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NUCLEAR-FUELED CIRCULATORY SUPPORT SYSTEMS IV: RADIOLOGIC PERSPECTIVES

机译:核能循环支持系统IV:放射学观点

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摘要

If an implantable artificial heart can be developed, it should prove beneficial to a significant group of patients. A variety of energy sources, such as biologic, electromagnetic, and nuclear, are under evaluation. Currently, biologic fuel cell technology is not sufficiently advanced to permit its extrapolation to the power levels required for implantable circulatory support systems. Electromagnetic systems have the disadvantage of heavy batteries of considerable bulk requiring frequent recharging. Radioisotope-fueled thermal engine systems have the potential of providing degrees of freedom not possible with rechargeable units. However, radiosotope circulatory support systems subject their recipients to prolonged intracorporeal radiation, add to environmental background radiation, and constitute an exceedingly small, but finite, hazard due to possible violation of fuel containment.
机译:如果可以开发出可植入的人造心脏,那么它将对大量患者证明是有益的。正在评估各种能源,例如生物,电磁和核能。当前,生物燃料电池技术还不够先进,无法将其外推至植入式循环支持系统所需的功率水平。电磁系统的缺点是笨重的电池体积大,需要经常充电。以放射性同位素为燃料的热机系统具有提供可再充电单元无法实现的自由度的潜力。但是,放射性同位素循环支持系统会使其接受者经受长时间的体内辐射,增加环境背景辐射,并且由于可能违反燃料密闭性而构成非常小的但有限的危害。

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