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๐Ÿšจ PHYSICS SHOCKWAVE Scientists fed the Fibonacci sequence into a quantum computerโ€ฆ and the system started behaving as if it had an extra direction of time. Not science fiction. Real quantum physics. Researchers used laser pulse patterns based on the Fibonacci sequence to create a strange new phase of matter inside a quantum computer. The result: quantum information survived dramatically longer than expected. Normally, qubits lose coherence quickly. But the Fibonacci-driven system behaved differently. The quasiperiodic pulse structure created a highly stable quantum state that resisted errors far more effectively than ordinary repeating patterns. Researchers described the system as behaving as if it had: โ€œtwo distinct directions of time.โ€ The deeper shift: The Fibonacci sequence may not just appear in: โ€ข shells โ€ข galaxies โ€ข plants โ€ข wave patterns It may also help stabilize quantum reality itself. That is the truly strange part. Because the pattern is orderedโ€ฆ but never exactly repeating. And that non-repeating structure appears to generate new forms of quantum protection. If this scales: โ€ข quantum computers may become far more stable โ€ข quantum memory systems could improve dramatically โ€ข error correction may evolve beyond standard architectures โ€ข new phases of matter may emerge from mathematical structures alone The deeper implication: Reality may respond fundamentally differently to patterns that are orderedโ€ฆ without being periodic. Question to audience: If mathematical structures like Fibonacci sequences can stabilize quantum systemsโ€ฆ how much of reality is secretly governed by hidden geometric patterns? Follow for more future physics before it hits mainstream. #PhysicsShockwave #QuantumComputing #Fibonacci #TheNewPhysics

TheNewPhysics

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Having some mild cognitive impairment trying to remember dementia patterns on imaging? Is looking at dementia PET scans one of your PET peeves? Have short-term memory loss when you read about dementia imaging? Hereโ€™s a way to remember dementia patterns so you will never forget! Major dementia imaging patterns: Alzheimerโ€™s disease (AD) โ€”AD has a Nike swoosh patternโ€”with decreased metabolism in parietal & temporal regions โ€”Remember when you see the Nike swoosh patter, just call it! Dementia w/Lewy Bodies (DLB) โ€”Temporoparietal hypometabolism like AD but also involves occipital cortex, specific for DLB. โ€”DLB also extends farther to the ant. temporal cortex. โ€”Remember, regions of hypometabolism look more like an L. And Lewy starts w/an L Frontotemporal Dementia (FTD) โ€”Frontal & temporal hypometabolism as expected, but extends along the anterior cingulate gyrus โ€”Anterior cingulate involvement makes the hypometabolism looks like a lowercase letter fโ€”and frontotemporal starts with f Posterior cortical atrophy โ€”Can be from AD or DLB & has hypometabolism in the occipital & post. temporal lobe, sparing the anterior temporal lobe โ€”Sparing the anterior temporal lobe makes the involvement look like a C instead of an L like DLB. โ€”So remember pCa Vascular dementia โ€”Vascular dementia has a variable distribution, depending on the regions infarcted (V is both for Vascular & Variable) โ€”Wedged shaped regions of hypometabolism corresponding to cortical infarctsโ€”looks like an inverted V This list isnโ€™t all inclusive & there can be variations or even mixed dementias But hopefully this gives you a starting point you wonโ€™t soon forget!

Lea Alhilali, MD

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