绝大多数常规临床指标的检测。全球即时检验仪市场规模已超过400亿美元。在行业发展初期的1980至1990年代,欧美即时检验仪市场实现了近30%的年均增速。随着中国经济的发展和人口老龄化趋势日益严重,风湿性关节炎、糖尿病、心脑血管类疾病发病率逐年增长,即时检验仪在临床也越来越广泛应用。随着中国新医改的实施、医保的普及、防病健康知识的提高,今后即时检验仪在健康保健、疾病预防监控中的需求量会更多,将会发挥更大的作用。
在先于2013年12月26日申请的名称为一种全自动即时检验仪,公开号为203616325U,包括外壳、架体、样本架、样本输入装置、摇匀装置、检测卡堆栈、样本反应装置、检测卡输送装置、检测装置和控制板,将二大技术门类免疫胶体金技术和免疫荧光技术整合在一台仪器上,提供一款全自动、多项目的全自动快速免疫分析仪,具有集成化、自动化、支持不停机加载等优点。其中没有具体描述检测装置的结构。
实用新型内容
本实用新型提供一种结构简单、将荧光检测模块和金标检测模块集合到同一个检测装置的全自动即时检验仪用检测装置。
本实用新型是通过下述技术方案实现的:
一种全自动即时检验仪用检测装置,用于检测反应条,包括外壳、底座、反应条移动座、荧光检测模块、金标检测模块和控制模块,所述荧光检测模块、金标检测模块和控制模块设于所述底座上表面上,所述反应条移动座设于所述底座的上表面上并通过滑动机构与所述底座的上表面滑动连接,所述反应条移动座沿底座上表面滑动并从荧光检测模块和金标检测模块下方通过,所述荧光检测模块和金标检测模块与所述控制模块电连接,所述外壳设于所述底座上方并包裹住所述反应条移动座、荧光检测模块、金标检测模块和控制模块,所述外壳的其中一个侧面上设有入口,所述底座上设有出口,所述出口的一侧设有推杆。
所述荧光检测模块包括安装座、激光头、分光反射镜和光电池,所述安装座上设有进光通道、反射通道和荧光通道,所述反射通道和荧光通道同轴设置,所述进光通道与所述反射通道垂直设置,所述反应条位于所述反射通道的正下方,所述激光头设于所述进光通道的端口处,所述进光通道内位于所述激光头内侧设有准直透镜,所述分光反射镜设于所述进光通道、反射通道和荧光通道三者的交汇处,所述反射通道内位于所述分光反射镜下方设有第一凸镜,所述荧光通道内位于所述分光反射镜上方设有滤光镜,所述滤光镜上方设有第二凸镜,所述第二凸镜上方设有遮光板,所述遮光板上设有通孔,所述光电池设于所述遮光板上方,所述激光头和光电池分别与所述控制模块相连接。
所述分光反光镜通过压片进行固定,所述激光头通过第一固定座固定在所 述进光通道的端口处,所述准直透镜通过第二固定座固定在进光通道内,所述第一凸镜通过底板压紧在所述反射通道内,所述第二凸镜通过上压环和下压环压紧在荧光通道内,所述光电池上方通过顶板密封,所述进光通道的另一端通过堵头密封。
所述滑动机构包括电机、主动轮、从动轮和导轨,所述主动轮设于所述电机的输出端上,所述从动轮通过支撑座固定于所述底座的上表面上,所述主动轮和从动轮之间通过同步带相连接,与所述导轨滑动配合设有滑块,所述反应条移动座设于所述滑块上,所述反应条移动座通过连接块与所述同步带相连接。
所述荧光检测模块通过荧光检测模块固定座架于所述底座的上表面上,所述荧光检测模块的下表面与所述底座的上表面之间设有反应条运动空间。
所述金标检测模块通过金标检测模块固定座架于所述底座的上表面上,所述金标检测模块的下表面与所述底座的上表面之间设有反应条运动空间。
所述荧光通道内设有一圈台阶,所述滤光镜设于台阶上方,并且所述滤光镜与台阶的上表面之间设有一圈密封圈。
所述底座的下表面上位于所述出口处设有一块导向板,所述导向板向下倾斜设置。
所述底座的下表面上设有两个固定脚,通过所述固定脚固定。
所述全自动即时检验仪用检测装置包括两个荧光检测模块和一个金标检测模块。
本实用新型所带来的有益效果是:
