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Selective ablation of atherosclerotic lesions with less thermal damage by controlling the pulse structure of a quantum cascade laser in the 5.7-mu m wavelength range

机译:通过控制5.7微米波长范围内的量子级联激光的脉冲结构,选择性切除具有较小热损伤的动脉粥样硬化病变

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摘要

Cholesteryl esters are the main components of atherosclerotic plaques, and they have an absorption peak at the wavelength of 5.75 mu m. To realize less-invasive ablation of the atherosclerotic plaques using a quasi-continuous wave (quasi-CW) quantum cascade laser (QCL), the thermal effects on normal vessels must be reduced. In this study, we attempted to reduce the thermal effects by controlling the pulse structure. The irradiation effects on rabbit atherosclerotic aortas using macro pulse irradiation (irradiation of pulses at intervals) and conventional quasi-CW irradiation were compared. The macro pulse width and the macro pulse interval were determined based on the thermal relaxation time of atherosclerotic and normal aortas in the oscillation wavelength of the QCL. The ablation depth increased and the coagulation width decreased using macro pulse irradiation. Moreover, difference in ablation depth between the atherosclerotic and normal rabbit aortas using macro pulse irradiation was confirmed. Therefore, the QCL in the 5.7-mu m wavelength range with controlling the pulse structure was effective for less-invasive laser angioplasty.
机译:胆固醇酯是动脉粥样硬化斑块的主要成分,在5.75μm的波长处具有吸收峰。为了使用准连续波(quas-CW)量子级联激光器(QCL)实现对动脉粥样硬化斑块的无创消融,必须减少对正常血管的热效应。在这项研究中,我们试图通过控制脉冲结构来降低热效应。比较了使用大脉冲照射(间隔照射)和常规准连续波照射对兔动脉粥样硬化主动脉的照射效果。宏脉冲宽度和宏脉冲间隔是根据QCL振荡波长中的动脉粥样硬化和正常主动脉的热弛豫时间确定的。使用大脉冲辐照可增加消融深度,降低凝结宽度。此外,证实了使用大脉冲照射在动脉粥样硬化和正常兔主动脉之间的消融深度的差异。因此,通过控制脉冲结构,在5.7微米波长范围内的QCL对于微创激光血管成形术是有效的。

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