全息术
弹性成像
超短脉冲
光学
表征(材料科学)
材料科学
激发
生物医学工程
医学
放射科
超声波
物理
激光器
量子力学
作者
Kexin Shen,Xingyu Zhou,Qingying Wang,Cheng Lu,Kaixi Zheng,Neng Wan,Fan Lu,Dexi Zhu
摘要
Elastography has become an essential tool for assessing tissue biomechanics, in particular for the diagnosis and treatment of keratoconus. For in vivo measurements, high-speed imaging and reduced stimulation are crucial. In this study, we introduce a line-field holographic elastography (LF-HE), which employs line-focus illumination and parallel acquisition to achieve ultra-fast measurement in 14 ms with single excitation. A novel data processing method combining the short time Fourier transform, the phase-resolved color Doppler and full width at half maximum algorithms is proposed to extract the local biomechanical property. Agar phantoms with various concentrations were measured to valid the LF-HE system. The changes of stiffness of in situ porcine corneas treated by riboflavin/UV-A collagen cross-linking (UV-CXL) were also detected in a lateral range of 4.4 mm by modifying the light path of sample arm. This research demonstrated the significant potential of LF-HE for application in ophthalmology clinics.
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