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    • 4. 发明申请
    • LIQUID ATOMIZATION DEVICE AND METHOD
    • 液体雾化装置和方法
    • WO2010051538A3
    • 2010-08-19
    • PCT/US2009062983
    • 2009-11-02
    • MICROLIN LLCJOSHI ASHOKGORDON JOHN
    • JOSHI ASHOKGORDON JOHN
    • A61M9/00A61L9/12
    • A61L9/14A01M1/205A61L2209/13
    • A device and method for atomizing a liquid for delivery to a target zone are presented. The liquid atomization device (100) may include a liquid reservoir (102) to contain a liquid, and a liquid pathway to receive at least a portion of the liquid from the liquid reservoir (102). The liquid pathway may include one end (110) communicating with the liquid reservoir (102), and another end communicating with a target zone. Two electrodes (116a, 116b) may be placed in the liquid pathway (104) to accommodate the liquid there between. An AC power source (126) may be connected to each of the electrodes (116a, 116b) to generate an alternating current through the liquid, thereby atomizing at least a portion of the liquid for delivery to the target zone.
    • 呈现了用于雾化液体以递送到目标区域的设备和方法。 液体雾化装置(100)可以包括用于容纳液体的液体容器(102)和用于从液体容器(102)接收至少一部分液体的液体路径。 液体通道可以包括与液体储存器(102)连通的一端(110),以及与目标区域连通的另一端。 两个电极(116a,116b)可以放置在液体通路(104)中以在其间容纳液体。 AC电源(126)可以连接到每个电极(116a,116b)以产生通过液体的交流电,从而雾化液体的至少一部分以输送到目标区域。
    • 5. 发明申请
    • TRANSDERMAL OXYGEN DELIVERY APPARATUS AND METHOD
    • 超氧氧传送装置和方法
    • WO2009126833A3
    • 2010-01-07
    • PCT/US2009040112
    • 2009-04-09
    • MICROLIN LLCJOSHI ASHOKGORDON JOHN
    • JOSHI ASHOKGORDON JOHN
    • A61M15/00A61M37/00
    • A61K9/0021A61M35/00A61M2202/0208
    • An apparatus and method for facilitating transdermal oxygen delivery is disclosed in one embodiment of the invention as including a supply source coupled to a delivery device. The supply source may provide a supply of oxygen that may be delivered transdermally through the skin of a patient via the delivery device (400). In selected embodiments, the delivery device (400) may include a barrier layer (406) to substantially retain the oxygen over a localized area of skin (412), and a gas-permeable contact layer (402) to deliver the oxygen to the localized area. Finally, a transport enhancement element (128) may increase the oxygen permeability of the localized area.
    • 在本发明的一个实施例中公开了一种用于促进透皮氧输送的装置和方法,包括耦合到输送装置的供应源。 供应源可以提供经由输送装置(400)经皮穿过患者皮肤的氧气供应。 在选择的实施例中,输送装置(400)可以包括阻挡层(406),以将氧气基本上保持在皮肤局部区域(412)上,以及气体可渗透的接触层(402),以将氧输送到局部 区。 最后,运输增强元件(128)可以增加局部区域的氧气渗透性。
    • 6. 发明申请
    • FLUID DELIVERY DEVICE
    • 流体输送装置
    • WO2007011923A3
    • 2007-11-22
    • PCT/US2006027800
    • 2006-07-17
    • MICROLIN LLCGORDON JOHN
    • GORDON JOHN
    • F04B23/04F04B41/06
    • A61M5/1408A61M5/14526A61M2005/14513
    • Disclosed are embodiments of systems, apparatus, and methods for delivering a fluid. In one illustrative embodiment, a fluid delivery device (100) includes a master piston (120) coupled with at least one slave piston (130) to move in unison with the master piston (120). A fluid power source (110), such as an electroosmotic pump, is also provided, which is configured to drive the master piston (120). The various pistons may be sized differently to provide for delivery rates that vary in proportion to the size difference between the pistons. In some embodiments, the fluid delivery device (100) may provide both a driving force and a suction force, such that a first fluid can be delivered out of a chamber (122) while a second fluid is delivered into that chamber (122) or a separate chamber (132).
    • 公开了用于输送流体的系统,装置和方法的实施例。 在一个说明性实施例中,流体输送装置(100)包括与至少一个从动活塞(130)联接以与主活塞(120)一体移动的主活塞(120)。 还设置有诸如电渗泵的流体动力源(110),其构造成驱动主活塞(120)。 各种活塞的尺寸可以不同,以提供与活塞之间的尺寸差成比例地变化的输送速率。 在一些实施例中,流体输送装置(100)可以提供驱动力和吸力,使得第一流体可以被输送出室(122),而第二流体被输送到该室(122)或 单独的室(132)。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR DELIVERING BENEFICIAL LIQUIDS AT STEADY RATE
    • 以稳定的速度提供有益液体的装置和方法
    • WO2010025412A3
    • 2010-06-10
    • PCT/US2009055432
    • 2009-08-28
    • MICROLIN LLCGORDON JOHNJOSHI ASHOKWOLD TRUMANBHAVARAJU SAI
    • GORDON JOHNJOSHI ASHOKWOLD TRUMANBHAVARAJU SAI
    • B01D61/00B01D63/00
    • A01M1/2044A61L9/12Y10T137/2931
    • An apparatus (1) for delivering a beneficial agent (2) is disclosed in one embodiment of the invention as including a water collection chamber. A water-transporting membrane (5) is provided to communicate with the water collection chamber (8). An extraction chamber receives water (9) through the water-transporting membrane (5), expanding the extraction chamber. A dispensing chamber, containing a beneficial agent (2), is configured to contract upon expanding the extraction chamber. This causes the dispensing chamber to expel the beneficial agent (2) through a subterranean delivery channel, such as a rigid hollow spike. In certain embodiments, a rate adjustment mechanism (6a, 6b) may control the rate that water (9) is received through the water-transporting membrane (5), thereby controlling the rate the beneficial agent (2) is expelled. The water-transporting membrane (5) has features that repel osmagent from passing through to the water collection chamber (8). The apparatus (1) features steady rate performance without refreshing the water chamber (8) and low temperature sensitivity.
    • 在本发明的一个实施例中公开了用于输送有益药剂(2)的设备(1),其包括水收集室。 提供一个水输送膜(5)以与水收集室(8)连通。 提取室通过输水膜(5)接收水(9),使提取室膨胀。 包含有益药剂(2)的分配腔室构造成在扩张提取腔室时收缩。 这导致分配室通过地下输送通道例如刚性空心钉将有益试剂(2)排出。 在某些实施方案中,速率调节机构(6a,6b)可控制通过水输送膜(5)接收水(9)的速率,从而控制有益剂(2)排出的速率。 输水膜(5)具有排斥渗透到水收集室(8)的特征。 该设备(1)具有稳定的速率性能而不需要刷新水室(8)和低温敏感性。