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公开(公告)号:EP3463660A1
公开(公告)日:2019-04-10
申请号:EP17724081.9
申请日:2017-05-22
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公开(公告)号:EP1326536A1
公开(公告)日:2003-07-16
申请号:EP01980597.7
申请日:2001-10-17
IPC分类号: A61B8/15
CPC分类号: G01S7/52049 , A61B8/0816 , A61B8/15
摘要: The invention concerns a method for focusing acoustic waves useful for obtaining an image of a field to be observed in a dissipative heterogeneous medium (2, 3) around which acoustic transducers (T1-Tn, T'1-T'm) forming an imaging network and a target network. The method consists in following a training step during which pulse responses from the medium are measured between each transducer (Ti) of the imaging network (5) and several transducers (Tj) of the target network (6); deducing therefrom reference signals to be emitted by the transducers of the imaging network to produce a focused acoustic pulse in each transducer of the target network, then cumulatively, in determining reference signals to be emitted to focus an acoustic pulse on predetermined points in the medium. Said reference signals are stored and used subsequently to generate an acoustic image of the medium.
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公开(公告)号:EP1368999B1
公开(公告)日:2011-04-27
申请号:EP02708425.0
申请日:2002-02-27
发明人: THOMAS, Jean-Louis , FINK, Mathias
IPC分类号: H05G2/00
摘要: A method for generating photons by sonoluminescence, from a bubble of gas trapped in a liquid reservoir (2) by a stationary ultrasonic wave. An ultrasonic pulse which is emitted by several high frequency transducers (T1-T8), which are pre-focused onto the gas bulb and synchronized with the light emissions of the gas bubble during an initial learning phase during which the focusing and synchronization are optimized, is superposed on the stationary wave
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公开(公告)号:EP1326536B1
公开(公告)日:2008-12-10
申请号:EP01980597.7
申请日:2001-10-17
IPC分类号: A61B8/15
CPC分类号: G01S7/52049 , A61B8/0816 , A61B8/15
摘要: The invention concerns a method for focusing acoustic waves useful for obtaining an image of a field to be observed in a dissipative heterogeneous medium (2, 3) around which acoustic transducers (T1-Tn, T'1-T'm) forming an imaging network and a target network. The method consists in following a training step during which pulse responses from the medium are measured between each transducer (Ti) of the imaging network (5) and several transducers (Tj) of the target network (6); deducing therefrom reference signals to be emitted by the transducers of the imaging network to produce a focused acoustic pulse in each transducer of the target network, then cumulatively, in determining reference signals to be emitted to focus an acoustic pulse on predetermined points in the medium. Said reference signals are stored and used subsequently to generate an acoustic image of the medium.
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