Devi C Usha, Vasu R M, Sood A K
Indian Institute of Science, Department of Instrumentation, Bangalore-560 012, Karnataka, India.
J Biomed Opt. 2005 Jul-Aug;10(4):44020. doi: 10.1117/1.2003833.
We suitably adapt the design of a tissue-equivalent phantom used for photoacoustic imaging to construct phantoms for optical elastography. The elastography phantom we consider should have optical properties such as scattering coefficient, scattering anisotropy factor, and refractive index; mechanical properties such as storage and loss modulus; and acoustic properties such as ultrasound velocity, attenuation coefficient, and acoustic impedance to match healthy and diseased tissues. The phantom is made of poly (vinyl alcohol) (PVA) and its mechanical, optical, and acoustic properties are tailored by physical cross-linking effected through subjecting a suitable mix of PVA stock and water to a number of freeze-thaw cycles and by varying the degree of hydrolysis in the PVA stock. The optical, mechanical, and acoustic properties of the samples prepared are measured by employing different techniques. The measured variations in the values of optical scattering coefficient, scattering anisotropy factor, and refractive index and storage modulus are found to be comparable to those in normal and diseased breast tissues. The acoustic properties such as sound speed, acoustic attenuation coefficient, and density are found to be close to the average values reported in the literature for normal breast tissue.
我们对用于光声成像的组织等效体模的设计进行适当调整,以构建用于光学弹性成像的体模。我们所考虑的弹性成像体模应具备诸如散射系数、散射各向异性因子和折射率等光学特性;诸如储能模量和损耗模量等力学特性;以及诸如超声速度、衰减系数和声阻抗等声学特性,以匹配健康和患病组织。该体模由聚乙烯醇(PVA)制成,其力学、光学和声学特性通过对PVA原液和水的适当混合物进行多次冻融循环实现物理交联,并通过改变PVA原液中的水解程度来进行调整。采用不同技术测量所制备样品的光学、力学和声学特性。所测得的光学散射系数、散射各向异性因子、折射率和储能模量值的变化与正常和患病乳腺组织中的变化相当。所测得的诸如声速、声衰减系数和密度等声学特性接近于文献报道的正常乳腺组织的平均值。