Book index: differenze tra le versioni
Nessun oggetto della modifica Etichetta: Annullato |
Nessun oggetto della modifica Etichetta: Annullato |
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| Riga 164: | Riga 164: | ||
<p style="font-size: 100%; color: black;">(''in Progress'')</p> | <p style="font-size: 100%; color: black;">(''in Progress'')</p> | ||
---- | ---- | ||
''' | 🔮 '''Fondamento del nuovo paradigma diagnostico''' | ||
< | {{Tooltip | ||
|1=🔴 | |||
|2=<div style="max-width:540px; padding:10px;"> | |||
< | 🔮 '''Fondamento del nuovo paradigma diagnostico'''<br/><br/> | ||
🔹 La diagnosi nel sistema masticatorio è stata storicamente basata sull’osservazione macroscopica.<br/> | |||
🧠 Tuttavia, i casi clinici mostrano che la realtà macroscopica può essere scollegata dallo stato neurofisiologico profondo del trigeminale.<br/><br/> | |||
🔀 Una “malocclusione” può corrispondere a un sistema neurologicamente simmetrico;<br/> | |||
⚠️ una “normocclusione” chirurgica può nascondere un danno funzionale severo.<br/><br/> | |||
🐱👤 Il paradosso di Schrödinger diventa un’analogia strutturale: il paziente può essere simultaneamente “sano” e “malato” finché non si effettua una misurazione neurofisiologica.<br/><br/> | |||
🧪 La misurazione — dipendente da osservatore, strumento e contesto — modifica ciò che viene osservato.<br/> | |||
📉 La logica linguistica ambigua e i limiti della probabilità classica (P-value/Bayes) impediscono di descrivere adeguatamente i fenomeni complessi.<br/><br/> | |||
🔥 Per questo la ''normal science'' entra in crisi: i modelli classici non spiegano più le anomalie osservate.<br/><br/> | |||
🔧 Il nuovo paradigma richiede un modello diagnostico non-classico:<br/> | |||
• integrazione di stati multipli<br/> | |||
• incertezza epistemica<br/> | |||
• dinamiche emergenti<br/><br/> | |||
👉 Approfondisci: [[Introduction#Schrödinger's cat|Il paradosso di Schrödinger nella diagnosi clinica]].<br/><br/> | |||
<b>Questo prepara il terreno alla costruzione dell’Indice Ψ.</b> | |||
</div> | </div> | ||
}} | |||
Versione delle 10:45, 7 dic 2025
Masticationpedia Journal
‘The progress of Science is essentially an anarchic process’
Paul Karl Feyerabend
Normal Science
(Public Open Access
This section is open to all users and represents the most inclusive part of the project, offering information and resources accessible to everyone.)
- Logic of medical language
- The Complex Systems
- Logic of medical language: Introduction to quantum-like probability in the masticatory system
- Conclusions on the status quo in the logic of medical language regarding the masticatory system
- 4° Clinical case: Temporomandibular disorders
- 5° Clinical case: Spontaneous Electromyographic Activity
Crisis of Paradigm
(Members only access
This section is reserved exclusively for users who have received a personal invitation to register on Masticationpedia. This invitation is sent only to carefully selected colleagues, chosen for their professional value, scientific interest, and distinctive qualities. If you find the topics interesting and have not received an invitation, you can request one by submitting a request through the 'Member Account request form'. (a Google Account is needed to request the Member Account).
)
Research Diagnostic Criteria (RDC)
- Jaw movements analysis: Electrognathographic Replicator
- Transverse Hinge Axis
- Vertical Hinge Axis
- The Magic of the Condylar Sphere
- Jaw movements analysis:Pantographic Replicator
- Intercondylar Distance
- Advantage and Limit of Pantography
- Jaw movements analysis:Axiographic Replicator
- Interfacial Distance
- Advantage and Limit of Axiography
- Electromyography (EMG)
- EMG Interferential pattern
- EMG at rest position
- Quantitative Analysis of EMG
- Fourier transform
- Wavelett
- Transcutaneous Electric Nerve Stimulation
- Intraocclusal free way space
- The mysterious "Muscle tone"
- Closing trajectory from TENS
- Intraocclusal free way space
Beyond the RDC
- Clinical Electromyography
- Artificial Neural Networks: Automatic Neuromuscular Diagnostic
- Trigeminal Neurophysiopathology
- Trigeminal Nociceptive Evaluation in TMD Patients by studying CO2-Laser Evoked Potentials and Masseter Laser Silent Periods
- Electrical and Magnetic Stimulation of the Central and Peripheral Nervous System:Modeling of Generated Fields and Data Interpretation
- Transcranial Magnetic Stimulation and Brain Plasticity in Post-Stroke Recovery
- Pain Pathophysiology
- Role of Metabotropic Glutamate Receptors in Pain
- Neuronal Basis of Neuropathic Pain and Neuroprotective Mechanisms of Antiepileptic Drugs
- Use of Functional Magnetic Resonance Imaging (fMRI) in Pain Research
- Neuroradiology in Craniofacial Pain
Conclusions to the Paradigm crisis section
Research Diagnostic Criteria (RDC)
- Jaw movements analysis: Electrognathographic Replicator
- Transverse Hinge Axis
- Vertical Hinge Axis
- The Magic of the Condylar Sphere
- Jaw movements analysis:Pantographic Replicator
- Intercondylar Distance
- Advantage and Limit of Pantography
- Jaw movements analysis:Axiographic Replicator
- Interfacial Distance
- Advantage and Limit of Axiography
- Electromyography (EMG)
- EMG Interferential pattern
- EMG at rest position
- Quantitative Analysis of EMG
- Fourier transform
- Wavelett
- Transcutaneous Electric Nerve Stimulation
- Intraocclusal free way space
- The mysterious "Muscle tone"
- Closing trajectory from TENS
- Intraocclusal free way space
Beyond the RDC
- Clinic Electromyography
- Artificial Neural Networks: Automatic Neuromuscular Diagnostic
- Trigeminal Neurophysiopathology
- Trigeminal Nociceptive Evaluation in TMD Patients by studying CO2-Laser Evoked Potentials and Masseter Laser Silent Periods
- Electrical and Magnetic Stimulation of the Central and Peripheral Nervous System:Modeling of Generated Fields and Data Interpretation
- Transcranial Magnetic Stimulation and Brain Plasticity in Post-Stroke Recovery
- Pain Pathophysiology
- Role of Metabotropic Glutamate Receptors in Pain
- Neuronal Basis of Neuropathic Pain and Neuroprotective Mechanisms of Antiepileptic Drugs
- Use of Functional Magnetic Resonance Imaging (fMRI) in Pain Research
- Neuroradiology in Craniofacial Pain
Conclusions to the Paradigm crisis section
Extraordinary science
(in Progress)
🔮 Fondamento del nuovo paradigma diagnostico
🔴🔮 Fondamento del nuovo paradigma diagnostico
🔹 La diagnosi nel sistema masticatorio è stata storicamente basata sull’osservazione macroscopica.
