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    • 1. 发明授权
    • Material-filled package
    • 材料填充包装
    • US08142078B2
    • 2012-03-27
    • US11576602
    • 2005-10-04
    • Shinji Matsunaga
    • Shinji Matsunaga
    • B65D33/00B65D33/16B65D30/00B65D30/08
    • B32B27/32B65D75/44
    • A filling-packaging body formed to have both such a durability that can withstand a large amount of filled material filled therein and easily unsealing property. The filling-packaging body (1) is formed by filling the filled material in a three-side seal bag having an overlapped part formed by cylindrically curving a laminated film (10) and overlapping both side edge parts of the laminated film, a plurality of vertical seal parts (2a) and (2b) (two seal parts are shown) formed at the overlapped part roughly parallel with each other in such a state that a band-like non-seal part (5) is left at the tip side of the outer surface side-edge part of the overlapped part, and lateral seal parts (3) and (4) formed to cross the longitudinal both end parts of the vertical seal parts (2a) and (2b). The laminated film (10) is formed by interposing a base material layer (12) for imparting strength to the film between an inner layer (11) and an outer layer (13) which are seal layers formed of a low density polyethylene.
    • 一种填充包装体,其形成为具有能够承受填充在其中的大量填充材料并且容易开封性能的这种耐久性。 填充包装体(1)通过将填充材料填充在具有重叠部分的三面密封袋中而形成,所述重叠部分通过圆柱形弯曲层压膜(10)并与叠层膜的两个侧边缘部分重叠而形成, 在这种重叠部分处形成的垂直密封部分(2a)和(2b)(两个密封部分被示出)处于大致平行的状态,即带状非密封部分(5)留在 重叠部分的外表面侧边缘部分和横向密封部分(3)和(4)形成为横切垂直密封部分(2a)和(2b)的纵向两端部分。 层叠膜(10)通过在由低密度聚乙烯形成的密封层的内层(11)和外层(13)之间插入用于赋予膜强度的基材层(12)而形成。
    • 3. 发明授权
    • Infrared source
    • 红外源
    • US07989821B2
    • 2011-08-02
    • US12774012
    • 2010-05-05
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • H01L21/00H05B3/10
    • H01K1/62G01J3/108H01K1/04H01K1/16H01K1/18
    • A sealed infrared radiation source includes an emitter membrane stimulated by an electrical current conducted through the membrane, which acts like an electrical conductor, wherein the membrane is mounted between first and second housing parts, at least one being transparent in the IR range, each housing part defining a cavity between the membrane and the respective housing part of each side of the membrane. The housing parts are at least partially electrical conductive, and a first of the housing parts is electrically coupled to a first end of the electrical conductor and insulated from the second end of the electrical conductor, the second housing part being electrically coupled to a second end of the electrical conductor and being insulated from the first end of the electrical conductor, thus allowing a current applied from the first housing part to the second housing part to pass through and heat the membrane.
    • 密封的红外线辐射源包括由通过膜传导的电流刺激的发射体膜,其作用类似于电导体,其中膜安装在第一和第二壳体部分之间,至少一个在IR范围内是透明的,每个壳体 部分限定膜和膜的每一侧的相应壳体部分之间的空腔。 壳体部分至少部分地导电,并且第一壳体部分电耦合到电导体的第一端并与电导体的第二端绝缘,第二壳体部分电耦合到第二端 并且与电导体的第一端绝缘,从而允许从第一壳体部分到第二壳体部分施加的电流通过并加热膜。
    • 4. 发明授权
    • Method and apparatus for determining conditions of a biological tissue
    • 用于确定生物组织条件的方法和装置
    • US07970461B2
    • 2011-06-28
    • US11156757
    • 2005-06-20
    • Andres KinkMart MinToomas ParveIndrek Ratsep
    • Andres KinkMart MinToomas ParveIndrek Ratsep
    • A61B5/05
    • A61B5/0537A61B5/413
    • In one method, one or more excitation signals with the same or different frequencies are applied to a biological object such as a tissue, simultaneously or consequently. Response signals are then cross-correlated with delayed excitation signals. Cross-correlation products are then auto-correlated. Cross-correlation products correspond to conditions of the tissue and auto-correlation product corresponds to changes in the conditions. Measuring electrical characteristics at low, intermediate and high frequency is also disclosed. At low frequency, the current flows mostly through the extracellular liquid of tissue. At high frequency, the current passes through the cell membranes freely enough to dominate the overall impedance. At both frequencies, the delay is less than 1/30 of the period of the respective signal. The intermediate frequency between the low frequency and the high frequency carries information about quick changes in the condition of the tissue. The delay in one example is from about 1/30 to ¼ of the period of the intermediate signal.
