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    • 1. 发明专利
    • Tube assembly
    • 管组件
    • JP2009019763A
    • 2009-01-29
    • JP2008139936
    • 2008-05-28
    • Oridion Medical Ltdオリディオン メディカル リミティド
    • COLMAN JOSHUA LMENACHEM AMNON
    • F16L25/00G01N1/02A61B5/097A61M39/10B01L3/00G01N35/00
    • G01N35/00732A61M39/10A61M2039/1005A61M2039/1033A61M2039/1044A61M2205/587A61M2205/6063B01L3/565G01N2035/00772
    • PROBLEM TO BE SOLVED: To determine whether or not a tube assembly is appropriately connected to an analyzer, and which class does a tube belong to.
      SOLUTION: The tube assembly connected to a fluid analyzer is provided with a first connector having an end surface which is formed so that it has in essence mirror-like reflexivity at least across its annular part. The first connector is suitable for being attached to a second connector which is attached to an enclosure housing the analyzer. Then the first end of the first and the second optical fibers is suitable for being attached in the second connector so that an optical path having no obstacles can be formed between the end surface of the first end of the first and the second optical fibers and at least one commonality on the end surface of the first connector when the first connector has been appropriately attached to the second connector. A light source is suitable for being optically coupled to the second end of the first optical fiber, and a light detector is suitable for being optically coupled to the second end of the second optical fiber.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:确定管组件是否适当地连接到分析器,以及管属于哪一类。 连接到流体分析器的管组件设置有第一连接器,其具有形成为使得其至少在其环形部分上至少具有镜状反射性的端面。 第一连接器适于连接到附接到容纳分析器的外壳的第二连接器。 然后,第一和第二光纤的第一端适于安装在第二连接器中,使得在第一和第二光纤的第一端的端面之间可以形成没有障碍物的光路,并且在 当第一连接器被适当地附接到第二连接器时,在第一连接器的端表面上的至少一个共同点。 光源适于光耦合到第一光纤的第二端,并且光检测器适于光学耦合到第二光纤的第二端。 版权所有(C)2009,JPO&INPIT
    • 6. 发明申请
    • BREATH TEST ANALYSER
    • 呼吸测试分析仪
    • WO9912471A3
    • 1999-05-27
    • PCT/IL9800445
    • 1998-09-10
    • ORIDION MEDICAL LTDKATZMAN DANIELCARLEBACH EPHRAIM
    • KATZMAN DANIELCARLEBACH EPHRAIM
    • G01N33/497A61B5/083A61B10/00G01N21/03G01N21/35G01N33/00
    • A61B5/0836A61B5/7239G01N21/3504G01N33/0006
    • A breath test analyzer, which analyzes exhaled breaths of a patient for isotope labeled products generated in the patient's body after ingestion by the patient of an isotope labeled substance, where the presence of these isotope labeled products provide an indication of a medical condition in the patient. The analyzer uses a very sensitive infra-red spectrophotometer, which enables it to continuously collect and analyze multiple samples of the patient's breath, and process the outputs in real time, while the patient is still connected to the analyzer, such that a definitive result is obtained within a short time, such as the order of a few minutes. The breath test analyzer is sufficiently small that it can be easily accomodated in the office of a physician. The breath test analyzer can be utilized for a number of diagnostic breath tests, according to the isotope labeled substance ingested by the patient and the gases detected in the patient's breath.
    • 一种呼吸测试分析仪,其分析由患者摄取同位素标记物质后在患者体内产生的同位素标记的产物的呼出气体,其中这些同位素标记的产物的存在提供患者的医疗状况的指示 。 分析仪使用非常敏感的红外分光光度计,使得它能够连续收集和分析患者呼吸的多个样本,并且在患者仍然连接到分析仪的同时处理输出,使得确定的结果是 在短时间内获得,如几分钟的顺序。 呼吸测试分析仪足够小,可以轻松容纳在医生的办公室。 根据患者摄取的同位素标记物质和患者呼吸中检测到的气体,呼吸测试分析仪可用于多项诊断性呼吸试验。
    • 10. 发明申请
    • WAVEFORM INTERPRETER FOR RESPIRATORY ANALYSIS
    • 波形分析仪用于呼吸分析
    • WO0074631A3
    • 2001-12-06
    • PCT/IL0000344
    • 2000-06-08
    • ORIDION MEDICAL LTDCARLEBACH EPHRAIM
    • CARLEBACH EPHRAIM
    • A61B5/08A61B5/083A61B5/145
    • A61B5/0836
    • A capnograph which performs an analysis of the breath waveforms measured by the carbon dioxide sensor, interprets the results of this analysis, and outputs to the operator diagnostic information about the respiratory status of the patient, or about the adequacy of the breathing support provided to the patient. The instrument compares a number of parameters characteristic of the waveforms of the patient's breath with an internal library of the values of those parameters expected from normal waveforms stored in its memory. These parameters may either relate to specific features of the waveform in the time domain, or may characterize spectral components of the waveform in the frequency domain. The capnographic waveform analyis may be combined with further non-invasive measurements in order to provide an indication of the deviation of the value of EtCO2 from PaCO2.
    • 执行对由二氧化碳传感器测量的呼吸波形的分析的血氧监护仪解释该分析的结果,并且向操作者输出关于患者的呼吸状态的诊断信息,或者提供给患者的呼吸支持的充分性 患者。 该仪器将患者呼吸波形特征的许多参数与存储在其存储器中的正常波形预期的那些参数的值的内部库进行比较。 这些参数可能与时域中的波形的特定特征相关,或者可以表征频域中波形的频谱分量。 脉搏波波形分析可以与进一步的非侵入性测量结合,以提供EtCO 2的值与PaCO2的偏差的指示。