Optical Imaging Laboratory, Department of Biomedical Engineering, Washington University in St. Louis, St. Louis, Missouri, USA.
Nat Med. 2012 Aug;18(8):1297-1302. doi: 10.1038/nm.2823. Epub 2012 Jul 15.
At present, clinicians routinely apply ultrasound endoscopy in a variety of interventional procedures that provide treatment solutions for diseased organs. Ultrasound endoscopy not only produces high-resolution images, but also is safe for clinical use and broadly applicable. However, for soft tissue imaging, its mechanical wave-based image contrast fundamentally limits its ability to provide physiologically specific functional information. By contrast, photoacoustic endoscopy possesses a unique combination of functional optical contrast and high spatial resolution at clinically relevant depths, ideal for imaging soft tissues. With these attributes, photoacoustic endoscopy can overcome the current limitations of ultrasound endoscopy. Moreover, the benefits of photoacoustic imaging do not come at the expense of existing ultrasound functions; photoacoustic endoscopy systems are inherently compatible with ultrasound imaging, thereby enabling multimodality imaging with complementary contrast. Here we present simultaneous photoacoustic and ultrasonic dual-mode endoscopy and show its ability to image internal organs in vivo, thus illustrating its potential clinical application.
目前,临床医生通常会在各种介入性操作中应用超声内镜,为患病器官提供治疗方案。超声内镜不仅能提供高分辨率的图像,而且临床应用安全,适用范围广泛。然而,对于软组织成像而言,其基于机械波的图像对比度从根本上限制了其提供生理特异性功能信息的能力。相比之下,光声内镜具有独特的功能光学对比度和在临床相关深度的高空间分辨率的组合,非常适合于软组织成像。凭借这些特性,光声内镜可以克服目前超声内镜的局限性。此外,光声成像的优势并不会牺牲现有的超声功能;光声内镜系统与超声成像具有内在的兼容性,从而能够以互补的对比进行多模态成像。在这里,我们展示了同时具有光声和超声双模的内镜,并展示了其在体内成像内部器官的能力,从而说明了其潜在的临床应用。