CN103477363A - 用于管理献血的系统和方法 - Google Patents

用于管理献血的系统和方法 Download PDF

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CN103477363A
CN103477363A CN2012800175715A CN201280017571A CN103477363A CN 103477363 A CN103477363 A CN 103477363A CN 2012800175715 A CN2012800175715 A CN 2012800175715A CN 201280017571 A CN201280017571 A CN 201280017571A CN 103477363 A CN103477363 A CN 103477363A
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詹姆斯·E·古德诺
詹姆斯·A·班克罗夫特
乔纳森·G·摩根
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Abstract

提供了从患者采集血液和管理献血的方法和装置,其可包括任何数量的特征。一个特征是被配置成从患者采集血液并周期性地将来自设备的采血数据发送至控制系统的采血设备。另一个特征是用于更新多个采血设备上的固件的系统和方法。在一个实施方式中,带有采血控制的软件接口可用于指定采血协议,且然后采血协议可被发送至一个或多个采血设备。

Description

用于管理献血的系统和方法
相关申请的交叉引用
本申请根据35U.S.C.119要求2011年4月12日提交的标题为“SYSTEMSANDMETHODSFORMANAGINGBLOODDONATIONS”的美国临时专利申请号61/474,679的利益。本申请通过引用被全部并入本文中。
通过引用并入
在本说明书中提到的所有出版物(包括专利和专利申请)在好像每个单独的出版物被特别地和单独地指示通过引用被并入一样的程度上通过引用被全部并入本文中。
领域
本文描述的是用在献血和血液管理中的设备和方法。特别是,本文描述的是用于获取献血和管理与献血相关的信息的设备和方法。
附图的简要说明
图1A是献血过程的示意性图示。
图1B是采血设备和控制系统的图示。
图2-5示出了血液数据管理系统的各种特征。
本公开的概述
在一个实施方式中,提供了一种监测实时抽血信息的方法,其包括利用采血设备从患者采集血液;当从所述患者采集血液时,开启采血设备的发送功能以将采血数据从采血设备发送至控制系统;在控制系统接收到采血数据之后关闭采血设备的发送功能;以及在再次开启采血设备的发送功能之前等待一段时间间隔。
在一些实施方式中,时间间隔在长度上高达30秒。
在其它实施方式中,采血数据选自由下列项组成的组:捐献ID、工作人员ID、采集的血液的体积、采集的血液的流速、采血设备的状态以及在血液采集期间的错误。
在一个实施方式中,采集血液步骤还包括利用多个采血设备从患者采集血液。在另外的实施方式中,所述方法还包括:在从患者采集血液时的多个时刻,开启多个采血设备的发送功能以将采血数据从采血设备发送至控制系统;在控制系统接收到采血数据之后关闭多个采血设备的发送功能;以及在再次开启多个采血设备的发送功能之前等待一段时间间隔。
在一些实施方式中,采集步骤包括利用采血设备自动地从患者采集血液。
在其它实施方式中,所述方法还包括在从患者采集到血液之后开启采血设备的发送功能至少一次。
