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'''<math>\psi(t)=\sqrt 0.5|1\rangle |healthy \rangle + \sqrt 0.5|0\rangle |diseased \rangle</math>''' | '''<math>\psi(t)=\sqrt 0.5|1\rangle |healthy \rangle + \sqrt 0.5|0\rangle |diseased \rangle</math>''' | ||
In this way, two other limits of laboratory diagnostics measuments are deduced: that of <math>K_{brain}</math> | In this way, two other limits of laboratory diagnostics measuments are deduced: that of [[Quantum-like modeling in biology with open quantum systems and instruments|<math>K_{brain}</math>]] | ||
analogous values to the Heisenberg uncertainty principle, suggesting a common underlying architecture of human brain activity in resting and task conditions and classical probability vs quantum probability which substantially cast indecision on the interpretation of clinical and diagnostic phenomena. | analogous values to the Heisenberg uncertainty principle, suggesting a common underlying architecture of human brain activity in resting and task conditions and classical probability vs quantum probability which substantially cast indecision on the interpretation of clinical and diagnostic phenomena. | ||
===A practical example === | ===A practical example === |
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