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A Rat Model of Thrombosis in Common Carotid Artery Induced by Implantable Wireless Light-Emitting Diode Device

机译:植入式无线发光二极管装置诱发的大鼠颈总动脉血栓形成模型

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This work has developed a novel approach to form common carotid artery (CCA) thrombus in rats with a wireless implantable light-emitting diode (LED) device. The device mainly consists of an external controller and an internal LED assembly. The controller was responsible for wirelessly transmitting electrical power. The internal LED assembly served as an implant to receive the power and irradiate light on CCA. The thrombus formation was identified with animal sonography, 7T magnetic resonance imaging, and histopathologic examination. The present study showed that a LED assembly implanted on the outer surface of CCA could induce acute occlusion with single irradiation with 6 mW/cm2LED for 4 h. If intermittent irradiation with 4.3–4.5 mW/cm2LED for 2 h was shut off for 30 min, then irradiation for another 2 h was applied; the thrombus was observed to grow gradually and was totally occluded at 7 days. Compared with the contralateral CCA without LED irradiation, the arterial endothelium in the LED-irradiated artery was discontinued. Our study has shown that, by adjusting the duration of irradiation and the power intensity of LED, it is possible to produce acute occlusion and progressive thrombosis, which can be used as an animal model for antithrombotic drug development.
机译:这项工作开发了一种新颖的方法,可通过无线植入式发光二极管(LED)设备在大鼠中形成颈总动脉(CCA)血栓。该设备主要由一个外部控制器和一个内部LED组件组成。控制器负责无线传输电能。内部LED组件用作植入物以接收电源并在CCA上照射光。通过动物超声检查,7T磁共振成像和组织病理学检查确定血栓形成。本研究表明,植入CCA外表面的LED组件可以通过6 mW / cm2LED单次照射4 h诱导急性阻塞。如果用4.3–4.5 mW / cm2LED进行2 h的间歇照射关闭30 min,则再照射2 h。观察到血栓逐渐生长,并在7天时完全闭塞。与没有LED照射的对侧CCA相比,LED照射的动脉中的动脉内皮被中断。我们的研究表明,通过调节照射的持续时间和LED的功率强度,可能会产生急性阻塞和进行性血栓形成,可用作抗血栓药物开发的动物模型。

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