Nakao Fumiaki, Ueda Tooru, Nishimura Shigehiko, Uchinoumi Hitoshi, Kanemoto Masashi, Tanaka Nobuaki, Fujii Takashi
Department of Cardiology, Yamaguchi Grand Medical Center, 77 Ohsaki, Hofu, Yamaguchi, 747-8511,
Cardiovasc Interv Ther. 2013 Jul;28(3):235-41. doi: 10.1007/s12928-013-0161-4. Epub 2013 Jan 25.
In order to confirm the relation between stent struts and the jailed side branch (SB), the actual wire re-crossing position and the optimal wire re-crossing position during a bifurcation stenting, we developed the instant stent-accentuated three-dimensional optical coherence tomography (iSA 3D-OCT) system based on a novel algorithm. Stent struts in two-dimensional optical coherence tomography (2D-OCT) are represented as high-intensity line segments or spots in low-intensity background. Stent struts disappear and a vessel image is created by the mean filter followed by the minimum filter. A strut image is created by subtracting a vessel image from an original image, and accentuated. By adding a vessel image to a strut image, iSA 2D-OCT is created. It took only 3 s to accentuate stent struts of 100 frames by ImageJ with its macro program. By the iSA 3D-OCT system which consists of the console of OCT, the USB selector, USB cables, the USB flash drive, the computer, and three freeware programs, it took about 65 s from an export of the image data to an observation of iSA 3D-OCT semi-automatically. During a bifurcation stenting procedure, we could confirm the relation between stent struts and the jailed SB, the actual wire re-crossing position and the optimal wire re-crossing position. Using the iSA 3D-OCT system, a detailed process during a bifurcation PCI can be observed in very short waiting time, about 65 s. It is expected to improve the outcome of a complicated bifurcation PCI by the iSA 3D-OCT system.
为了确定支架小梁与被覆盖的边支(SB)之间的关系、分叉支架置入过程中的实际导丝重新穿过位置和最佳导丝重新穿过位置,我们基于一种新算法开发了即时支架强化三维光学相干断层扫描(iSA 3D-OCT)系统。在二维光学相干断层扫描(2D-OCT)中,支架小梁在低强度背景下表现为高强度线段或斑点。通过均值滤波器和最小值滤波器,支架小梁消失并创建血管图像。通过从原始图像中减去血管图像来创建小梁图像,并对其进行强化。通过将血管图像添加到小梁图像中,创建iSA 2D-OCT。使用ImageJ及其宏程序仅需3秒即可强化100帧的支架小梁。通过由OCT控制台、USB选择器、USB电缆、USB闪存驱动器、计算机和三个免费软件程序组成的iSA 3D-OCT系统,从导出图像数据到半自动观察iSA 3D-OCT大约需要65秒。在分叉支架置入过程中,我们可以确定支架小梁与被覆盖的SB之间的关系、实际导丝重新穿过位置和最佳导丝重新穿过位置。使用iSA 3D-OCT系统,可以在非常短的等待时间(约65秒)内观察到分叉PCI的详细过程。预计iSA 3D-OCT系统将改善复杂分叉PCI的结果。