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    • 1. 发明申请
    • Dropper bottle and accessories therefor
    • 滴管瓶及其配件
    • US20060108378A1
    • 2006-05-25
    • US10523516
    • 2003-08-06
    • Ben CohenNigel Kelly
    • Ben CohenNigel Kelly
    • B65D37/00
    • B65D47/18A61F9/0008B65D1/32B65D23/00B65D23/001
    • To overcome shortcomings of the prior art, the subject invention is provided which includes various dropper bottle designs and dropper bottle assemblies including accessories for dropper bottles. With certain aspects of the subject invention, improvements in the administration of eye drops is provided by adding accessories or modifications to conventional dropper bottles, so that doses and/or single drops may be administered in a repeatable and reliable manner. More specifically, certain embodiments use devices (10, 300) to restrict the amount the dropper bottle (12) is deformed in administering a dose; other embodiments rely on mechanical reduction of interior volume (without deformation of the dropper bottle (12)) to administer a dose, such as with a displaceable piston (500, 602); and, yet, a further embodiment provides a valving arrangement (402, 404) to limit a dose. Features (200) are also included which aid in the alignment of the dropper bottle's nozzle to the eye, and a feature (102) is provided for protecting the user's eye from potential damage which can occur if a pointed nozzle (104) is brought into contact with the eye during alignment. As will be appreciated by those skilled in the art, the various aspects and embodiments disclosed herein may be used singularly or in various combinations.
    • 为了克服现有技术的缺点,提供了本发明,其包括各种滴管瓶设计和滴管瓶组件,其包括用于滴管瓶的附件。 对于本发明的某些方面,通过向常规滴管瓶添加附件或修饰来提供滴眼剂的施用的改进,使得可以以可重复且可靠的方式施用剂量和/或单滴。 更具体地,某些实施例使用装置(10,300)来限制滴管瓶(12)施用剂量时变形的量; 其他实施例依赖于内部容积的机械减小(没有滴管瓶(12)的变形)来施加剂量,例如用可移位活塞(500,602); 而且另一实施例提供限制剂量的阀装置(402,404)。 还包括特征(200),其有助于将滴管瓶的喷嘴对准眼睛,并且提供特征(102),用于保护使用者的眼睛免受潜在的损害,如果尖嘴(104)进入 在对齐期间与眼睛接触。 如本领域技术人员将理解的,本文公开的各个方面和实施例可以单独使用或以各种组合使用。
    • 3. 发明申请
    • Dispensing pump accessories for preventing the ingress or air and for aiding in alignment
    • 分配泵配件,用于防止进入或空气并帮助对齐
    • US20050115992A1
    • 2005-06-02
    • US11029731
    • 2005-01-05
    • Ben CohenNigel Kelly
    • Ben CohenNigel Kelly
    • B05B11/00B67D5/40
    • B05B11/0059B05B11/0005B05B11/0027B05B11/0037B05B11/0038B05B11/00416B05B11/30
    • Accessories are provided for preventing the ingress of air into a dispensing pump (P) and to align a discharge aperture of the dispensing pump with a target, such as an eye (E). A dip tube (10) is disclosed that is sealed with a sealing plug (22) to serve as a liquid, reservoir for the dispensing pump. A pliant dip tube (100) is also disclosed to which is mounted an anchor (108) that causes the dip tube (100) to be responsive to gravitational orientation of a dispensing pump (P). In a third embodiment of the invention, a liquid reservoir (200) is formed with a recess (208) that is covered by a semi-permeable membrane (212). The semi-permeable membrane restricts flow in and out of the recess (208) to maintain a supply of liquid (L) about an end (210) of a dip tube (206). In a fourth embodiment, a safety is provided that comprises a safety ball (304), a blind aperture (306) defined in a nozzle cap (302), and a conical depression (308) defined in the dispensing pump (P). The safety ensures that the dispensing pump (P) is only actuated with the discharge aperture (300) of the dispensing pump (P) being oriented within a predetermined angular range of operation (α, β). In a fifth embodiment, a dispensing pump (P) includes a pump cylinder (400) that has one end thereof in close proximity to a base (402) of a liquid reservoir (404). A capillary action is created to cause liquid (L) to be drawn into the inlet opening (406) of the pump cylinder (400). Alignment aids (502; 600) are also disclosed to allow for proper alignment of a discharge aperture (500; 602) of a dispensing pump (P) with the eye (E) of a user.
