Infrared and Laser Engineering, Volume. 50, Issue 4, 20200265(2021)
Elastic modulus measurement based on virtual image phase array confocal Brillouin spectroscopy technology
[1] Ophir J, Alam S K, Garra B, et al. Elastography: Imaging the elastic properties of soft tissues with ultrasound[J]. Journal of Medical Ultrasonics, 29, 155(2002).
[2] Greenleaf J F, Fatemi M, Insana M. Selected methods for imaging elastic properties of biological tissues[J]. Annual Review of Biomedical Engineering, 5, 57-78(2003).
[3] Krouskop T A, Wheeler T M, Kallel F, et al. Elastic moduli of breast and prostate tissues under compression[J]. Ultrasonic Imaging, 20, 260-74(1998).
[4] Saadeh S, Cammell G, Carey W D, et al. The role of liver biopsy in chronic hepatitis C[J]. Hepatology, 33, 196-200(2010).
[5] Boley M, Fetzer F, Weber R, et al. High-speed x-ray imaging system for the investigation of laser welding processes[J]. Journal of Laser Applications, 31, 042004(2019).
[6] Ito M, Sone T, Shiraki M, et al. The effect of once-yearly zoledronic acid on hip structural and biomechanical properties derived using computed tomography (CT) in Japanese women with osteoporosis[J]. Bone, 106, 179(2018).
[7] Holmes S P, Wyneken J. Magnetic Resonance Imaging[J]. Beijing: Mader's Reptile and Amphibian Medicine and Surgery (3rd Edition), 571-585(2019).
[8] Wells P N T, Liang H D. Medical ultrasound: imaging of soft tissue strain and elasticity[J]. Journal of the Royal Society Interface, 8, 1521-1549(2011).
[9] Langer R, Tirrell D A. Designing materials for biology and medicine[J]. Nature, 428, 487(2004).
[10] Shao J, Wang J, Zhang Y, et al. Subtraction elastography for the evaluation of ablation-induced lesions: a feasibility study[J]. IEEE Trans Ultrason Ferroelectr Freq Control, 56, 44-54(2009).
[11] Scarcelli G, Yun S H. Confocal Brillouin microscopy for three-dimensional mechanical imaging[J]. Nature Photonics, 2, 39-43(2017).
[12] Liptak D C, Reber J C, Maguier J F, et al. On the development of a confocal Rayleigh-Brillouin microscope[J]. Review of Scientific Instruments, 78, 016106(2007).
[13] Scarcelli G, Pineda R, Yun S H. Brillouin optical microscopy for corneal biomechanics[J]. Investigative Opthalmology & Visual Science, 53, 185(2012).
[14] Wu Xueying, Lu Yumeng, Ma Lisha, et al. Analysis of the present situation and influencing factors of medical environmental perception of general surgery nuclei[J]. Chinese Journal of Social Medicine, 36, 311-315(2019).
[15] Traverso A J, Thompson J V, Steelman Z A, et al. Dual Raman-Brillouin microscope for chemical and mechanical characterization and imaging[J]. Analytical Chemistry, 87, 7519-7523(2015).
[16] Chiao R Y, Stoicheff B P. Brillouin scattering in liquids excited by the He-Ne maser[J]. Journal of the Optical Society of America, 54, 1286-1287(2019).
[17] Scarcelli G, Yun S H. Confocal Brillouin microscopy for three-dimensional mechanical imaging[J]. Nature Photonics, 2, 39(2018).
[18] Akilbekova D, Ogay V, Yakupov T, et al. Brillouin spectroscopy and radiography for assessment of viscoelastic and regenerative properties of mammalian bones[J]. Journal of Biomedical Optics, 23, 1(2018).
[19] Zhang Tao, Zhao Weiqian, Qiu Lirong, et al. Development of confocal Brillouin spectral imaging device[J]. Optical Technology, 44, 443-447(2018).
[20] Tsia K, Goda K, Capewell D, et al. Performance of serial time-encoded amplified microscope[J]. Optics Express, 18, 10016(2010).
[21] Hu Yihua, Wang Jianyu, Xue Yongqi. Digitalization technology of laser echo waveform in airborne laser remote sensing imaging[J]. Journal of Remote Sensing, 5, 110-113(2001).
[22] Schneider D A, Roesch M, Tessmann A, et al. A low-loss w-band frequency-scanning antenna for wideband multichannel radar applications[J]. IEEE Antennas and Wireless Propagation Letters, 18, 806-810(2019).
[23] Zhang Yinchao, Wang Chen, Chen He, et al. Miniature double-grating monochromator with Littman configuration for pure rotational Raman LIDAR[J]. Optical Engineering, 59, 1(2020).
[24] Zhong Kun, Wang Yun, Zhang Tao, et al. Confocal Brillouin spectroscopy measurement device based on socket programming[J]. Progress in Laser and Optoelectronics, 53, 204-210(2016).
Get Citation
Copy Citation Text
Meng Xu, Haisha Niu, Lianqing Zhu, Ying Ning. Elastic modulus measurement based on virtual image phase array confocal Brillouin spectroscopy technology[J]. Infrared and Laser Engineering, 2021, 50(4): 20200265
Category: Photoelectric measurement
Received: Mar. 10, 2020
Accepted: --
Published Online: Jul. 30, 2021
The Author Email: Lianqing Zhu (zhulianqing@sina.com)