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    • 91. 发明申请
    • ULTRASONIC DIAGNOSTIC APPARATUS AND IMAGE DISPLAY METHOD
    • 超声诊断装置和图像显示方法
    • US20070265529A1
    • 2007-11-15
    • US11615377
    • 2006-12-22
    • Hiroshi Hashimoto
    • Hiroshi Hashimoto
    • A61B8/00
    • A61B8/00A61B8/461A61B8/463G03B29/00G03B42/00
    • To improve efficiency in diagnosis, a cross-sectional image of a subject is sequentially produced based on echo signals acquired by conducting a scan involving transmitting ultrasound to the subject and receiving ultrasound reflected from the subject. A region of interest is then defined in the cross-sectional image of the subject, and a TIC image representing an average brightness values of all pixels in the region of interest in the sequentially produced cross-sectional image of the subject is produced such that the TIC image corresponds to a time axis along which the echo signals are acquired. Moreover, a property-of-ultrasound image representing the property of the ultrasound sequentially transmitted to the region of interest is produced such that the property-of-ultrasound image corresponds to a time axis of the TIC image. The produced TIC image and property-of-ultrasound image are displayed on a screen next to each other such that their respective time axes correspond to each other.
    • 为了提高诊断效率,基于通过进行涉及向对象发送超声波并接收从对象反射的超声波的扫描而获得的回波信号,顺序地产生被摄体的横截面图像。 然后在被摄体的横截面图像中定义感兴趣的区域,并且产生表示对象的顺序产生的横截面图像中感兴趣区域中的所有像素的平均亮度值的TIC图像,使得 TIC图像对应于获取回波信号的时间轴。 此外,产生表示顺序地传送到感兴趣区域的超声波的属性的超声波图像属性,使得超声图像的属性对应于TIC图像的时间轴。 产生的TIC图像和超声波特性图像被显示在彼此相邻的屏幕上,使得它们各自的时间轴彼此对应。
    • 94. 发明授权
    • Magnetic recording medium
    • 磁记录介质
    • US07169438B2
    • 2007-01-30
    • US11138409
    • 2005-05-27
    • Mikio TomaruMasatoshi TakahashiHiroshi Hashimoto
    • Mikio TomaruMasatoshi TakahashiHiroshi Hashimoto
    • B05D5/12
    • G11B5/738G11B5/70G11B5/7026G11B5/842Y10T428/31786
    • A magnetic recording medium comprising a support having provided thereon a magnetic layer, wherein a smooth coating layer having a thickness of from 0.10 to 1 μm, surface roughness of 5 nm or less, and 20 or less per 900 μm2 of the protrusions having a height of 20 nm or more measured by an interatomic force microscope (AFM) is provided on the surface of at least one side of the support. And a method for producing a magnetic recording medium comprising a support having provided thereon a magnetic layer, which comprises providing a smooth coating layer having a thickness of from 0.10 to 1 μm, surface roughness of 5 nm or less, and 20 or less per 900 μm2 of the protrusions having a height of 20 nm or more measured by an interatomic force microscope (AFM) on the surface of at least one side of the support, and forming at least the magnetic layer on the smooth coating layer without performing rolling-up operation.
    • 一种磁记录介质,包括在其上设置有磁性层的支撑体,其中厚度为0.10至1μm,表面粗糙度为5nm或更小的平滑涂层以及每900μm2的20μm或更小的光滑涂层, 通过原子力显微镜(AFM)测量的具有20nm或更高的高度的突起的SUP>提供在支撑体的至少一侧的表面上。 以及一种用于制造磁记录介质的方法,所述磁记录介质包括其上设置有磁性层的载体,其包括提供厚度为0.10-1μm的光滑涂层,表面粗糙度为5nm以下,每900个为20个以下 通过原子力显微镜(AFM)在支撑体的至少一侧的表面上测量的具有20nm或更高的高度的突起的2μm以上,并且至少在该支撑体的至少一个面上形成磁性层 光滑的涂层,不进行卷起操作。