User contributions
11 November 2022
Store:EMfr05
Created page with "=== Sclerodermia === La sclerosi sistemica (sclerodermia, SSc) è una rara malattia autoimmune multisistemica caratterizzata da autoanticorpi, vasculopatia e fibrosi della pelle e degli organi interni. Uno studio di Tiago Nardi Amaral et al. <ref>Tiago Nardi Amaral, Fernando Augusto Peres, Aline Tamires Lapa, João Francisco Marques-Neto, Simone Appenzeller. [https://pubmed.ncbi.nlm.nih.gov/23827688/ Neurologic involvement in scleroderma: a systematic review] Semin Arthr..."
Store:EMit05
Created page with "=== Sclerodermia === La sclerosi sistemica (sclerodermia, SSc) è una rara malattia autoimmune multisistemica caratterizzata da autoanticorpi, vasculopatia e fibrosi della pelle e degli organi interni. Uno studio di Tiago Nardi Amaral et al. <ref>Tiago Nardi Amaral, Fernando Augusto Peres, Aline Tamires Lapa, João Francisco Marques-Neto, Simone Appenzeller. [https://pubmed.ncbi.nlm.nih.gov/23827688/ Neurologic involvement in scleroderma: a systematic review] Semin Arthr..."
Spasmo emimasticatorio
no edit summary
−13,099
Store:EMes04
Created page with "=== Pleomorphic adenoma === thumb|Figura 4: Esame istologico di un adenoma pleomorfo da [[wikipedia:Pleomorphic_adenoma|Wikipedia ]] L'adenoma pleomorfo è una comune neoplasia benigna delle ghiandole salivari caratterizzata dalla proliferazione neoplastica di cellule epiteliali (duttali) insieme a componenti mioepiteliali, con potenzialità maligna. È il tipo più comune di tumore delle ghiandole salivari e il tumore pi..."
Store:EMde04
Created page with "=== Pleomorphic adenoma === thumb|Figura 4: Esame istologico di un adenoma pleomorfo da [[wikipedia:Pleomorphic_adenoma|Wikipedia ]] L'adenoma pleomorfo è una comune neoplasia benigna delle ghiandole salivari caratterizzata dalla proliferazione neoplastica di cellule epiteliali (duttali) insieme a componenti mioepiteliali, con potenzialità maligna. È il tipo più comune di tumore delle ghiandole salivari e il tumore pi..."
Store:EMfr04
Created page with "=== Pleomorphic adenoma === thumb|Figura 4: Esame istologico di un adenoma pleomorfo da [[wikipedia:Pleomorphic_adenoma|Wikipedia ]] L'adenoma pleomorfo è una comune neoplasia benigna delle ghiandole salivari caratterizzata dalla proliferazione neoplastica di cellule epiteliali (duttali) insieme a componenti mioepiteliali, con potenzialità maligna. È il tipo più comune di tumore delle ghiandole salivari e il tumore pi..."
Store:EMit04
Created page with "=== Pleomorphic adenoma === thumb|Figura 4: Esame istologico di un adenoma pleomorfo da [[wikipedia:Pleomorphic_adenoma|Wikipedia ]] L'adenoma pleomorfo è una comune neoplasia benigna delle ghiandole salivari caratterizzata dalla proliferazione neoplastica di cellule epiteliali (duttali) insieme a componenti mioepiteliali, con potenzialità maligna. È il tipo più comune di tumore delle ghiandole salivari e il tumore pi..."
Store:EMes03
Created page with "=== Sclerosi multipla e riflessi trigeminali === Dobbiamo fare un ulteriore attenzione premessa che riguarda la demilienizzazione assonale nelle sclerosi multiple. Da uno studio di Joanna Kamińska et el.<ref>Joanna Kamińska, Olga M Koper, Kinga Piechal, Halina Kemona . [https://pubmed.ncbi.nlm.nih.gov/28665284/ Multiple sclerosis - etiology and diagnostic potential].Postepy Hig Med Dosw. 2017 Jun 30;71(0):551-563.doi: 10.5604/01.3001.0010.3836. </ref> si evince che..."
Store:EMde03
Created page with "=== Sclerosi multipla e riflessi trigeminali === Dobbiamo fare un ulteriore attenzione premessa che riguarda la demilienizzazione assonale nelle sclerosi multiple. Da uno studio di Joanna Kamińska et el.<ref>Joanna Kamińska, Olga M Koper, Kinga Piechal, Halina Kemona . [https://pubmed.ncbi.nlm.nih.gov/28665284/ Multiple sclerosis - etiology and diagnostic potential].Postepy Hig Med Dosw. 2017 Jun 30;71(0):551-563.doi: 10.5604/01.3001.0010.3836. </ref> si evince che..."
Store:EMfr03
Created page with "=== Sclerosi multipla e riflessi trigeminali === Dobbiamo fare un ulteriore attenzione premessa che riguarda la demilienizzazione assonale nelle sclerosi multiple. Da uno studio di Joanna Kamińska et el.<ref>Joanna Kamińska, Olga M Koper, Kinga Piechal, Halina Kemona . [https://pubmed.ncbi.nlm.nih.gov/28665284/ Multiple sclerosis - etiology and diagnostic potential].Postepy Hig Med Dosw. 2017 Jun 30;71(0):551-563.doi: 10.5604/01.3001.0010.3836. </ref> si evince che..."
