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    • 1. 发明申请
    • IMAGE-RECOGNITION ASSISTING METHOD
    • 图像识别辅助方法
    • US20140044326A1
    • 2014-02-13
    • US13584262
    • 2012-08-13
    • Chun Nan LINChung Ping ChuangChe Liang Tsai
    • Chun Nan LINChung Ping ChuangChe Liang Tsai
    • G06K9/00
    • G06T5/008G06K9/3233G06T2207/30041
    • An image-recognition assisting method includes the steps of using an examination instrument to generate an image having a split-image area formed thereon; setting a region-of-interest (ROI) around the split-image area of the generated image; performing a pixel luminance addition processing on the ROI, so that all pixels in the ROI have increased luminance contrast; and performing a contrast correction on the ROI having increased luminance contrast, so that the luminance contrast between the split-image area and the area surrounding the split-image area in the ROI is further increased. The image-recognition assisting method optimizes the image generated by the conventional ophthalmic examination instrument, such as a fundus camera, to increase the sharpness and the luminance contrast of the image output by the fundus camera, so that an examiner can easily recognize two offset rectangular image parts in the split-image area and align them with each other to focus the examination instrument.
    • 图像识别辅助方法包括以下步骤:使用检查仪器生成其上形成有分割图像区域的图像; 在生成的图像的分割图像区域周围设置感兴趣区域(ROI); 对ROI进行像素亮度附加处理,使得ROI中的所有像素具有增加的亮度对比度; 并且对具有增加的亮度对比度的ROI执行对比度校正,使得分割图像区域和ROI中的分割图像区域周围的区域之间的亮度对比度进一步增加。 图像识别辅助方法优化诸如眼底照相机的常规眼科检查仪产生的图像,以增加由眼底照相机输出的图像的清晰度和亮度对比度,使得检查者可以容易地识别两个偏移矩形 在分割图像区域中的图像部分并将它们彼此对准以对准检查仪器。
    • 2. 发明授权
    • Large area optical diagnosis apparatus and operating method thereof
    • 大面积光诊断装置及其操作方法
    • US08564784B2
    • 2013-10-22
    • US13204132
    • 2011-08-05
    • William WangChung-Cheng ChouChe-Liang Tsai
    • William WangChung-Cheng ChouChe-Liang Tsai
    • G01B9/02
    • G01N21/4795A61B5/0066A61B5/0073G01B9/02019G01B9/02027G01B9/02091G01B2290/45
    • A large area optical diagnosis apparatus and the operating method thereof are disclosed. The large area optical diagnosis apparatus includes a light source, a light path structure, and a sensing module. The light source is used to at least emit a coherent light. The light path structure includes a plurality of optical units used for dividing the coherent light into a plurality of first incident lights and a plurality of second incident lights. The plurality of first incident lights are emitted toward an object to be diagnosed and the plurality of second incident lights are emitted toward a reference end. The object to be diagnosed and the reference end reflect the plurality of first incident lights and the plurality of second incident lights to be a plurality of reflected lights. The sensing module senses the plurality of reflected lights to generate a sensing result related to the object to be diagnosed.
    • 公开了一种大面积光诊断装置及其操作方法。 大面积光诊断装置包括光源,光路结构和感测模块。 光源用于至少发出相干光。 光路结构包括用于将相干光分为多个第一入射光和多个第二入射光的多个光学单元。 多个第一入射光朝向被诊断对象发射,并且多个第二入射光朝向参考端发射。 要诊断的对象和参考端将多个第一入射光和多个第二入射光反射成多个反射光。 感测模块​​感测多个反射光以产生与被诊断对象相关的感测结果。
    • 4. 发明授权
    • Image-recognition method for assisting ophthalmic examination instrument
    • 辅助眼科检查仪的图像识别方法
    • US08781190B2
    • 2014-07-15
    • US13584262
    • 2012-08-13
    • Chun Nan LinChung Ping ChuangChe Liang Tsai
    • Chun Nan LinChung Ping ChuangChe Liang Tsai
    • G06K9/00
    • G06T5/008G06K9/3233G06T2207/30041
    • An image-recognition assisting method includes the steps of using an examination instrument to generate an image having a split-image area formed thereon; setting a region-of-interest (ROI) around the split-image area of the generated image; performing a pixel luminance addition processing on the ROI, so that all pixels in the ROI have increased luminance contrast; and performing a contrast correction on the ROI having increased luminance contrast, so that the luminance contrast between the split-image area and the area surrounding the split-image area in the ROI is further increased. The image-recognition assisting method optimizes the image generated by the conventional ophthalmic examination instrument, such as a fundus camera, to increase the sharpness and the luminance contrast of the image output by the fundus camera, so that an examiner can easily recognize two offset rectangular image parts in the split-image area and align them with each other to focus the examination instrument.
    • 图像识别辅助方法包括以下步骤:使用检查仪器生成其上形成有分割图像区域的图像; 在生成的图像的分割图像区域周围设置感兴趣区域(ROI); 对ROI进行像素亮度附加处理,使得ROI中的所有像素具有增加的亮度对比度; 并且对具有增加的亮度对比度的ROI执行对比度校正,使得分割图像区域和ROI中的分割图像区域周围的区域之间的亮度对比度进一步增加。 图像识别辅助方法优化诸如眼底照相机的常规眼科检查仪产生的图像,以增加由眼底照相机输出的图像的清晰度和亮度对比度,使得检查者可以容易地识别两个偏移矩形 在分割图像区域中的图像部分并将它们彼此对准以对准检查仪器。
    • 6. 发明申请
    • THREE-AXIS POSITIONING DEVICE AND METHOD FOR OPHTHALMIC EXAMINATION INSTRUMENT
    • 三轴定位装置和方法用于眼科检查仪器
    • US20130107212A1
    • 2013-05-02
    • US13584469
    • 2012-08-13
    • Chun Nan LINChung Ping CHUANGChe Liang TSAIKun Cheng HSIEH
    • Chun Nan LINChung Ping CHUANGChe Liang TSAIKun Cheng HSIEH
    • A61B3/15A61B3/12
    • A61B3/12A61B3/152
    • A simplified and cost-effective three-axis positioning device and method for ophthalmic examination instrument is disclosed. The three-axis positioning device includes an illuminating optical path for projecting light to illuminate an examinee's fundus; an imaging optical path including an objective lens for receiving the examinee's fundus image and light reflected from the examinee's cornea and eye-lens; a software-based alignment module for determining intensity and position of the reflected light on the fundus image to generate auxiliary positioning information; and an image displaying unit for showing the fundus image, the reflected light, and the auxiliary positioning information. From the intensity and position of the reflected light, x-, y- and z-axis relative positions between the examinee's pupil and the objective lens are obtained. An examiner adjusts the relative positions in three axes until they fall within an allowable deviation range, and a clear fundus image can be obtained.
    • 公开了一种简化且具有成本效益的三轴定位装置和眼科检查仪的方法。 三轴定位装置包括用于投射光以照亮被检者的眼底的照明光路; 成像光路,包括用于接收受检者的眼底图像的物镜和从受检者的角膜和眼透镜反射的光; 基于软件的对准模块,用于确定眼底图像上的反射光的强度和位置,以产生辅助定位信息; 以及用于显示眼底图像,反射光和辅助定位信息的图像显示单元。 从反射光的强度和位置,可以得到被检体瞳孔与物镜之间的x轴,y轴和z轴相对位置。 检查者调整三轴的相对位置,直到它们落在允许的偏差范围内,并且可以获得清晰的眼底图像。