CN112774751A - 试管 - Google Patents
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- CN112774751A CN112774751A CN202010604035.1A CN202010604035A CN112774751A CN 112774751 A CN112774751 A CN 112774751A CN 202010604035 A CN202010604035 A CN 202010604035A CN 112774751 A CN112774751 A CN 112774751A
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Abstract
一种试管,用以容纳一液体并与一区块链网络信号连接。试管包括一管体、一盖体、至少一覆盖件、一芯片组和一检测模块。管体容纳液体。盖体设置于管体的顶部,盖体包括至少一滴入管。覆盖件覆盖滴入管。芯片组设置于管体,芯片组包括一区块链追溯件,区块链追溯件用以将液体的来源及试管的一流通历程记录于区块链网络以便追溯。检测模块设置在管体并信号连接芯片组,检测模块用以量测液体的液体性质。
Description
技术领域
本发明涉及一种试管,特别涉及一种可以完全封闭试管内部并且方便追溯检测的液体的来源的试管。
背景技术
试管是一种常见的检验器材,其为玻璃制的管体,玻璃管体可以容纳需检验的液体。然而,玻璃管体的开口暴露于外部,因此玻璃管体内的液体仍有可能受到外部的微生物污染。
另外,现有的试管及检验系统只能确认需检验的液体是否具有病毒,难以从需检验的液体追溯液体来源,故难以对液体来源进行深入调查。因此,如何提供一种新的试管,其可以完全封闭试管内部并且方便追溯检测的液体的来源,便成为一值得探讨的课题。
发明内容
本发明的主要目的在于提供一种可以完全封闭试管内部并且方便追溯检测的液体的来源的试管。
为达成上述的目的,本发明的一种试管用以容纳一液体并与一区块链网络信号连接。试管包括一管体、一盖体、至少一覆盖件、一芯片组和一检测模块。管体容纳液体。盖体设置于管体的顶部,盖体包括至少一滴入管。覆盖件覆盖滴入管。芯片组设置于管体,芯片组包括一区块链追溯件,区块链追溯件用以将液体的来源及试管的一流通历程记录于区块链网络以便追溯。检测模块设置在管体并信号连接芯片组,检测模块用以量测液体的液体性质。
根据本发明的一实施例,试管更包括一底支撑件,底支撑件设置于管体的底部。
根据本发明的一实施例,其中芯片组更包括一定位件,用以对试管定位。
根据本发明的一实施例,其中芯片组更包括一温度检测件,用以检测试管的温度。
根据本发明的一实施例,其中芯片组更包括一电子标签件,电子标签件以无线射频辨识(Radio Frequency Identification)的方式记录试管的信息。
根据本发明的一实施例,试管更包括一无线模块,无线模块设置在管体并信号连接芯片组、检测模块和一外部计算机。
根据本发明的一实施例,试管更包括一电池,电池设置在管体并提供电力给芯片组、检测模块和无线模块。
根据本发明的一实施例,其中管体更包括一注射针头;底支撑件更包括一支撑管,支撑管容纳注射针头。
根据本发明的一实施例,其中管体是以生物可分解塑胶所制成。
根据本发明的一实施例,其中定位件是一全球定位系统(GlobalPositioningSystem)芯片。
以下结合附图和具体实施例对本发明进行详细描述,但不作为对本发明的限定。
附图说明
图1本发明的第一实施例的试管的示意图;
图2本发明的第一实施例的装了液体且封装的试管的示意图;
图3本发明的第一实施例的试管、外部网络和区块链计算机的系统架构图;
图4本发明的第二实施例的试管的示意图。
其中,附图标记
试管1、1a
管体10、10a
注射针头11
底支撑件20、20a
支撑管21
盖体30、30a
滴入管31
覆盖件40
芯片组50
区块链追溯件51
定位件52
温度检测件53
电子标签件54
检测模块60
无线模块70
电池80
外部计算机100
区块链网络200
液体300
具体实施方式
为能更了解本发明的技术内容,特举较佳具体实施例说明如下。
以下请一并参考图1至图3关于本发明的第一实施例的试管。图1本发明的第一实施例的试管的示意图;图2本发明的第一实施例的装了液体且封装的试管的示意图;图3本发明的第一实施例的试管、外部网络和区块链计算机的系统架构图。
