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    • 1. 发明专利
    • IES20000705A2
    • 2002-05-29
    • IES20000705
    • 2000-09-07
    • O'DEA JOHN
    • O'DEA JOHN
    • G06F17/60
    • An address website (1) store a schedule of address to which goods purchased by e-mail from a vendor's website (3) can be delivered for subsequent collection by the purchaser. The address website (1) may be accessible directly to a purchaser or vendor or may be accessed by the purchaser through the vendor's website (3) by clicking on an icon (4). An icon (5) in the address website facilitates scrolling through the schedule of addresses, and an icon (6) facilitates selections of one of the addresses. The vendor's website (3) or the address (1) generates a transaction code and the address website (1) cross-references the selected address and the transaction code for transmission to the vendor's website (3) and to the purchaser. On goods being delivered to the selected address the goods are scanned and the receipt of the goods at the selected address is transmitted to the address website and in turn to the purchaser and the vendor, thereby alerting the purchaser to collect the goods from the selected address on presentation of the transaction code.
    • 3. 发明申请
    • A MICRO-NEEDLE DEVICE AND APPARATUS AND A METHOD FOR APPLYING A MICRO-NEEDLE ELEMENT TO A SITE ON THE SKIN OF A SUBJECT
    • 微针装置和装置以及将微针元件应用于主体皮肤上的现场的方法
    • WO2010125551A2
    • 2010-11-04
    • PCT/IE2010000032
    • 2010-04-29
    • JANISYS LTDO'DEA JOHNBAMBURY EOIN
    • O'DEA JOHNBAMBURY EOIN
    • A61M37/00
    • A61M37/0015A61M2037/0023A61M2037/0061A61M2205/13
    • A micro-needle device (3) comprises a micro-needle element (2) which is carried on a strap (14) and is securable around a limb of a subject by the strap (14) with the micro-needle element (2) located at a desired site. A pressure sensor (23) is located between the strap (14) and the micro-needle element (2) for detecting the pressure at which the micro-needle element (2) is urged into engagement with the skin of the subject. An adjustable clasp (18) secures the strap (14) and permits adjustment of the tension in the strap (14) for in turn adjusting the pressure with which the micro-needle element (2) is urged into engagement with the skin of the subject. An electronic control circuit located in a housing (26) mounted on the strap (14) monitors the pressure read by the pressure sensor (23) and operates three light emitting diodes (28,29,30) to indicate the pressures with which the micro-needle element (2) is urged into engagement with the skin of the subject, and also to indicate when the micro-needle element (2) is urged into engagement with the skin of the subject by the strap (14) with micro-needles (5) of the micro-needle element (2) penetrating the skin of the subject to a desired depth.
    • 微针装置(3)包括微针元件(2),所述微针元件(2)承载在带(14)上,并且通过所述带(14)与所述微针元件(2)可缠绕在受试者的肢体周围, 位于所需的位置。 压力传感器(23)位于带(14)和微针元件(2)之间,用于检测微针元件(2)被迫与受试者的皮肤接合的压力。 可调扣环(18)固定带子(14)并且允许调节带子(14)中的张力,从而调节微针元件(2)被推动与受试者的皮肤接合的压力 。 位于安装在带子(14)上的壳体(26)中的电子控制电路监测由压力传感器(23)读取的压力,并操作三个发光二极管(28,29,30),以指示微型 - 针头元件(2)被推动与被检体的皮肤接合,并且还指示微针元件(2)何时被带子(14)用微针推动与被检体的皮肤接合 (2)的微针元件(5)穿透受试者的皮肤到期望的深度。
    • 4. 发明申请
    • A TRANSFER DEVICE FOR TRANSFERRING A SUBSTANCE BETWEEN THE DEVICE AND A SUBJECT
    • 用于传送设备和主体之间的物质的传送设备
    • WO2010052692A1
    • 2010-05-14
    • PCT/IE2009/000076
    • 2009-11-04
    • JANISYS LIMITEDO'DEA, JohnBAMBURY, Eoin
    • O'DEA, JohnBAMBURY, Eoin
    • A61M37/00A61K9/00A61B10/00
    • A61M37/0015A61B17/205A61B2010/008A61M2037/0023A61M2037/003A61M2037/0038A61M2037/0053A61M2037/0061
    • A micro-needle delivery device (1) comprises an active substance accommodating layer (17) having active substance accommodating chambers (20) therein, a drive substance accommodating layer (32) having drive substance accommodating chambers (35) therein aligned with the active substance accommodating chambers (20), an activating layer (45) having heating elements (48) aligned with the drive substance accommodating chambers (35) for heating a drive substance therein, and a micro-needle element (8) having a needle support layer (9) and a plurality of micro-needles (12) extending therefrom. A burstable first membrane (22) is located between and sealably secured to the micro-needle element (8) and to the active substance accommodating layer (17) for sealably closing the active substance accommodating chambers (20) at one end. A second stretchable membrane (30) is located between and sealably secured to the drive substance accommodating layer (32) and to the active substance accommodating layer (17) sealably closes the active substance accommodating chambers (20) at the other end, and the drive substance accommodating chambers (35). A third membrane (40) sealably closes the drive substance accommodating chambers (35).
