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    • 1. 发明授权
    • Illumination system with alignment mechanism and method
    • 具有对准机构和方法的照明系统
    • US07226185B2
    • 2007-06-05
    • US11021733
    • 2004-12-23
    • Michael DolginSimon Magarill
    • Michael DolginSimon Magarill
    • F21V21/14
    • G02B7/021F21V14/06F21Y2105/10F21Y2115/10G02B3/00G02B7/023
    • An illumination system including a plurality of light source modules each including a light-emitting surface and a dome lens, an illumination target and at least one optical device disposed between at least one of the light source modules and the illumination target. Each optical device includes an alignment mechanism engaging the dome lens, and at least one optical element fixed to the alignment mechanism, the optical element having an optical axis. The alignment mechanism is releasably securable between a first position and a second position relative to the dome lens for adjusting the optical device between the first position where the optical axis passes through the light-emitting surface and the illumination target, and second position where the optical axis passes through the light-emitting surface.
    • 一种照明系统,包括多个光源模块,每个光源模块包括发光表面和圆顶透镜,照明目标和设置在至少一个光源模块和照明目标之间的至少一个光学装置。 每个光学装置包括接合圆顶透镜的对准机构和固定到对准机构的至少一个光学元件,光学元件具有光轴。 对准机构可相对于半球透镜在第一位置和第二位置之间可释放地固定,用于在光轴穿过发光表面的第一位置与照明目标之间调节光学装置;以及第二位置,其中光学 轴通过发光面。
    • 4. 发明申请
    • Illumination system and method for aligning
    • 照明系统和对准方法
    • US20060139918A1
    • 2006-06-29
    • US11021733
    • 2004-12-23
    • Michael DolginSimon Magarill
    • Michael DolginSimon Magarill
    • B60Q1/26
    • G02B7/021F21V14/06F21Y2105/10F21Y2115/10G02B3/00G02B7/023
    • The invention is an illumination system including a plurality of light source modules, each light source module includes a light-emitting surface and a dome lens. Additionally, the illumination system includes an illumination target and at least one optical device disposed between at least one of the light source modules and the illumination target. Each optical device includes an alignment mechanism engaging the dome lens. Additionally, each optical device includes at least one optical element having optical power such as a lens, fixed to the alignment mechanism, the optical element having an optical axis. The alignment mechanism is releasably securable between a first position and a second position relative to the dome lens. The optical device is adjustable between the first and second position. In the first position, the optical axis passes through the light-emitting surface and through the illumination target, and in the second position, the optical axis passes through the light-emitting surface.
    • 本发明是一种包括多个光源模块的照明系统,每个光源模块包括发光面和圆顶透镜。 此外,照明系统包括照明目标和设置在至少一个光源模块和照明目标之间的至少一个光学装置。 每个光学装置包括接合圆顶透镜的对准机构。 此外,每个光学装置包括至少一个具有光学功率的光学元件,例如透镜,固定到对准机构,光学元件具有光轴。 对准机构可相对于圆顶透镜可拆卸地固定在第一位置和第二位置之间。 光学装置可在第一和第二位置之间调节。 在第一位置,光轴穿过发光表面并穿过照射目标,并且在第二位置,光轴穿过发光表面。
    • 5. 发明授权
    • Method for implanting a biopsy marker
    • 植入活检标记物的方法
    • US06220248B1
    • 2001-04-24
    • US09176557
    • 1998-10-21
    • James W. VoegeleMichael DolginKenneth S. Wales
    • James W. VoegeleMichael DolginKenneth S. Wales
    • A61B1900
    • A61B90/39A61B10/0233A61B2090/3908A61B2090/3987
    • A method for implanting a biopsy marker at a biopsy site within bodily tissue is disclosed. A marker applier is provided which has a marker cannula for receiving the biopsy marker. The marker cannula has a lateral marker window, and the marker is positioned at the window for ejection therefrom. The marker applier also has an ejector rod moveable longitudinally in the marker cannula which, when actuated, forces the ejection of the biopsy marker from the marker cannula through the window and into the tissue. The marker applier is inserted into a biopsy cannula positioned at the biopsy site. The biopsy cannula also has a lateral window, and it is necessary to orient the lateral marker window into alignment with the lateral biopsy window. Upon proper orientation, the ejector rod is actuated, and the biopsy marker is ejected from the marker cannula for implantation in the tissue in a direction substantially perpendicularly to the longitudinal movement of the ejector rod. This method is particularly useful for implantation of a marker at a breast biopsy site to mark the location of the breast biopsy during and after the biopsy procedure.