本实用新型中,所述全自动即时检验仪用检测装置包括外壳、底座、反应条移动座、荧光检测模块、金标检测模块和控制模块,所述外壳起到隔离外界 光线的作用,反应条从外壳上的入口进入到外壳内部的反应条移动座上,通过电机带动反应条移动座从荧光检测模块和金标检测模块下方经过,当需要进行免疫荧光技术检测时利用荧光检测模块,当需要进行免疫胶体金技术检测时利用金标检测模块,因此,此检测装置具有两种检测功能,可以兼容更多的检测项目,当然,可以同时设置多个荧光检测模块和金标检测模块;所述荧光检测模块包括安装座、激光头、准直透镜、分光反射镜、第一凸镜、第二凸镜、滤光镜和光电池,所述激光头用于发射激光,激光经过准直透镜变成平行光,当达到分光反射镜时反射到反应条上的检测区域时激发反应条上的荧光,荧光发光经过分光反射镜再经过滤光镜进行滤光,过滤掉一些杂光,再通过第二凸镜进行聚光,聚集之后的荧光通过通孔到达光电池,最后通过光电池将接受到的荧光信号转换成电信号输出;所述滑动机构包括电机、主动轮、从动轮和导轨,电机转动,通过同步带的动力传输,所述反应条移动座带着反应条在荧光检测模块和金标检测模块下方运动,进行相应的检测,检测完成之后反应条移动座带着反应条移到到推杆处,使反应条一端与推杆相抵触,再继续移动反应条移动座,反应条由于与推杆相互的抵触力的作用保持原位不动,而反应条移动座继续运动,直至反应条离开反应条移动座,此时,反应条正好位于出口上方,由于没有反应条移动座托力的作用,则反应条从出口落下,排出检测装置之外。
附图说明
以下结合附图对本实用新型作进一步详细说明。
图1为本实用新型所述全自动即时检验仪用检测装置的结构示意图。
图2为本实用新型所述全自动即时检验仪用检测装置去掉外壳状态的正面的结构示意图。
图3为本实用新型所述全自动即时检验仪用检测装置去掉外壳状态的反面 的结构示意图。
图4为本实用新型所述抽屉式干粉反应杯架正面的结构示意图。
图中部件名称对应的标号如下:
1、反应条;2、外壳;3、底座;4、反应条移动座;5、控制模块;6、入口;7、出口;8、推杆;9、安装座;10、激光头;11、分光反射镜;12、光电池;13、进光通道;14、反射通道;15、荧光通道;16、准直透镜;17、第一凸镜;18、滤光镜;19、第二凸镜;20、遮光板;21、通孔;22、压片;23、第一固定座;24、第二固定座;25、底板;26、上压环;27、下压环;28、顶板;29、堵头;30、电机;31、主动轮;32、从动轮;33、导轨;34、支撑座;35、同步带;36、滑块;37、连接块;38、荧光检测模块固定座;39、金标检测模块固定座;40、台阶;41、密封圈;42、导向板;43、固定脚;44、荧光检测模块;45、金标检测模块。
具体实施方式
下面结合附图及实施例对本实用新型作进一步的详述:
作为本实用新型所述全自动即时检验仪用检测装置的实施例,如图1、图2、图3和图4所示,用于检测反应条1,包括外壳2、底座3、反应条移动座4、两个荧光检测模块44、一个金标检测模块45和控制模块5,所述荧光检测模块44、金标检测模块45和控制模块5设于所述底座3上表面上,所述反应条移动座4设于所述底座3的上表面上并通过滑动机构与所述底座3的上表面滑动连接,所述反应条移动座4沿底座上表面滑动并从荧光检测模块44和金标检测模块45下方通过,所述荧光检测模块44和金标检测模块45与所述控制模块5电连接,所述外壳2设于所述底座3上方并包裹住所述反应条移动座4、荧光检测模块44、金标检测模块45和控制模块5,所述外壳2的其中一个侧面上设有入 口6,所述底座3上设有出口7,所述出口7的一侧设有推杆8。所述外壳2起到隔离外界光线的作用,反应条1从外壳2上的入口6进入到外壳2内部的反应条移动座4上,再移动到荧光检测模块44和金标检测模块45下方进行检测,当需要进行免疫荧光技术检测时利用荧光检测模块44,当需要进行免疫胶体金技术检测时利用金标检测模块45,因此,此检测装置具有两种检测功能,可以兼容更多的检测项目。
