Department of Biomedical Engineering, University of Florida, Gainesville, FL 32611, USA.
Med Phys. 2012 May;39(5):2584-94. doi: 10.1118/1.3703598.
The authors present the design and evaluation of a second-generation (G2) hybrid photoacoustic tomography (PAT) and diffuse optical tomography (DOT) imaging system for detection of breast cancer. The combined PAT/DOT system takes full advantages of two different modalities to provide complementary information and most accurate recovery of tissue optical properties.
This system was designed to produce cross-section images of breast tissue with a ring-shaped home-made array of 64 wideband acoustic transducers combined with an array of 16/16 source/detector optical fiber bundles. A scanning light delivery system was built to illuminate a large area of breast tissue for optimized tissue penetration. Finite element reconstruction methods for quantitative PAT and DOT were utilized to recover absorption and scattering coefficients of tissue-mimicking phantoms and ex vivo tumor tissue.
Performances of the acoustic transducer array and the PAT/DOT system were investigated in detail. Frequency response of the transducers is from 380 kHz to 1.48 MHz and maximum frequency response is up to 2 MHz. Directivity of a single element in the array is ±30°. The PAT/DOT system offers a spatial resolution of ∼0.5 mm for PAT and of ∼4.0 mm for DOT. Quantitatively accurate absorption and scattering coefficients were obtained from both the phantom and ex vivo experiments.
The PAT/DOT system provided better PAT images when the targets were smaller in size and located near the center of the background phantom, while better DOT images were obtained when the targets were larger in size and located away from the center of the background. The successful results obtained from both the phantom and ex vivo experiments will allow us to test the hybrid system in humans with breast cancer in the near future.
作者提出了第二代(G2)混合光声断层扫描(PAT)和漫射光学断层扫描(DOT)成像系统的设计和评估,用于检测乳腺癌。该联合 PAT/DOT 系统充分利用两种不同的模式,提供互补信息,并对组织光学特性进行最准确的恢复。
该系统旨在通过与 16/16 个光源/探测器光纤束阵列结合的环形自制 64 个宽带声换能器阵列生成乳房组织的横截面图像。建立了一个扫描光输送系统,以照亮大面积的乳房组织,以实现最佳的组织穿透。利用有限元重建方法对组织模拟体模和离体肿瘤组织进行定量 PAT 和 DOT 重建,以恢复组织的吸收和散射系数。
详细研究了声学换能器阵列和 PAT/DOT 系统的性能。换能器的频率响应范围为 380 kHz 至 1.48 MHz,最大频率响应可达 2 MHz。阵列中单个元件的指向性为±30°。PAT/DOT 系统提供了 0.5mm 左右的 PAT 空间分辨率和 4.0mm 左右的 DOT 空间分辨率。从体模和离体实验中均获得了定量准确的吸收和散射系数。
当目标较小时,并且位于背景体模的中心附近时,PAT/DOT 系统提供了更好的 PAT 图像;当目标较大时,并且位于背景体模的中心较远时,获得了更好的 DOT 图像。从体模和离体实验中获得的成功结果将使我们能够在不久的将来在患有乳腺癌的人体中测试混合系统。