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    • 5. 发明申请
    • SONOPHOTODYNAMIC THERAPY FOR DENTAL APPLICATIONS
    • 用于牙科应用的SONOPHOTODYNAMIC治疗
    • WO2006022970A1
    • 2006-03-02
    • PCT/US2005/019707
    • 2005-06-03
    • ONDINE INTERNATIONAL LTD.LOEBEL, NicolasMARTIN, Roy, WallaceROSE, Andreas
    • LOEBEL, NicolasMARTIN, Roy, WallaceROSE, Andreas
    • A61N5/06
    • A61N5/062A61C1/088A61C17/02A61C17/20A61N5/0601A61N2005/0606
    • The present invention includes methods for killing microbes in an oral cavity or wound comprising: applying a photosensitizing composition to a locus or a wound (102); applying a fluid and sonic energy to the locus or wound (104); and irradiating the locus or wound with a light source at a wavelength absorbed by the photosensitizing composition so as to destroy microbes at the locus or wound (106). The present invention also include methods for killing microbes in an oral cavity or wound comprising: applying a photosensitizing composition to a locus or a wound (202); and applying sufficient sonic energy to the locus or wound in order to provide acoustic cavitation so as to destroy microbes at the locus or wound (204). The present invention further provides an apparatus for providing sonophotodynamic therapy includes one or more members (12) in communication with one or more of the following: a sonic energy source (20); a therapeutic fluid source (26) and a light source (22).
    • 本发明包括杀死口腔或伤口中的微生物的方法,包括:将光敏组合物施用于场所或伤口(102); 向所述场所或伤口施加流体和声波能量(104); 用光敏组合物吸收的波长的光源照射所述轨迹或者伤口,以破坏所述场所或伤口处的微生物(106)。 本发明还包括在口腔或伤口中杀死微生物的方法,包括:将光敏组合物施用于场所或伤口(202); 并向轨迹或伤口施加足够的声能,以提供声空化,从而破坏位点或伤口处的微生物(204)。 本发明还提供一种用于提供超声波动力疗法的装置,包括与以下一种或多种相通的一个或多个构件(12):声能量源(20); 治疗流体源(26)和光源(22)。
    • 6. 发明申请
    • OPTICAL SCANNER
    • 光学扫描仪
    • WO2006004644A1
    • 2006-01-12
    • PCT/US2005/022694
    • 2005-06-28
    • LOEBEL, NicolasROSE, AndreasGITLIN, MarkMELVILLE, David
    • LOEBEL, NicolasROSE, AndreasGITLIN, MarkMELVILLE, David
    • G02B7/182G02B26/10
    • G02B26/105G02B7/1821G02B26/10H02K33/12H02K33/16
    • An optical scanner 100 comprising stators 38, 40 spaced apart from each other but ferromagnetically coupled together; a magnet 9 positioned relative to the stators 38, 40 such that axis of symmetry of a magnetic field created by the magnet 9 is substantially equidistant from and passes in between the stators 38, 40; and a flexure element 11 positioned relative to the stators 38, 40 and the magnet 9 such that its center point substantially intersects axis of symmetry of the magnet's 9 magnetic field, wherein the flexure element 11 is not in physical contact with either the stators 38, 40 or the magnet 9. A method for oscillating an optical scanner's flexure element comprising using a magnet 9 disposed between two stators 38, 40 and beneath the flexure element 11 to create two magnetic circuits 30, 31 that are generally symmetric and coplanar with one another, wherein a portion of the circuits share a common magnetic path through the magnet 9 and remaining, non-common paths of the circuits 30, 31 through the stators 38, 40 are counter-directional relative to each other; applying electromagnetic flux to such circuits 30, 31 via stator electrical coils 5, 6 enhancing flux through one circuit 30 or 31 while impeding flux through the other circuit 30 or 31 and keeping the stator-induced flux vector through the magnet 9 unchanged; and reversing polarity of the stator-induced electromagnetic flux at a regular frequency in order to oscillate the flexure element 11.
    • 光学扫描器100包括彼此间隔开但铁磁耦合在一起的定子38,40; 相对于定子38,44定位的磁体9,使得由磁体9产生的磁场的对称轴线基本上与定子38,40之间等距并且通过定子38,40; 以及相对于定子38,40和磁体9定位的挠曲元件11,使得其中心点基本上与磁体9的磁场的对称轴线相交,其中,挠曲元件11不与定子38,34,40和 40或磁体9.一种用于振荡光学扫描仪的挠曲元件的方法,包括使用设置在两个定子38,40之间的磁体9并且在挠曲元件11下方形成两个彼此大致对称和共面的磁路30,31 其中一部分电路共享通过磁体9的公共磁路,并且电路30,31的剩余的非公共路径通过定子38,40相对于彼此是相反方向的; 通过定子电线圈5,6向这种电路30,31施加电磁通量,增强通过一个电路30或31的磁通,同时阻碍通过另一个电路30或31的磁通,并且使定子感应的磁通矢量保持不变; 并以正常频率反转定子感应电磁通量的极性,以便使挠曲元件11振荡。