    • 微针输送装置(1)包括其中具有活性物质容纳室(20)的活性物质容纳层(17),具有与活性物质对准的驱动物质容纳室(35)的驱动物质容纳层(32) 容纳室(20),具有与用于加热其中的驱动物质的驱动物质容纳室(35)对准的加热元件(48)的活化层(45)和具有针支撑层的微针元件(8) 9)和从其延伸的多个微针(12)。 可爆破的第一膜(22)位于微针元件(8)之间并且可密封地固定到活动物质容纳层(17)上,用于在一端密封地封闭活性物质容纳室(20)。 第二可拉伸膜(30)位于驱动物质容纳层(32)之间并且可密封地固定在驱动物质容纳层(32)上并且活性物质容纳层(17)在另一端密封地封闭活性物质容纳室(20) 物质容纳室(35)。 第三膜(40)密封地封闭驱动物质容纳室(35)。
    • 5. 发明申请
    • A SYSTEM, DEVICE AND A METHOD FOR DILATING A STRICTURE IN A LUMEN AND FOR DETERMINING THE TRANSVERSE CROSS-SECTIONAL AREA OF A LUMEN OR CAVITY
    • 一种系统,装置和方法,用于在腔室中扩大狭窄并且用于确定腔室或腔室的横向截面面积
    • WO2009001328A3
    • 2008-12-31
    • PCT/IE2008/000070
    • 2008-06-27
    • FLIP TECHNOLOGIES LIMITEDO'DEA, JohnMcHUGH, AdrianGRIFFIN, Patrick
    • O'DEA, JohnMcHUGH, AdrianGRIFFIN, Patrick
    • A61B5/03A61B5/107A61B5/22
    • A system (1) for dilating an occlusion (3) in an oesophagus (4) comprises a device (5) having a catheter (8) extending from a proximal end (9) to a distal end (10). An inflatable balloon (12) defining a hollow interior region (14) is located on the catheter (8) adjacent the distal end (10) thereof for dilating the occlusion (3). The balloon (12) is inflated with a saline solution by a pump (34) through an axial communicating bore (20) and radial communicating bores (21) in the catheter (8). A pair of stimulating electrodes (25) on the catheter (8) within the balloon (12) adjacent axially opposite ends (18,19) thereof receive stimulating voltage signals from a signal generator (43). Receiving electrodes (28) on the catheter (8) between the stimulating electrodes (25) produce resulting voltage signals in response to the stimulating current signal on the stimulating electrodes (25) which are indicative of the transverse cross-sectional area of the balloon (12) adjacent the receiving electrodes (28) when the balloon (12) is inflated with the saline solution. A microprocessor (35) determines the diameter of the balloon (12) at the receiving electrodes (28) from the resulting signals thereon, and displays a three-dimensional image (46) of the balloon (12) on a visual display screen (47) as well as the corresponding diameter values in windows (48) on the visual display screen (47). A surgeon observes an image of the balloon (12) which corresponds to an image of the occlusion (3) and adjacent portion of the oesophagus (4) during dilating of the occlusion (3).
    • 用于扩张食道(4)中的闭塞物(3)的系统(1)包括具有从近端(9)延伸到远端(9)的导管(8)的装置(5) (10)。 限定中空内部区域(14)的可膨胀气囊(12)位于导管(8)上与其远端(10)相邻,用于扩张阻塞(3)。 气囊(12)通过泵(34)通过导管(8)中的轴向连通孔(20)和径向连通孔(21)用盐水溶液充气。 气囊(12)内的导管(8)上的一对刺激电极(25)与其轴向相对的两端(18,19)相邻接收来自信号发生器(43)的刺激电压信号。 在刺激电极(25)之间的导管(8)上接收电极(28)响应刺激电极(25)上的刺激电流信号产生所产生的电压信号,这些信号指示囊的横截面积 当气囊(12)用盐水溶液充气时,邻近接收电极(28)。 微处理器(35)根据其上产生的信号确定接收电极(28)处的气球(12)的直径,并在可视显示屏(47)上显示气球(12)的三维图像(46) )以及视觉显示屏(47)上的窗口(48)中的对应直径值。 外科医生在闭塞(3)扩张期间观察与对应于闭塞物(3)和食道(4)的邻近部分的图像的球囊(12)的图像。
    • 7. 发明申请
    • A METHOD AND APPARATUS FOR DETERMINING VOLUME OF A VESSEL
    • 一种用于确定船舶体积的方法和装置
    • WO2009081387A1
    • 2009-07-02
    • PCT/IE2008/000125
    • 2008-12-22
    • FLIP TECHNOLOGIES LIMITEDO'DEA, John
    • O'DEA, John
    • A61B5/107
    • A61B5/1076A61B5/0538A61B5/6853
    • Apparatus for determining the volume of a vessel (2,3) or a part thereof comprises a balloon catheter (5) having a catheter (6) and an inflatable balloon (10) located at a distal end (8) thereof which when inflated defines with the catheter (6) an annular hollow interior region (12). A pair of spaced apart stimulating electrodes (14) are located on the catheter (6) within the balloon (10) and a plurality of spaced apart sensing electrodes (15) are located on the catheter (6) between the stimulating electrodes (14). The balloon (10) is inflated by an electrically conductive saline solution to define the interior of the vessel (2,3). A stimulus signal of constant current is applied to the stimulating electrodes (14), resulting voltages on the sensing electrodes (15) are read for determining the transverse cross-sectional area of the balloon adjacent the respective sensing electrodes (15). By selecting two electrodes of the sensing electrodes (15) between which the volume of the vessel is to be determined, the volume of all or a part of the vessel (2,3) is determined, depending on the two sensing electrodes (15) which are selected.