提供了一种更新多个采血设备上的固件的方法,其包括选择第一采血设备作为主设备并且指定一个或多个另外的采血设备作为从设备,其中每个采血设备被配置成采集并测量血液采集;仅从主设备而不是从设备将对固件更新包的请求发送到控制系统;将固件更新包从控制系统发送至主设备和从设备,其中主设备与控制系统进行通信,而从设备被动地监听;以及用来自控制系统的升级的固件替换主设备和从设备上的基础固件。
在一些实施方式中,采血设备与控制系统进行无线通信。
在其它实施方式中,替换步骤包括用来自控制系统的升级的固件同时替换采血设备上的基础固件。
在一个实施方式中,替换步骤还包括用来自控制系统的升级的固件同时替换主设备和从设备上的基础固件。
一些实施方式还包括采取措施以确保存储在采血设备上的数据的数据完整性。
在另一个实施方式中,所述方法还包括采取措施以确保采集设备配置的数据完整性。
提供了一种指定用于采血设备的采集协议的方法,该方法包括:在采血控制系统中指定第一输入;在采血控制系统中指定在采血事件期间采血设备请求第一输入的第一时间;在采血控制系统中指定第二输入;在采血控制系统中指定在采血事件期间采血设备请求第二输入的第二时间;在采血控制系统中编译包括第一和第二输入以及第一和第二时间的采血协议;以及将采血协议从采血控制系统发送至一个或多个采血设备。
在一个实施方式中,第一和第二输入是条形码。
在另一个实施方式中,指定输入步骤包括指定条形码的长度和字符类型要求。
在一些实施方式中,第一时间在采血过程的开始。在另一个实施方式中,第二时间在采血过程的结束。
在一个实施方式中,第一输入是捐献ID。在另一个实施方式中,第二输入是工作人员ID。
在另一个实施方式中,第一时间在采血过程的开始。在一些实施方式中,第二时间在采血过程的开始。
在一个实施方式中,第一输入是生物识别输入。生物识别输入例如可以是指纹。
在另一个实施方式中,第一输入是产品代码。
提供了一种血液采集和监测系统,其包括:控制系统;与控制系统进行通信的采血设备,该采血设备被配置成从患者采集血液并采集与采集的血液相关的采血数据,采血设备还包括发射器,该发射器被配置成周期性地开启发送功能以将采血数据从采血设备发送至控制系统。
在一些实施方式中,采血设备的发射器被配置成一旦采血数据被发送至控制系统就关闭。在另一个实施方式中,采血设备的发射器在预设的时间之后自动地再次打开。在一些实施方式中,预设的时间在长度上小于30秒。
还提供了一种采血系统,其包括:主采血设备和多个从采血设备,每个采血设备被配置成采集和测量血液采集;控制系统,其被配置成仅从主采血设备而不是从采血设备接收对固件更新包的请求,控制系统还被配置成将固件更新包发送至主采血设备和从采血设备,其中控制系统被配置成与主采血设备进行通信,而从设备被动地监听,以用来自控制系统的升级的固件替换主采血设备和从采血设备上的基础固件。
在一些实施方式中,控制系统包括无线收发器,该无线收发器被配置成接收来自主采血设备的请求以及将固件更新包发送至主采血设备和从采血设备。
本公开的详细说明
图1A是献血过程的示意性图示,献血过程以捐献者注册和管理过程100开始,后面是血液和数据采集过程102,并且最后是血液记录管理过程104。通常,捐献者管理过程100包括招募和找出心甘情愿的献血者、确定献血者是否适合献血、安排献血以及为未来的捐献保留献血者。
献血过程的下一个步骤——血液和数据采集过程102可包括从献血者采集献血,以及采集与献血的采集有关的信息。在一些实施方式中,血液和数据采集过程102可包括采血设备106和控制系统108,其可以是在计算机系统或网络上存储和执行的软件代码。与献血的采集有关的信息可包括:例如,采血的时间和位置、抽取的血液的量、血型、负责采集血液的抽血者的雇员ID、采血所经过的时间、献血过程的中断等。
最后,一旦献血完成,血液记录管理过程104就负责管理和存储血液储备、跟踪各种血液类型的存储体积以及将血液分配至需要献血的地方(例如,医院和其它医疗中心)。
