Hi Terren. It seems like this pathway to inter-cellular control gives is the 
capability. I never thought of stem cells being the harder path than what 
professor L. describes, because pluri-potent stem cells seemed to be the new, 
great, thing?
Much Thanks 


-----Original Message-----
From: Terren Suydam <[email protected]>
To: [email protected]
Cc: [email protected] <[email protected]>
Sent: Fri, Jun 24, 2022 8:29 pm
Subject: Re: What Bodies Think About: Bioelectric Computation Outside the 
Nervous System

It might! It's a really promising avenue that would employ the body's innate 
intelligence to grow extra limbs, organs, etc, rather than having to 
over-engineer it with stem cells, 3D printing etc.  It's what was so exciting 
about it for me, that Levin and his team have shown that by manipulating the 
electro-chemical environment, you can induce changes in any cells, no stem 
cells required. All cells have ion-channels in their membranes that allow them 
to signal neighboring cells, kind of a precursor to neurons. And those ion 
channels can be controlled fairly easily and with high resolution.
Terren

On Fri, Jun 24, 2022 at 8:15 PM <[email protected]> wrote:

Well to be honest unless they're growing human organs and limbs, tissue and 
nerves, ready for transplant, does this open the path to tissue engineering 
soon, or am I being too anti-intellectual to enjoy the current achievement? 


-----Original Message-----
From: Terren Suydam <[email protected]>
To: Everything List <[email protected]>
Sent: Thu, Jun 23, 2022 11:01 am
Subject: What Bodies Think About: Bioelectric Computation Outside the Nervous 
System


A talk by Michael Levin on the computational abilities of ordinary cells and 
how this capacity helps all organisms to respond and adapt to novel situations, 
and also its role in embryogenesis and regeneration of body parts in the 
animals that can do it. Presented at an AI conference. Worth the whole 52 
minutes:
https://youtu.be/RjD1aLm4Thg
Terren
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