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    • 6. 发明授权
    • Method for reducing the effects of general anesthetics
    • 降低全身麻醉效果的方法
    • US07891356B2
    • 2011-02-22
    • US11843994
    • 2007-08-23
    • Joseph A. OrrDwayne R. Westenskow
    • Joseph A. OrrDwayne R. Westenskow
    • A61M11/00
    • A61M16/009A61M16/0045A61M16/0093A61M16/0833A61M16/085A61M16/0891A61M16/105A61M16/1055A61M16/106A61M16/22
    • An apparatus for reversing inhaled anesthesia, which is configured to be positioned along a breathing circuit or anesthesia delivery circuit, includes a filter for removing one or more anesthetic agents from gases passing therethrough, as well as a component for elevating CO2 levels in gases that are to be inhaled by an individual. The apparatus is configured to be positioned between a Y-connector of the breathing circuit and the portion of the breathing circuit that interfaces with the individual. The CO2 level-elevating component facilitates an increase in the ventilation of the individual without resulting in a significant decrease in the individual's PaCO2 level and, thus, a decrease in the rate at which blood flows through the individual's brain. A method of reversing the effects of inhaled anesthesia includes increasing the rate of ventilation of an anesthetized individual while causing the individual to inhale gases with elevated amounts of CO2 and while filtering anesthetic agents from such gases.
    • 用于反转吸入麻醉的装置,其被配置为沿着呼吸回路或麻醉输送回路定位,包括用于从通过其中的气体中去除一种或多种麻醉剂的过滤器,以及用于提高气体中的CO 2水平的组分, 被个人吸入。 该装置构造成位于呼吸回路的Y形连接器和与个体接触的部分呼吸回路之间。 二氧化碳水平升高组件有助于个体的通气量增加,而不会导致个体PaCO2水平的显着降低,从而导致血液流过个体大脑的速度降低。 一种逆转吸入麻醉效果的方法包括增加麻醉个体的通气率,同时使个体以较高量的CO 2吸入气体,同时从这些气体中过滤麻醉剂。
    • 9. 发明授权
    • Method for determining blood pressure utilizing a neural network
    • 使用神经网络测定血压的方法
    • US5339818A
    • 1994-08-23
    • US119451
    • 1993-09-09
    • Phillip D. BakerJoseph A. OrrDwayne R. WestenskowTimothy P. Egbert
    • Phillip D. BakerJoseph A. OrrDwayne R. WestenskowTimothy P. Egbert
    • A61B5/0215A61B5/022A61B5/087A61M16/00A61B5/00
    • A61B5/7267A61B5/02156A61B5/022A61B5/087A61M16/0051A61B5/7239Y10S128/925Y10S706/924
    • A method and device for indirect, quantitative estimation of blood pressure attributes and similar variable physiological parameters utilizing indirect techniques. The method of practice includes (i) generating a sequence of signals which are quantitative dependent upon the variable parameter, (ii) transmitting and processing the signals within a computer system and associated neural network capable of generating a single output signal for the combined input signals, (iii) directly determining an actual value for the parameter concurrent with the indirect generation of signals of the previous steps, (iv) applying weighting factors within the neural network at interconnecting nodes to force the output signal of the neural network to match the true value of the parameter as determined invasively, (v) recording the input signals, weighting factors and true value as training data within memory of the computer, and (vi) repeating the previous steps to develop sufficient training data to enable the neural network to accurately estimate parameter value upon future receipt of on-line input signals. Procedures are also described for preclassification of signals and artifact rejection. Following training of the neural network, further direct measurement is unnecessary and the system is ready for diagnostic application and noninvasive estimation of parameter values.
    • 使用间接技术间接,定量估计血压属性和类似可变生理参数的方法和装置。 实践方法包括:(i)产生定量依赖于可变参数的信号序列,(ii)在计算机系统内发送和处理能够产生用于组合输入信号的单个输出信号的相关联的神经网络的信号 (iii)直接确定与前述步骤的信号的间接产生同时参数的实际值,(iv)在互连节点处在神经网络内应用加权因子以迫使神经网络的输出信号与真实的 (v)将输入信号,加权因子和真实值作为训练数据记录在计算机的存储器内,以及(vi)重复先前的步骤以开发足够的训练数据以使得神经网络能够准确地 在将来接收在线输入信号时估计参数值。 还描述了信号的预分类和伪像抑制的程序。 在神经网络训练之后,进一步的直接测量是不必要的,系统已准备好进行诊断应用和参数值的无创估计。
    • 10. 发明授权
    • Self-adhering noninvasive intracorporeal movement detector
    • 自体无创体内运动检测器
    • US5195536A
    • 1993-03-23
    • US758616
    • 1991-09-12
    • Fidel H. SilvaDwayne R. WestenskowJoseph A. Orr
    • Fidel H. SilvaDwayne R. WestenskowJoseph A. Orr
    • A61B5/03A61B5/11
    • A61B5/6833A61B5/1126A61B5/4356
    • A non-invasive intracorporeal movement transducer for translating intracorporeal movement into a detectable pressure signal is described. The movement transducer includes a fluid-filled bubble with a rigid rear portion, and a semi-rigid, flexible forward portion which is placed against a patient's skin above the organ to be monitored. The rear portion of the bubble has a fluid duct which provides fluid communication to the interior, and tubing is connected between the duct and a pressure sensor which detects the pressure of fluid within the bubble. Self-adhering attachment means is associated with the rear portion of the bubble for affixing the bubble against the patient's skin. In one embodiment, the attachment means is a foam backing larger than the bubble, with adhesive on one side for adhering to the patient's skin and to the rear portion of the bubble. The backing holds the rigid rear plate substantially fixed in approximately parallel relation to the patient's skin surrounding the area covered by the bubble.
    • 描述了用于将体内运动转换成可检测的压力信号的非侵入性体内运动换能器。 移动换能器包括具有刚性后部的流体填充气泡和半刚性柔性前部,其抵靠待监视器官上方的患者皮肤放置。 气泡的后部具有提供与内部的流体连通的流体管道,并且管道连接在管道和检测气泡内的流体压力的压力传感器之间。 自粘连接装置与气泡的后部相关联,以将气泡贴在病人的皮肤上。 在一个实施例中,附接装置是大于气泡的泡沫背衬,在一侧上具有粘合剂以粘附到患者的皮肤和气泡的后部。 背衬保持刚性后板基本上固定为与气泡覆盖的区域周围的患者皮肤大致平行的关系。