首页> 外文会议>Optical Interactions with Tissue and Cells XVIII; Progress in Biomedical Optics and Imaging; vol.8 no.12; Proceedings of SPIE-The International Society for Optical Engineering; vol.6435 >Utility of birefringence changes due to collagen thermal denaturation rate process analysis: vessel wall temperature estimation for new short term heating balloon angioplasty
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Utility of birefringence changes due to collagen thermal denaturation rate process analysis: vessel wall temperature estimation for new short term heating balloon angioplasty

机译:由于胶原蛋白热变性速率过程分析而产生的双折射变化的效用:用于新的短期加热球囊血管成形术的血管壁温度估算

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Our photo thermal reaction heating architecture balloon realizes less than 10 s short term heating that can soften vessel wall collagen without damaging surrounding tissue thermally. New thermal balloon angioplasty, photo-thermo dynamic balloon angioplasty (PTDBA) has experimentally shown sufficient opening with 2 atm low pressure dilation and prevention of chronic phase restenosis and acute phase thrombus in vivo. Even though PTDBA has high therapeutic potential, the most efficient heating condition is still under study, because relationship of treatment and thermal dose to vessel wall is not clarified yet. To study and set the most efficient heating condition, we have been working on establishment of temperature history estimation method from our previous experimental results. Heating target of PTDBA, collagen, thermally denatures following rate process. Denaturation is able to be quantified with measured collagen birefringence value. To express the denaturation with equation of rate process, the following ex vivo experiments were performed. Porcine extracted carotid artery was soaked in two different temperature saline baths to enforce constant temperature heating. Higher temperature bath was set to 40 to 80℃ and soaking duration was 5 to 40 s. Samples were observed by a polarizing microscope and a scanning electron microscope. The birefringence was measured by polarizing microscopic system using BraceKoehler compensator 1/30 λ. The measured birefringence showed temperature dependency and quite fit with the rate process equation. We think vessel wall temperature is able to be estimated using the birefringence changes due to thermal denaturation.
机译:我们的光热反应加热架构气球实现了不到10 s的短期加热,可以软化血管壁胶原蛋白而不会热破坏周围的组织。新的热球囊血管成形术,光热动态球囊血管成形术(PTDBA)在实验上显示了足够的开度和2个大气压的低压扩张,并在体内预防了慢性期再狭窄和急性期血栓。尽管PTDBA具有很高的治疗潜力,但最有效的加热条件仍在研究中,因为尚未明确治疗和热剂量与血管壁的关系。为了研究和设置最有效的加热条件,我们一直在根据以前的实验结果建立温度历史估计方法。 PTDBA的加热目标,胶原蛋白,速率过程后的热变性。变性可以通过测量的胶原双折射值来量化。为了用速率过程方程式表达变性,进行了以下离体实验。将猪提取的颈动脉浸泡在两个不同温度的盐水浴中,以强制恒温加热。高温浴设定为40至80℃,浸泡时间为5至40 s。用偏光显微镜和扫描电子显微镜观察样品。通过使用BraceKoehler补偿器1 /30λ的偏光显微镜系统测量双折射。测得的双折射显示出温度依赖性,并且非常符合速率过程方程。我们认为可以使用由于热变性引起的双折射变化来估算容器壁温度。

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