All that said, I'd rather risk dying while propofol'ed, than from say colon cancer. I mean all this is about how we die, not if we have to die.
All that said, I'd rather risk dying while propofol'ed, than from say colon cancer. I mean all this is about how we die, not if we have to die.
By the way, they were both invented around the same time (CT is only older by like ~5 years).
Correct me if I'm wrong, though?
Cells can repair (maybe faulty) a certain amount of damage, but may suicide when too much is broken (double-strand breaks). The amount and type of ROS generated by ionizing radiation also depends on your antioxidant state and how well tissue is saturated with oxygen (more ROS if you exercised before exposure). Generated ROS are a significant factor in cell damage, it's not just direct DNA hits. Some ROS can last for weeks and travel across cells to fuck things up.
I think we can confidently say, lowish radiation exposure is: not great, not terrible ;)
Also (and this is according to the XKCD chart) you'd need 50 CT head scans before you'd hit the clear statistical cancer risk.
But it's not like the whole population gets a CT scan every year, or even during their entire life. If you need one anyways, there's probably a more pressing issue that 1/50th the clearly statistical risk level.
They also differ in diagnostic value for different types of use cases. But I am lacking any expertise there.
Either way, CT plus constrast agent is the standard in cancer diagnostics/staging.
Because MRIs take longer, they are a more scarce resource. If you are in the hospital and need a scan, presumably its because the doctors are trying to diagnose something somewhat urgently. If not, they should discharge you and let you get the scan scheduled as an outpatient. So, CT it is for almost all common conditions in the hospital as first line. (even stroke usually gets CT head first to rule out a bleed, where the sensitivity is still pretty good)