首页> 外文期刊>Journal of biomedical optics >Mechanical property assessment of tissue-mimicking phantoms using remote palpation and optical read-out for amplitude of vibration and refractive index modulation
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Mechanical property assessment of tissue-mimicking phantoms using remote palpation and optical read-out for amplitude of vibration and refractive index modulation

机译:使用远程触诊和光学读出来模拟振动模态和折射率调制的组织模拟体模的机械性能评估

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A coherent light beam is used to interrogate the focal region within a tissue-mimicking phantom insonified by an ultrasound transducer. The ultrasound-tagged photons exiting from the object carry with them information on local optical path length fluctuations caused by refractive index variations and medium vibration. Through estimation of the force distribution in the focal region of the ultrasound transducer, and solving the forward elastography problem for amplitude of vibration of tissue particles, we observe that the amplitude is directed along the axis of the transducer. It is shown that the focal region interrogated by photons launched along the transducer axis carries phase fluctuations owing to both refractive index variations and particle vibration, whereas the photons launched perpendicular to the transducer axis carry phase fluctuations arising mainly from the refractive index variations, with only smaller contribution from vibration of particles. Monte-Carlo simulations and experiments done on tissue-mimicking phantoms prove that as the storage modulus of the phantom is increased, the detected modulation depth in autocorrelation is reduced, significantly for axial photons and only marginally for the transverse-directed photons. It is observed that the depth of modulation is reduced to a significantly lower and constant value as the storage modulus of the medium is increased. This constant value is found to be the same for both axial and transverse optical interrogation. This proves that the residual modulation depth is owing to refractive index fluctuations alone, which can be subtracted from the overall measured modulation depth, paving the way for a possible quantitative reconstruction of storage modulus. Moreover, since the transverse-directed photons are not significantly affected by storage modulus variations, for a quantitatively accurate read-out of absorption coefficient variation, the interrogating light should be perpendicular to the focusing ultrasound transducer axis.
机译:相干光束用于询问由超声换能器声化的组织模拟体模内的焦点区域。从物体射出的带有超声标记的光子携带有关折射率变化和介质振动引起的局部光路长度波动的信息。通过估计超声换能器聚焦区域中的力分布,并解决组织颗粒振动幅度的正向弹性成像问题,我们观察到幅度沿换能器的轴方向。结果表明,沿着换能器轴发射的光子询问的焦点区域由于折射率变化和粒子振动而引起相位波动,而垂直于换能器轴发射的光子则主要由于折射率变化而产生相位波动,只有颗粒振动的贡献较小。对组织模拟体模进行的蒙特卡洛模拟和实验证明,随着体模的储能模量的增加,自相关中检测到的调制深度会减小,这对于轴向光子而言是显着的,而对于横向方向光子来说则仅是微不足道的。可以看到,随着介质的储能模量的增加,调制深度会降低到明显更低的常数。发现该常数值对于轴向和横向光学询问都是相同的。这证明了残余调制深度仅归因于折射率波动,可以将其从总的测量调制深度中减去,从而为可能的定量重建储能模量铺平了道路。此外,由于横向光子不受储能模量变化的显着影响,因此,为了定量准确地读出吸收系数变化,询问光应垂直于聚焦超声换能器轴。

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