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    • 4. 发明申请
    • RESPIRATORY FACIAL MASK
    • 呼吸面膜
    • WO1997020597A1
    • 1997-06-12
    • PCT/US1996019364
    • 1996-12-06
    • RESPIRONICS, INC.
    • RESPIRONICS, INC.OGDEN, Douglas, R.ABEYTA, Joseph, A.KEEFE, Gregg, D.
    • A62B09/04
    • A61M16/06A61M16/0683A61M16/08A61M16/0825A61M2210/0618A62B18/084Y10S128/912
    • A facial mask assembly (1) for covering at least the nose (2) and nares (4) of a patient's face (6) and compensating for any unequal forces that may be generated in the straps (13L, 13R) holding the mask (1) on the patient's face (6). The assembly (1) includes a rigid, cup-shaped shell (3) with a soft seal (5) engaging and sealing against the patient's face (6). The shell (3) is preferably secured or attached to the patient's head (6) by an arrangement including a rigid plate (9) mounted to the rigid shell (3) and a harness (11). The harness (11) extends about the back of the patient's head (6) and preferably has side straps (15L, 15R) attached to the top of the rigid plate (9). The rigid plate (9) is loosely mounted to the rigid shell (3) at at least three locations (21, 23, 25) and can move to compensate for any unequally applied forces that would otherwise tend to rock or cock the shell (3) off the patient's face (6) and create a gap or leak in the seal (5).
    • 一种用于至少覆盖患者面部(6)的鼻部(2)和鼻孔(4)的面罩组件(1),并补偿在保持面罩(13L,13R)上可能产生的任何不相等的力 1)在病人的脸上(6)。 组件(1)包括刚性的杯形壳体(3),其具有与密封件(5)接合并密封在患者面部(6)上的软密封件(5)。 壳体(3)优选地通过包括安装到刚性壳体(3)的刚性板(9)和线束(11)的装置固定或附接到患者头部(6)。 线束(11)围绕患者头部(6)的后部延伸,并且优选地具有附接到刚性板(9)的顶部的侧带(15L,15R)。 刚性板(9)在至少三个位置(21,23,25)处松动地安装到刚性壳体(3)上并且可以移动以补偿任何不均匀施加的力,否则其将倾向于摇动壳体(3) )离开患者面部(6),并在密封件(5)中产生间隙或泄漏。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR DIODE LASER PULSE OXIMETRY USING MULTIFIBER OPTICAL CABLES AND DISPOSABLE FIBER OPTIC PROBES
    • 使用多纤维光纤和可剥离光纤探头的二极管激光脉冲测量的方法和装置
    • WO1997003603A1
    • 1997-02-06
    • PCT/US1996011871
    • 1996-07-18
    • RESPIRONICS, INC.
    • RESPIRONICS, INC.SHEMWELL, David, M.RYAN, George, R.
    • A61B05/00
    • A61B5/6826A61B5/14552A61B5/6838A61B2562/228
    • This invention is a method and apparatus for transferring two frequencies of electromagnetic energy to and from a portion of a living body (25) for the purpose of blood oxygen saturation measurements. The two frequencies of electromagnetic energy are transferred to the portion of the living body (25) through a single optical fiber cable (26) to a coupler (20), and then through a short section of optical cable (22) to an optical element (24) adjacent to the portion of the living body (25). After the two frequencies of electromagnetic energy are transmitted through the portion of the living body (25) they are received by another optical element (30), and transported away from the portion of the living body (25) to a coupler (36) through a short section of optical cable (32) where they may be converted to electrical signals. Alternatively, the two frequencies of electromagnetic energy are carried away from the coupler (30). The signals for the coupler are directed to a measurement instrument (18), which through an adapter may be a conventional measurement instrument known in the prior art or a measurement instrument (18) specifically designed for use with the signals produced at the coupler. The two short sections of optical cable (22, 32) and the two optical elements (24, 30) adjacent to the portion of the living body (25) and the coupler (20, 36) are combined to form a disposable probe. Alternatively, the disposable probe can include a transducer to convert the transmitted optical energy to electrical signals.
    • 本发明是一种为了血氧饱和度测量的目的而将两个频率的电磁能量传送到生物体(25)的一部分和从活体(25)的一部分转移的方法和装置。 电磁能的两个频率通过单个光纤电缆(26)传送到生物体(25)的一部分到耦合器(20),然后通过短的光缆(22)传递到光学元件 (24)邻近生物体(25)的部分。 在电磁能量的两个频率通过活体(25)的部分传播之后,它们被另一个光学元件(30)接收,并且通过生物体(25)的部分从生物体(25)的一部分传送到耦合器(36) 光缆(32)的短部分,其中它们可以被转换成电信号。 或者,电磁能量的两个频率被从耦合器(30)移出。 耦合器的信号被引导到测量仪器(18),其通过适配器可以是现有技术中已知的常规测量仪器或专门设计用于与耦合器处产生的信号一起使用的测量仪器(18)。 光缆(22,32)的两个短部分和邻近生物体(25)的部分和耦合器(20,36)的两个光学元件(24,30)组合以形成一次性探针。 或者,一次性探头可以包括用于将传输的光能转换成电信号的换能器。
    • 7. 发明申请
    • PORTABLE PRESSURE TRANSDUCER, PNEUMOTACH FOR USE THEREWITH, AND ASSOCIATED METHODS
    • 便携式压力传感器,使用其中的PNEUMOTACH和相关方法
    • WO02089920A3
    • 2003-05-01
    • PCT/US0214392
    • 2002-05-07
    • RESPIRONICS INC
    • ORR JOSEPH AKOFOED SCOTT ADURST KEVIN
    • A62B9/00A61B5/08A61B5/087G01F1/00G01F1/36
    • G01L13/00A61B5/087
    • A system for sensing respiratory pressure includes a portable pressure transducer (50) configured to be carried by or proximate to a respiratory conduit, such as a breathing circuit or a nasal canula. The portable pressure transducer (50) may removably couple with a pneumotach (20), in the form of an airway adapter, disposed along the respiratory conduit. The pneumotach may include two pressure ports (24, 34) positioned at opposite sides of an obstruction, which partially blocks flow through a primary conduit of the pneumotach (20). Corresponding sample conduits (55, 56) of the portable pressure transducer (50) removably couple with the pressure ports (24, 34). The pressure ports (24, 34) may have sealing elements which are configured to seal against piercing members of the sample conduits (55, 65) upon introduction of the piercing members therethrough. Upon removal of the piercing members, the sealing elements substantially reseal. Methods for using the system are also disclosed.
