Grosenick Dirk, Hagen Axel, Steinkellner Oliver, Poellinger Alexander, Burock Susen, Schlag Peter M, Rinneberg Herbert, Macdonald Rainer
Physikalisch-Technische Bundesanstalt (PTB), Berlin, Germany.
Rev Sci Instrum. 2011 Feb;82(2):024302. doi: 10.1063/1.3543820.
We present a scanning time-domain fluorescence mammograph capable to image the distribution of a fluorescent contrast agent within a female breast, slightly compressed between two parallel glass plates, with high sensitivity. Fluorescence of the contrast agent is excited using a near infrared picosecond diode laser module. Four additional picosecond diode lasers with emission wavelengths between 660 and 1066 nm allow to measure the intrinsic optical properties of the breast tissue. By synchronously moving a source fiber and seven detection fiber bundles across the breast, distributions of times of flight of photons are recorded simultaneously for selected source-detector combinations in transmission and reflection geometry either at the fluorescence wavelength or at the selected laser wavelengths. To evaluate the performance of the mammograph, we used breastlike rectangular phantoms comprising fluorescent and absorbing objects using the fluorescent dye Omocyanine as contrast agent excited at 735 nm. We compare two-dimensional imaging of the phantom based on transmission and reflection data. Furthermore, we developed an improved tomosynthesis algorithm which permits three-dimensional reconstruction of fluorescence and absorption properties of lesions with good spatial resolution. For illustration, we present fluorescence mammograms of one patient recorded 30 min after administration of the contrast agent indocyanine green showing the carcinoma at high contrast originating from fluorescence of the extravasated dye, excited at 780 nm.
我们展示了一种扫描时域荧光乳腺成像仪,它能够以高灵敏度对置于两块平行玻璃板之间并稍有压缩的女性乳房内的荧光造影剂分布进行成像。使用近红外皮秒二极管激光模块激发造影剂的荧光。另外四个发射波长在660至1066nm之间的皮秒二极管激光器可用于测量乳腺组织的固有光学特性。通过在乳房上同步移动一个源光纤和七个检测光纤束,对于透射和反射几何结构中选定的源 - 探测器组合,在荧光波长或选定的激光波长下,同时记录光子飞行时间的分布。为了评估乳腺成像仪的性能,我们使用了类似乳房的矩形体模,其包含荧光和吸收物体,使用荧光染料Omocyanine作为造影剂,在735nm激发。我们基于透射和反射数据比较了体模的二维成像。此外,我们开发了一种改进的断层合成算法,该算法能够以良好的空间分辨率对病变的荧光和吸收特性进行三维重建。为了说明,我们展示了一位患者在注射吲哚菁绿造影剂30分钟后记录的荧光乳腺造影片,显示出高对比度的癌,其源于外渗染料在780nm激发下的荧光。