首页> 外国专利> METHOD FOR ACOUSTO-OPTIC IMAGING BY FOURIER RECONSTRUCTION USING A FLAT WAVE AS A CARRIER WAVE OF THE ULTRASONIC WAVE

METHOD FOR ACOUSTO-OPTIC IMAGING BY FOURIER RECONSTRUCTION USING A FLAT WAVE AS A CARRIER WAVE OF THE ULTRASONIC WAVE

机译:傅立叶重建使用扁平波作为超声波载波的声光成像方法

摘要

ABSTRACTA system for acousto-optic imaging of an observation zone (3), comprising: • a set of ultrasonic transducers (1) aligned in at least one alignment direction able to together produce an ultrasonic wave (2) in the observation zone (3), propagating in a propagation direction (Dz) orthogonal to the at least one alignment direction of the ultrasonic transducers (1); • a light source (4) producing an incident light wave (5) encountering said ultrasonic wave in the observation zone in order to produce marked photons (6); • a control device (7) configured to control each ultrasonic transducer (1) with an ultrasonic frequency control signal; • a system (8) for detecting some of the marked photons, said marked photons carrying a temporal modulation transmitted by the ultrasonic wave encountering the light wave; • a means (10) for processing an acousto-optic acquisition signal (9) received from the detection system, which means is able to demodulate said acousto-optic acquisition signal; the control device (7) being configured to control each ultrasonic transducer using the control signal, said control signal being formed by an ultrasonic frequency carrier (fus), the carrier being identical for all the transducers so as to generate a flat wave propagating in the propagation direction (Dz), and being modulated by a periodic temporal modulation signal with a given temporal frequency and the same shape for all the ultrasonic transducers (1), said temporal modulation signal having a phase shift, the value of which is specific to each ultrasonic transducer and which is dependent on the position of the ultrasonic transducers (1), so that the flat ultrasonic wave emitted by the set of ultrasonic transducers (1) has a modulation, which has a spatial periodicity in the at least one alignment direction of the transducers, the value of which is determined by the function between the phase shift and the position of the ultrasound transducers; - generating various flat ultrasonic waves corresponding to various values of the given temporal frequency of the temporal modulation signal; and - generating, for each given temporal frequency, various functions connecting the phase shift and the position of the ultrasonic transducers (1), so that the processing means (10): • determines Fourier components of an acousto-optic image (21) of the observation zone (3); and • constructs said acousto-optic image (21) by inverse Fourier transform of the Fourier components.
机译:抽象的观察区(3)的声光成像系统,包括:•一组超声换能器(1)在至少一个对准方向上对准,能够一起在观察区(3)中产生超声波(2) ,在与超声换能器(1)的至少一个对准方向正交的传播方向(DZ)中传播; •光源(4)产生入射光波(5),在观察区中遇到所述超声波,以产生标记的光子(6); •控制装置(7),被配置为具有超声波频率控制信号的每个超声换能器(1); •用于检测一些标记的光子的系统(8),所述标记的光子承载由遇到光波的超声波传输的时间调制; •用于处理从检测系统接收的声光获取信号(9)的装置(10),这意味着能够解调所述声光采集信号;控制装置(7)被配置为使用控制信号控制每个超声换能器,所述控制信号由超声波频率载波(FU)形成,载波为所有换能器相同,以便在载体中产生扁平波传播传播方向(DZ),并由具有给定时间频率的周期性时间调制信号和所有超声换能器(1)的相同形状调制,所述时间调制信号具有相移,其值特定于每个超声换能器,其取决于超声换能器(1)的位置,使得由一组超声换能器(1)发射的扁平超声波具有调制,其在至少一个对准方向上具有空间周期性换能器,其值由相移和超声换能器的位置之间的功能决定; - 产生对应于时间调制信号的给定时间频率的各种值的各种扁平超声波;和产生的,对于每个给定的时间频率,各种功能连接相移和超声换能器(1)的位置,使得处理装置(10):•确定声光图像(21)的傅立叶组件观察区(3); •通过傅里叶组件的逆傅里叶变换来构造所述声光图像(21)。

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