    • 在一种方法中,具有相同或不同频率的一个或多个激发信号同时或因此被施加到诸如组织的生物物体上。 然后响应信号与延迟的激励信号互相关。 互相关产品则自动相关。 互相关产品对应于组织的条件和自相关产品对应于条件的变化。 还公开了测量低,中,高频的电特性。 在低频下,电流主要通过组织的细胞外液体。 在高频下,电流自由流过细胞膜,以支配整体阻抗。 在两个频率下,延迟小于相应信号周期的1/30。 低频和高频之间的中频携带关于组织状况的快速变化的信息。 一个示例中的延迟是中间信号的周期的大约1/30到1/4。
    • 7. 发明授权
    • Flexible and adaptive accrual method and apparatus for calculating and facilitating compliance with taxes and other obligations
    • 灵活和适应性的计算方法和计算方法,便于遵守税收和其他义务
    • US07912768B2
    • 2011-03-22
    • US12576595
    • 2009-10-09
    • Gary Evan AbelesAlan Stuart Kaplan
    • Gary Evan AbelesAlan Stuart Kaplan
    • G06F17/22G06Q40/00
    • G06Q40/02G06Q20/10G06Q20/102G06Q40/00G06Q40/10G06Q40/12G06Q40/123
    • A computer-based system and method calculates and facilitates revenue accrual, for making larger, less frequent payments of estimated taxes or other obligations. Payer preferences are applied to satisfy variable payment intervals, amounts, and available resources. The obligation, required payments, and set-aside schedules are recalculated as needed, under payer and/or system control. Excess accruals are minimized; set-aside schedules are configurable. The system may be self-contained, handheld, or accessed remotely. Automatic datalinks move information and command fund transfers from the payer's bank, to accrue funds and make payments to other accounts. A service host may support a plurality of payers to make set-asides and payments at various levels as needed, on an individual or batch basis, including individual taxpayer enrollment for batch file tax payments by service providers. Some embodiments can be embedded to enhance the capabilities of other systems.
    • 基于计算机的系统和方法计算和促进收入应计利润,使估计税收或其他义务的支付更大,更不频繁。 付款人偏好适用于满足可变付款间隔,金额和可用资源。 在付款人和/或系统控制下,根据需要重新计算义务,所需付款和预留时间表。 超额应计利润最小化; 预留时间表是可配置的。 系统可以是独立的,手持的或远程访问的。 自动数据链接从付款人银行移动信息和指示资金转帐,累积资金并向其他账户支付款项。 服务主机可以支持多个付款人在个别或批次的基础上根据需要在不同层次进行预留和付款,包括由服务提供商批量文件纳税的个人纳税人注册。 可以嵌入一些实施例以增强其他系统的能力。
    • 8. 发明授权
    • Device and method for monitoring cardiac pacing rate
    • 监测心脏起搏率的装置和方法
    • US07894900B2
    • 2011-02-22
    • US11847430
    • 2007-08-30
    • Andres KinkMart MinnToomas ParveIndrek Rätsep
    • Andres KinkMart MinnToomas ParveIndrek Rätsep
    • A61B5/08A61N1/08A61N1/365
    • A61N1/36514A61B5/029A61B5/0295A61B5/053A61N1/36521A61N1/36585
    • A device for monitoring cardiac pacing rate having a measuring unit for receiving an electrical signal representing the patient's cardiac demand, and a computing unit for determining the myocardial energy balance by calculating energy consumed by the myocardium for both an external dynamic work for pumping blood into a vascular system, and an internal static work of the myocardium. Volume and time based measurements are used, and in one embodiment, volumes are estimated and volume ratios are calculated from volume estimates. In another embodiment, volumes are estimated from bioimpedance measurements. A further aspect is a rate adaptive pacemaker, wherein the maximum pacing rate is determined from the myocardial energy balance such that the energy supplied to the myocardium approximately equals the energy consumed by the myocardium for both an external dynamic work for pumping blood into a vascular system and an internal static work of the myocardium.
    • 一种用于监测心脏起搏速率的装置,具有用于接收代表患者心脏需求的电信号的测量单元,以及计算单元,用于通过计算用于将血液抽入血液的外部动力学工作来计算心肌消耗的能量来确定心肌能量平衡 血管系统和心肌的内部静态工作。 使用基于体积和时间的测量,并且在一个实施例中,估计体积,并且根据体积估计计算体积比。 在另一个实施例中,通过生物阻抗测量估计体积。 另一方面是速率自适应起搏器,其中最大起搏速率是根据心肌能量平衡来确定的,使得提供给心肌的能量大致等于心肌消耗的能量,用于将血液泵入血管系统的外部动力学工作 和心肌的内部静电作业。
    • 10. 发明授权
    • Food container assembly with integral hinge/latch combination and method therefor
    • 具有整体铰链/闩锁组合的食品容器组件及其方法
    • US07882974B2
    • 2011-02-08
    • US11328322
    • 2006-01-09
    • Michael G EvansMatthew J WichmannAshish K Mithal
    • Michael G EvansMatthew J WichmannAshish K Mithal
    • B65D6/28
    • B65D21/0234
    • The present invention relates to a food container assembly comprising a base and a lid wherein the base and the lid are structurally identical in one of the embodiments. The base and the lid include inter-cooperating sealing areas in the form of ridges and mating grooves. The base and the lid can be joined via a first hinge/latch combination in a mutually hingeable relationship along a pair of corresponding sides, and in addition, can be mutually secured along an opposing pair of corresponding sides via a second hinge/latch combination. According to one embodiment of the invention, the container base includes a bottom wall; a sidewall; and a peripheral rim having a ridge portion, a groove portion, a hinge flap and a locking area; wherein the container base is adapted for engagement and latching with another identical container base disposed in an inverted and superjacent relationship therewith.
    • 本发明涉及一种食品容器组件,其包括基座和盖子,其中底座和盖子在其中一个实施例中在结构上相同。 基座和盖子包括脊形和配合凹槽形式的相互配合的密封区域。 基座和盖可以通过第一铰链/闩锁组合沿着一对相应的侧面以相互可铰接的关系连接,此外,可以经由第二铰链/闩锁组合沿着相对的一对对应的相互固定。 根据本发明的一个实施例,容器底座包括底壁; 侧壁 以及具有脊部分,凹槽部分,铰链翼片和锁定区域的周边边缘; 其中所述容器底座适于与设置成与其相反并且与之相邻的关系的另一相同的容器基座接合和锁定。