图1B是示出了图1A的采血设备106和控制系统108的图示。如图1B所示,在一些实施方式中,不只一个采血设备106可以与控制系统108联网以及进行双向通信。采血设备106被配置成给血库以及其它采血中心提供监测献血的采集的便宜又精确的装置。所述设备被配置成在采集过程期间准确地称献血的重量并向血袋提供混合操作,确保抗凝血剂的正确分配和减轻抽血者进行手动混合的需要。参照图1B,采血设备106可包括图形用户接口(GUI)110、台秤或袋托盘112、夹阀114和条形码扫描仪116。所述设备可被配置成接纳台秤和夹阀上的献血袋118,如所示。在一些实施方式中,献血袋包括经由采血设备的条形码扫描仪可读的条形码120。
GUI110允许用户(例如,抽血者)配置、校准并调试采血设备用于使用。在一些实施方式中,GUI110向用户显示信息,例如设备袋托盘112的校准状态、献血袋118的重量以及设备的工作状态(例如,校准、采血正在进行、采血完成、采集期间的错误等)。在设备的初始调试期间,用户可能被请求在袋托盘112上没有重量的情况下将设备归零或校准设备,以确保所采集的血液的精确测量。
在一些实施方式中,所述设备包括悬挂在内部负载传感器上的搅拌系统。搅拌系统可包括被配置成在采血期间搅拌/摇晃袋的电机驱动曲柄。搅拌系统被设计成用于最小的重量以及对搅拌/摇晃袋托盘112和因而搅拌/摇晃血袋所需的功率而优化。
当采血袋置于袋托盘112上时,搅拌系统的垂直振荡可以使从捐献者采集的血液从袋的一端流到另一端,导致血液和所包含的抗凝血剂的轻轻混合。由于搅拌系统可以被安装在内部负载传感器上,负载传感器于是可以感测袋托盘112、搅拌系统、血袋和累积的血液的重量。
采血设备还可包括夹阀114,该夹阀114被配置成打开和关闭从患者通向献血袋118的血袋线。因此,采血设备可被配置成当采血过程开始时打开夹阀114以及当采血完成时关闭夹阀。
采血设备可被配置成在采血过程期间自动测量累积的血液的重量。在一些实施方式中,每当在血袋和袋托盘112处于相对稳定的位置上时,累积的血液的重量被测量。在其它实施方式中,累积的血液被连续测量。通过定期地监测采集的血液的重量,采血设备可以计算从患者到采血袋的血液流速。重量测量和/或流速可用于确定何时完成采血过程。
当采血开始时,采血设备可以首先实现空血袋、搅拌系统和袋托盘组件的一系列重量读数。这可被记录在设备的存储器中作为皮重。通过使用1.058的恒定的血液比重(1.00毫升血液重量为1.058克),可以用数学方法将期望的采集容量从重量转换成体积。这个转换的重量值加上皮重导致目标重量,并在采集继续进行时与正在进行的重量读数进行比较。然后,采血设备可以打开夹阀以开始采血过程。
搅拌系统可以维持关闭状态,直到在皮重上看到重量的小的增加。采血设备一看到重量增加,搅拌系统就可以开始摇晃/摇动,并且各种其它的定时和流动功能可被激活。采血设备可以继续读取采血袋的重量。虽然这些读数是相对精确的,但是在一些实施方式中为了更高的精确度,当总重量略小于目标重量时,采血系统可以停止搅拌过程。然后,可以在袋和袋托盘在水平位置上的情况下获取采集的血液的最终读数。这时候,不必继续搅拌袋,因为抗凝血剂已经与袋中的血液完全混合。可选地,摇晃/摇动可在整个采集中继续,假定重量读数的精确度可被保证。
由于血库标准需要必须在设定的时间段(对于当前美国规范最多20分钟)内完成采血,所以较小的采集体积可以容忍较慢的流速。在一些实施方式中,采血设备测量流速并将其与计算的常数相比较,该计算的常数等于上述设定的时间段的最小流动值。作为结果,如果所需的体积更大,那么流速必须更大以实现在设定的时间段(例如,20分钟)内的填充。如果所需的体积更小,那么流速可以更慢。
