• Hey Guest,

    As you know, censorship around the world has been ramping up at an alarming pace. The UK and OFCOM has singled out this community and have been focusing its censorship efforts here. It takes a good amount of resources to maintain the infrastructure for our community and to resist this censorship. We would appreciate any and all donations.

    Bitcoin Address (BTC): 39deg9i6Zp1GdrwyKkqZU6rAbsEspvLBJt

    Ethereum (ETH): 0xd799aF8E2e5cEd14cdb344e6D6A9f18011B79BE9

    Monero (XMR): 49tuJbzxwVPUhhDjzz6H222Kh8baKe6rDEsXgE617DVSDD8UKNaXvKNU8dEVRTAFH9Av8gKkn4jDzVGF25snJgNfUfKKNC8

  • Security update: At around 2:28AM EST, the site was labeled as malicious by Google erroneously, causing users to get a "Dangerous site" warning in most browsers. It appears that this was done by mistake and has been reversed by Google. It may take a few hours for you to stop seeing those warnings.

    If you're still getting these warnings, please let a member of staff know.
A

Arak

Enlightened
Sep 21, 2018
1,176
After some additional reading, since the prevailing wisdom is that humans are not able or very good at detecting low blood oxygen.

It appears that the human body has some capacity to detect low blood oxygen levels more or less directly. Many articles. Peripheral or central chemoreceptors, possibly something else.

https://www.britannica.com/science/human-respiratory-system/Chemoreceptors

'
Peripheral chemoreceptors
Hypoxia, or the reduction of oxygen supply to tissues to below physiological levels (produced, for example, by a trip to high altitudes), stimulates the carotid and aortic bodies, the principal arterial chemoreceptors. The two carotid bodies are small organs located in the neck at the bifurcation of each of the two common carotid arteries into the internal and external carotid arteries. This organ is extraordinarily well perfused and responds to changes in the partial pressure of oxygen in the arterial blood flowing through it rather than to the oxygen content of that blood (the amount of oxygen chemically combined with hemoglobin). The sensory nerve from the carotid body increases its firing rate hyperbolically as the partial pressure of oxygen falls. '

'The carotid body communicates with medullary respiratory neurons through sensory fibres that travel with the carotid sinus nerve, a branch of the glossopharyngeal nerve. Microscopically, the carotid body consists of two different types of cells. The type I cells are arranged in groups and are surrounded by type II cells. The type II cells are generally not thought to have a direct role in chemoreception. Fine sensory nerve fibres are found in juxtaposition to type I cells, which, unlike type II cells, contain electron-dense vesicles. Acetylcholine, catecholamines, and neuropeptides such as enkephalins, vasoactive intestinal polypeptide, and substance P, are located within the vesicles. It is thought that hypoxia and hypercapnia (excessive carbon dioxide in the blood) cause the release of one or more of these neuroactive substances from the type I cells, which then act on the sensory nerve. It is possible to interfere independently with the responses of the carotid body to carbon dioxide and oxygen, which suggests that the same mechanisms are not used to sense or transmit changes in oxygen or carbon dioxide. The aortic bodies located near the arch of the aorta also respond to acute changes in the partial pressure of oxygen, but less well than the carotid body responds to changes in the partial pressure of carbon dioxide. The aortic bodies are responsible for many of the cardiovascular effects of hypoxia'

http://blogs.discovermagazine.com/neuroskeptic/2009/12/14/in-the-brain-acidity-means-anxiety/

There is more. Undoubtely, when properly executed the helium or argon method will work in most cases. I'm not that average though, and can't afford additonal brain damage. (survival)
Being in a locked room full of argon or helium will kill you, but that'snot the same as an exit bag.

Anyway, if anyone feels like exploring this topic ...
 
  • Like
Reactions: Lizzie S. and lv-gras
Justanotherconsumer

Justanotherconsumer

Paragon
Jul 9, 2018
974
Air huger is caused by carbon dioxide being rebreathed. Its not possible to fill a room with inert gas unless its designed for that purpose, you wouldent be able to evacuate the normal room oxygen. So the exit bag acts as this controlled environment. Helium these days is mixed with air to prevent death, maybe an industrial grade may work, most are using nitrogen. Back when balloons were filled with pure helium it would only take about 4 deep breaths to black out, im sure it wouldent be different with any other inert gas like argon, nitrogen.
 
  • Like
Reactions: crova, Delaying and lv-gras
A

Arak

Enlightened
Sep 21, 2018
1,176
@Jovaras ,

Forced depressurization is something else ... I wasn't 'aware' that balloon helium was cut that badly ... a bit off topic though.
 
  • Like
Reactions: lv-gras
Jovaras

Jovaras

Student
Oct 3, 2018
124
@Jovaras ,

Forced depressurization is something else ... I wasn't 'aware' that balloon helium was cut that badly ... a bit off topic though.
The principal is the same
 
  • Like
Reactions: lv-gras
A

Arak

Enlightened
Sep 21, 2018
1,176
I didn't get any feedback on the article ...(that it usually works, fine)
 
  • Like
Reactions: lv-gras
L

Limbo

Experienced
Oct 8, 2018
281
@Jovaras ,

Forced depressurization is something else ... I wasn't 'aware' that balloon helium was cut that badly ... a bit off topic though.

If anything the video shows a reduced o2 environment. In a complete inert gas environment you ARE gone (PASSED OUT) in under 15 seconds.
 
  • Like
Reactions: Jovaras, lv-gras and Delaying
A

Arak

Enlightened
Sep 21, 2018
1,176
The exceptions ...
 
  • Like
Reactions: lv-gras

Similar threads

Placo
Replies
2
Views
484
Suicide Discussion
Forveleth
F
D
Replies
21
Views
4K
Suicide Discussion
dying flower
D
Doemu
Replies
2
Views
2K
Suicide Discussion
Doemu
Doemu
DarkRange55
Replies
15
Views
1K
Forum Games
4am
4am