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    • 4. 发明授权
    • Method and apparatus for optimal data mapping of power doppler images
    • 功率多普勒图像的最佳数据映射的方法和装置
    • US06176828B1
    • 2001-01-23
    • US09220519
    • 1998-12-24
    • David D. BeckerMir Said Seyed-BolorforoshMichael Joseph Washburn
    • David D. BeckerMir Said Seyed-BolorforoshMichael Joseph Washburn
    • A61B800
    • G01S15/8979A61B8/06A61B8/13
    • A method and an apparatus for color mapping of flow power data in which the flow states containing information of most interest to the user are enhanced, while flow states not containing information of interest are suppressed. This is accomplished using a color mapping having three segments which are connected at upper and lower knee points, the latter being settable either automatically or via operator inputs. In the automatic mode, the host computer determines the positions of the knee points based on analysis of a single or a mean image frame of power Doppler data or based on system parameters (e.g., dynamic range) set by the operator. The host computer then constructs a color mapping having the determined knee points and loads that color mapping into the video processor.
    • 流量功率数据的颜色映射的方法和装置,其中包含用户最感兴趣的信息的流状态被增强,而不包含感兴趣的信息的流状态被抑制。 这是使用具有三个段的颜色映射来实现的,该三个段连接在上部和下部拐点处,后者可以通过操作者输入自动设置。 在自动模式中,主计算机基于功率多普勒数据的单个或平均图像帧的分析或者基于由操作者设置的系统参数(例如,动态范围)来确定拐点的位置。 然后,主计算机构建具有确定的拐点的颜色映射,并将该颜色映射加载到视频处理器中。
    • 5. 发明授权
    • Method to control frame rate in ultrasound imaging
    • 超声成像中控制帧率的方法
    • US5797846A
    • 1998-08-25
    • US774665
    • 1996-12-30
    • Mir Said Seyed-BolorforoshMichael J. WashburnDavid D. Becker
    • Mir Said Seyed-BolorforoshMichael J. WashburnDavid D. Becker
    • G01N29/26A61B8/00G01S7/52H04R17/00
    • G01S7/52085G01S7/52025G01S7/52046G01S7/5206G01S7/52063G01S7/52071
    • A method for optimizing the beam distribution to obtain the highest frame rate together with the least amount of acoustic noise while limiting the spatial aliasing to an acceptable level. The beam distribution is adjusted according to the scan format and as a function of the beam width, which is proportional to the product of the F number and the operating wavelength. As the F number changes in going from the shallow depth to a deeper depth, the number of beams fired to construct an image would change correspondingly. In addition, if the F number is changing in going from the center of image to the edge of the image, the separation of the fired beams would change. Alternatively, if the operating frequency is being changed in going from shallower depths to deeper depths or in going from the center of image to the edge of the image, the beam spacing is changed in order to fire the optimum number of beams at all times, and thereby obtain the highest frame rate. Another variation is to have a beam distribution which depends on the spatial resolution of the display unit. For a sector scan, the number of beams which are fired at the shallower depths can be made smaller than the number of beams fired at the deeper depths. Once the beam distribution has been defined, the sequencing of beam firings must be determined to maximize the frame rate.
    • 一种用于优化波束分布以获得最高帧速率以及最小量声学噪声同时将空间混叠限制到可接受水平的方法。 光束分布根据扫描格式和光束宽度的函数进行调节,光束宽度与F数与工作波长的乘积成比例。 随着F数从浅层深度的深度变化到更深的深度,发射构造图像的光束数将相应变化。 另外,如果从图像中心到图像边缘的F数正在变化,则射束的分离将改变。 或者,如果工作频率从较浅的深度变化到更深的深度,或者从图像的中心向图像的边缘变化,则改变光束间隔以始终激发最佳数量的光束, 从而获得最高的帧速率。 另一种变化是具有取决于显示单元的空间分辨率的光束分布。 对于扇区扫描,可以使在较浅深度处发射的光束的数量小于在较深深度处发射的光束的数量。 一旦定义了光束分布,必须确定光束发射的顺序以使帧速率最大化。
    • 8. 发明授权
    • Optimization of packet processing by delaying a processor from entering an idle state
    • 通过延迟处理器进入空闲状态来优化数据包处理
    • US08694994B1
    • 2014-04-08
    • US13227256
    • 2011-09-07
    • Pradeep VincentDavid D. Becker
    • Pradeep VincentDavid D. Becker
    • G06F9/38
    • G06F9/45533G06F9/38G06F9/5094Y02D10/22
    • Some embodiments facilitate high performance packet-processing by enabling one or more processors that perform packet-processing to determine whether to enter an idle state or similar state. As network packets usually arrive or are transmitted in batches, the processors of some embodiments determine that more packets may be coming down a multi-stage pipeline upon receiving a first packet for processing. As a result, the processors may stay awake for a duration of time in anticipation of an incoming packet. Some embodiments keep track of the last packet that entered the first stage of the pipeline and compare that with a packet that the processor just processed in a pipeline stage to determine whether there may be more packets coming that need processing. In some embodiments, a processor may also look at a queue length of a queue associated with an upstream stage to determine whether more packets may be coming.
    • 一些实施例通过启用执行分组处理的一个或多个处理器来确定是否进入空闲状态或类似状态来促进高性能分组处理。 随着网络分组通常到达或批量传输,一些实施例的处理器确定在接收到用于处理的第一分组时,更多分组可能在多级流水线中下降。 结果,处理器可以在预期输入分组的情况下保持清醒一段时间。 一些实施例跟踪进入流水线的第一阶段的最后一个分组,并将其与处理器刚刚在流水线级中处理的分组进行比较,以确定是否可能有更多的分组需要处理。 在一些实施例中,处理器还可以查看与上游级相关联的队列的队列长度,以确定更多分组是否可能来临。