    • 用于感测呼吸压力的系统包括便携式压力传感器(50),其构造为由呼吸管道(例如呼吸回路或鼻腔)携带或接近呼吸管道。 便携式压力传感器(50)可以可移除地与沿着呼吸管道设置的气道适配器形式的气腹(20)联接。 冲击器可以包括位于阻塞物的相对侧的两个压力端口(24,34),其部分地阻塞流过冲击器(20)的主管道的流动。 便携式压力传感器(50)的相应的样品导管(55,56)可拆卸地与压力端口(24,34)耦合。 压力端口(24,34)可以具有密封元件,该密封元件构造成在刺穿构件穿过其中时密封样品导管(55,65)的刺穿构件。 在移除穿孔构件时,密封元件基本上重新密封。 还公开了使用该系统的方法。
    • 8. 发明申请
    • PORTABLE PRESSURE TRANSDUCER, PNEUMOTACH FOR USE THEREWITH, AND ASSOCIATED METHODS
    • 便携式压力传感器,使用其中的PNEUMOTACH和相关方法
    • WO2002089920A2
    • 2002-11-14
    • PCT/US2002/014392
    • 2002-05-07
    • RESPIRONICS, INC.
    • ORR, Joseph, A.KOFOED, Scott, A.DURST, Kevin
    • A62B9/00
    • G01L13/00A61B5/087
    • A system for sensing respiratory pressure includes a portable pressure transducer configured to be carried by or proximate to a respiratory conduit, such as a breathing circuit or a nasal canula. The portable pressure transducer may removably couple with a pneumotach, in the form of an airway adapter, disposed along the respiratory conduit. The pneumotach may include two pressure ports positioned at opposite sides of an obstruction, which partially blocks flow through a primary conduit of the pneumotach. Corresponding sample conduits of the portable pressure transducer removably couple with the pressure ports. The pressure ports may have sealing elements which are configured to seal against piercing members of the sample conduits upon introduction of the piercing members therethrough. Upon removal of the piercing members, the sealing elements substantially reseal. Methods for using the system are also disclosed.
    • 用于感测呼吸压力的系统包括便携式压力传感器(50),其构造为由呼吸管道(例如呼吸回路或鼻腔)携带或接近呼吸管道。 便携式压力传感器(50)可以可移除地与沿着呼吸管道设置的气道适配器形式的气腹(20)联接。 冲击器可以包括位于阻塞物的相对侧的两个压力端口(24,34),其部分地阻塞流过冲击器(20)的主管道的流动。 便携式压力传感器(50)的相应的样品导管(55,56)可拆卸地与压力端口(24,34)耦合。 压力端口(24,34)可以具有密封元件,该密封元件构造成在刺穿构件穿过其中时密封样品导管(55,65)的刺穿构件。 在移除穿孔构件时,密封元件基本上重新密封。 还公开了使用该系统的方法。
    • 10. 发明申请
    • AVERAGE VOLUME VENTILATION
    • 平均通气量
    • WO0076389A3
    • 2001-06-28
    • PCT/US0016350
    • 2000-06-14
    • RESPIRONICS INC
    • HILL PETER DKISSEL MICHAEL HFRANK JOHN
    • A61M16/00
    • A61M16/026A61M2016/0021A61M2016/0027A61M2016/0039A61M2205/15A61M2230/60
    • A ventilator or pressure support device (2) supplies a plurality of volumes of fluid to a patient during a like plurality of inhalations by the patient. Each volume of fluid is supplied at an inspiratory positive airway pressure during a corresponding inhalation by the patient. A volume of fluid received by the patient is determined for each of the plurality of inhalations by the patient and an average volume of fluid received by the patient during each of the plurality of inhalations is determined. The average volume of fluid received by the patient during each inhalation is compared to a predetermined target volume and the inspiratory positive airway pressure each volume of fluid is supplied to the patient is adjusted as a function of the comparison.
    • 呼吸机或压力支持装置(2)在患者的类似的多次吸入期间向患者提供多个体积的流体。 在患者的相应吸入期间,每个体积的流体以吸气正气道压力供应。 确定由患者接收的多个流体中的每一个的体积,并确定由多个吸入中的每一个期间由患者接收的平均流体体积。 将患者在每次吸入期间接收的流体的平均体积与预定目标体积进行比较,并且将每个体积的流体的吸气正气道压力作为比较的函数进行调整。