首页> 外文期刊>Bioelectromagnetics >Absence of corneal endothelium injury in non-human primates treated with and without ophthalmologic drugs and exposed to 2.8 GHz pulsed microwaves†‡
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Absence of corneal endothelium injury in non-human primates treated with and without ophthalmologic drugs and exposed to 2.8 GHz pulsed microwaves†‡

机译:接受和不接受眼科药物治疗并暴露于2.8 GHz脉冲微波的非人类灵长类动物中无角膜内皮损伤†

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摘要

Microwave-induced corneal endothelial damage was reported to have a low threshold (2.6 W/kg), and vasoactive ophthalmologic medications lowered the threshold by a factor of 10–0.26 W/kg. In an attempt to confirm these observations, four adult male Rhesus monkeys (Macaca mulatta) under propofol anesthesia were exposed to pulsed microwaves in the far field of a 2.8 GHz signal (1.43 ± 0.06 µs pulse width, 34 Hz pulse repetition frequency, 13.0 mW/cm2 spatial and temporal average, and 464 W/cm2 spatial and temporal peak (291 W/cm2 square wave equivalent) power densities). Corneal-specific absorption rate was 5.07 W/kg (0.39 W/kg/mW/cm2). The exposure resulted in a 1.0–1.2 °C increase in eyelid temperature. In Experiment I, exposures were 4 h/day, 3 days/week for 3 weeks (nine exposures and 36 h total). In Experiment II, these subjects were pretreated with 0.5% Timolol maleate and 0.005% Xalatan® followed by 3 or 7 4-h pulsed microwave exposures. Under ketamine–xylazine anesthesia, a non-contact specular microscope was used to obtain corneal endothelium images, corneal endothelial cell density, and pachymetry at the center and four peripheral areas of the cornea. Ophthalmologic measurements were done before and 7, 30, 90, and 180 days after exposures. Pulsed microwave exposure did not cause alterations in corneal endothelial cell density and corneal thickness with or without ophthalmologic drugs. Therefore, previously reported changes in the cornea exposed to pulsed microwaves were not confirmed at exposure levels that are more than an order of magnitude higher. Bioelectromagnetics 31:324–333, 2010. Published 2010 Wiley-Liss, Inc.
机译:据报道,微波诱导的角膜内皮损伤阈值较低(2.6 W / kg),而血管活性眼科药物可使阈值降低10-0.26 W / kg。为了证实这些观察结果,将四只成年雄性恒河猴(猕猴)在2.8(GHz信号(1.43±0.06 s的脉冲宽度,34 Hz脉冲重复频率,13.0 mW)的远场中暴露于脉冲微波中。 / cm 2 时空平均功率和464 W / cm 2 时空峰值(291 W / cm 2 方波等效)功率密度)。角膜比吸收率为5.07 W / kg(0.39 W / kg / mW / cm 2 )。暴露导致眼睑温度升高1.0–1.2C。在实验一中,暴露量为4小时/天,3天/周,3周(9次暴露和36小时总和)。在实验II中,这些受试者先后用0.5%马来酸Timolol和0.005%Xalatan®进行预处理,然后进行3或7次4-h脉冲微波照射。在氯胺酮-甲苯噻嗪麻醉下,使用非接触式镜面显微镜获取角膜中心和四个周边区域的角膜内皮图像,角膜内皮细胞密度和测厚法。眼科测量在暴露前和暴露后第7、30、90和180天进行。在有或没有眼科用药的情况下,脉冲微波照射都不会引起角膜内皮细胞密度和角膜厚度的改变。因此,先前报道的暴露在脉冲微波下的角膜变化在暴露水平高出一个数量级以上时并未得到确认。生物电磁学,2010年第31期:324-333页。2010年发布,Wiley-Liss,Inc.

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  • 来源
    《Bioelectromagnetics》 |2010年第4期|p.324-333|共10页
  • 作者单位

    Henry M. Jackson Foundation for the Advancement of Military Medicine, Brooks City-Base, Texas;

    |Naval Medical Research Unit San Antonio, Brooks City-Base, Texas;

    Naval Medical Research Unit San Antonio, Brooks City-Base, Texas|Ophthalmology Department, University of Texas Health Science Center, San Antonio, Texas;

    Naval Medical Research Unit San Antonio, Brooks City-Base, Texas;

    Naval Medical Research Unit San Antonio, Brooks City-Base, Texas;

    Henry M. Jackson Foundation for the Advancement of Military Medicine, Brooks City-Base, Texas;

    Naval Medical Research Unit San Antonio, Brooks City-Base, Texas;

    Naval Medical Research Unit San Antonio, Brooks City-Base, Texas;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    corneal endothelial cell density; corneal thickness; pulsed microwave;

    机译:角膜内皮细胞密度;角膜厚度;脉冲微波;

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