University of California San Diego, Department of Neuroscience, 9500 Gilman Drive MTF321, La Jolla, CA 92093-0624, USA.
Neurosci Lett. 2013 Oct 11;553:99-103. doi: 10.1016/j.neulet.2013.07.049. Epub 2013 Aug 7.
Transcranial near-infrared laser therapy (TLT) improves stroke outcome in animal models. Adequate laser doses are necessary to exert therapeutic effects. However, applying higher laser energy may cause cortical tissue heating and exacerbate stroke injury. The objective of this study is to examine the thermal effect and safety of transcranial near-infrared laser therapy. Diode laser with a wavelength of 808 nm was used to deliver different power densities to the brain cortex of rabbits. Cortical temperature was monitored and measured using a thermal probe during the 2 min transcranial laser irradiation. Neuro-pathological changes were examined with histological staining 24 h after laser treatment. Transcranial laser irradiation for 2 min at cortical power densities of 22.2 and 55.6 mW/cm(2) with continuous wave (CW) did not increase cortical temperature in rabbits. With the same treatment regime, cortical power density at 111.1 mW/cm(2) increased brain temperature gradually by 0.5 °C over the 2 min exposure and returned to baseline values within 1-2 min post-irradiation. Separately, histological staining was evaluated after triple laser exposure of 22.2 mW/cm(2) CW and 111.1 mW/cm(2) pulse wave (PW) and showed normal neural cell morphology. The present study demonstrated that the TLT powers currently utilized in animal stroke studies do not cause cortical tissue heating and histopathological damage.
经颅近红外激光治疗(TLT)可改善动物模型的中风预后。为了发挥治疗效果,需要给予适当的激光剂量。然而,应用更高的激光能量可能导致皮质组织加热,从而加重中风损伤。本研究旨在检查经颅近红外激光治疗的热效应和安全性。使用波长为 808nm 的二极管激光,将不同的功率密度施加于兔的大脑皮质。在 2 分钟的经颅激光照射过程中,使用热探头监测和测量皮质温度。激光治疗 24 小时后,通过组织学染色检查神经病理变化。在连续波(CW)下,2 分钟的经颅激光照射,皮质功率密度为 22.2 和 55.6mW/cm2,不会增加兔的皮质温度。采用相同的治疗方案,皮质功率密度为 111.1mW/cm2,在 2 分钟的暴露过程中,脑温逐渐升高 0.5°C,照射后 1-2 分钟内恢复到基线值。另外,在 CW 22.2mW/cm2 和 PW 111.1mW/cm2 三次激光照射后进行组织学染色,显示正常的神经细胞形态。本研究表明,目前在动物中风研究中使用的 TLT 功率不会导致皮质组织加热和组织病理学损伤。