Kang Jeeun, Chang Jin Ho, Wilson Brian C, Veilleux Israel, Bai Yanhui, DaCosta Ralph, Kim Kang, Ha Seunghan, Lee Jong Gun, Kim Jeong Seok, Lee Sang-Goo, Kim Sun Mi, Lee Hak Jong, Ahn Young Bok, Han Seunghee, Yoo Yangmo, Song Tai-Kyong
Department of Electronic Engineering, Sogang University, Seoul 121-742, South Korea.
Princess Margaret Cancer Centre/University Health Network, Toronto, Ontario M5G 1L7, Canada.
Rev Sci Instrum. 2015 Mar;86(3):034901. doi: 10.1063/1.4915146.
Multi-modality imaging is beneficial for both preclinical and clinical applications as it enables complementary information from each modality to be obtained in a single procedure. In this paper, we report the design, fabrication, and testing of a novel tri-modal in vivo imaging system to exploit molecular/functional information from fluorescence (FL) and photoacoustic (PA) imaging as well as anatomical information from ultrasound (US) imaging. The same ultrasound transducer was used for both US and PA imaging, bringing the pulsed laser light into a compact probe by fiberoptic bundles. The FL subsystem is independent of the acoustic components but the front end that delivers and collects the light is physically integrated into the same probe. The tri-modal imaging system was implemented to provide each modality image in real time as well as co-registration of the images. The performance of the system was evaluated through phantom and in vivo animal experiments. The results demonstrate that combining the modalities does not significantly compromise the performance of each of the separate US, PA, and FL imaging techniques, while enabling multi-modality registration. The potential applications of this novel approach to multi-modality imaging range from preclinical research to clinical diagnosis, especially in detection/localization and surgical guidance of accessible solid tumors.
多模态成像对临床前和临床应用均有益,因为它能在单个程序中获取来自每种模态的互补信息。在本文中,我们报告了一种新型三模态体内成像系统的设计、制造和测试,该系统可利用荧光(FL)和光声(PA)成像的分子/功能信息以及超声(US)成像的解剖信息。同一超声换能器用于US和PA成像,通过光纤束将脉冲激光引入紧凑的探头。FL子系统独立于声学部件,但传输和收集光的前端物理集成到同一探头中。该三模态成像系统可实时提供每种模态的图像以及图像的配准。通过体模和体内动物实验对系统性能进行了评估。结果表明,模态组合不会显著损害单独的US、PA和FL成像技术中每种技术的性能,同时实现多模态配准。这种新型多模态成像方法的潜在应用范围从临床前研究到临床诊断,特别是在可触及实体瘤的检测/定位和手术引导方面。