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    • 25. 发明申请
    • IMAGE FUSION FOR RADIATION THERAPY
    • 用于放射治疗的图像融合
    • US20080025638A1
    • 2008-01-31
    • US11461061
    • 2006-07-31
    • Shoupu ChenJay S. Schildkraut
    • Shoupu ChenJay S. Schildkraut
    • G06K9/36
    • G06T7/35G06T2207/30004
    • An image fusion method for medical applications, comprising: a. acquiring a first image with a planned radiation region; b. acquiring a second image with actual radiation region; c. determining if user defined landmarks have been placed on the first and second images, if user defined landmarks are present go to step (d), if not go to step (e); d. pre-transforming the first image or second image or both images; e. performing a first delineation step on the actual radiation region; f. determining if the delineation is correct, if yes go to step (g), if not go to step (h); g. fusing the first and second image and exit process; and h. selecting multiple contour points around the actual radiation region in the second image; i. performing a second delineation step on the actual radiation region and go to step (f).
    • 一种用于医疗应用的图像融合方法,包括:a。 获取具有计划辐射区域的第一图像; b。 以实际的辐射区域获取第二图像; C。 确定用户定义的地标是否已被放置在第一和第二图像上,如果存在用户定义的地标,则进入步骤(d),如果不转到步骤(e); d。 预变换第一图像或第二图像或两个图像; e。 对实际辐射区域进行第一划定步骤; F。 确定描述是否正确,如果是,则转到步骤(g),如果不去步骤(h); G。 融合第一和第二个图像和退出过程; 和h。 在所述第二图像中选择围绕所述实际辐射区域的多个轮廓点; 一世。 对实际辐射区域执行第二描绘步骤,并进入步骤(f)。
    • 27. 发明授权
    • Printer media including compressed sensitometry curve information
    • 打印介质包括压缩感光度曲线信息
    • US5774639A
    • 1998-06-30
    • US390616
    • 1995-02-17
    • Jay S. SchildkrautKevin E. SpauldingJohn P. Spence
    • Jay S. SchildkrautKevin E. SpauldingJohn P. Spence
    • B41J31/00B41J2/325B41M5/382G06K15/00
    • B41M5/38207B41J2/325
    • Sensitometric information is stored with a consumable print medium having a predetermined sensitometry by compressing the sensitometric information as a set of spline coefficients for use with a printer adapted to decode the set of spline coefficients to construct a sensitometric curve. A set of spline coefficients is generated, spline coefficients are encoded, and the encoded spline coefficients are stored in a manner which is accessible to a printing device adapted to make use of the media sensitometry data for purposes of device calibration. The coefficient-generating step comprises fitting a spline curve to the sensitometry data. The spline curve may be monotonic cubic. The encoding step may include encoding a difference signal representing a difference between input values for a set of sequential spline knots. The encoding step may also include encoding a difference signal representing a difference between the output values of the sensitometry curve and output values of a reference sensitometry curve for each of a set of sequential spline knots. The difference signal may be encoded by quantizing the difference signal into a set of discrete bins.
    • 敏感测量信息与具有预定感光度的消耗性打印介质一起存储,通过将感光度信息作为一组样条系数进行压缩,以便与用于解码该组样条系数的打印机一起构成感光度曲线。 产生一组样条系数,对样条系数进行编码,并且编码的样条系数以适于利用介质感光度数据的打印装置可访问的方式存储,用于设备校准。 系数生成步骤包括将样条曲线拟合到感光测量数据。 样条曲线可能是单调立方体。 编码步骤可以包括编码表示一组连续样条结的输入值之间的差的差信号。 编码步骤还可以包括编码表示感光度曲线的输出值与一组连续样条结中的每一个的参考感光度曲线的输出值之间的差异的差分信号。 可以通过将差分信号量化为一组离散区段来对差分信号进行编码。
    • 29. 发明授权
    • Image fusion for radiation therapy
    • 放射治疗图像融合
    • US07848592B2
    • 2010-12-07
    • US11461061
    • 2006-07-31
    • Shoupu ChenJay S. Schildkraut
    • Shoupu ChenJay S. Schildkraut
    • G06K9/00G06K9/46G06K9/66G06K9/36G06K9/20G06K9/32
    • G06T7/35G06T2207/30004
    • An image fusion method for medical applications, comprising: a. acquiring a first image with a planned radiation region; b. acquiring a second image with actual radiation region; c. determining if user defined landmarks have been placed on the first and second images, if user defined landmarks are present go to step (d), if not go to step (e); d. pre-transforming the first image or second image or both images; e. performing a first delineation step on the actual radiation region; f. determining if the delineation is correct, if yes go to step (g), if not go to step (h); g. fusing the first and second image and exit process; and h. selecting multiple contour points around the actual radiation region in the second image; i. performing a second delineation step on the actual radiation region and go to step (f).
    • 一种用于医疗应用的图像融合方法,包括:a。 获取具有计划辐射区域的第一图像; b。 用实际辐射区域获取第二图像; C。 确定用户定义的地标是否已被放置在第一和第二图像上,如果存在用户定义的地标,则进入步骤(d),如果不转到步骤(e); d。 预变换第一图像或第二图像或两个图像; e。 对实际辐射区域进行第一划定步骤; F。 确定描述是否正确,如果是,则转到步骤(g),如果不去步骤(h); G。 融合第一和第二个图像和退出过程; 和h。 在所述第二图像中选择围绕所述实际辐射区域的多个轮廓点; 一世。 对实际辐射区域执行第二描绘步骤,并进入步骤(f)。