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Effects of nanosecond pulsed light (577 nm) from a Q-switched frequency-doubled Nd:YAG dye laser on experimental vascular tissue

机译:调Q倍频Nd:YAG染料激光的纳秒脉冲光(577 nm)对实验血管组织的影响

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Abstract: A Q-switched frequency-doubled Nd:YAG dye laser, configured to emit light at 577 nm, was used to study the effect of nanosecond pulsed light on vascular tissue. The pulse width of this light is approximately 10 nanoseconds and the pulse repetition rate is, at most, 10 Hz. A rat dorsal skin-flap window- chamber model, a colon (cecum) model, as well as an isolated femoral vessel model were used to study the effects on vascular tissue of irradiation with single laser pulses using fluences ranging from 0.2 J/cm$+2$/ to 3 J/cm$+2$/. Different reactions such as vasospasm, vessel expansion, and vessel rupture were observed. A correlation between increasing fluence and increased vascular damage was noted. When it occurred, vessel rupture was seen on the superior side (i.e. the irradiated vascular surface) as well as on the inferior side of the blood vessel. The inferior side damage was verified on histological examination. This damage pattern was thought to be most likely caused by shockwaves, and photoacoustic measurements were performed that support this hypothesis. !20
机译:摘要:使用Q开关倍频Nd:YAG染料激光器配置为在577 nm处发射光,以研究纳秒脉冲光对血管组织的影响。该光的脉冲宽度大约为10纳秒,脉冲重复率最大为10 Hz。使用大鼠背皮瓣窗腔模型,结肠(盲肠)模型和孤立的股血管模型来研究单激光脉冲辐照对血管组织的影响,注量范围为0.2 J / cm $。 + 2 $ /至3 J / cm $ + 2 $ /。观察到不同的反应,例如血管痉挛,血管扩张和血管破裂。注意到注量增加与血管损伤增加之间的相关性。当发生这种情况时,在血管的上侧(被照射的血管表面)以及下侧都观察到血管破裂。组织学检查证实下侧损伤。人们认为这种损坏方式很可能是由冲击波引起的,因此进行了光声测量以支持这一假设。 !20

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