如图1至图3所示,在本发明的第一实施例中,试管1用以容纳一液体300并与一区块链网络200信号连接,且试管1可以完全封闭内部以防止外部污染,并且方便追溯检测的液体300的来源。试管1可以和一外部计算机100信号连接,以传输试管1及容纳的液体300的相关信息给外部计算机100。试管1包括一管体10、底支撑件20、一盖体30、二个覆盖件40、一芯片组50、一检测模块60、一无线模块70和一电池80。
在本发明的第一实施例中,管体10用以容纳液体300。管体10是以生物可分解塑胶所制成。生物可分解塑胶是以淀粉、聚乳酸和纤维蛋白质等微生物可分解的材料所构成的塑胶,故本发明的管体10可被微生物分解而具备环保的功效。
在本发明的第一实施例中,底支撑件20例如为橡胶制成的底座,其设置于管体10的底部。底支撑件20可以使管体10直立,并且可以防止管体10的底部直接碰撞到外部物体而破裂。
在本发明的第一实施例中,盖体30设置于管体10的顶部,盖体30包括二个滴入管31。盖体30可覆盖管体10顶端的开口,以减少开口曝露于外部的面积,并且须检测的液体300可以从二个滴入管31流入管体10。然而,滴入管31的数量不以两个为限,其可依照设计需求而变成一个以上。
在本发明的第一实施例中,二个覆盖件40例如为软胶制成的盖子或塞子,其用以分别覆盖二个滴入管31,以使管体10内部形成封闭系统,如此一来可以完全阻隔外部的微生物,以确保管体10内的液体300不变质。然而,覆盖件40的数量不以两个为限,其可配合滴入管31的数量而改变。
在本发明的第一实施例中,芯片组50设置于管体10。芯片组50包括一区块链追溯件51、一定位件52、一温度检测件53和一电子标签件54。区块链追溯件51是一运算芯片,其是得与一区块链网络200信号连接,区块链追溯件51将液体300的来源和历程记录于区块链网络200,借由区块链可追溯且记录不易被窜改的特性,来记录并追踪试管1的流通历程。根据本发明的一实施例,液体300的来源例如一受检验者进行健康检查时,所取得的血液或尿液,流通历程包括进行健康检查的地点、进行健康检查的医疗机构、保存试管1和运输试管1的过程等等;此外,试管1的流通历程亦可借由外部计算机100将试管1流通历程信息输入区块链追溯件51记录,再借由区块链追溯件51将试管1的流通历程记录于区块链网络200。如此一来,利用区块链可追溯且记录不易被窜改的特性,清楚记录和管理试管1内的液体300的来源和流通历程。
定位件52是一全球定位系统(Global Positioning System)芯片,定位件52用以对试管1定位,以确定试管1当下的位置。温度检测件53是具有温度感应功能的芯片,用以检测试管1的温度,借此,可以监控试管1是否处于适宜的温度,以避免过热的环境使液体300变质。电子标签件54以无线射频辨识(Radio Frequency Identification)的方式记录试管1的信息,例如试管1的容量、管体10的使用期限、试管1内的液体300对应的受检验者身分和检验日期及地点…等信息;电子标签件54记录的信息可以借由外部计算机100输入。但是试管1的信息不以上述为限,其可依照设计需求而改变。
在本发明的第一实施例中,检测模块60设置在管体10并信号连接芯片组50。检测模块60是具有液体性质量测功能的芯片,其用以量测液体300的至少一液体性质,液体性质例如液体沾黏性、酸碱度、液体比重、液体渗透度、液体渗透压…等等。借由检测模块60的量测液体性质的功效,可以确认液体300的状态良好或变质。然而,检测模块60可量测的液体性质不以上述为限,其可依照实际需求而改变。
在本发明的第一实施例中,无线模块70例如为一网络芯片,无线模块70设置在管体10并信号连接芯片组50、检测模块60和外部计算机100。无线模块70用以传输芯片组50和检测模块60所检测到的信息给外部计算机100,以便医护人员操作外部计算机100而了解试管1所容纳的液体300的数据,例如液体来源、历程和液体性质。
在本发明的第一实施例中,电池80设置在管体10并提供电力给芯片组50、检测模块60和无线模块70,以确保电力给芯片组50、检测模块60和无线模块70可以正常运作。
如图1至图3所示,本发明的试管1例如用以在健康检验时,容纳需检验的液体300(例如受检验者的血液),受检验者抽出的液体300的血液会经由滴入管31流入管体10,检测模块60会量测液体300的液体性质,例如液体沾黏性、酸碱度、液体比重、液体渗透度、液体渗透压…等等。借由检测模块60的量测液体性质的功效,可以确认液体300的状态良好或变质。