采血设备106还可包括条形码扫描仪116,该条形码扫描仪116被配置成读取条形码作为设备的输入。例如,可以在采血过程期间扫描对于个人捐献者唯一的捐献ID,以跟踪与那个唯一的捐献ID有关的所有采集事件。在图2B中,捐献ID可被表示成位于献血袋118上的条形码120。
采血设备106可以在上述的采血过程的所有步骤(例如校准、采血和完成抽血)期间与控制系统108进行通信。采血设备和控制系统可以经由本领域中已知的任何技术例如通过WiFi或蓝牙连接无线地或通过有线以太网连接进行通信。控制系统可包括具有执行数据采集和管理软件所需的所有必要的硬件(例如,CPU、存储器、数据存储装置等)的计算机。
现在将描述控制系统108的数据采集和管理软件。软件在一个或多个采血设备和机构的血液数据管理系统之间创建接口。
在一些实施方式中,软件允许采血设备数据的查看和打印以及采血设备的远程配置和设置。在一些实施方式中,控制系统108的数据采集和管理软件可用于设置与它进行通信的采血设备106。控制系统可用于指定在抽血期间哪些参数被每个采血设备使用。例如,标准抽血可能需要从患者获取500毫升的血液,并且因此所有的采血设备可以被预先配置成自动地从每个患者抽取500毫升的血液。然而,如果患者明确仅给450毫升的血液,那么控制系统可用于将特定的采血设备上的抽血体积从500毫升变到450毫升。为实现此,450毫升的新的血液体积可被输入到控制系统108中,然后,将用于那个特定患者的采血设备可以从控制系统“拉”更新的配置(例如,通过将采血设备与控制系统同步)。
控制系统108的软件也可被配置成远程地更新与控制系统进行通信的所有采血设备的固件。可以参照图1B描述一种更新多个采血设备上的固件的方法。单个采血设备可被设定为“主”设备,并且剩余的采血设备可被设定为“从”设备。然后,“主”设备可以从控制系统108请求固件升级,并且然后“监听”来自控制系统的对该设备特定的响应。当“主”设备正在请求固件升级时,“从”设备也进入“监听”模式,其中它们等待来自控制系统的任何新的固件指令。当控制系统从“主”设备接收到固件升级请求时,控制系统接着可以将固件升级(如果可用的话)发送至所有的监听设备,包括“主”和“从”设备。然后,所有设备可以在同一时刻同时升级至新的固件,而不是每个设备必须单独地请求和接收来自控制系统的固件升级。
数据采集和管理软件可以采取措施以确保数据完整性并防止用户对数据或采血设备配置的未授权的行为。这些措施可包括个人记录校验和以及对配置实用程序的用户名和密码保护和数据文件传输、重命名或删除(“释放”)。软件系统还可通过将高达150或更多的捐献记录保持在每个采血设备中来防止数据丢失,用于重新传输至软件。
图2A-2B示出了用于数据采集和管理软件的图形接口的一个实施方式。在图2A中,“网络状态”标签可以显示与控制系统进行通信的所有不活动和当前活动的采血设备的状态。例如,参照图2A,每一行代表单独的采血设备(例如图1B中的采血设备106),其由在“ID”列中示出的唯一的设备ID表示。“状态”列显示每个设备的状态。当设备不在使用中时,状态可读取为“非活动”。当设备在采血过程的中间时,状态可读取为“中间-抽取”。采血过程的开始可被显示为“开始-扫描”的状态,以及采血过程的结束可被显示为“结束-恢复”的状态。
“网络状态”标签还可以显示与正在被监测的设备和采血过程相关的其它参数。例如,正由每个设备采集的血液的流速(“流动”列)、抽取的血液的总量(“毫升”列)、要抽取的血液的目标体积(“目标”列)、抽血的持续时间(“时间”列)、在抽血中是否存在错误(“错误”列)、患者的捐献ID(“捐献ID”列)以及每个设备的电池、校准和无线通信值(分别为“电池”、“校准”和“无线”列)都可以由软件实时地或准实时地显示。图2A中未示出的其他参数可以由软件监测和跟踪。例如,可以监测和记录执行抽血的人的职员ID。此外,可以跟踪和/或扫描二次捐献ID、样品管ID、采血设备的序列号以及抽血的位置和时间。
