首页> 外文期刊>Minimally invasive neurosurgery: MIN >Intraoperative thermal artery imaging of an EC-IC bypass in beagles with infrared camera with detectable wave-length band of 7-14 microm: possibilities as novel blood flow monitoring system.
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Intraoperative thermal artery imaging of an EC-IC bypass in beagles with infrared camera with detectable wave-length band of 7-14 microm: possibilities as novel blood flow monitoring system.

机译:红外热像仪在小猎犬中进行EC-IC旁路的术中热动脉成像,可检测到的波长带为7-14微米:作为新型血流监测系统的可能性。

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OBJECTIVE: In the past, the usefulness of thermal arterial imaging during coronary bypass surgery using an infrared camera has been reported by several investigators. The goal of this study is to apply this novel imaging system for intraoperative arterial imaging, as well as to develop new utilizations for a neurosurgical procedure. MATERIALS: We have attempted real-time imaging of anastomotic and flow status in an external carotid-internal carotid artery (EC-IC) bypass surgery using a new-generation infrared camera (IRIS IV thermographic imaging system) in beagles. No contrast medium or radiation was used to obtain the images. The detectable wave-length band of the infrared lens was 7-14 microm. After completion of bypass monitoring, an additional teflon tube was inserted into a branch of the STA to inject physiological saline of different temperatures to see the changes in cortical images. RESULTS: Anastomotic and flow status were clearly visualized throughout the operation without local surface cooling, which had been an inevitable procedure in coronary imaging to make a pronounced temperature difference between artery and adjacent tissue. In addition, cortical flow territory was visualized after injection of either cold or warm physiologic saline into the artery from an additionally inserted teflon tube into a branch of STA via bypass artery. CONCLUSION: From the present experience, it is considered that infrared imaging using a detectable wave length band of 7-14 microm may be applicable to a wide variety of near surface lesions, providing a non-invasive functional angiography.
机译:目的:过去,一些研究者报道了使用红外热像仪在冠状动脉搭桥手术中进行热动脉成像的有用性。这项研究的目的是将这种新颖的成像系统用于术中动脉成像,并开发神经外科手术的新用途。材料:我们尝试使用比格犬的新一代红外热像仪(IRIS IV热成像系统)对颈外-颈内动脉(EC-IC)旁路手术中的吻合口和血流状况进行实时成像。没有使用造影剂或辐射来获得图像。红外透镜的可检测波长带为7-14微米。旁路监测完成后,将另一根聚四氟乙烯管插入STA的分支中,以注入不同温度的生理盐水,以观察皮层图像的变化。结果:在整个手术过程中,吻合口和血流状态清晰可见,而无需局部表面冷却,这在冠状动脉成像中是不可避免的过程,可在动脉和邻近组织之间产生明显的温差。另外,在将冷的或温的生理盐水从另外插入的聚四氟乙烯管经旁路动脉注入到STA的分支中后,可以看到皮层流动区域。结论:根据目前的经验,认为使用可检测到的波长为7-14微米的波段的红外成像可能适用于多种近表面病变,从而提供了非侵入性的功能性血管造影。

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