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    • 6. 发明授权
    • Method of preventing white blood cell interferences to red blood cell measurements of a blood sample
    • 防止白细胞干扰血液样本红细胞测量的方法
    • US07482165B2
    • 2009-01-27
    • US11210346
    • 2005-08-24
    • Min ZhengJing LiYi LiMichael J. Switzer
    • Min ZhengJing LiYi LiMichael J. Switzer
    • G01N33/48
    • G01N33/491Y10T436/10Y10T436/101666Y10T436/107497Y10T436/25Y10T436/25125
    • Methods of prevention and correction of white blood cell interferences to the measurements of mean cell volume (MCV), red blood cell concentration (RBC) and hematocrit (Hct) of a blood sample are disclosed. The interference to MCV can be prevented by identifying a valley between the red blood cell and white blood cell modes on the red blood cell distribution histogram, defining a red blood cell region using the valley and calculating MCV within the defined region. Alternatively, a curve fit of the white blood cell population on the red blood cell distribution histogram can be used to exclude the white blood cells. RBC can be corrected by subtracting the white blood cell concentration obtained from the analysis of a second aliquot sample, when the white blood cell concentration (WBC) exceeds a predetermined criterion. Hct of the blood sample can be calculated using the obtained MCV and RBC.
    • 公开了对血液样本的平均细胞体积(MCV),红细胞浓度(RBC)和血细胞比容(Hct)的测量的白细胞干扰的预防和校正方法。 通过在红细胞分布直方图上识别红细胞和白细胞模式之间的谷,可以防止对MCV的干扰,使用谷定义红细胞区域并计算定义区域内的MCV。 或者,可以使用白细胞群体对红细胞分布直方图的曲线拟合来排除白细胞。 当白细胞浓度(WBC)超过预定标准时,可通过减去从第二等份样品的分析获得的白细胞浓度来校正RBC。 可以使用获得的MCV和RBC计算血液样品的Hct。
    • 7. 发明申请
    • Method of preventing white blood cell interferences to red blood cell measurements of a blood sample
    • 防止白细胞干扰血液样本红细胞测量的方法
    • US20070054403A1
    • 2007-03-08
    • US11210346
    • 2005-08-24
    • Min ZhengJing LiYi LiMichael Switzer
    • Min ZhengJing LiYi LiMichael Switzer
    • G01N33/48
    • G01N33/491Y10T436/10Y10T436/101666Y10T436/107497Y10T436/25Y10T436/25125
    • Methods of prevention and correction of white blood cell interferences to the measurements of mean cell volume (MCV), red blood cell concentration (RBC) and hematocrit (Hct) of a blood sample are disclosed. The interference to MCV can be prevented by identifying a valley between the red blood cell and white blood cell modes on the red blood cell distribution histogram, defining a red blood cell region using the valley and calculating MCV within the defined region. Alternatively, a curve fit of the white blood cell population on the red blood cell distribution histogram can be used to exclude the white blood cells. RBC can be corrected by subtracting the white blood cell concentration obtained from the analysis of a second aliquot sample, when the white blood cell concentration (WBC) exceeds a predetermined criterion. Hct of the blood sample can be calculated using the obtained MCV and RBC.
    • 公开了对血液样本的平均细胞体积(MCV),红细胞浓度(RBC)和血细胞比容(Hct)的测量的白细胞干扰的预防和校正方法。 通过在红细胞分布直方图上识别红细胞和白细胞模式之间的谷,可以防止对MCV的干扰,使用谷定义红细胞区域并计算定义区域内的MCV。 或者,可以使用白细胞群体对红细胞分布直方图的曲线拟合来排除白细胞。 当白细胞浓度(WBC)超过预定标准时,可通过减去从第二等份样品的分析获得的白细胞浓度来校正RBC。 可以使用获得的MCV和RBC计算血液样品的Hct。
    • 9. 发明申请
    • Laminated film for head applications
    • 用于头部应用的层压膜
    • US20090009907A1
    • 2009-01-08
    • US11825034
    • 2007-07-03
    • Kunliang ZhangMin ZhengMin LiChen-Jung ChienCherng-Chyi Han
    • Kunliang ZhangMin ZhengMin LiChen-Jung ChienCherng-Chyi Han
    • G11B5/127G11B5/147
    • G11B5/3116G11B5/1278
    • A laminated main pole layer is disclosed in which a non-AFC scheme is used to break the magnetic coupling between adjacent high moment layers and reduce remanence in a hard axis direction while maintaining a high magnetic moment and achieving low values for Hch, Hce, and Hk. An amorphous material layer with a thickness of 3 to 20 Angstroms and made of an oxide, nitride, or oxynitride of one or more of Hf, Zr, Ta, Al, Mg, Zn, or Si is inserted between adjacent high moment stacks. The laminated structure also includes an alignment layer below each high moment layer within each stack. In one embodiment, a Ru coupling layer is inserted between two high moment layers in each stack to introduce an AFC scheme. An uppermost Ru layer is used as a CMP stop layer. A post annealing process may be employed to further reduce the anisotropy field (Hk).
    • 公开了一种层叠主极层,其中使用非AFC方案来破坏相邻的高力矩层之间的磁耦合,并且在保持高磁矩的同时降低硬轴方向的剩磁,并实现Hch,Hce和 Hk。 由Hf,Zr,Ta,Al,Mg,Zn或Si中的一种或多种的氧化物,氮化物或氧氮化物形成的厚度为3〜20埃的无定形材料层插入相邻的高强度叠层之间。 层叠结构还包括在每个堆叠内的每个高力矩层下面的对准层。 在一个实施例中,Ru耦合层插入每个堆叠中的两个高矩层之间以引入AFC方案。 使用最上层的Ru层作为CMP停止层。 可以采用后退火工艺来进一步降低各向异性场(Hk)。