Earlier quoted context omitted.
[flagged]
> and the same type voltage gated calcium ion channel is also affected by electromagnetic fields? This is the kind of broad brush statement that makes people face-palm. A "voltage gated" anything is necessarily affected by electromagnetic fields, because that's what those words mean… …but the character of that effect depends almost entirely on the specifics. Specifically, your brain cells do things at about 100-1000…
It’s not a broadbrush statement, it’s a very specific statement. It’s a statement that this is how EMFs can affect our neurology and our biology. I don’t understand you’re complained about this at all.
> Specifically, your brain cells do things at about 100-1000 Hz, whereas most of the new RF noise is about 6 orders of magnitude higher frequency.
Why are you assuming there has to be some residence between the EMFs and the speed of the fire neurons for the voltage gated ion channels to be triggered or disrupted? This makes no sense.
There’s plenty of signal, you just don’t have the antennas to receive it.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6513191/
There is considerable evidence that exposure to RF-EMF could cause various types of genotoxic effects in cells (Lai and Singh, 2004; Lee et al., 2005; Phillips et al., 2009; Ruediger, 2009; Xu et al., 2010). Exposure to RF-EMFs (1,800 MHz, SAR 2 W/kg) caused DNA oxidative damage in the mitochondria, DNA fragmentation and DNA strand breaks in neurons (Xu et al., 2010). This have been reported in lymphocytes exposed to various ranges of RF-EMFs (Phillips et al., 2009). In addition, RF-EMF exposure has been reported to cause chromosomal instability, alteration of gene expression and gene mutations. Such genetic toxic effects have been reported in, but are not limited to, neurons, blood lymphocytes, sperm, red blood cells, epithelial cells, hematopoietic tissue, lung cells and bone marrow (Magras and Xenos, 1997; Mashevich et al., 2003; Demsia et al., 2004; Zhao et al., 2007; Baan et al., 2011). It has also been found that exposure to electromagnetic radiation, a type of RF-EMF, increases the incidence of chromosomal aneuploidy (Mashevich et al., 2003). Genetic toxic effects, including aneuploidy, can lead to genetic disorders with abnormal gene formation, and can even lead to cancer (Hoeijmakers, 2009).