Barnes F S
Department of Electrical and Computer Engineering, University of Colorado, Boulder 80309-0425.
Health Phys. 1989 May;56(5):759-66. doi: 10.1097/00004032-198905000-00025.
There are a variety of ways in which a microwave field can affect a biological system. The best understood are those associated with heating, which, in turn, lead to changes in chemical reaction rates and current flows. At high levels, forces associated with the field gradients have been observed, as well as nonlinearities, including the destruction of membranes. At low levels, we discuss the possibility of quantum effects and some limits set by noise.
微波场影响生物系统的方式多种多样。其中最广为人知的是与加热相关的方式,加热进而会导致化学反应速率和电流的变化。在高强度下,已观察到与场梯度相关的力以及非线性效应,包括细胞膜的破坏。在低强度下,我们讨论了量子效应的可能性以及由噪声设定的一些限制。