They took an MRI of my brain. They found where one part of my brain resided in the MRI images. I performed reaction tests -- press this button for green circle, press that button for blue circle, abort pressing button if the icon gets crossed out (the crossing out was delayed) Then they strapped the magnet to my head (not touching but very close AFAIR) Then do all the tests again
AFAIR they showed that part of the brain did affect your ability to abort an action. I think they knew this anyway because of behavior of people with brain injuries. So I guessed they learned the magnet scrambled that part of the brain?
It was extremely boring doing these tests. I don't remember much about it except that the magnet made unreasonably loud popping sounds.
I am assured that the human brain is so incredibly complex that it is almost impossible to understand it ... but experiments like this make me worry that Evolution just knocked most of it up in Perl over a weekend...
An inability to abort an action when facts change ? What if there was a test for that. Would we stop people standing for office? Be set free from some crimes?
I demand to see the source code for human brains ! It needs a proper security audit.
(relevant XKCD reference to be looked up later)
On a longer timescale (minutes to days), there is a clinical symptom called "perseveration" whereby people can't let go of previously held beliefs in the face of changing information. It is common in, e.g., patients with schizophrenia.
oh - the highly repetitive response common in autism.
Are there gradients of perseveration? This is absolutely fascinating - a brain based answer to why people do many behaviours - from sitting in the corner mumbling one word over and over, to various forms of self sabotage ("always picking the wrong man")
(And I might say heartening - as the father of an ASD child, it can seem hopeless, but just being armed with some knowledge of where the behaviours come from might allow some hope)
A low level part of my brain definitely took over control of my hands, based on interpretation of visual signals. That was 6 years ago and I still think about it every few days.
Tests like this are intended to prove or refine information derived from clues from damaged subjects. You can learn a lot of things about complex systems like the brain by studying their failure modes, but you have to be careful of inferring causation from correlation and other such fallacies — for instance here they could have been trying to rule out the behaviour being a secondary symptom (the correct response actually being controlled elsewhere normally, but that is blocked by the damage rather than the damage having affected it more directly), or testing to see if multiple areas are directly involved in the behaviour rather than it being as simple as that one area seeming to control the veto, or just ruling out a pre-existing condition in the initial subjects unrelated to the subsequent damage.
[0]: https://www.fda.gov/news-events/press-announcements/fda-perm...
TMS is fairly common tool for neuroscience research and its effects depend on where, when, and how it is applied, as well as the quirks of each person’s own anatomy. This paper has a table of some studies reporting “beneficial” effects, mostly on perception and memory: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4083569/ There are many more studies showing that TMS (transiently) impairs performance too.
We don’t totally understand how it works—-or what’s normally required for many of these behaviors—-so it’s hard to give a grand unified theory of how it acts, but it definitely does something to brain circuits. That said, the FDA approved TMS treatments for depression and a few other indications, and it’s also used as a tool for neurosurgical planning.