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    • 5. 发明申请
    • Expansion of television functionality
    • 扩大电视功能
    • US20080148335A1
    • 2008-06-19
    • US11639504
    • 2006-12-15
    • Thomas Patrick DawsonRobert L. Hardacker
    • Thomas Patrick DawsonRobert L. Hardacker
    • H04N7/173
    • H04N21/485H04N5/4401H04N21/4104H04N21/4184H04N21/47H04N21/478
    • A method of expansion of a television receiver's functionality consistent with certain embodiments involves connecting an accessory device to the television receiver, wherein the accessory device adds functionality to the television receiver; sending a menu legend and an associated function command to the television receiver from the accessory device for display on the television's display; populating a television menu selection with the legend; upon selection of the menu selection populated with the legend, the television receiver sending the function command to the accessory; and at the accessory device, upon receipt of the function command; running an application at the accessory. This abstract is not to be considered limiting, since other embodiments may deviate from the features described in this abstract.
    • 根据某些实施例的扩展电视接收机的功能的方法包括将附件设备连接到电视接收机,其中附件设备向电视接收机添加功能; 从附件装置向电视接收机发送菜单图例和相关的功能命令,以在电视机的显示器上显示; 用传说填充电视菜单选择; 在选择用图例填充的菜单选择后,电视接收机向附件发送功能命令; 并在附件装置上接收到功能命令; 在附件上运行应用程序。 该摘要不被认为是限制性的,因为其他实施例可能偏离本摘要中描述的特征。
    • 6. 发明授权
    • Scanning method for applying ultrasonic acoustic data to the human neural cortex
    • 将超声波数据应用于人类神经皮层的扫描方法
    • US07350522B2
    • 2008-04-01
    • US10823090
    • 2004-04-12
    • Thomas Patrick Dawson
    • Thomas Patrick Dawson
    • A61B19/00
    • A61N7/00A61N2007/0095
    • A method for creating sensory experiences operates by scanning the acoustical signal across the human neural cortex to create the desired sensory perceptions. The acoustic signal is scanned in a predetermined pattern. The pattern is then modified to fill in spaces in the predetermined pattern so that over a short time period, the desired signal is scanned across the intended region of the neural cortex. In one exemplary embodiment, the pattern begins with an array of points on the cortex. Thus, an acoustic signal in an array of points is directed towards the cortex. The acoustic pattern is then shaped to expand in radius about each point. Thus, the acoustic signal scans the visual cortex in an array of expanding circles. Varying the signal at each point along the radius as it expands produces neural firing differences in the neural tissue. When the circles expand to where they begin to touch, the pattern changes to fill in the areas between the original array of points. The new circles are centered about the points between the original stimulation locations, and the acoustic signal contracts about these new centers. The signal continues to contract about the new center points. When the new circles have contracted to an array of points, the process can be repeated from the start or simply reversed. Another method operates by forming concentric circles and expanding and contracting each of the concentric circles to fill in the original spaces between the concentric circles.
    • 用于产生感觉体验的方法通过扫描穿过人类神经皮层的声学信号来产生期望的感觉知觉。 以预定的模式扫描声信号。 然后修改图案以填充预定图案中的空间,使得在短时间内,跨越神经皮质的预期区域扫描期望的信号。 在一个示例性实施例中,图案以皮质上的点阵列开始。 因此,点阵列中的声信号指向皮层。 声学图案然后成形为围绕每个点的半径扩大。 因此,声信号以扩展圆阵列扫描视觉皮质。 随着它的扩展,沿着半径的每个点改变信号会在神经组织中产生神经发射差异。 当圆圈扩展到他们开始触摸的地方时,图案会改变以填充原始阵列点之间的区域。 新的圈子集中在原始刺激位置之间的点,以及关于这些新中心的声信号合约。 信号在新的中心点继续收缩。 当新界已经收缩到一个点数时,该过程可以从一开始就重复出来,或者简单地反转。 另一种方法通过形成同心圆并且扩展和收缩每个同心圆以填充同心圆之间的原始空间来操作。
    • 7. 发明授权
    • Computer-readable medium and program for quantizing a data set, method and apparatus for quantizing a data set
    • US06836563B2
    • 2004-12-28
    • US10633870
    • 2003-08-04
    • Thomas Patrick Dawson
    • Thomas Patrick Dawson
    • G06K900
    • G06T11/001
    • A method for receiving and quantizing a data set originating from collected data is provided. The data set has a plurality of dimensions defined by perpendicular axes, and includes a plurality of data points. Each data point has a data characteristic. The method includes the steps of: receiving the data set; selecting a predetermined number of data classes based on a distribution of the data characteristics of the plurality of data points within the data set, the predetermined number of data classes less than the number of data points; forming a data structure based on the predetermined number of data classes; and resolving each of the plurality of data points into one of the predetermined number of data classes using a method, which includes the steps of locating a plurality of region centers within the data set, each region center associated with one of the predetermined number of data classes; representing formation of a plurality of regions within the data set by iteratively expanding a predetermined geometric representation from each region center radially outward, each iteration of expansion of the predetermined geometric representation occurring by an integer unit of measure associated with a data point, the iterative expansion causing adjacent regions to intersect and form region boundaries, the region boundaries permitted to be non-parallel to the perpendicular axes; and after each iteration of expansion, assigning a value to each of the unassigned data points within each region, the assigned value associated with the predetermined data class of a particular region center, the particular region center being the region center associated with the first region to capture the data point during the iterations of expansion. The resolved data points are associated with the data structure, and, using the associated resolved data points, a modified representation of the collected data is generated.