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    • 1. 发明授权
    • Embedding items with RFID tags for tracking and calibration
    • 使用RFID标签嵌入物品进行跟踪和校准
    • US07667603B2
    • 2010-02-23
    • US11404567
    • 2006-04-13
    • Jarie G. BolanderPaul A. LovoiTeri E. JudelsonGeoff A. Zawolkow
    • Jarie G. BolanderPaul A. LovoiTeri E. JudelsonGeoff A. Zawolkow
    • G08B13/14
    • G06Q10/087
    • RFID tags of very small size are embedded in products or composed of products in a manufacturing process. The system employs different read and write modes to enable auto-tracking of material, some assembly, assembly and component items through various stages of the manufacturing process. As each item passes special predetermined points in the manufacturing process, the embedded tag is activated and placed in track mode. The tag transmits its ID and a track count representing the number of stations passed. The tag's track count is incremented and the updated track count is stored in non-volatile memory in the tag. The tags can be programmed so that once the count exceeds a predetermined count, a status bit is set in the tag's memory indicating that the item has been completely through the manufacturing process. Thus, the system can determine whether an item or product has been completed. After manufacture the same RFID tag can be used for tracking, inventory and item authentication.
    • 非常小尺寸的RFID标签嵌入产品中或由制造过程中的产品组成。 该系统采用不同的读写模式,可以通过制造过程的各个阶段自动跟踪材料,组件,组件和组件。 当每个物品在制造过程中通过特定的预定点时,嵌入的标签被激活并被放置在轨道模式中。 标签发送其ID和表示通过的站数的轨迹计数。 标签的轨道数量增加,更新的轨道数量存储在标签中的非易失性存储器中。 可以对标签进行编程,使得一旦计数超过预定计数,在标签的存储器中设置状态位,指示该项目已经完全通过制造过程。 因此,系统可以确定物品或产品是否已经完成。 制造完成后,可以使用相同的RFID标签进行跟踪,库存和物品认证。
    • 2. 发明授权
    • System for powering and reading RFID tags
    • RFID标签的供电和读取系统
    • US07812725B2
    • 2010-10-12
    • US11644075
    • 2006-12-21
    • Jarie G. BolanderPaul A. LovoiGeoff A. Zawolkow
    • Jarie G. BolanderPaul A. LovoiGeoff A. Zawolkow
    • G08B13/14
    • H04B5/0037H02J17/00H02J50/20
    • A system for tracking items using passive RFID tags utilizes separate data and power frequencies. Within an area in which the items are located, one or more data readers are provided but many more separate power modules are distributed through the space, for powering up the tags. With the power nodes distributed, the tags are powered from a relatively short distance, enabling the tags to transmit through a greater distance. One or more of the readers can include a power-node control which sends an RF signal to control on/off status of specific power nodes within the area, so that power nodes can be activated zone by zone, to thereby permit the reader to determine location by zone of products as their RFID tags are read.
    • 使用无源RFID标签跟踪物品的系统使用单独的数据和电源频率。 在项目所在的区域内,提供了一个或多个数据读取器,但是通过该空间分配了更多的分开的电源模块,以便为标签加电。 在功率节点分布的情况下,标签从相对较短的距离供电,使标签能够通过更大的距离进行传输。 一个或多个读取器可以包括发送RF信号以控制区域内的特定功率节点的开/关状态的功率节点控制,使得功率节点可以逐区激活,从而允许读取器确定 读取产品的区域作为RFID标签。
    • 3. 发明申请
    • EMBEDDING ITEMS WITH RFID TAGS FOR TRACKING AND CALIBRATION
    • 嵌入式RFID标签用于跟踪和校准
    • US20100023429A1
    • 2010-01-28
    • US11404567
    • 2006-04-13
    • Jarie G. BolanderPaul A. LovoiTeri E. JudelsonGeoff A. Zawolkow
    • Jarie G. BolanderPaul A. LovoiTeri E. JudelsonGeoff A. Zawolkow
    • G06Q10/00G08B13/14G06Q50/00A61B5/00G06F17/00
    • G06Q10/087
    • RFID tags of very small size are embedded in products or composed of products in a manufacturing process. The system employs different read and write modes to enable auto-tracking of material, some assembly, assembly and component items through various stages of the manufacturing process. As each item passes special predetermined points in the manufacturing process, the embedded tag is activated and placed in track mode. The tag transmits its ID and a track count representing the number of stations passed. The tag's track count is incremented and the updated track count is stored in non-volatile memory in the tag. The tags can be programmed so that once the count exceeds a predetermined count, a status bit is set in the tag's memory indicating that the item has been completely through the manufacturing process. Thus, the system can determine whether an item or product has been completed. After manufacture the same RFID tag can be used for tracking, inventory and item authentication.