如上所提及的,“网络状态”标签提供与在采血过程期间出现的错误有关的信息。在一些情况下,错误可以与采血设备本身内的故障有关。通过跟踪特定设备的错误率,控制系统软件可被配置成跟踪和识别具有比正常更高的故障/错误率的特定的采血设备。类似地,控制系统软件可被配置成跟踪特定职员(例如护士、抽血者)是否是在导致错误的更高数量的抽血案例上的监督职员。这可用作识别特定职员的表现的问题的工具。
在一些实施方式中,信息被实时地显示,并且每个采血设备利用正被监测的每个设备的数据或状态的当前值不断地更新控制系统的软件。然而,在其它实施方式中,采血设备可以准实时地更新这些参数,即,设备可以在预设的时间段(例如,每30秒、每分钟、每5分钟等)之后周期性地更新软件的参数。
在准实时配置的一个实施方式中,采血设备可被配置成在预设的时间段之后自动地“打开”发送信号以将采集的参数发送至控制系统软件。当数据发送完成时,采血设备可接着被配置成在控制系统接收到采血数据之后自动地“关闭”发送信号。尽管当发送信号关闭时采血设备继续采集与抽血相关的数据,但是仅周期性地将数据发送或上载至控制系统节省了功率并可以允许采血设备依赖于电池功率工作一次几个星期而不是仅仅几天。在一些实施方式中,采血设备可被配置成在再次开启采血设备的发送功能之前等待一段时间间隔(例如,上面预设的时间)。可被发送的采集的参数除了别的以外还可包括捐献ID、职员ID、采集的血液的体积、采集的血液的流速、采血设备的状态或在血液采集期间的错误。
图2B示出了软件中的“最近抽取”标签,其可以显示在过去已经发生的采血事件的上述所有信息(例如,设备ID、状态、抽血量、血液的目标体积、抽血的持续时间、错误消息、捐献ID、电池、校准和无线值)。在一些实施方式中,“最近抽取”标签显示过去的采血事件的该信息,所述过去的采血事件尚未从软件系统上载或“释放”到另一个计算机系统或网络设备。“释放数据”标签可以将所有的过去的采血事件和来自“最近抽取”标签的数据释放到用户指定的位置。例如,数据可以作为数据文件被释放到本地计算机系统上,或可选地,可以被上载和释放到远程系统。
软件中的“选项”标签可以允许软件内的多个选项的单独配置。例如,参照图3,用户可以配置如何以及何时释放“最近抽取”数据。如图3所示,数据可被配置成在预定的时间段(例如,图3中的每720分钟)之后被自动地释放,并且将被创建的数据文件的位置和名称(例如,将被存储在计算机“桌面”上的“HemoflowReleaseDataFile”)可以被指定。
“选项”标签还允许各种输入大量定制到采血设备中。例如,在许多实施方式中,采血设备可被配置成扫描作为输入的唯一的标识符(例如,利用合并在采血设备中的条形码扫描仪来扫描条形码,或者利用合并在采血设备中的生物识别扫描仪来扫描生物特征例如指纹)。当条形码用作采血设备内的输入时,条形码本身的各种特征可被定制在软件中。
图4示出了如何在采血过程中将被使用的软件中定制各种条形码部件。可以在软件中定制条形码的长度、条形码的类型以及每个特定条形码在采血过程期间将被扫描的顺序。参照图4中的“字段1”框,用户可以通过软件为采血设备的条形码扫描仪指定字符的特定的“确切字符串”,以寻求接受作为输入的条形码。在该实例中,“确切字符串”可以是具有6个字符的字段大小的字符“=G1234”。当采血设备的条形码扫描仪用于扫描作为输入的条形码时,只有以字符的这个“确切字符串”开始的条形码将被识别。条形码的其余字符可以在软件的其它字段中被定制。仍参照图4,“字段2”可以指定接下来的5个字符(来自字段大小列)为“数字”字符,“字段3”可以指定在“字段2”后面的3个字符是“α”字符,以及“字段4”可以指定最后的2个字符是“数字”字符。