另外,定位件52会对试管1定位,以确定试管1当下的位置,以防止试管1遗失。温度检测件53是具有温度感应功能的芯片,用以检测试管1的温度,借此,可以监控试管1是否处于适宜的温度,以避免过热的环境影响液体300品质。
另外,医护人员也可以操作外部计算机100连线至试管1的无线模块70,以对电子标签件54输入试管1的信息,例如试管1的容量、管体10的使用期限、试管1内的液体300对应的受检验者身分和检验日期及地点…等信息;借此,往后医护人员可以用无线射频辨识读取器来读取电子标签件54所记录的数据,以快速了解试管1及液体300的相关信息。
另外,医护人员也可以操作外部计算机100将物品流通历程信息输入区块链追溯件51,再借由区块链追溯件51将物品流通历程信息记录于区块链网络200。借由区块链追溯物品流通历程的功能,试管1对应的受检验者的身分、进行健康检查的地点、处理进行健康检查的医疗机构、保存试管1和运输试管1的过程等等,皆可记录于区块链网络200。如此一来,可以借由区块链可追溯且记录不易被窜改的特性,清楚记录和管理试管1内的液体300的液体来源和液体后的流通历程。借此,医护人员也可以通过区块链追溯物品流通历程的功能而快速追溯到受检验者的身分和液体来源。
以下请一并参考图4关于本发明的第二实施例的试管。图4本发明的第二实施例的试管的示意图。
如图4所示,第二实施例与第一实施例的差别在于,第二实施例的试管1a的管体10a更包括一注射针头11,注射针头11位于管体10a的底部。底支撑件20a更包括一支撑管21,支撑管21是圆管结构,其可容纳注射针头11并支撑管体10a的底部。盖体30a为可移动得设置于管体10a顶部,医护人员可以移除盖体30a而安装注射器的活塞芯杆。盖体30a的滴入管31和覆盖件40的数量皆为一个。借由上述结构,若是管体10a装的液体是疫苗,则疫苗可以直接通过注射针头11和活塞芯杆的推动而注射至人体,且管体10a可以直立得放置在底支撑件20a上而不会挤压到注射针头11。
借由本发明的试管1的设计,可以让试管1具有多元化且便利的多种功能,例如追溯液体的来源和历程、对试管1定位以确定试管1当下的位置、检测试管1的温度以监控试管1是否处于适宜的温度、用无线射频辨识方式来记录数据以便医护人员迅速读取数据,以及量测液体的性质。另外,管体是以生物可分解塑胶,其可以在自然环境被微生物分解,故具备环保的功效。
当然,本发明还可有其它多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明所附的权利要求的保护范围。
Claims (10)
1.一种试管,用以容纳一液体并与一区块链网络信号连接,其特征在于,该试管包括:
一管体,容纳该液体;
一盖体,设置于该管体的顶部,该盖体包括至少一滴入管;
至少一覆盖件,用以覆盖该至少一滴入管;
一芯片组,设置于该管体,该芯片组包括一区块链追溯件,该区块链追溯件用以将该液体的来源及该试管的一流通历程记录于该区块链网络以便追溯;以及
一检测模块,设置在该管体并信号连接该芯片组,该检测模块用以量测该液体的至少一液体性质。
2.根据权利要求1所述的试管,其特征在于,更包括一底支撑件,该底支撑件设置于该管体的底部。
3.根据权利要求2所述的试管,其特征在于,该芯片组更包括一定位件,用以对该试管定位。
4.根据权利要求3所述的试管,其特征在于,该芯片组更包括一温度检测件,用以检测该试管的温度。
5.根据权利要求4所述的试管,其特征在于,该芯片组更包括一电子标签件,该电子标签件以无线射频辨识的方式记录该试管的信息。
6.根据权利要求5所述的试管,其特征在于,更包括一无线模块,该无线模块设置在该管体并信号连接该芯片组、该检测模块和一外部计算机。
7.根据权利要求6所述的试管,其特征在于,更包括一电池,该电池设置在该管体并提供电力给该芯片组、该检测模块和该无线模块。
8.根据权利要求7所述的试管,其特征在于,该管体更包括一注射针头;该底支撑件更包括一支撑管,该支撑管容纳该注射针头。
9.根据权利要求8所述的试管,其特征在于,该管体是以生物可分解塑胶所制成。
10.根据权利要求9所述的试管,其特征在于,该定位件是一全球定位系统芯片。
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