Ishida Akiko, Sugihara Kazunobu, Shirakami Tomoki, Tsutsui Aika, Manabe Kaoru, Tanito Masaki
Department of Ophthalmology, Shimane University Faculty of Medicine, Izumo, Japan.
J Ophthalmol. 2020 Jul 17;2020:9024241. doi: 10.1155/2020/9024241. eCollection 2020.
Observation of ocular structures using microscope-integrated intraoperative optical coherence tomography (iOCT) has been adopted. Using the novel digital ophthalmic microscope, ARTEVO 800 with iOCT, we tested the feasibility of trabecular meshwork (TM) imaging during microhook ab interno trabeculotomy, a minimally invasive glaucoma surgery.
The nasal and temporal sides of the TM/inner wall of Schlemm's canal were incised more than 3 clock hours in 14 glaucomatous eyes of 10 patients. To observe the trabeculotomy site, iOCT was performed with the real-time five-line scan mode under observation using a Swan-Jacob gonioprism lens. The success of the imaging and visibility of the trabeculotomy cleft and its incisional patterns (i.e., anterior, middle, or posterior pattern) were determined by reviewing the iOCT video files.
OCT images of the region of interest were acquired successfully in 100% of the 28 nasal or temporal sides in 14 eyes, although the trabeculotomy cleft was not visualized in four (14%) sides due to blockage of the OCT signal by a blood clot. Based on the predominant locations of the TM flaps in 24 of the acquired images, the trabeculotomy clefts were classified as anterior incisional patterns in 13 (54%), middle incisional patterns in nine (38%), and posterior incisional patterns in two (8%).
Intraoperative imaging of the gonio structures including the trabeculotomy cleft was feasible using the ARTEVO 800 with iOCT in combination with a gonioprism.
已采用使用集成显微镜的术中光学相干断层扫描(iOCT)观察眼部结构。我们使用带有iOCT的新型数字眼科显微镜ARTEVO 800,测试了在微创青光眼手术——内路微钩小梁切开术中小梁网(TM)成像的可行性。
在10例患者的14只青光眼眼中,在TM/施莱姆管内壁的鼻侧和颞侧切开超过3个钟点。为观察小梁切开部位,使用Swan-Jacob前房角棱镜透镜,在观察下采用实时五线扫描模式进行iOCT检查。通过查看iOCT视频文件来确定成像的成功率以及小梁切开裂隙及其切开模式(即前部、中部或后部模式)的可见性。
14只眼中28个鼻侧或颞侧区域的OCT图像成功采集率达100%,不过有4个(14%)侧由于血凝块阻挡OCT信号而未观察到小梁切开裂隙。根据所采集图像中24个TM瓣的主要位置,小梁切开裂隙被分类为前部切开模式13个(54%)、中部切开模式9个(38%)、后部切开模式2个(8%)。
使用带有iOCT的ARTEVO 800结合前房角棱镜对包括小梁切开裂隙在内的前房角结构进行术中成像可行。