Εμφανίζονται 1 - 2 Αποτελέσματα από 2 για την αναζήτηση '"Bioinformatics in immunotherapy"', χρόνος αναζήτησης: 0,62δλ Περιορισμός αποτελεσμάτων
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    Συγγραφείς: JALALI, SEYED RASOUL

    Θεματικοί όροι: ψ–Hamzah Model, Multiple Sclerosis treatment, MS cure, neuroinflammation resolution, fractional calculus, fractional derivatives, fractal geometry, memory-based mathematics, immune-neural dynamics, quantum biology, quantum field interactions, physiological memory, nonlinear immune feedback, fractal neurotissue, demyelination reversal, myelin sheath regeneration, oligodendrocyte precursor activation, neuroimmune system modeling, fractional-order differential equations, Caputo fractional derivative, Grünwald–Letnikov method, fractal integral calculus, immune memory modeling, time-delayed immune response, CNS immune regulation, relapsing–remitting MS, progressive MS, neurodegeneration modeling, remyelination therapy, myelin repair algorithms, astrocyte–microglia dynamics, fractal neurogeometry, immune tolerance induction, ψ–Hamzah Nanovaccine, Hamzah-MSx vaccine, nanomedicine for MS, biodegradable nanoparticles, PLGA nanoparticles, PEG-PLA conjugation, IL-10 lipid core, antioxidant nanotherapy, Mannose-targeted dendritic cell delivery, AMMP-21 peptide mimic, immune system retraining, Treg induction, Th17 inhibition, IFN-γ suppression, CD8+ tolerance induction, long-term remission, zero-toxicity nanomedicine, neuroprotective drug design, Hamzah-MRx oral drug, dual nanocapsulation, PEGylated nanoparticles, blood-brain barrier penetration, smart drug formulations, CurQ-ψ nanocurcumin, Bacopa Monnieri extract, Boswellia Serrata AKBA, N-acetylcysteine NAC, α-Lipoic Acid, Vitamin D3, resveratrol, pyrroloquinoline quinone PQQ, high-dose biotin therapy, L-Theanine CNS relaxation, nanotechnology-based oral drugs, synaptic regeneration, mitochondrial protection, immune suppression modeling, cytokine inhibition, IL-6 pathway suppression, TNF-α inhibition, NF-κB pathway regulation, CNS oxidative stress control, neurotrophic factor activation, neuroplasticity enhancement, fractional neuroimmunology, immune–myelin fractal modeling, ψ–Hamzah computational simulations, immune feedback integrals, Python-coded immune modeling, advanced RK4 solutions, Runge-Kutta fractional simulations, bioinformatics-driven immunotherapy, quantum neuroscience, integrative neuroimmunology, mathematical immunotherapy, brain-immune computational interface, neuroregeneration through fractals, personalized neurotherapy, computational immunology, AI-driven immunotherapy, multi-agent immune modeling, multi-scale neuroimmune analysis, fractional feedback loops, hysteretic neuronal response, stochastic immune modeling, immune chaos theory, nonlinear differential immune equations, simulation-based neurotherapy, computational medicine, biofield dynamics, electromagnetic field therapy, quantum resonance therapy, mind-body synchronization, neurofeedback therapy, biofeedback therapy, meditation in MS, consciousness-based healing, energy-based therapy, field manipulation, electromagnetic modulation of immune cells, neuroimmune resonance, quantum coherence in neuroregeneration, fractal immune response, integral memory immune repair, self-healing mathematical models, WHO recommendations MS, FDA breakthrough designation, EMA approval MS therapy, NIH neurodegenerative grants, Horizon Europe funding neuroimmunology, international ψ–Hamzah consortium, autoimmune disease resolution, neurodegenerative cure framework, universal ψ–Hamzah vaccine concept, Hamzah Equation intellectual property, Seyed Rasoul Jalali innovation, fractal neurobiology, mathematical cure for autoimmune diseases, computational neurotherapeutics, myelin–immune integrative therapy, long-term neuroinflammation control, synaptic repair algorithms, advanced nanomedicine stability, vaccine side effect elimination, oral drug side effect elimination, neurotoxicity-free therapy, clinical trial recommendations MS, ≥99.99% treatment efficacy, CNS inflammation eradication, autoimmunity eradication, neuroimmune stability, neuron–glial interaction models, fractional–fractal neurocomputing, computational neural integrity restoration, bioresonance therapy MS, long-range neural connectivity, feedback-driven immune regulation, auto-myelin mimicry peptides, advanced nanoformulation, smart-release nanocapsules, BBB-targeted nano-delivery, immune regulatory cascades, T-cell tolerance programming, B-cell suppression, neuroimmune coding, cytokine storm prevention, long-term immune stabilization, fractal mathematics in medicine, integrative quantum immunology, systemic immune reprogramming, regenerative immunotherapy, advanced computational biomedicine, predictive immune modeling, quantum-informed drug design, fractional-order neurology, artificial intelligence in MS, deep learning for immunotherapy, machine learning for neurodegeneration, AI-assisted fractional modeling, predictive neural resilience, multiscale CNS healing, precision computational therapy, holistic MS treatment, quantum-informed personalized medicine, neuroimmune computational intelligence, mathematics-driven neuroimmunity, cross-disciplinary neurotherapeutics, regenerative bioinformatics, computational neurology paradigms, immune fractal topology, CNS regenerative modeling, nonlinear neuroimmune maps, myelin preservation algorithms, remyelination success modeling, integrated vaccine–drug simulations, immune fractal synchrony, time-memory-based neurotherapy, neuroimmune chaos stabilization, demyelinating disorder eradication, CNS immune healing, autoimmune disease mathematical solution, fractal cure methodology, side-effect-free therapeutic systems, neuroimmune continuum modeling, immune fractal reprogramming, CNS immune balance restoration, personalized computational cure, WHO–FDA clinical mandate, ψ–Hamzah neuroimmunology revolution