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    • 31. 发明授权
    • Method of real time optimizing multimedia packet transmission rate
    • 实时优化多媒体分组传输速率的方法
    • US07620062B2
    • 2009-11-17
    • US10726440
    • 2003-12-02
    • Osamu Kobayashi
    • Osamu Kobayashi
    • H04J3/17
    • G06F3/14G09G5/006G09G2370/04H04L1/0002H04L5/1415H04L5/1446H04L25/4904H04N11/042Y02D50/10
    • A method and apparatus of optimizing transmission (both real time and continuous) of a number of multimedia data packets between a multimedia source device and a multimedia display device is disclosed. In the described embodiment, the multimedia source device and the display device are coupled by way of a unidirectional main link arranged to carry the multimedia data packets from the multimedia source device and the multimedia display device and a bi-directional auxiliary channel arranged to transfer information between the multimedia source device and the multimedia display device. The method can be carried out by following at least the following operations. Providing a test pattern by the multimedia source device on the main link, determining a transmission quality factor of the main link based upon the test pattern, and optimizing the transmission of the multimedia data packets based upon the transmission quality factor.
    • 公开了一种在多媒体源设备和多媒体显示设备之间优化多个多媒体数据分组的传输(包括实时和连续的)的方法和装置。 在所描述的实施例中,多媒体源设备和显示设备通过布置成承载来自多媒体源设备和多媒体显示设备的多媒体数据分组的单向主链路和布置成传送信息的双向辅助信道 在多媒体源设备和多媒体显示设备之间。 该方法可以通过以下操作进行至少以下操作。 通过主链路上的多媒体源设备提供测试模式,基于测试模式确定主链路的传输质量因子,并且基于传输质量因子优化多媒体数据分组的传输。
    • 40. 发明申请
    • Minimally Invasive Medical Implant Devices for Controlled Drug Delivery
    • 用于控制药物递送的微创医学植入装置
    • US20070275035A1
    • 2007-11-29
    • US11753330
    • 2007-05-24
    • Stephen J. HermanJohn T. SantiniMark A. Staples
    • Stephen J. HermanJohn T. SantiniMark A. Staples
    • A61K9/14A61M31/00
    • A61K9/0097A61K9/0024A61M31/002
    • Implantable medical devices and methods of use are provided for controlled drug delivery. The devices may include an elongated body dimensioned to facilitate minimally invasive and complete implantation into a patient, wherein the elongated body portion comprises a first, closed end portion, a second closed end portion and an intermediate portion disposed between and connected to the first closed end portion and the second closed end portion; two or more discrete reservoirs disposed in the elongated body portion, each reservoir having one or more openings; a drug formulation, which comprises at least one drug, disposed in the two more discrete reservoirs; and reservoir caps closing off the one or more openings of each reservoir, wherein release of the drug in vivo is controlled at least in part by the in vivo disintegration or permeabilization of the discrete reservoir caps.
    • 为可控制的药物输送提供可植入的医疗装置和使用方法。 所述装置可以包括细长的主体,其尺​​寸适于促进对患者的微创和完全植入,其中所述细长主体部分包括第一封闭端部,第二封闭端部和设置在所述第一闭合端之间并连接到所述第一闭合端 部分和第二封闭端部; 设置在细长主体部分中的两个或更多个离散储存器,每个储存器具有一个或多个开口; 一种药物制剂,其包含设置在两个更离散的储存器中的至少一种药物; 并且储存器盖封闭每个储存器的一个或多个开口,其中药物在体内的释放至少部分地通过离散储器盖的体内分解或透化来控制。