    • 非常小尺寸的RFID标签嵌入产品中或由制造过程中的产品组成。 该系统采用不同的读写模式,可以通过制造过程的各个阶段自动跟踪材料,组件,组件和组件。 当每个物品在制造过程中通过特定的预定点时,嵌入的标签被激活并被放置在轨道模式中。 标签发送其ID和表示通过的站数的轨迹计数。 标签的轨道数量增加,更新的轨道数量存储在标签中的非易失性存储器中。 可以对标签进行编程,使得一旦计数超过预定计数,在标签的存储器中设置状态位,指示该项目已经完全通过制造过程。 因此,系统可以确定物品或产品是否已经完成。 制造完成后,可以使用相同的RFID标签进行跟踪,库存和物品认证。
    • 4. 发明申请
    • System for powering and reading RFID tags
    • RFID标签的供电和读取系统
    • US20080150696A1
    • 2008-06-26
    • US11644075
    • 2006-12-21
    • Jarie G. BolanderPaul A. LovoiGeoff A. Zawolkow
    • Jarie G. BolanderPaul A. LovoiGeoff A. Zawolkow
    • H04B7/00
    • H04B5/0037H02J17/00H02J50/20
    • A system for tracking items using passive RFID tags utilizes separate data and power frequencies. Within an area in which the items are located, one or more data readers are provided but many more separate power modules are distributed through the space, for powering up the tags. With the power nodes distributed, the tags are powered from a relatively short distance, enabling the tags to transmit through a greater distance. One or more of the readers can include a power-node control which sends an RF signal to control on/off status of specific power nodes within the area, so that power nodes can be activated zone by zone, to thereby permit the reader to determine location by zone of products as their RFID tags are read.
    • 使用无源RFID标签跟踪物品的系统使用单独的数据和电源频率。 在项目所在的区域内,提供了一个或多个数据读取器,但是通过该空间分配了更多的分开的电源模块,以便为标签加电。 在功率节点分布的情况下,标签从相对较短的距离供电,使标签能够通过更大的距离进行传输。 一个或多个读取器可以包括发送RF信号以控制区域内的特定功率节点的开/关状态的功率节点控制,使得功率节点可以逐区激活,从而允许读取器确定 读取产品的区域作为RFID标签。
    • 7. 发明授权
    • Everting gynecological brachytherapy applicator and method
    • 永乐妇科近距离放射治疗仪及方法
    • US07914435B2
    • 2011-03-29
    • US11811295
    • 2007-06-07
    • James E. JervisPaul A. Lovoi
    • James E. JervisPaul A. Lovoi
    • A61N5/00
    • A61N5/1016
    • An everting applicator for brachytherapy of body cavities such as the vagina has a flexible sleeve secured to a distal mandrel, both the sleeve and the mandrel having internal lumens. The flexible sleeve has a diverging opening at its distal end, preferably bell-shaped or cone-shaped, such that when the open end is pushed against the mouth of a vagina, the sleeve will evert back upon itself, progressively unrolling to an inside out configuration wherein, fully inserted, the sleeve is fully everted back over the exterior surface of the mandrel. A radiation source, isotopic or electronic, is then inserted into the mandrel lumen to commence a therapeutic irradiation procedure of tissues of the vagina.
    • 用于诸如阴道的体腔近距离放射治疗的止痛器具有固定到远端心轴的柔性套管,套筒和心轴都具有内腔。 柔性套管在其远端具有分叉的开口,优选为钟形或锥形,使得当开口端被推靠在阴道口时,套筒将自身退回,逐渐展开到内侧 配置,其中,完全插入,套筒完全退回到心轴的外表面上。 然后将辐射源,同位素或电子插入到心轴腔中,以开始阴道组织的治疗辐射程序。
    • 8. 发明申请
    • Radiation sensor arrays for use with brachytherapy
    • 用于近距离放射治疗的辐射传感器阵列
    • US20100127181A1
    • 2010-05-27
    • US12321593
    • 2009-01-21
    • Paul A. LovoiSteve Axelrod
    • Paul A. LovoiSteve Axelrod
    • G01T1/02
    • G01T1/00G01T1/026
    • A radiation sensor array is carried on a flexible sheet of film, for placement on the skin of a patient adjacent to a brachytherapy location beneath the skin. With the array approximately centered on a position where radiation source to skin distance is estimated to be minimum, the array of sensors is used to monitor radiation dose received at the skin. With a controller connected to the array and preferably also to the radiation source in the applicator, the radiation dose received at all skin points of interest can be monitored, a point of maximum dose and a projected approach to limit dose can be calculated, and in response the system can warn the operator or control a brachytherapy procedure so as to discontinue radiation or control the radiation level or source position in real time. The system can also include percutaneous sensors.
    • 辐射传感器阵列承载在柔性薄膜片上,用于放置在与皮肤附近的近距离放射治疗位置相邻的患者的皮肤上。 以阵列为中心,辐射源至皮肤距离估计为最小的位置,传感器阵列用于监测皮肤接收的辐射剂量。 通过将控制器连接到阵列并且优选地也连接到施用器中的辐射源,可以监测在所有皮肤感兴趣点处接收的辐射剂量,可以计算最大剂量点和限制剂量的预计接近点,并且在 响应系统可以警告操作者或控制近距离放射治疗程序,以便实时中止辐射或控制辐射水平或源位置。 该系统还可以包括经皮传感器。