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    • 7. 发明申请
    • Data storage device
    • 数据存储设备
    • US20060187803A1
    • 2006-08-24
    • US11329466
    • 2006-01-11
    • Peter BaechtoldJohannes BednorzGerd BinnigGiovanni CherubiniEvangelos EleftheriouMichel Despont
    • Peter BaechtoldJohannes BednorzGerd BinnigGiovanni CherubiniEvangelos EleftheriouMichel Despont
    • G11B9/00
    • G11B11/007B82Y10/00G11B9/1472
    • A storage device including a storage medium for storing data in the form of topographic or magnetic marks. At least one probe is mounted on a common frame, the common frame and the storage medium designed for moving relative to each other for creating or detecting said marks. Each probe includes a tip facing the storage medium, a read sensing element, a write element and a capacitive platform, that forms a first electrode and is designed for a voltage potential applied to it independent from a control signal for said read sensing element and for said voltage potential applied to said capacitive platform being independent from a control signal for said write heating element. It further comprises a second electrode arranged in a fixed position relative to the storage medium forming a first capacitor together wherein said first electrode and a medium between the first and second electrode.
    • 一种存储装置,包括用于以地形或磁标记的形式存储数据的存储介质。 至少一个探针安装在公共框架上,公共框架和存储介质被设计用于相对于彼此移动以创建或检测所述标记。 每个探针包括面向存储介质的尖端,读取感测元件,写入元件和电容平台,其形成第一电极,并被设计用于独立于用于所述读取感测元件的控制信号的施加于其的电压电位,并且为 施加到所述电容平台的所述电压电位独立于用于所述写入加热元件的控制信号。 它还包括布置在相对于存储介质固定位置的第二电极,形成第一电容器,其中所述第一电极和第一和第二电极之间的介质。
    • 8. 发明申请
    • Surface treatment and surface scanning
    • 表面处理和表面扫描
    • US20050280174A1
    • 2005-12-22
    • US11156839
    • 2005-06-20
    • Gerd BinnigWalter HaeberleDorothea Wiesmann
    • Gerd BinnigWalter HaeberleDorothea Wiesmann
    • B29C37/02G01Q10/00G01Q70/16G01Q80/00G11B9/00
    • G11B9/1454G01Q70/06G01Q80/00G11B9/1481
    • Provides surface treatment devices, surface scanning devices, methods of operating a surface treatment device and methods of operating a surface scanning device. An area within a medium comprises at least one sharpening location for sharpening a tip of a probe mechanically. The tip is conically shaped with a radius of an apex smaller than 100 nm. In the case of the surface treatment device the probe is designed for altering the surface of the medium. In the case of the surface scanning device the probe is designed for scanning the medium. The sharpening location is suited for sharpening the tip mechanically. For that purpose the probe and the medium are being moved relative to each other such that the tip is located in the sharpening location. Then the probe and/or the medium are moved relative to each other such, that the tip is mechanically sharpened.
    • 提供表面处理装置,表面扫描装置,操作表面处理装置的方法和操作表面扫描装置的方法。 介质内的区域包括至少一个磨削位置,用于机械地磨削探头的尖端。 尖端圆锥形,顶点的半径小于100nm。 在表面处理装置的情况下,探针设计用于改变介质的表面。 在表面扫描装置的情况下,探针设计用于扫描介质。 磨削位置适用于机械地磨尖。 为此,探针和介质相对于彼此移动,使得尖端位于磨刀位置。 然后探针和/或介质相对于彼此移动,使得尖端被机械地磨削。
    • 10. 发明授权
    • Context driven image mining to generate image-based biomarkers
    • 上下文驱动的图像挖掘生成基于图像的生物标志物
    • US08594410B2
    • 2013-11-26
    • US12930873
    • 2011-01-18
    • Guenter SchmidtGerd BinnigRalf SchoenmeyerArno Schaepe
    • Guenter SchmidtGerd BinnigRalf SchoenmeyerArno Schaepe
    • G06K9/00G06K9/62
    • G06T7/0014G01N2800/00G06K9/6253G06T7/0012G06T2207/10116G06T2207/30004G06T2207/30061G06T2207/30068
    • An image-based biomarker is generated using image features obtained through object-oriented image analysis of medical images. The values of a first subset of image features are measured and weighted. The weighted values of the image features are summed to calculate the magnitude of a first image-based biomarker. The magnitude of the biomarker for each patient is correlated with a clinical endpoint, such as a survival time, that was observed for the patient whose medical images were analyzed. The correlation is displayed on a graphical user interface as a scatter plot. A second subset of image features is selected that belong to a second image-based biomarker such that the magnitudes of the second image-based biomarker for the patients better correlate with the clinical endpoints observed for those patients. The second biomarker can then be used to predict the clinical endpoint of other patients whose clinical endpoints have not yet been observed.
    • 使用通过医学图像的面向对象图像分析获得的图像特征来生成基于图像的生物标志物。 测量和加权图像特征的第一子集的值。 将图像特征的加权值相加以计算第一基于图像的生物标志物的大小。 每个患者的生物标志物的大小与对其医学图像分析的患者观察到的临床终点相关,例如存活时间。 相关性作为散点图显示在图形用户界面上。 选择属于第二基于图像的生物标志物的图像特征的第二子集,使得用于患者的第二基于图像的生物标志物的量级与对于那些患者观察到的临床终点更为相关。 然后可以将第二种生物标志物用于预测尚未观察到其临床终点的其他患者的临床终点。