    • 用于确定容器(2,3)或其一部分的体积的装置包括具有导管(6)和位于其远端(8)处的可膨胀气囊(10)的气囊导管(5),当膨胀定义 导管(6)具有环形中空的内部区域(12)。 一对间隔开的刺激电极(14)位于气囊(10)内的导管(6)上,并且多个间隔开的感测电极(15)位于刺激电极(14)之间的导管(6)上, 。 气球(10)由导电盐水溶液充气以限定容器(2,3)的内部。 对刺激电极(14)施加恒定电流的刺激信号,读取感测电极(15)上产生的电压,以确定邻近相应检测电极(15)的气球的横截面积。 通过选择要确定容器体积的感测电极(15)的两个电极,根据两个感测电极(15)确定容器(2,3)的全部或一部分的体积, 被选中。
    • 8. 发明申请
    • A CATHETER AND A METHOD FOR PRODUCING A CATHETER
    • 一种导管及其制造方法
    • WO2009001327A2
    • 2008-12-31
    • PCT/IE2008000069
    • 2008-06-27
    • FLIP TECHNOLOGIES LTDO'DEA JOHNMCHUGH ADRIANGRIFFIN PATRICK
    • O'DEA JOHNMCHUGH ADRIANGRIFFIN PATRICK
    • A61F2/958A61M25/16A61B5/00A61B5/042A61M25/00
    • A61M25/0013A61B5/0215A61B5/036A61B5/1076A61B5/6852A61B18/1492A61B2018/00214A61B2018/0022A61B2018/00577A61B2018/00898A61M25/1027A61M2025/1088A61N1/056Y10T29/49002Y10T29/49117Y10T29/49174Y10T29/49179Y10T156/10
    • A method for producing a catheter (100) having a plurality of axially spaced apart electrodes (5) towards a distal end (4) of the catheter (100) comprises forming the electrodes (5) from a single sheet (110) of electrically conductive foil material by forming spaced apart slots (111) in the sheet material to define a plurality of spaced apart electrically conductive elements (114) extending transversely between spaced apart elongated connecting portion (112,113). The electrically conductive elements (114) subsequently form the electrodes (5), and are retained spaced apart by the connecting portions (112,113) until bonded to the catheter (100). Electrically conductive wires (10) electrically coupled to the electrically conductive elements (114) extend through an elongated slot (105) into and along an axial communicating bore (9) to a proximal end (3) of the catheter (100). Two pieces of double-sided adhesive tape (118) bonded to the electrically conductive elements (114) in turn bond the electrically conductive elements (114) to the catheter (100). After entering the wires (10) into the axial communicating bore (9) the electrically conductive elements (114) with the double-sided tape (118) are wrapped around the catheter (100) and are severed from the connecting portions (112,113). Free ends (115) of the electrically conductive elements (114) abut each other to form the electrodes (5) as band electrodes.
    • 一种用于制造导管(100)的方法,该导管(100)具有朝向导管(100)的远端(4)的多个轴向间隔开的电极(5),包括从单个导电片(110)形成电极(5) 通过在片材中形成间隔开的狭槽(111)以限定在间隔开的细长连接部分(112,113)之间横向延伸的多个间隔开的导电元件(114)。 导电元件(114)随后形成电极(5),并被连接部分(112,113)间隔开,直到结合到导管(100)。 电耦合到导电元件(114)的导电导线(10)延伸穿过并沿着轴向连通孔(9)的细长槽(105)延伸到导管(100)的近端(3)。 接合到导电元件(114)的两片双面胶带(118)又将导电元件(114)结合到导管(100)。 在将电线(10)进入轴向连通孔(9)之后,具有双面胶带(118)的导电元件(114)缠绕在导管(100)周围并且从连接部分(112,113)切断。 导电元件(114)的自由端(115)彼此邻接以形成电极(5)作为带状电极。