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Metabolic and vasomotor responses of rhesus monkeys exposed to 225‐MHz radiofrequency energy

机译:暴露于 225 MHz 射频能量的恒河猴的代谢和血管舒缩反应

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AbstractA previous study showed a substantial increase in the colonic temperature of rhesus monkeys (Macaca mulatta) exposed to radiofrequency (RF) fields at a frequency near whole‐body resonance and specific absorption rates (SAR) of 2–3 W/kg. The present experiments were conducted to determine the metabolic anad vasomotor responses during exposures to similar RF fields. We exposed five adult male rhesus monkeys to 225 MHz radiation (E orientation) in an anechoic chamber. Oxygen consumption and carbon dioxide production were measured before, during, and after RF exposure. Colonic, tail and leg skin temperatures were continuously monitored with RF‐nonperturbing probes. The monkeys were irradiated at two carefully‐controlled ambient temperatures, either cool (20 °C) or thermoneutral (26 °C). Power densities ranged from 0 (sham) to 10.0 mW/cm2with an average whole‐body SAR of 0.285 (W/kg)/(mW/cm2). We used two experimental protocols, each of which began with a 120‐min pre‐exposure equilibration period. One protocol involved repetitive 10‐min RF exposures at successively higher power densities with a recovery period between exposures. In the second protocol, a 120‐min RF exposure permitted the measurement of steady‐state thermoregulatory responses. Metabolic and vasomotor adjustments in the rhesus monkey exposed to 225 MHz occurred during brief or sustained exposures at SARs at or above 1.4 W/kg. The SAR required to produce a given response varied with ambient temperature. Metabolic and vasomotor responses were coordinated effectively to produce a stable deep body temperature. The results show that the thermoregulatory response of the rhesus monkey to an RF exposure at a resonant frequency limits storage of heat in the body. However, substantial increases in colonic temperature were not prevented by such responses, even
机译:摘要先前的一项研究表明,以接近全身共振的频率和2-3 W/kg的比吸收率(SAR)暴露于射频(RF)场的恒河猴(Macaca mulatta)的结肠温度显着升高。本实验旨在确定暴露于相似射频场期间的代谢血管舒缩反应。我们在消声室中将五只成年雄性恒河猴暴露在 225 MHz 辐射(E 方向)下。在射频暴露之前、期间和之后测量氧气消耗量和二氧化碳产生量。使用射频无干扰探针连续监测结肠、尾巴和腿部皮肤温度。猴子在两个精心控制的环境温度下进行照射,即凉爽(20°C)或热中性(26°C)。功率密度范围为 0(假)至 10.0 mW/cm2,平均全身 SAR 为 0.285 (W/kg)/(mW/cm2)。我们使用了两种实验方案,每种实验方案都以 120 分钟的曝光前平衡期开始。其中一项方案涉及在连续更高的功率密度下重复进行 10 分钟的射频暴露,并在两次暴露之间有恢复期。在第二种方案中,120 分钟的射频暴露允许测量稳态热调节响应。暴露于225 MHz的恒河猴的代谢和血管舒缩调整发生在SAR为1.4 W/kg或更高的短暂或持续暴露期间。产生给定响应所需的SAR随环境温度而变化。代谢和血管舒缩反应得到有效协调,以产生稳定的深层体温。结果表明,恒河猴在谐振频率下对射频暴露的体温调节反应限制了体内热量的储存。然而,这种反应并没有阻止结肠温度的大幅升高,即使

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