🧠 Tuttavia, i casi clinici mostrano che la realtà macroscopica può essere scollegata dallo stato neurofisiologico profondo del trigeminale.
🔀 Una “malocclusione” può corrispondere a un sistema neurologicamente simmetrico;
⚠️ una “normocclusione” chirurgica può nascondere un danno funzionale severo.
🐱👤 Il paradosso di Schrödinger diventa un’analogia strutturale: il paziente può essere simultaneamente “sano” e “malato” finché non si effettua una misurazione neurofisiologica.
🧪 La misurazione — dipendente da osservatore, strumento e contesto — modifica ciò che viene osservato.
📉 La logica linguistica ambigua e i limiti della probabilità classica (P-value/Bayes) impediscono di descrivere adeguatamente i fenomeni complessi.
🔥 Per questo la normal science entra in crisi: i modelli classici non spiegano più le anomalie osservate.
🔧 Il nuovo paradigma richiede un modello diagnostico non-classico:
• integrazione di stati multipli
• incertezza epistemica
• dinamiche emergenti
👉 Approfondisci: Il paradosso di Schrödinger nella diagnosi clinica.
Questo prepara il terreno alla costruzione dell’Indice Ψ.
Authors: Gianni Frisardi
- Why a paradigm shift in masticatory science
- From “occlusion only” to neuro–gnathological systems
- Normal Science – Crisis – Extraordinary Science in the masticatory field
- Positioning of Masticationpedia within this paradigm
Module 2 – Quantum-like Framework for Biological and Clinical Systems
Authors: Andrei Khrennikov
- Classical vs quantum(-like) probability in medicine
- Open quantum systems and biological functions
- Quantum instruments and self-measurement in biosystems
- From cognitive models to trigeminal diagnostics
Module 3 – Trigeminal Electrophysiology and Reflex Circuits
Authors: Kemal S. Türker
- Masseter reflexes and silent periods
- Cutaneous and nociceptive stimulation of trigeminal system
- Single motor unit vs surface EMG analysis
- Reliability and clinical meaning of trigeminal reflex measures
Module 4 – Structural Connectivity (SC) of the Trigeminal System
Authors: Gianni Frisardi, Kemal S. Türker
- Definition of Structural Connectivity in the masticatory system
- Trigeminal Root Motor Evoked Potentials (R-MEPs)
- Protocols, latency, amplitude and symmetry indices
- SC markers for complex rehabilitative planning
Module 5 – Functional Connectivity (FC) of the Trigeminal System
Authors: Kemal S. Türker, Gianni Frisardi;
- Definition of Functional Connectivity in the masticatory system
- Jaw jerk
- Masseter tendon silent period
- Masseter electrical silent period
- Recovery cycle of the masseter inhibitory reflex
- H-wave and related polysynaptic responses
- FC markers in health and pathology
Module 6 – From SC/FC to Emergent Behaviour in Mastication
Authors: Gianni Frisardi (lead); Kemal S. Türker; Ali Esquembre
- Separation and interaction between SC and FC
- Emergent patterns in complex masticatory tasks
- Network perspective on neuro-gnathological dysfunctions
- Conceptual bridge toward a synthetic index of system state
Module 7 – Index : Quantum-like Diagnostic Model
Authors: Gianni Frisardi (lead); Andrei Khrennikov; Kemal S. Türker; Ali Esquembre
- Model description
- Role of trigeminal motor evoked potentials (R-MEPs) in evaluating SC
- Role of trigeminal reflexes in evaluating FC
- Integration of SC and FC in a single state variable
- Emergent Behaviour encoded in the index
- Quantum modelling of the Index
- Quantum Bayes Theorem (QBayes)
- Interference term and differences from the classical approach
- Expectation value and mathematical formalism
- Operator form of the diagnostic model
- Cosine of as a measure of overlap between concomitant pathologies
Module 1 – Introduction to the New Paradigm
Authors: Gianni Frisardi (lead); Andrei Khrennikov; Kemal S. Türker; Ali Esquembre
- Why a paradigm shift in masticatory science
- From “occlusion only” to neuro–gnathological systems
- Normal Science – Crisis – Extraordinary Science in the masticatory field
- [Errore Traduzione]