International Laser Center, M.V. Lomonosov Moscow State University, Moscow, Russia.
J Biomed Opt. 2012 Jun;17(6):061214. doi: 10.1117/1.JBO.17.6.061214.
The calibration dependencies of the optoacoustic (OA) transformation efficiency on tissue temperature are obtained for the application in OA temperature monitoring during thermal therapies. Accurate measurement of the OA signal amplitude versus temperature is performed in different ex vivo tissues in the temperature range 25°C to 80°C. The investigated tissues were selected to represent different structural components: chicken breast (skeletal muscle), porcine lard (fatty tissue), and porcine liver (richly perfused tissue). Backward mode of the OA signal detection and a narrow probe laser beam were used in the experiments to avoid the influence of changes in light scattering with tissue coagulation on the OA signal amplitude. Measurements were performed in heating and cooling regimes. Characteristic behavior of the OA signal amplitude temperature dependences in different temperature ranges were described in terms of changes in different structural components of the tissue samples. The accuracy of temperature reconstruction from the obtained calibration dependencies for the investigated tissue types is evaluated.
在热疗期间进行光声(OA)温度监测的应用中,获得了光声转换效率对组织温度的校准依赖性。在 25°C 至 80°C 的温度范围内,在不同的离体组织中进行了 OA 信号幅度与温度的精确测量。选择研究的组织以代表不同的结构成分:鸡胸肉(骨骼肌)、猪脂(脂肪组织)和猪肝(富含灌注的组织)。在实验中使用 OA 信号检测的反向模式和窄探针激光束,以避免组织凝结引起的光散射变化对 OA 信号幅度的影响。测量在加热和冷却两种模式下进行。根据组织样本中不同结构成分的变化,描述了不同温度范围内 OA 信号幅度温度依赖性的特征行为。评估了从所研究的组织类型获得的校准依赖性进行温度重建的准确性。