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激光照射期间在眼底进行无创光声温度测定。

Noninvasive optoacoustic temperature determination at the fundus of the eye during laser irradiation.

作者信息

Schule Georg, Huttmann Gereon, Framme Carsten, Roider Johann, Brinkmann Ralf

机构信息

Medical Laser Center Lübeck, Lübeck, Germany.

出版信息

J Biomed Opt. 2004 Jan-Feb;9(1):173-9. doi: 10.1117/1.1627338.

Abstract

In all fundus laser treatments of the eye, the temperature increase is not exactly known. In order to optimize treatments, an online temperature determination is preferable. We investigated a noninvasive optoacoustic method to monitor the fundus temperature during pulsed laser irradiation. When laser pulses are applied to the fundus, thermoelastic pressure waves are emitted, due to thermal expansion of the heated tissue. Using a constant pulse energy, the amplitude of the pressure wave increases linearly with an increase in the base temperature of between 30 and 80 degrees C. This method was evaluated in vitro on porcine retinal pigment epithelium (RPE) cell samples and clinically during selective RPE treatment with repetitive microsecond laser pulses. During the irradiation of porcine RPE with a neodymium-doped yttrium (Nd:YLF) laser (527 nm, 1.7 micros, 500 Hz repetition rate, 160 mJ/cm(2)) an increase in the base temperature of 30+/-4 degrees C after 100 pulses was found. During patient treatments, a temperature increase of 60+/-11 degrees C after 100 pulses with a 500-Hz repetition rate and 7+/-1 degrees C after 30 pulses with 100 Hz at 520 mJ/cm(2) was found. All measured data were in good agreement with heat diffusion calculations. Optoacoustic methods can be used to noninvasively determine retinal temperatures during pulsed laser treatment of the eye. This technique can also be adapted to continuous-wave photocoagulation, photodynamic therapy and transpupillary thermotherapy, or other fields of laser-heated tissue.

摘要

在所有眼部眼底激光治疗中,温度升高情况并不确切知晓。为了优化治疗,进行在线温度测定较为可取。我们研究了一种非侵入性光声方法,用于在脉冲激光照射期间监测眼底温度。当激光脉冲作用于眼底时,由于受热组织的热膨胀会发射出热弹性压力波。使用恒定的脉冲能量,压力波的幅度在30至80摄氏度的基础温度升高时呈线性增加。该方法在体外对猪视网膜色素上皮(RPE)细胞样本进行了评估,并在临床选择性RPE治疗中使用重复微秒激光脉冲时进行了测试。在用掺钕钇铝石榴石(Nd:YLF)激光(527纳米,1.7微秒,500赫兹重复频率,160毫焦/平方厘米)照射猪RPE时,发现100个脉冲后基础温度升高30±4摄氏度。在患者治疗中,发现500赫兹重复频率下100个脉冲后温度升高60±11摄氏度,在520毫焦/平方厘米、100赫兹下30个脉冲后温度升高7±1摄氏度。所有测量数据与热扩散计算结果吻合良好。光声方法可用于在眼部脉冲激光治疗期间非侵入性地确定视网膜温度。该技术还可适用于连续波光凝、光动力疗法和经瞳孔温热疗法,或其他激光加热组织领域。

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