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    • 4. 发明申请
    • Child Resistant Packaging for Multi-Prescription Order
    • 多处方订单的抗儿童包装
    • US20130161207A1
    • 2013-06-27
    • US13710176
    • 2012-12-10
    • Robert A. Luciano, JR.Warren White
    • Robert A. Luciano, JR.Warren White
    • B65D50/00B65B1/04
    • B65D50/00A61J1/03A61J1/1437A61J7/04A61J7/0454B65B5/061B65B63/04
    • A child-resistant container for dispensing pharmaceutical and non-pharmaceutical tablets is described. The child-resistant container includes a receptacle defining an opening, a neck that includes an outer surface and at least one thread formed on the outer surface of the neck. The child-resistant container further includes a rim adjacent to the neck having a push-tab locking device. The receptacle is configured to receive a plurality of pouches, wherein each pouch includes a plurality of tablets associated with a multiple prescription order that indicates when the tablets are to be consumed, and a label disposed on the receptacle and associated with the multiple prescription order. The child-resistant container is configured to hold a plurality of pouches, where each pouches contains at least one type of tablet. The child-resistant container includes a label with information about the contents of the pouches, patient information, and a bar code associating the medications with the patient.
    • 描述了用于分配药物和非药物片剂的防儿童容器。 防儿童容器包括限定开口的容器,包括外表面的颈部和形成在颈部的外表面上的至少一个螺纹。 防儿童容器还包括与颈部相邻的边缘,具有推挽锁定装置。 所述容器被构造成容纳多个袋,其中每个袋包括与多个处方顺序相关联的多个片剂,其指示片剂何时被消耗,以及设置在容器上并与多个处方顺序相关联的标签。 防幼儿容器构造成容纳多个袋,其中每个袋包含至少一种类型的片剂。 防儿童容器包括具有关于袋的内容,患者信息和将药物与患者相关联的条形码的标签。
    • 6. 发明申请
    • MULTIPLE INSPECTION SYSTEM AND METHOD THAT INSPECTS DIFFERENT MEDICATIONS
    • 多种检查系统和检查不同药物的方法
    • US20120296592A1
    • 2012-11-22
    • US13473304
    • 2012-05-16
    • Robert A. Luciano, JR.Warren White
    • Robert A. Luciano, JR.Warren White
    • G06F19/00
    • B65D75/36A61J7/0069A61J7/0084B65B5/103B65B57/16B65D75/527B65D75/5888B65D2577/2083
    • A multiple inspection system and method that inspects packages filled with at least two different medications that are to be consumed by a patient is described. The method includes filling each package with the at least two different medications. A package that is to be inspected is selected by a process control module. A first automated inspection examines the different medications with a first measurement device. A first measurement result is generated. A first automated inspection result is generated by comparing a first expected inspection value with the first measurement result. A second automated inspection having a second measurement device generates a second measurement result. A second automated inspection result is generated by comparing a second expected inspection value with the second measurement result. An analytical module then proceeds to compare the first automated inspection result and the second automated inspection result.
    • 描述了检查填充有待患者消耗的至少两种不同药物的包装的多重检查系统和方法。 该方法包括用至少两种不同的药物填充每个包装。 要检查的包由过程控制模块选择。 第一次自动检查使用第一个测量装置检查不同的药物。 产生第一个测量结果。 通过将第一预期检查值与第一测量结果进行比较来生成第一自动检查结果。 具有第二测量装置的第二自动检查产生第二测量结果。 通过将第二预期检查值与第二测量结果进行比较来生成第二自动检查结果。 然后,分析模块继续比较第一自动检查结果和第二自动检查结果。
    • 7. 发明申请
    • INSPECTION SYSTEM AND METHOD WITH A CONTROL PROCESS THAT INSPECTS DIFFERENT MEDICATIONS
    • 检查系统和方法与检查不同药物的控制过程
    • US20120290129A1
    • 2012-11-15
    • US13473267
    • 2012-05-16
    • Robert A. Luciano, JR.Warren White
    • Robert A. Luciano, JR.Warren White
    • G06F17/00
    • B65B57/10B65B5/103B65B9/06B65B35/54B65D75/42G01N21/9508G07F17/0092
    • An inspection system and method that inspects at least two different medications is described. The automated filling station houses at least two different medications. The automated inspection station receives the medications associated with one of the packages. The measurement device associated with the automated inspection station is configured to examine the different medications and generate a measured medication value for the different medications. The measured medication value is received by the inspection control process module. Additionally, the expected medication value is received by the inspection control process module. The inspection result state is then selected by the inspection control process module. The inspection control module compares the expected medication value to the measured medication value. The inspection result state includes a positive inspection result state, a negative inspection result state, and an inconclusive inspection result state.
    • 描述了检查至少两种不同药物的检查系统和方法。 自动化灌装站至少装有两种不同的药物。 自动检查站接收与一个包装相关联的药物。 与自动检查站相关联的测量装置被配置为检查不同的药物并产生用于不同药物的测量的药物值。 测量的药物值由检验控制过程模块接收。 另外,检查控制处理模块接收预期的药物值。 然后由检查控制处理模块选择检查结果状态。 检查控制模块将预期药物值与测量的药物值进行比较。 检查结果状态包括正检查结果状态,负检查结果状态和不确定的检查结果状态。
    • 9. 发明申请
    • SURFACE WATER HEATING SYSTEM FOR IRRIGATION AND FROST PREVENTION
    • 用于灌溉和防冻的表面加热系统
    • US20110247704A1
    • 2011-10-13
    • US13081984
    • 2011-04-07
    • Robert A. Luciano, JR.
    • Robert A. Luciano, JR.
    • F16K49/00
    • A01G13/065A01G17/06A01G25/02Y02A40/237Y10T137/6579
    • A surface water heating system for irrigation is described. The irrigation apparatus comprises an irrigation manifold, a heat exchanger, a first conduit system, and a second conduit system. A geothermal heated fluid, e.g. water, flows through the first conduit system. A first pump extracts the geothermal heated water from a geothermal source and conducts the heated water through the heat exchanger, and returns the geothermal water, now cooled, to the geothermal water source. Surface water flows through the second conduit system. A second pump extracts water from a higher quality water resource such as a surface water resource and conducts the illustrative surface water through the heat exchanger. Subsequently, the surface water is delivered to the irrigation manifold. Within the heat exchanger, heat is transferred from the geothermal heated water to the higher quality water resource. The geothermal heated water does not come into contact with the illustrative surface water within the irrigation apparatus.
    • 描述了用于灌溉的地面水加热系统。 灌溉设备包括冲洗歧管,热交换器,第一管道系统和第二管道系统。 地热加热的流体,例如 水流经第一管道系统。 第一台泵从地热源抽出地热加热水,并将热水通过热交换器,并将现在冷却的地热水送回地热水源。 地表水流过第二导管系统。 第二泵从较高质量的水资源例如地表水资源中提取水,并通过热交换器传导说明性的地表水。 随后,地表水被输送到冲洗歧管。 在热交换器中,热量从地热加热水转移到更高质量的水资源。 地热水不会与灌溉设备内的示例性表面水接触。