    • 公开了一种在身体组织内活检部位植入活检标记物的方法。 提供了一种标记物施加器,其具有用于接收活检标记物的标记套管。 标记套管具有侧向标记窗口,并且标记物定位在窗口以从其中弹出。 标记物施加器还具有在标记套管中纵向移动的顶出杆,其在被致动时迫使活检标记物从标记套管通过窗口排出并进入组织。 将标记物施放器插入位于活检部位的活检插管。 活检插管还具有侧向窗口,并且需要使侧向标记窗口与侧向活检窗口对齐。 在适当的取向时,推动器杆被致动,并且活检标记物从标记套管中弹出,以沿着基本上垂直于顶出杆的纵向移动的方向植入组织中。 该方法对于在乳腺活检部位处植入标记物特别有用,以在活检过程中和之后标记乳腺活检的位置。
    • 6. 发明申请
    • Fluorescent Volume Light Source With Air Gap Cooling
    • 荧光灯光源与空气间隙冷却
    • US20070279915A1
    • 2007-12-06
    • US11748666
    • 2007-05-15
    • Todd S. RutherfordMichael Dolgin
    • Todd S. RutherfordMichael Dolgin
    • F21V7/00
    • G03B21/204G02B6/0003G03B21/2013G03B21/208H04N9/3152H04N9/3158
    • An embodiment of the invention is an illumination system including a source of incoherent light capable of generating light in a first wavelength range and an elongate body that emits light in a second wavelength range when illuminated by light in the first wavelength range. The body further includes an extraction surface. A first non-extraction surface extends along at least a portion of the length of the body and is disposed so as to share a common edge with the extraction surface. At least some of the light at the second wavelength is totally internally reflected at the non-extraction surface. At least one external reflector is disposed proximate to the non-extraction surface so as to create a gap of less than 100 microns between the external reflector and the non-extraction surface.
    • 本发明的实施例是一种照明系统,其包括能够产生第一波长范围的光的非相干光源,以及当在第一波长范围内被光照射时,在第二波长范围内发光的细长体。 身体还包括提取表面。 第一非提取表面沿着主体的长度的至少一部分延伸并且被设置成与提取表面共享公共边缘。 第二波长处的至少一些光在非提取表面全部内反射。 至少一个外部反射器靠近非提取表面设置,以在外部反射器和非提取表面之间产生小于100微米的间隙。
    • 7. 发明申请
    • FLUORESCENT VOLUME LIGHT SOURCE WITH REFLECTOR
    • 具有反射器的荧光体积光源
    • US20070279914A1
    • 2007-12-06
    • US11748652
    • 2007-05-15
    • Todd S. RutherfordMichael Dolgin
    • Todd S. RutherfordMichael Dolgin
    • F21V7/00
    • G02B6/0068G02B6/0046G02B6/0055G03B21/16G03B21/204G03B21/208
    • An embodiment of the invention is an illumination system including a source of incoherent light capable of generating light in a first wavelength range and an elongate body that emits light in a second wavelength range when illuminated by light in the first wavelength range. The body has a length dimension, a width dimension and a height dimension. At least a portion of the body is tapered so as to increase in width and/or height along the length dimension. The body further includes an extraction surface. A first non-extraction surface extends along at least a portion of the length of the body and is disposed so as to share a common edge with the extraction surface. At least some of the light at the second wavelength is totally internally reflected at the non-extraction surface. At least one external reflector is disposed proximate to the non-extraction surface so as to create a gap between the external reflector and the non-extraction surface.
    • 本发明的实施例是一种照明系统,其包括能够产生第一波长范围的光的非相干光源,以及当在第一波长范围内被光照射时,在第二波长范围内发光的细长体。 身体具有长度尺寸,宽度尺寸和高度尺寸。 身体的至少一部分是锥形的,以沿着长度尺寸增加宽度和/或高度。 身体还包括提取表面。 第一非提取表面沿着主体的长度的至少一部分延伸并且被设置成与提取表面共享公共边缘。 第二波长处的至少一些光在非提取表面全部内反射。 至少一个外部反射器设置在非提取表面附近,以便在外部反射器和非提取表面之间产生间隙。