仍参照图4,软件的用户可以指定在采血过程中采血设备何时向抽血者提示条形码。在该实例中,在“捐献开始”时请求“条形码号1”(参照图4中的“何时”框)。此外,软件的用户甚至可以在特定条形码被请求用于输入时定制在采血设备上显示的内容,如图4中的“显示”框所示。在该实例中,在采血过程的开始,采血设备将请求以字符“=G1234”开始、随后为5个数字、随后为3个字母、随后为2个数字的16个字符的条形码。采血设备将在过程中的那个时间显示词“护士ID”,以指示护士或抽血者在过程中的那个时间扫描他的或她的雇员条形码。
这给予软件配置许多类型的条形码作为采血设备的输入以及也指定过程的什么时间扫描那个条形码的能力。图5示出了可在采血过程中的不同时刻被扫描的不同类型的条形码的一个序列。如上所述,可以在软件系统中定制条形码类型、名称和时间中的每一个。参照图5,在采血过程的开始,采血设备可以请求主血袋上的捐献ID条形码被扫描,随后扫描献血证上的捐献者ID条形码,随后扫描护士/抽血者的技师ID条形码,随后扫描产品例如血液的产品代码。一旦完成连续步骤1-4,就将允许采血设备开始采血过程。接下来,扫描样品管1和2的条形码的连续步骤5-6将在采血过程期间、在抽血结束之前被请求。最后,在抽血完成之后,将扫描第二技师ID(最初的护士/抽血者或者在完成时刻监测过程的护士/抽血者)。
对于有关本发明的其他细节,可采用如在相关领域中的技术人员的水平内的材料及生产技术。这从通常或逻辑上采用的附加行为来说可以适用于本发明的基于方法的方面。另外,设想所描述的发明性变形的任何可选特征可被阐述并独立地或者与本文所描述的特征中的任何一个或多个相结合来被主张。同样地,对单数项的提及包括所存在的多个相同项的可能性。更具体地,如在本文和所附的权利要求中所使用的,单数形式“一个”、“和”、“所述”以及“the”包括多个所指物,除非上下文另外清楚地指明。还注意到,权利要求可被起草为排除任何可选元素。因此,这个陈述预期用作对与权利要求元素的叙述相关的这种排它性的术语例如“单独”、“仅”等的使用或者“否定”限制的使用的前提基础。除非本文中另有规定,本文使用的所有技术和科学术语具有与本发明所属的领域中的普通技术人员所共同理解的相同的意义。本发明的范围不应由主题说明书限制,而是仅由所采用的权利要求术语的普通意义限制。

Claims (31)

1.一种监测实时抽血信息的方法,包括:
利用采血设备从患者采集血液;
当从所述患者采集血液时,开启所述采血设备的发送功能以将采血数据从所述采血设备发送至控制系统;
在所述控制系统接收到所述采血数据之后关闭所述采血设备的所述发送功能;以及
在再次开启所述采血设备的所述发送功能之前等待一段时间间隔。
2.根据权利要求1所述的方法,其中,所述时间间隔在长度上高达30秒。
3.根据权利要求1所述的方法,其中,所述采血数据选自由下列项组成的组:捐献ID、工作人员ID、采集的血液的体积、采集的血液的流速、所述采血设备的状态以及在血液采集期间的错误。
4.根据权利要求1所述的方法,其中,采集血液步骤还包括利用多个采血设备从患者采集血液。
5.根据权利要求4所述的方法,所述方法还包括:
在从所述患者采集血液时的多个时刻,开启多个采血设备的发送功能以将采血数据从所述采血设备发送至控制系统;
在所述控制系统接收到所述采血数据之后关闭所述多个采血设备的所述发送功能;以及
在再次开启所述多个采血设备的所述发送功能之前等待一段时间间隔。
6.根据权利要求1所述的方法,其中,采集步骤包括利用所述采血设备自动地从所述患者采集血液。
7.根据权利要求1所述的方法,还包括在从所述患者采集到血液之后开启所述采血设备的所述发送功能至少一次。
8.一种更新多个采血设备上的固件的方法,包括:
选择第一采血设备作为主设备并且指定一个或多个另外的采血设备作为从设备,其中每个采血设备被配置成采集并测量血液采集;
仅从所述主设备而不是所述从设备将对固件更新包的请求发送到控制系统;
