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公开(公告)号:US08235897B2
公开(公告)日:2012-08-07
申请号:US13090535
申请日:2011-04-20
Applicant: Avner Gal , Alexander M. Raykhman , Eugene Naidis , Yulia Mayzel , Alexander Klionsky , Anatoly Diber
Inventor: Avner Gal , Alexander M. Raykhman , Eugene Naidis , Yulia Mayzel , Alexander Klionsky , Anatoly Diber
IPC: A61B5/00
CPC classification number: A61B5/14532 , A61B5/6816
Abstract: In order to increase the accuracy of non-invasive glucose measurement, the device uses a combination of three non-invasive methods: ultrasonic, electromagnetic and thermal. The non-invasive glucose monitor comprises a Main Unit, which drives three different sensor channels (one per technology), located on an external unit configured as an ear clip attached to the subject's ear lobe. To effect the ultrasonic channel, ultrasonic piezo elements are positioned on opposing portions of the ear clip and thus opposite sides of the ear lobe. For implementation of the electromagnetic channel, capacitor plates are positioned on opposing portions of the ear clip and the ear lobe serves as the dielectric. The thermal channel includes a heater and a sensor positioned on the ear clip in close juxtaposition to the ear lobe.
Abstract translation: 为了提高非侵入性葡萄糖测量的准确性,该装置采用三种非侵入性方法的组合:超声波,电磁和热能。 非侵入式葡萄糖监测器包括主单元,其驱动三个不同的传感器通道(每个技术一个),位于配置为附接到被检者耳垂的耳夹的外部单元上。 为了实现超声波通道,超声波压电元件位于耳夹的相对部分上,并且因此位于耳垂的相对侧。 为了实现电磁通道,电容器板位于耳夹的相对部分上,耳垂片用作电介质。 热通道包括加热器和位于耳夹上的传感器,与耳垂并排放置。
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公开(公告)号:US20120271133A1
公开(公告)日:2012-10-25
申请号:US13540656
申请日:2012-07-03
Applicant: Avner Gal , Alexander M. Raykhman , Eugene Naidis , Yulia Mayzel , Alexander Klionsky , Anatoly Diber
Inventor: Avner Gal , Alexander M. Raykhman , Eugene Naidis , Yulia Mayzel , Alexander Klionsky , Anatoly Diber
IPC: A61B5/1491 , A61B5/053 , A61B5/01 , A61B5/145
CPC classification number: A61B5/14532 , A61B5/6816
Abstract: In order to increase the accuracy of non-invasive glucose measurement, the device uses a combination of three non-invasive methods: ultrasonic, electromagnetic and thermal. The non-invasive glucose monitor comprises a Main Unit, which drives three different sensor channels (one per technology), located on an external unit configured as an ear clip attached to the subject's ear lobe. To effect the ultrasonic channel, ultrasonic piezo elements are positioned on opposing portions of the ear clip and thus opposite sides of the ear lobe. For implementation of the electromagnetic channel, capacitor plates are positioned on opposing portions of the ear clip and the ear lobe serves as the dielectric. The thermal channel includes a heater and a sensor positioned on the ear clip in close juxtaposition to the ear lobe.
Abstract translation: 为了提高非侵入性葡萄糖测量的准确性,该装置采用三种非侵入性方法的组合:超声波,电磁和热能。 非侵入式葡萄糖监测器包括主单元,其驱动三个不同的传感器通道(每个技术一个),位于配置为附接到被检者耳垂的耳夹的外部单元上。 为了实现超声波通道,超声波压电元件位于耳夹的相对部分上,并且因此位于耳垂的相对侧。 为了实现电磁通道,电容器板位于耳夹的相对部分上,耳垂片用作电介质。 热通道包括加热器和位于耳夹上的传感器,与耳垂并排放置。
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公开(公告)号:US20110263956A1
公开(公告)日:2011-10-27
申请号:US13090535
申请日:2011-04-20
Applicant: AVNER GAL , Alexander M. Raykhman , Eugene Naidis , Yulia Mayzel , Alexander Klionsky , Anatoly Diber
Inventor: AVNER GAL , Alexander M. Raykhman , Eugene Naidis , Yulia Mayzel , Alexander Klionsky , Anatoly Diber
IPC: A61B5/145
CPC classification number: A61B5/14532 , A61B5/6816
Abstract: In order to increase the accuracy of non-invasive glucose measurement, the device uses a combination of three non-invasive methods: ultrasonic, electromagnetic and thermal. The non-invasive glucose monitor comprises a Main Unit, which drives three different sensor channels (one per technology), located on an external unit configured as an ear clip attached to the subject's ear lobe. To effect the ultrasonic channel, ultrasonic piezo elements are positioned on opposing portions of the ear clip and thus opposite sides of the ear lobe. For implementation of the electromagnetic channel, capacitor plates are positioned on opposing portions of the ear clip and the ear lobe serves as the dielectric. The thermal channel includes a heater and a sensor positioned on the ear clip in close juxtaposition to the ear lobe.
Abstract translation: 为了提高非侵入性葡萄糖测量的准确性,该装置采用三种非侵入性方法的组合:超声波,电磁和热能。 非侵入式葡萄糖监测器包括主单元,其驱动三个不同的传感器通道(每个技术一个),位于配置为附接到被检者耳垂的耳夹的外部单元上。 为了实现超声波通道,超声波压电元件位于耳夹的相对部分上,并且因此位于耳垂的相对侧。 为了实现电磁通道,电容器板位于耳夹的相对部分上,耳垂片用作电介质。 热通道包括加热器和位于耳夹上的传感器,与耳垂并排放置。
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