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    • 1. 发明授权
    • QRS onset and offset detection with adaptive temporal windowing
    • QRS开始和偏移检测与自适应时间窗口
    • US08855752B2
    • 2014-10-07
    • US12721836
    • 2010-03-11
    • Steven R. Johnson
    • Steven R. Johnson
    • A61B5/0472
    • A61B5/0472
    • A heart monitor computes ST segment deviation as the difference in the value of an electrocardiogram signal at the ST and PQ points of a heartbeat. The ST point is found based on slope criteria and temporal criteria. The maximum (positive) slope of the QRS (maxQRS) is located. Within a preset window after the maxQRS point, the processor searches for a sample at which the second finite difference is less than a threshold that is a function of average QRS amplitude. If such a qualifying sample is found, the processor examines its location relative to the location of an adaptive window that is centered on a sample that is an adaptively determined distance from the peak of the R wave. If the qualifying point is within the adaptive window, it is chosen as the ST point. If the qualifying point is after the adaptive window, the ST point is set at the end of the adaptive window. Finally, if the qualifying point is before the adaptive window, the ST point is selected at the beginning of the adaptive window. The adaptive window is then updated according to an exponential average filter based upon the distance between the ST point and the R wave peak.
    • 心脏监测器计算ST段偏差作为心跳的ST和PQ点的心电图信号的值的差异。 ST点是基于斜率标准和时间标准。 QRS(maxQRS)的最大(正)斜率位于。 在maxQRS点之后的预设窗口内,处理器搜索第二有限差小于作为平均QRS幅度的函数的阈值的样本。 如果找到这样的合格样本,则处理器相对于以R波的峰值为自适应地确定距离的采样为中心的自适应窗口的位置检查其位置。 如果限定点在自适应窗口内,则将其选为ST点。 如果限定点在自适应窗口之后,ST点被设置在自适应窗口的末尾。 最后,如果限定点在自适应窗口之前,则在自适应窗口的开头选择ST点。 然后根据基于ST点和R波峰之间的距离的指数平均滤波器来更新自适应窗口。
    • 5. 发明授权
    • Modular conveyer belt
    • 模块化输送带
    • US08113340B1
    • 2012-02-14
    • US12613061
    • 2009-11-05
    • Marshall D. SmithSteven R. Johnson
    • Marshall D. SmithSteven R. Johnson
    • B65G17/38
    • B65G17/08B65G17/40B65G2207/30
    • A modular member for a conveyer belt is provided that includes an elongated main base, at least one attaching rod and a plurality of hooks. The at least one attaching rod is coupled proximate a first side of the main base. The plurality of aligned hooks are coupled proximate a second side of the main base. Each hook includes a slot defined by an inner surface. The slot of each hook is configured to receive an attaching rod of another modular member. The inner surface that defines the slot of at least one hook has an attaching rod relief cutout section. The attaching rod relief cutout section limits wear between the attaching rod of another modular member that is received in the slot of the at least one hook and the inner surface of the slot of the at least one hook.
    • 提供了一种用于输送带的模块化构件,其包括细长主基座,至少一个附接杆和多个钩。 所述至少一个附接杆在所述主底座的第一侧附近联接。 多个对准的钩子靠近主底座的第二侧联接。 每个钩包括由内表面限定的槽。 每个钩的槽被构造成接收另一个模块构件的连接杆。 限定至少一个钩的狭槽的内表面具有附接杆释放部分。 附接杆释放切口部分限制了容纳在至少一个钩的槽中的另一模块化构件的附接杆与至少一个钩的槽的内表面之间的磨损。
    • 9. 发明授权
    • Reshaping of paths without respect to control points
    • 改变路径,而不是控制点
    • US06459439B1
    • 2002-10-01
    • US09037720
    • 1998-03-09
    • John B. Ahlquist, Jr.Douglas S. BensonFan YuSteven R. JohnsonBrian T. Schmidt
    • John B. Ahlquist, Jr.Douglas S. BensonFan YuSteven R. JohnsonBrian T. Schmidt
    • G06T320
    • G06T11/203
    • The inventive mechanisms convert a path, which represents a graphical object, into a plurality of line segments. Thus, the path can be reshaped without respect to existing Bezier control points. The first mechanism allows a user to ‘pull’ a segment of a path. A user selects a specific place on the path, pulls the selected place along with a portion of the path on either side of the place to a desired location. The second mechanism allows a user to ‘push’ a segment of a path, by using an arbitrary shape and sculpting the path. The arbitrary shape is used in a manner similar in which a sculptor would use a putty knife and sculpts away part of the path, by pushing that shape into the path. The path is being repelled from the shape, as the shape is being pushed. The third mechanism allows a user to reshape an area or region of the path. The user selects a specific point in space and modify any parts of the path that lie within that region of space.
    • 本发明的机构将表示图形对象的路径转换成多个线段。 因此,路径可以重新整形,而不会影响现有的贝塞尔控制点。 第一种机制允许用户“拉”路径的一段,用户选择路径上的特定位置,将所选位置与位置任意一侧的路径的一部分一起拉到所需位置,第二个 机制允许用户通过使用任意形状和雕刻路径来“推”路径的一段。 任意形状的使用方式类似于雕塑家将使用油灰刀,并通过将该形状推入路径来雕刻路径的一部分。 由于形状被推动,路径被排除了形状。 第三种机制允许用户重新形成路径的区域或区域。 用户选择空间中的特定点,并修改位于该空间区域内的路径的任何部分。