Schlachter Simon C, Kang Dongkyun, Gora Michalina J, Vacas-Jacques Paulino, Wu Tao, Carruth Robert W, Wilsterman Eric J, Bouma Brett E, Woods Kevin, Tearney Guillermo J
Harvard Medical School and Wellman Center for Photomedicine, Massachusetts General Hospital, 55 Fruit Street, Boston, MA 02114, USA ; These authors contributed equally to this work.
Biomed Opt Express. 2013 Aug 13;4(9):1636-45. doi: 10.1364/BOE.4.001636. eCollection 2013.
Spectrally encoded confocal microscopy (SECM) is a reflectance confocal microscopy technology that uses a diffraction grating to illuminate different locations on the sample with distinct wavelengths. SECM can obtain line images without any beam scanning devices, which opens up the possibility of high-speed imaging with relatively simple probe optics. This feature makes SECM a promising technology for rapid endoscopic imaging of internal organs, such as the esophagus, at microscopic resolution. SECM imaging of the esophagus has been previously demonstrated at relatively low line rates (5 kHz). In this paper, we demonstrate SECM imaging of large regions of esophageal tissues at a high line imaging rate of 100 kHz. The SECM system comprises a wavelength-swept source with a fast sweep rate (100 kHz), high output power (80 mW), and a detector unit with a large bandwidth (100 MHz). The sensitivity of the 100-kHz SECM system was measured to be 60 dB and the transverse resolution was 1.6 µm. Excised swine and human esophageal tissues were imaged with the 100-kHz SECM system at a rate of 6.6 mm(2)/sec. Architectural and cellular features of esophageal tissues could be clearly visualized in the SECM images, including papillae, glands, and nuclei. These results demonstrate that large-area SECM imaging of esophageal tissues can be successfully conducted at a high line imaging rate of 100 kHz, which will enable whole-organ SECM imaging in vivo.
光谱编码共聚焦显微镜(SECM)是一种反射共聚焦显微镜技术,它使用衍射光栅以不同波长照射样品上的不同位置。SECM无需任何光束扫描设备就能获取线图像,这为使用相对简单的探头光学器件进行高速成像开辟了可能性。这一特性使SECM成为一种有前途的技术,可用于以微观分辨率对诸如食管等内部器官进行快速内镜成像。此前已在相对较低的线速率(5千赫)下演示了食管的SECM成像。在本文中,我们展示了以100千赫的高线成像速率对大面积食管组织进行SECM成像。SECM系统包括一个具有快速扫描速率(100千赫)、高输出功率(80毫瓦)的扫频光源以及一个具有大带宽(100兆赫)的探测器单元。测得100千赫SECM系统的灵敏度为60分贝,横向分辨率为1.6微米。使用100千赫SECM系统以6.6平方毫米/秒的速率对切除的猪和人食管组织进行成像。在SECM图像中可以清晰地看到食管组织的结构和细胞特征,包括乳头、腺体和细胞核。这些结果表明,可以成功地以100千赫的高线成像速率对食管组织进行大面积SECM成像,这将使体内全器官SECM成像成为可能。