    • 提供了用于防止空气进入分配泵(P)并使分配泵的排放孔与诸如眼睛(E)的目标对准的附件。 公开了一种用密封塞(22)密封以用作分配泵的液体储存器的汲取管(10)。 还公开了一种柔性汲取管(100),其中安装有锚(108),其使得汲取管(100)响应于分配泵(P)的引力定向。 在本发明的第三实施例中,液体储存器(200)形成有被半透膜(212)覆盖的凹部(208)。 半透膜限制进出凹部208的流动,以保持液体(L)在汲取管(206)的端部(210)周围的供应。 在第四实施例中,提供了一种安全性,其包括安全球(304),限定在喷嘴盖(302)中的盲孔(306)和限定在分配泵(P)中的锥形凹陷。 安全性确保了分配泵(P)仅在分配泵(P)的排放孔(300)定向在预定的角度操作范围(α,β)内的情况下被致动。 在第五实施例中,分配泵(P)包括其一端紧邻液体储存器(404)的基座(402)的泵筒(400)。 产生毛细管作用以使液体(L)被吸入泵缸(400)的入口(406)中。 还公开了对准辅助件(502; 600),以允许分配泵(P)的排出孔(500; 602)与使用者的眼睛(E)的适当对准。
    • 4. 发明申请
    • Microdispensing pump
    • 微分泵
    • US20060201975A1
    • 2006-09-14
    • US11436297
    • 2006-05-18
    • Ben CohenNigel Kelly
    • Ben CohenNigel Kelly
    • G01F11/10
    • B05B11/3052B05B11/0027B05B11/3001B05B11/3023B05B11/3054B05B11/3059
    • Several different features are provided for use with a pump, particularly a microdispensing pump. a first aspect of the subject invention, latch fingers are provided which coact with a stop member to yieldingly inhibit movement of an actuator of the pump to ensure sufficient momentum is provided to the pump for actuation. In a second aspect of the invention, an overcap is provided which defines an at least liquid-tight seal with the pump body at locations spaced from a nozzle of the pump to limit ingress of contaminants into the nozzle. In a third aspect, at least one protruding bead is provided in proximity to at least one edge of a label mounted to the pump body to restrict removal thereof. In a fourth aspect, at least one rib is provided in proximity to a dispensing cap to provide lateral stability thereto.
    • 提供了与泵,特别是微型分配泵一起使用的几个不同的特征。 本发明的第一方面,提供了闩锁指,其与停止构件共同作用以有效地阻止泵的致动器的运动,以确保向泵提供足够的动量用于致动。 在本发明的第二方面中,提供了一种顶盖,其限定了与泵主体在与泵的喷嘴间隔开的位置处的至少液密密封,以限制污染物进入喷嘴的入口。 在第三方面,至少一个突出的凸缘设置在安装到泵体的标签的至少一个边缘附近以限制其移除。 在第四方面,在分配帽附近提供至少一个肋,以向其提供横向稳定性。
    • 5. 发明申请
    • Microdispensing pump
    • 微分泵
    • US20060086760A1
    • 2006-04-27
    • US11296974
    • 2005-12-08
    • Ben CohenNigel Kelly
    • Ben CohenNigel Kelly
    • B65D88/54
    • B05B11/3018B05B11/0032B05B11/0037B05B11/0044B05B11/305B05B11/3052B05B11/3059B05B11/3061B05B15/52
    • A pre-compression pump (10) dispenses microdoses of fluid (F). The pump minimizes pulsing due to pressure fluctuations. The pump is provided with the following to limit pulsing: a low force slow return velocity return spring (46); enlarged fluid passage (58); elastic bumper (74); and, a rachet tooth (76) bearing against the stem (44). Further, a deflectable diaphragm (90), a splined (70) stem (44), no dip tube, and an off-center, gravitational low-point pump inlet (62) assist in printing the pump. The pump includes a stem (44) with deflectable fingers (92) to ensure sufficient momentum in pump operation. Detents (118) and grooves (120) selectively lock a nozzle cap (14) in an inoperative position. To ensure cleanliness, nozzle (60) cleaning is provided, wiping of the nozzle to remove meniscus (M) therefrom, cuts (104) formed in a shroud (98) assist in drawing excess fluid from the nozzle, and an empty volume (108) for collecting fluid run-off from the nozzle. A handle (H) is mounted to the pump providing a grip.
    • 预压缩泵(10)分配流体的微剂量(F)。 泵由于压力波动而使脉冲最小化。 泵具有以下功能以限制脉冲:低力慢返回速度复位弹簧(46); 扩大的流体通道(58); 弹性保险杠(74); 以及支撑在所述杆(44)上的棘爪齿(76)。 此外,可偏转隔膜(90),花键(70)杆(44),无汲管和偏心重力低点泵入口(62)有助于打印泵。 泵包括具有可偏转指状物(92)的杆(44),以确保泵操作中的足够动量。 止动器(118)和凹槽(120)选择性地将喷嘴帽(14)锁定在不工作位置。 为了确保清洁度,提供喷嘴(60)清洁,擦拭喷嘴以从其中去除弯液面(M),形成在护罩(98)中的切口(104)有助于从喷嘴抽取多余的流体,并且空的体积(108 )用于从喷嘴收集流体流出物。 手柄(H)安装在泵上,提供抓地力。
    • 6. 发明授权
    • Database system with multiple processing nodes
    • 具有多个处理节点的数据库系统
    • US07685193B2
    • 2010-03-23
    • US11414068
    • 2006-04-28
    • Ben Cohen
    • Ben Cohen
    • G06F7/00
    • G06F17/30498
    • A method and apparatus are provided for distributing a database join operation across a plurality of processing nodes. The database join operation is performed between a first table having M1 rows and a second table have M2 rows and involves forming M1×M2 combinations of rows from the first and second tables. The method includes allocating across the plurality of processing nodes the M1×M2 combinations of rows from the first and second tables. Each of the M1×M2 combinations is present on one of the nodes, and each node stores combinations corresponding to a subset of the M1 rows from the first table and a subset of the M2 rows from the second table. The method further comprises performing for each processing node the join operation in respect of all combinations of rows allocated to that processing node and collating results across all the processing nodes to complete the join operation.
