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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >The use of FDTD in establishing in vitro experimentation conditions representative of lifelike cell phone radiation on the spermatozoa.
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The use of FDTD in establishing in vitro experimentation conditions representative of lifelike cell phone radiation on the spermatozoa.

机译:使用FDTD在建立体外实验条件的代表逼真的手机辐射对精子。

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摘要

Recent studies have shown that exposing human semen samples to cell phone radiation leads to a significant decline in sperm parameters. In daily living, a cell phone is usually kept in proximity to the groin, such as in a trouser pocket, separated from the testes by multiple layers of tissue. The aim of this study was to calculate the distance between cell phone and semen sample to set up an in vitro experiment that can mimic real life conditions (cell phone in trouser pocket separated by multiple tissue layers). For this reason, a computational model of scrotal tissues was designed by considering these separating layers, the results of which were used in a series of simulations using the Finite Difference Time Domain (FDTD) method. To provide an equivalent effect of multiple tissue layers, these results showed that the distance between a cell phone and semen sample should be 0.8 cm to 1.8 cm greater than the anticipated distance between a cell phone and the testes.
机译:最近的研究表明,揭露人类手机辐射会导致精液样本显著下降,精子参数。生活,一个手机通常是保持距离到腹股沟,比如在裤子口袋里,由多个层分开的睾丸组织。手机和精液样本之间的距离建立一个在体外实验中可以模仿现实生活条件(手机放在裤子口袋隔开多个组织层)。这个原因,阴囊的计算模型组织是由考虑这些设计分离层,结果的使用在一系列的模拟使用有限的时域差分(FDTD)方法。一个等价的多个组织层的影响,这些结果显示,之间的距离手机和精液样本应该是0.8厘米1.8厘米距离大于预期手机和睾丸。

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