Portable noninvasive real-time photoacoustic viscoelastic detector
A portable and detector technology, applied in the field of biomedical detection, can solve the problems of low photoacoustic excitation and detection efficiency, failure to realize coaxial confocal structure, and reduce the accuracy of measurement results, etc., to achieve strong dynamic environmental adaptability , Improve excitation and reception efficiency, easy to apply and promote the effect
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Embodiment 1
[0029] figure 1 and figure 2 As shown in the figure, a portable non-invasive, real-time photoacoustic viscoelasticity detector of the present invention includes a semiconductor laser, an electro-optical modulator, a function generator, a measuring box, a focusing lens, a right-angle prism group, an ultrasonic transducer, a pre-signal amplifier, a lock Phase amplifier, data acquisition device, collimating lens and two optical fibers; along the propagation direction of the laser, the semiconductor laser, optical fiber, collimating lens, electro-optic modulator, optical fiber and measurement box are arranged in sequence; in the measurement box, the laser entrance, The focusing lens, the right-angle prism group and the laser outlet are arranged in a straight line in turn. After the laser passes through the right-angle prism group, it propagates along the original direction; in the measuring box, along the propagation direction of the sound wave, the laser outlet, the right-angle ...
Embodiment 2
[0043] A portable non-invasive, real-time photoacoustic viscoelasticity detector according to the first embodiment is used to realize the viscoelasticity detection of the object to be measured, including the following steps:
[0044] (1) Mix 5g of agar with 95g of water, boil to form the tissue to be tested, and fix it under the light-transmitting protective film.
[0045] (2) The laser emitted by the semiconductor laser is modulated into a sine wave laser whose intensity changes sinusoidally at a frequency of 50Khz after passing through the electro-optical modulator, and irradiates the surface of the tissue to be measured.
[0046] (3) The ultrasonic transducer receives the sine wave sound wave signal emitted by the tissue to be tested in real time, and converts the sine wave sound wave signal into a sine wave electrical signal. The sine wave electrical signal is amplified by the pre-signal amplifier, and finally the frequency is detected by the lock-in amplifier. and calcula...
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