本实施例中,所述荧光检测模块44包括安装座9、激光头10、分光反射镜11和光电池12,所述安装座9上设有进光通道13、反射通道14和荧光通道15,所述反射通道14和荧光通道15同轴设置,所述进光通道13与所述反射通道14垂直设置,所述反应条1位于所述反射通道14的正下方,所述激光头10设于所述进光通道13的端口处,所述进光通道13内位于所述激光头10内侧设有准直透镜16,所述分光反射镜11设于所述进光通道13、反射通道14和荧光通道15三者的交汇处,所述反射通道14内位于所述分光反射镜11下方设有第一凸镜17,所述荧光通道15内位于所述分光反射镜11上方设有滤光镜18,所述滤光镜18上方设有第二凸镜19,所述第二凸镜19上方设有遮光板20,所述遮光板20上设有通孔21,所述光电池12设于所述遮光板20上方,所述激光头10和光电池12分别与所述控制模块5相连接。所述激光10头用于发射激光,激光经过准直透镜16变成平行光,当达到分光反射镜11时反射到反应条1上的检测区域时激发反应条1上的荧光,荧光发光经过分光反射镜11再经过滤光镜18进行滤光,过滤掉一些杂光,再通过第二凸镜19进行聚光,聚集之后的荧光通过通孔21到达光电池12,最后通过光电池12将接受到的荧光信号转换成电信号输出。
本实施例中,所述分光反光镜11通过压片22进行固定,所述激光头10通 过第一固定座23固定在所述进光通道13的端口处,所述准直透镜16通过第二固定座24固定在进光通道13内,所述第一凸镜17通过底板25压紧在所述反射通道14内,所述第二凸镜19通过上压环26和下压环27压紧在荧光通道15内,所述光电池12上方通过顶板28密封,所述进光通道13的另一端通过堵头29密封。
本实施例中,所述滑动机构包括电机30、主动轮31、从动轮32和导轨33,所述主动轮31设于所述电机30的输出端上,所述从动轮32通过支撑座34固定于所述底座3的上表面上,所述主动轮31和从动轮32之间通过同步带35相连接,与所述导轨33滑动配合设有滑块36,所述反应条移动座4设于所述滑块36上,所述反应条移动座4通过连接块37与所述同步带35相连接。当电机30转动,通过同步带35的动力传输,所述反应条移动座4带着反应条1在荧光检测模块44和金标检测模块45下方运动,进行相应的检测,检测完成之后反应条移动座4带着反应条1移到到推杆8处,使反应条1一端与推杆8相抵触,再继续移动反应条移动座4,反应条1由于与推杆8相互的抵触力的作用保持原位不动,而反应条移动座4继续运动,直至反应条1离开反应条移动座4,此时,反应条1正好位于出口7上方,由于没有反应条移动座4托力的作用,则反应条1从出口7落下,排出检测装置之外。
本实施例中,所述荧光检测模块44通过荧光检测模块固定座38架于所述底座3的上表面上,所述荧光检测模块44的下表面与所述底座3的上表面之间设有反应条运动空间。所述反应条运动空间方便反应条通过。
本实施例中,所述金标检测模块45通过金标检测模块固定座39架于所述底座3的上表面上,所述金标检测模块45的下表面与所述底座3的上表面之间设有反应条运动空间。所述反应条运动空间方便反应条通过。
本实施例中,所述荧光通道15内设有一圈台阶40,所述滤光镜18设于台阶40上方,并且所述滤光镜18与台阶40的上表面之间设有一圈密封圈41。所述密封圈41的设置可以很好地对光进行阻隔。
本实施例中,所述底座3的下表面上位于所述出口7处设有一块导向板42,所述导向板42向下倾斜设置。所述导向板42方便落下的反应条1顺利到达废料箱内。
本实施例中,所述底座3的下表面上设有两个固定脚43,通过所述固定脚43固定。
本实施例中,所述全自动即时检验仪用检测装置包括两个荧光检测模块44和一个金标检测模块45。
