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    • 13. 发明申请
    • NON-SURGICAL TORSO DEFORMITY CORRECTION DEVICES AND METHODS RELATED THERETO
    • 非手术管状畸形矫正装置及其相关方法
    • US20140336543A1
    • 2014-11-13
    • US14266447
    • 2014-04-30
    • Children's Hospital & Research Center Oakland
    • Olajire IdowuSunghoon Kim
    • A61H9/00
    • A61H9/0057A61B17/0281A61H2201/1619A61H2201/5064A61H2201/5071A61H2205/084
    • Aspects of the invention include devices and methods for correcting a torso deformity of a patient. The devices include a suction chamber for placement around the torso deformity and to provide negative pressure to the torso deformity; and a measurement component coupled to the suction chamber. The measurement component is adapted to indicate a relative distance between the torso deformity and a distal surface of the suction chamber. The methods include positioning a torso deformity correcting device around a torso deformity on a torso of a patient. The methods further include withdrawing air from the suction chamber to apply negative pressure within the suction chamber to displace the torso deformity, and setting a negative pressure level by measuring the relative distance of the torso deformity and the distal surface of the suction chamber that is indicated by the measurement component.
    • 本发明的方面包括用于校正患者的躯干畸形的装置和方法。 这些装置包括用于围绕躯干畸形放置并且为躯干畸形提供负压的吸入室; 以及耦合到吸入室的测量部件。 测量部件适于指示躯体变形与吸入室的远侧表面之间的相对距离。 所述方法包括将躯干畸形矫正装置围绕患者躯体的躯干畸形定位。 所述方法还包括从抽吸室抽出空气以在吸入室内施加负压以移位躯干畸形,并且通过测量所示的躯体畸形和吸入室的远端表面的相对距离来设定负压水平 由测量组件。
    • 17. 发明申请
    • SURGICAL IMAGING DEVICE
    • 手术成像装置
    • US20120310097A1
    • 2012-12-06
    • US13539515
    • 2012-07-02
    • Michael P. WhitmanDonald Malinouskas
    • Michael P. WhitmanDonald Malinouskas
    • A61B6/00
    • A61B19/5212A61B1/05A61B17/02A61B17/0281A61B17/115A61B90/361
    • A surgical imaging device includes at least one light source for illuminating an object, at least two image sensors configured to generate image data corresponding to the object in the form of an image frame, and a video processor configured to receive from each image sensor the image data corresponding to the image frames and to process the image data so as to generate a composite image. The video processor may be configured to normalize, stabilize, orient and/or stitch the image data received from each image sensor so as to generate the composite image. Preferably, the video processor stitches the image data received from each image sensor by processing a portion of image data received from one image sensor that overlaps with a portion of image data received from another image sensor.
    • 手术成像装置包括用于照亮物体的至少一个光源,配置成生成与图像帧形式的对象相对应的图像数据的至少两个图像传感器,以及被配置为从每个图像传感器接收图像的视频处理器 对应于图像帧的数据并处理图像数据,以便生成合成图像。 视频处理器可以被配置为对从每个图像传感器接收的图像数据进行归一化,稳定,定向和/或拼接,以便生成合成图像。 优选地,视频处理器通过处理从与另一图像传感器接收的图像数据的一部分重叠的一个图像传感器接收的图像数据的一部分来对从每个图像传感器接收的图像数据进行缝合。
    • 20. 发明申请
    • MEDICAL ANCHOR DEVICE
    • 医用锚固装置
    • US20110251642A1
    • 2011-10-13
    • US12759295
    • 2010-04-13
    • Richard W. Ducharme
    • Richard W. Ducharme
    • A61B17/04
    • A61B17/0218A61B1/018A61B17/0206A61B17/0281A61B2017/0034A61B2017/3484A61B2090/3925
    • An endoscopically-deployable tissue-manipulation device including an elongate, generally tubular outer body having a proximal portion and a distal end portion that may be configured as sufficiently flexible to traverse the working channel of a flexible endoscope (e.g., side-viewing duodenoscope). The outer body may include an outer body lumen extending longitudinally between the proximal and distal portions. An anchoring structure of the device will include an elongate inner body that may extend through the outer body lumen and be configured to include a first linkage member attached to the inner body, a second linkage member that is pivotably attached to the first linkage member and to the outer body.
    • 内窥镜可展开的组织操作装置,其包括细长的大致管状的外部本体,其具有近端部分和远端部分,所述近端部分和远端部分可构造成足够柔性以穿过柔性内窥镜(例如,侧视十二指肠镜)的工作通道。 外体可以包括在近端部分和远端部分之间纵向延伸的外体腔。 装置的锚定结构将包括细长的内部主体,其可以延伸穿过外部体腔,并且构造成包括附接到内部主体的第一联动构件,可枢转地附接到第一联动构件的第二联动构件, 外身。