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    • 24. 发明申请
    • RNFL MEASUREMENT ANALYSIS
    • RNFL测量分析
    • US20090073387A1
    • 2009-03-19
    • US12207303
    • 2008-09-09
    • Scott A. MeyerMary K. DurbinPaul F. StetsonBagrat Amirbekian
    • Scott A. MeyerMary K. DurbinPaul F. StetsonBagrat Amirbekian
    • A61B3/12A61B3/10
    • A61B3/12A61B3/1241
    • One embodiment of the present invention accounts for individual anatomical variation when evaluating optical nerve fiber measurements. In one aspect, contextual information is used to compensate or correct measurement data. In another aspect, reference coordinates are remapped for improved comparison or visualization. In one embodiment of this latter aspect, the method uses measurements of nerve fiber capacity and maps of nerve fiber retinal service to improve sensitivity and specificity in eye function metrics. In one instance, we use the birefringence of nerve fibers to determine the orientation of the fibers within the RNFL. Orientation of the fibers about the ONH is indicative of the service provided by the fibers and is used to improve the interpretation of thickness measurements of the nerve fiber layer. Normalized nerve fiber measurements about the optic nerve head improve specificity and sensitivity as compared to the standard model. These improvements are a result of partitioning the normative database or modifying the measurement data prior to comparison. Statistics on normalized measurements of nerve fiber bundles also show improvements in specificity and sensitivity.
    • 评估光学神经纤维测量时,本发明的一个实施例解释了个体解剖学变化。 在一个方面,使用上下文信息来补偿或校正测量数据。 在另一方面,重新映射参考坐标以改善比较或可视化。 在后一方面的一个实施例中,该方法使用神经纤维能力的测量和神经纤维视网膜服务的图来提高眼睛功能度量中的灵敏度和特异性。 在一种情况下,我们使用神经纤维的双折射来确定RNFL内纤维的取向。 关于ONH的纤维的取向指示由纤维提供的服务,并且用于改善对神经纤维层的厚度测量的解释。 与标准模型相比,关于视神经头的规范化神经纤维测量提高了特异性和灵敏度。 这些改进是在比较之前划分规范性数据库或修改测量数据的结果。 关于神经纤维束的归一化测量的统计数据也显示出特异性和灵敏度的改善。
    • 27. 发明授权
    • Movable utility greenhouse
    • 移动式实用温室
    • US5479744A
    • 1996-01-02
    • US251895
    • 1994-06-01
    • Scott A. Meyer
    • Scott A. Meyer
    • A01G9/16
    • A01G9/16
    • A utility greenhouse (10) has a frame (30) comprised of electrical metal tubing (EMT) sections. Main frame members (12) bear the majority of the building's load. Main frame members (12), long side members (14) and short side members (16) all embed into the ground and are shaped to extend vertically upward for a wall height distance then curve upwards and inward so that a pronounced rounded appearance for the frame (30) results. The main frame members (12) and the long frame members (14) intersect the short frame members (16). Ties (26) secure the intersecting frame members together. A continuous sheet plastic skin (24) overlies the frame. The skin (24) is held to the frame (30) at an outer cover brace (18), an inner cover brace (20), and through ties (26) which secure skin (24) to the long and short frame members (14, 16). A door (54) is formed by cutting the skin (24).
    • 实用温室(10)具有由电气金属管(EMT)部分组成的框架(30)。 主架构件(12)占建筑物的大部分负荷。 主框架构件(12),长边构件(14)和短边构件(16)全部嵌入地面,并且成形为垂直向上延伸以达到壁高度距离,然后向上和向内弯曲,使得对于 框(30)结果。 主框架构件(12)和长框架构件(14)与短框架构件(16)相交。 领带(26)将交叉的框架构件固定在一起。 连续的片状塑料皮肤(24)覆盖在框架上。 皮肤(24)在外盖支架(18),内盖支架(20)和穿过连接件(26)的框架(30)处固定,该皮带将皮肤(24)固定到长和短框架构件 14,16)。 通过切割皮肤(24)形成门(54)。