Cell complexity: talking through microtubules (Introduction)
dhw: The evidence for cellular intelligence builds with every article David posts on the subject. Not to be equated with human intelligence of course, but if you saw an animal, bird, insect in trouble and calling for help, and you saw its neighbour providing that help, you wouldn’t hesitate to acknowledge that this was a sign of intelligence. It’s only because these organisms are so tiny and invisible to the naked eye that some folk dismiss the idea.
dhw: […] Most cellular activity will be automatic. It’s only when things change that intelligence is called on..DAVID: Obviously intelligence is involved. Cells are so complex they must have a designer. That is where the intelligence comes from.
dhw: Two separate issues here: 1) Do cells have their own autonomous intelligence? 2) If they do, where did it come from? Your complexity = design argument is a powerful one. I hope you are now beginning to acknowledge that the case for cellular intelligence is becoming increasingly powerful!
We agree they certainly act intelligently. That is because of their intelligent design. Your view and my view are possible, but it is obvious the complexity of their responses to stimuli requires a designer.
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dhw,
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- Cell complexity: talking through microtubules -
David Turell,
2018-05-08, 00:28
- Cell complexity: they 'think' through chemical processes -
David Turell,
2018-05-07, 14:50
- Cell complexity: they 'think' through chemical processes -
dhw,
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David Turell,
2018-05-06, 15:19
- Cell complexity: they 'think' through chemical processes -
dhw,
2018-05-06, 12:31
- Cell complexity: they 'think' through chemical processes -
David Turell,
2018-05-05, 22:09
- Cell complexity: liquid phase separation -
David Turell,
2015-10-06, 20:39
- Cell complexity: enzyme complexity -
David Turell,
2015-05-12, 00:02
- Cell complexity: membrane ingestion -
David Turell,
2015-01-19, 15:34
- Cell complexity: control of RNA -
David Turell,
2015-01-19, 14:30
- Cell complexity: dynein movement explained -
David Turell,
2015-01-13, 00:49
- Cell complexity: tubulin activity and microtubules -
David Turell,
2015-01-01, 21:40
- Cell complexity: a new book -
David Turell,
2014-12-17, 15:58
- Cell complexity: a new book -
David Turell,
2014-12-17, 15:38
- Cell complexity: nucular pores -
David Turell,
2014-12-12, 18:00
- Cell complexity: ion channels -
David Turell,
2014-12-12, 14:28
- Cell complexity: enzyme heat control -
David Turell,
2014-12-10, 19:22
- Cell complexity: cell division control -
David Turell,
2014-12-10, 19:15
- Cell complexity: study of another molecule -
David Turell,
2014-12-10, 18:42
- Cell complexity: study of one molecule -
David Turell,
2014-12-10, 15:20
- Cell complexity: phospholipids -
David Turell,
2014-10-07, 15:29
- Cell complexity: working molecules -
David Turell,
2014-05-15, 15:40
- Cell complexity: working molecules -
David Turell,
2013-12-23, 15:39
- Cell complexity: Sensing stress -
David Turell,
2013-12-20, 19:06
- Cell complexity: Golgi apparatus function -
David Turell,
2013-12-20, 18:58
- Cell complexity:mitochondrial protein supply controls - David Turell, 2018-04-16, 20:47
- Cell complexity: Golgi apparatus function -
David Turell,
2013-12-20, 15:58
- Cell complexity:mitochondria release energy -
David Turell,
2013-06-30, 00:53
- Cell complexity:cell entry -
David Turell,
2013-02-27, 19:30
- Cell complexity -
David Turell,
2012-12-04, 15:22
- Cell complexity -
David Turell,
2012-11-23, 15:15