将所述固件更新包从所述控制系统发送至所述主设备和所述从设备,其中所述主设备与所述控制系统进行通信,而所述从设备被动地监听;以及
用来自所述控制系统的升级的固件替换所述主设备和所述从设备上的基础固件。
9.根据权利要求8所述的方法,其中,所述采血设备与所述控制系统进行无线通信。
10.根据权利要求8所述的方法,其中,替换步骤包括用来自所述控制系统的所述升级的固件同时替换所述采血设备上的基础固件。
11.根据权利要求8所述的方法,其中,替换步骤还包括用来自所述控制系统的所述升级的固件同时替换所述主设备和所述从设备上的基础固件。
12.根据权利要求8所述的方法,还包括采取措施以确保存储在所述采血设备上的数据的数据完整性。
13.根据权利要求8所述的方法,还包括采取措施以确保采集设备配置的数据完整性。
14.一种指定用于采血设备的采集协议的方法,所述方法包括:
在采血控制系统中指定第一输入;
在所述采血控制系统中指定在采血事件期间所述采血设备请求所述第一输入的第一时间;
在所述采血控制系统中指定第二输入;
在所述采血控制系统中指定在所述采血事件期间所述采血设备请求所述第二输入的第二时间;
在所述采血控制系统中编译包括所述第一输入和所述第二输入以及所述第一时间和所述第二时间的采血协议;以及
将所述采血协议从所述采血控制系统发送至一个或多个采血设备。
15.根据权利要求14所述的方法,其中,所述第一输入和所述第二输入是条形码。
16.根据权利要求15所述的方法,其中,指定输入步骤包括指定所述条形码的长度和字符类型要求。
17.根据权利要求14所述的方法,其中,所述第一时间在采血过程的开始。
18.根据权利要求14所述的方法,其中,所述第二时间在采血过程的结束。
19.根据权利要求14所述的方法,其中,所述第一输入是捐献ID。
20.根据权利要求14所述的方法,其中,所述第二输入是工作人员ID。
21.根据权利要求19所述的方法,其中,所述第一时间在采血过程的开始。
22.根据权利要求20所述的方法,其中,所述第二时间在采血过程的开始。
23.根据权利要求14所述的方法,其中,所述第一输入是生物识别输入。
24.根据权利要求23所述的方法,其中,所述生物识别输入包括指纹。
25.根据权利要求14所述的方法,其中,所述第一输入是产品代码。
26.一种血液采集和监测系统,包括:
控制系统;
采血设备,其与所述控制系统进行通信,所述采血设备被配置成从患者采集血液并采集与所采集的血液相关的采血数据,所述采血设备还包括发射器,所述发射器被配置成周期性地开启发送功能以将所述采血数据从所述采血设备发送至所述控制系统。
27.根据权利要求26所述的系统,其中,所述采血设备的所述发射器被配置成一旦所述采血数据被发送至所述控制系统就关闭。
28.根据权利要求27所述的系统,其中,所述采血设备的所述发射器在预设的时间之后自动地再次开启。
29.根据权利要求28所述的系统,其中,所述预设的时间在长度上小于30秒。
30.一种采血系统,包括:
主采血设备和多个从采血设备,每个采血设备被配置成采集和测量血液采集;
控制系统,其被配置成仅从所述主采血设备而不是从所述从采血设备接收对固件更新包的请求,所述控制系统还被配置成将所述固件更新包发送至所述主采血设备和所述从采血设备,其中所述控制系统被配置成与所述主采血设备进行通信而同时所述从设备被动地监听,以用来自所述控制系统的升级的固件替换所述主采血设备和所述从采血设备上的基础固件。
31.根据权利要求30所述的系统,其中,所述控制系统包括无线收发器,所述无线收发器被配置成接收来自所述主采血设备的请求以及将所述固件更新包发送至所述主采血设备和所述从采血设备。
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