Peak Detection System and Method for Calculation of Signal-Derived Metrics
    31.
    发明申请
    Peak Detection System and Method for Calculation of Signal-Derived Metrics 审中-公开
    峰值检测系统和信号衍生度量计算方法

    公开(公告)号:US20160045117A1

    公开(公告)日:2016-02-18

    申请号:US14827035

    申请日:2015-08-14

    Abstract: The invention in at least one embodiment includes a method for providing a beat determination based on signals from a plurality of medical sensors in substantially real time, said method including: receiving in at least two analysis modules at least one signal (including an ECG signal and/or a pulse signal) from at least one medical sensor such that at least one analysis module receives one ECG signal and at least one analysis module receives one pulse signal; in each analysis module processing one signal through a plurality of detection algorithm modules to produce at least one quantitative decision, fusing the quantitative decisions together with a fusion module, and outputting at least one detected peak from the fusion module to an aggregation module; and producing from the aggregation module a series of detected peaks based on detected peaks received from the analysis modules. In a further embodiment, the detected peaks produced by the aggregation module are used to determine heart rate variability/complexity. At least one embodiment includes a system for performing any of the above methods.

    Abstract translation: 本发明在至少一个实施例中包括一种用于基本上实时地基于来自多个医疗传感器的信号提供节拍确定的方法,所述方法包括:在至少两个分析模块中接收至少一个信号(包括ECG信号和 /或脉冲信号),使得至少一个分析模块接收一个ECG信号,并且至少一个分析模块接收一个脉冲信号; 在每个分析模块中,通过多个检测算法模块处理一个信号以产生至少一个定量决定,将定量决定与融合模块融合,并将至少一个检测到的峰值从融合模块输出到聚合模块; 并且基于从分析模块接收的检测到的峰值,从聚合模块生成一系列检测到的峰。 在另一个实施例中,由聚合模块产生的检测到的峰值用于确定心率变异性/复杂性。 至少一个实施例包括用于执行上述任何方法的系统。

    SUSTAINABLE COATED CORRUGATED FIBERBOARD CONTAINER
    33.
    发明申请
    SUSTAINABLE COATED CORRUGATED FIBERBOARD CONTAINER 审中-公开
    可持续涂层腐蚀纤维板容器

    公开(公告)号:US20130292379A1

    公开(公告)日:2013-11-07

    申请号:US13858120

    申请日:2013-04-08

    CPC classification number: B65D5/566 B65D5/2047 B65D5/48014

    Abstract: A packaging container having sustainable repulpable/recyclable capability specifically sized to maintain the integrity of the Meal, Ready-to-Eat (MRE) rations used by the U.S. Army and military services. A coated corrugated fiberboard using a C-flute configuration is utilized in a novel packaging design that incorporates a liner or a vertical container divider.

    Abstract translation: 一种具有可持续的可重复利用/可回收能力的包装容器,其特别尺寸用于维持美国陆军和军事服务使用的膳食,即食食品(MRE)口粮的完整性。 采用C形槽形结构的涂层瓦楞纸板采用新颖的包装设计,其中包括衬垫或垂直容器隔板。

    Functional fit system for apparel
    36.
    发明授权

    公开(公告)号:US11849781B1

    公开(公告)日:2023-12-26

    申请号:US17727882

    申请日:2022-04-25

    Inventor: Haile A. Merrill

    Abstract: Apparel that is adjustable. For example, in one embodiment, the apparel is provided that includes a torso. The torso includes a front, a back, a first side connecting the front to the back, a second side connecting the front to the back, a bottom, and a top. A plurality of shell fabric portions is on the torso. Each portion in the plurality of portions of shell fabric is adapted to receive an elastomeric member. Bunched fabric is on the first side and second side of the torso. Pleats are on the front of the torso. A centrally located flap is on the torso and has a longitudinal axis that is substantially vertical. Sleeves are connected to the torso. A first zipper track is located on the bottom of the torso. Pants may include a second zipper track adapted to mate with the first zipper track and secure the pants to the torso.

    Internal captive collar joint for projectile

    公开(公告)号:US11650034B1

    公开(公告)日:2023-05-16

    申请号:US17703605

    申请日:2022-03-24

    CPC classification number: F42B12/20

    Abstract: Components of a projectile are held together by a captive collar that is internal to the projectile. The internal captive collar is rotated about a central boss, allowing external threads on the collar to engage one of the mating components and pull that mating component into the other mating component in an axial only translation. The internal captive collar is rotated using a geared-key during assembly. This key engages a geared crown feature of the captive collar, allowing it to rotate. After assembly, the gear key is removed from the assembly. Castellated features nest within slots to transmit torque in the assembled projectile.

    Payload protection and deployment mechanism

    公开(公告)号:US11573068B1

    公开(公告)日:2023-02-07

    申请号:US17329634

    申请日:2021-05-25

    Abstract: A projectile with a payload protection mechanism protects, prior to and during firing, a fragile payload, where the payload must be positioned forward in the nose of the projectile, within a frangible ogive which provides little protection to rough handling, at time of downrange function. The payload protection mechanism allows the payload to move axially within the projectile, and initially slid rearward in the more robust metal body of the projectile. The payload is retained within the body by a locking and release mechanism, until the launching of the projectile triggers (by environmental forces such as setback or spin) the release of a locking and release mechanism. Unlocking the mechanism allows the payload to slide forward within the projectile into the ogive so the payload can function as required.

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