[超声照射对着床前胚胎的影响(作者译)]。

N Akamatsu
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摘要

为阐明超声辐照对着床前胚胎的影响、作用机制及超声强度的安全水平,我对着床前胚胎进行了超声辐照和热实验。采用封闭微滴培养方法,将着床前胚胎定位于超声波束中心,着床前胚胎为早期囊胚上的晚期桑葚胚。实验在超声强度、辐照时间和周长温度等条件下进行。分别照射3.0 W/cm2连续波60 min和0.65、1.0、1.8 W/cm2连续波720 min时,形态学异常增加有统计学意义。2.0、3.0 W/cm2连续波照射60分钟,0.65、1.0、1.8 W/cm2连续波照射720分钟,发育迟缓有统计学意义。脉冲超声照射组未见明显的形态异常增加和发育迟缓。在辐照过程中,位于光束中心的热敏电阻探空仪的读数升高。在温度同样升高的暖化组和辐照组之间没有观察到显著变化。在冷周照射3.0 W/cm2连续波60分钟时,超声束中心温度升高不超过37℃,也得到了类似的结果。这说明在本研究中,包括空化在内的各种效应中,超声的热效应最为有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Ultrasound irradiation effects on pre-implantation embryos (author's transl)].

To elucidate ultrasound irradiation effect on pre-implantation embryos, its mechanism and safety levels of ultrasound intensity, I had performed ultrasound irradiation and thermal experiments on pre-implantation embryos. The pre-implantation embryos, whose stages were late morula on early blastocyst, were located in the centre of ultrasound beam certainly by using closed microdroplet culture. Experiments were done under various conditions of ultrasound intensity, irradiation time and temperature of circumference. The statistically significant increase of morphological abnormality was observed when 3.0 W/cm2 continuous wave for 60 minutes of 0.65, 1.0 or 1.8 W/cm2 continuous wave for 720 minutes was irradiated. The statistically significant developmental retardation was observed when 2.0 or 3.0 W/cm2 continuous wave for 60 minutes or 0.65, 1.0 or 1.8 W/cm2 continuous wave for 720 minutes was irradiated. Pulsed ultrasound irradiated groups showed neither increase of morphological abnormality nor developmental retardation significantly. The reading of thermistor sonde located in the centre of beam was raised during irradiation. No significant change were observed between warming and irradiated groups, temperature of which were similarly raised. Similar results were seen when 3.0 W/cm2 continuous wave for 60 minutes were irradiated during cool circumference, in which temperature of the centre of ultrasound beam didn't raise more than 37 degrees C. These results suggest that thermal effect of ultrasound is most effective during various effects including cavitation in this study.

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