本实施例中,所述顶板28和底板25均通过螺钉(图中未示出)与所述安装座9相连接。
当然,也可以同时设置一个或者三个或者四个荧光检测模块和两个或者三个金标检测模块。那么,也都在本实用新型保护范围之内,这里不再一一赘述。

Claims (10)

  1. 一种全自动即时检验仪用检测装置,用于检测反应条,其特征在于包括外壳、底座、反应条移动座、荧光检测模块、金标检测模块和控制模块,所述荧光检测模块、金标检测模块和控制模块设于所述底座上表面上,所述反应条移动座设于所述底座的上表面上并通过滑动机构与所述底座的上表面滑动连接,所述反应条移动座沿底座上表面滑动并从荧光检测模块和金标检测模块下方通过,所述荧光检测模块和金标检测模块与所述控制模块电连接,所述外壳设于所述底座上方并包裹住所述反应条移动座、荧光检测模块、金标检测模块和控制模块,所述外壳的其中一个侧面上设有入口,所述底座上设有出口,所述出口的一侧设有推杆。
  2. 如权利要求1所述的全自动即时检验仪用检测装置,其特征在于所述荧光检测模块包括安装座、激光头、分光反射镜和光电池,所述安装座上设有进光通道、反射通道和荧光通道,所述反射通道和荧光通道同轴设置,所述进光通道与所述反射通道垂直设置,所述反应条位于所述反射通道的正下方,所述激光头设于所述进光通道的端口处,所述进光通道内位于所述激光头内侧设有准直透镜,所述分光反射镜设于所述进光通道、反射通道和荧光通道三者的交汇处,所述反射通道内位于所述分光反射镜下方设有第一凸镜,所述荧光通道内位于所述分光反射镜上方设有滤光镜,所述滤光镜上方设有第二凸镜,所述第二凸镜上方设有遮光板,所述遮光板上设有通孔,所述光电池设于所述遮光板上方,所述激光头和光电池分别与所述控制模块相连接。
  3. 如权利要求2所述的全自动即时检验仪用检测装置,其特征在于所述分光反光镜通过压片进行固定,所述激光头通过第一固定座固定在所述进光通道 的端口处,所述准直透镜通过第二固定座固定在进光通道内,所述第一凸镜通过底板压紧在所述反射通道内,所述第二凸镜通过上压环和下压环压紧在荧光通道内,所述光电池上方通过顶板密封,所述进光通道的另一端通过堵头密封。
  4. 如权利要求1所述的全自动即时检验仪用检测装置,其特征在于所述滑动机构包括电机、主动轮、从动轮和导轨,所述主动轮设于所述电机的输出端上,所述从动轮通过支撑座固定于所述底座的上表面上,所述主动轮和从动轮之间通过同步带相连接,与所述导轨滑动配合设有滑块,所述反应条移动座设于所述滑块上,所述反应条移动座通过连接块与所述同步带相连接。
  5. 如权利要求4所述的全自动即时检验仪用检测装置,其特征在于所述荧光检测模块通过荧光检测模块固定座架于所述底座的上表面上,所述荧光检测模块的下表面与所述底座的上表面之间设有反应条运动空间。
  6. 如权利要求5所述的全自动即时检验仪用检测装置,其特征在于所述金标检测模块通过金标检测模块固定座架于所述底座的上表面上,所述金标检测模块的下表面与所述底座的上表面之间设有反应条运动空间。
  7. 如权利要求3所述的全自动即时检验仪用检测装置,其特征在于所述荧光通道内设有一圈台阶,所述滤光镜设于台阶上方,并且所述滤光镜与台阶的上表面之间设有一圈密封圈。
  8. 如权利要求1所述的全自动即时检验仪用检测装置,其特征在于所述底座的下表面上位于所述出口处设有一块导向板,所述导向板向下倾斜设置。
  9. 如权利要求1所述的全自动即时检验仪用检测装置,其特征在于所述底座的下表面上设有两个固定脚,通过所述固定脚固定。
  10. 如权利要求3所述的全自动即时检验仪用检测装置,其特征在于所述全自动即时检验仪用检测装置包括两个荧光检测模块和一个金标检测模块。
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