    • 提供了一种用于在多个处理节点上分发数据库连接操作的方法和装置。 在具有M1行的第一表和第二表之间执行数据库连接操作具有M2行并涉及从第一和第二表形成行的M1×M2组合。 该方法包括在多个处理节点之间分配来自第一和第二表的行的M1×M2组合。 M1×M2组合中的每一个存在于其中一个节点上,并且每个节点存储对应于来自第一表的M1行的子集和来自第二表的M2行的子集的组合。 该方法还包括针对每个处理节点执行关于分配给该处理节点的所有行组合的连接操作,以及在所有处理节点之间整理结果以完成连接操作。
    • 7. 发明申请
    • LOW POWER ULTRASOUND SYSTEM
    • 低功率超声系统
    • US20080255451A1
    • 2008-10-16
    • US12100983
    • 2008-04-10
    • Ben CohenDylan K. RoblesShayne Messerly
    • Ben CohenDylan K. RoblesShayne Messerly
    • A61B8/00
    • A61B8/145A61B8/4472A61B8/4483A61B8/461A61B8/5207A61B8/56G01S7/003G01S7/52017G01S7/5208G01S7/52082G01S7/52085G01S7/52096G01S15/8909
    • A low power ultrasound system for use in sonography applications, including vascular imaging, is disclosed. In one embodiment, the low power ultrasound system comprises a base unit that includes an image processor and a display. An ultrasound probe is operably connected to the base unit. The probe includes a head portion including an array of crystal transducers. A plurality of pulser/receiver modules that cause the transducers to emit ultrasonic transmit pulses are also included in the probe. The pulser/receiver modules are further configured to receive analog signals relating to ultrasonic echo receive pulses detected by the transducers. The probe includes a singular low noise amplifier that amplifies the analog signals, and an analog-to-digital converter that converts the analog signals to a digital signal. A wireless interface is included for enabling the digital signal to be wirelessly transmitted from the probe to the image processor of the base unit.
    • 公开了一种用于超声波应用的低功率超声系统,包括血管成像。 在一个实施例中,低功率超声系统包括包括图像处理器和显示器的基本单元。 超声探头可操作地连接到基座单元。 探头包括包括晶体换能器阵列的头部。 导致换能器发射超声波发射脉冲的多个脉冲发生器/接收器模块也包括在探头中。 脉冲发生器/接收器模块还被配置为接收与由换能器检测到的超声回波接收脉冲有关的模拟信号。 该探头包括放大模拟信号的单个低噪声放大器,以及将模拟信号转换为数字信号的模数转换器。 包括无线接口,用于使数字信号从探头无线传输到基本单元的图像处理器。
    • 8. 发明申请
    • Database system with multiple processing nodes
    • 具有多个处理节点的数据库系统
    • US20070276788A1
    • 2007-11-29
    • US11414068
    • 2006-04-28
    • Ben Cohen
    • Ben Cohen
    • G06F17/30
    • G06F17/30498
    • A method and apparatus are provided for distributing a database join operation across a plurality of processing nodes. The database join operation is performed between a first table having M1 rows and a second table have M2 rows and involves forming M1×M2 combinations of rows from the first and second tables. The method includes allocating across the plurality of processing nodes the M1×M2 combinations of rows from the first and second tables. Each of the M1×M2 combinations is present on one of the nodes, and each node stores combinations corresponding to a subset of the M1 rows from the first table and a subset of the M2 rows from the second table. The method further comprises performing for each processing node the join operation in respect of all combinations of rows allocated to that processing node and collating results across all the processing nodes to complete the join operation.
    • 提供了一种用于在多个处理节点上分发数据库连接操作的方法和装置。 在具有M1行的第一表和第二表之间执行数据库连接操作具有M2行并且涉及从第一表和第二表形成行的M1×M2组合。 该方法包括在多个处理节点中分配来自第一和第二表的行的M1×M2组合。 M1xM2组合中的每一个存在于其中一个节点上,并且每个节点存储对应于来自第一表的M1行的子集的组合和来自第二表的M2行的子集。 该方法还包括针对每个处理节点执行关于分配给该处理节点的所有行的组合的联接操作,以及在所有处理节点之间整理结果以完成连接操作。