Store:EMit03
Created page with "=== Sclerosi multipla e riflessi trigeminali === Dobbiamo fare un ulteriore attenzione premessa che riguarda la demilienizzazione assonale nelle sclerosi multiple. Da uno studio di Joanna Kamińska et el.<ref>Joanna Kamińska, Olga M Koper, Kinga Piechal, Halina Kemona . [https://pubmed.ncbi.nlm.nih.gov/28665284/ Multiple sclerosis - etiology and diagnostic potential].Postepy Hig Med Dosw. 2017 Jun 30;71(0):551-563.doi: 10.5604/01.3001.0010.3836. </ref> si evince che..."
File:Scwannoma.jpeg
no edit summary
Store:EMes02
Created page with "=== Scwannoma vestibolare e trigeminale === Lo spasmo emifacciale secondario dovuto a schwannoma vestibolare è molto raro. U_no studio di S Peker et al.<ref>S Peker, K Ozduman, T Kiliç, M N Pamir. [https://pubmed.ncbi.nlm.nih.gov/15346321/ Relief of hemifacial spasm after radiosurgery for intracanalicular vestibular schwannoma.] Minim Invasive Neurosurg. 2004 Aug;47(4):235-7. doi: 10.1055/s-2004-818485. </ref> è stato il primo caso riportato di spasmo emifacciale re..."
Store:EMde02
Created page with "=== Scwannoma vestibolare e trigeminale === Lo spasmo emifacciale secondario dovuto a schwannoma vestibolare è molto raro. U_no studio di S Peker et al.<ref>S Peker, K Ozduman, T Kiliç, M N Pamir. [https://pubmed.ncbi.nlm.nih.gov/15346321/ Relief of hemifacial spasm after radiosurgery for intracanalicular vestibular schwannoma.] Minim Invasive Neurosurg. 2004 Aug;47(4):235-7. doi: 10.1055/s-2004-818485. </ref> è stato il primo caso riportato di spasmo emifacciale re..."
Store:EMfr02
Created page with "=== Scwannoma vestibolare e trigeminale === Lo spasmo emifacciale secondario dovuto a schwannoma vestibolare è molto raro. U_no studio di S Peker et al.<ref>S Peker, K Ozduman, T Kiliç, M N Pamir. [https://pubmed.ncbi.nlm.nih.gov/15346321/ Relief of hemifacial spasm after radiosurgery for intracanalicular vestibular schwannoma.] Minim Invasive Neurosurg. 2004 Aug;47(4):235-7. doi: 10.1055/s-2004-818485. </ref> è stato il primo caso riportato di spasmo emifacciale re..."
Store:EMit02
Created page with "=== Scwannoma vestibolare e trigeminale === Lo spasmo emifacciale secondario dovuto a schwannoma vestibolare è molto raro. U_no studio di S Peker et al.<ref>S Peker, K Ozduman, T Kiliç, M N Pamir. [https://pubmed.ncbi.nlm.nih.gov/15346321/ Relief of hemifacial spasm after radiosurgery for intracanalicular vestibular schwannoma.] Minim Invasive Neurosurg. 2004 Aug;47(4):235-7. doi: 10.1055/s-2004-818485. </ref> è stato il primo caso riportato di spasmo emifacciale re..."
Store:EMes01
Created page with "== Introduzione == Prima di entrare nel vivo della discussione riguardante la patologia della nostra paziente Mary Poppins quella che dai capitoli precedenti sembra di tipo neuromotriia ed in particolare un 'Spasmo emimasticatorio' dovremmo focalizzare alcuni punti selettivi che ci aiuteranno a comprendere l'importanza dello excursus dei capitoli precedenti per finire al determinante processo di decriptazione del segnale. Cominciamo con il dire che non è tanto comples..."
Store:EMde01
Created page with "== Introduzione == Prima di entrare nel vivo della discussione riguardante la patologia della nostra paziente Mary Poppins quella che dai capitoli precedenti sembra di tipo neuromotriia ed in particolare un 'Spasmo emimasticatorio' dovremmo focalizzare alcuni punti selettivi che ci aiuteranno a comprendere l'importanza dello excursus dei capitoli precedenti per finire al determinante processo di decriptazione del segnale. Cominciamo con il dire che non è tanto comples..."
Store:EMfr01
Created page with "== Introduzione == Prima di entrare nel vivo della discussione riguardante la patologia della nostra paziente Mary Poppins quella che dai capitoli precedenti sembra di tipo neuromotriia ed in particolare un 'Spasmo emimasticatorio' dovremmo focalizzare alcuni punti selettivi che ci aiuteranno a comprendere l'importanza dello excursus dei capitoli precedenti per finire al determinante processo di decriptazione del segnale. Cominciamo con il dire che non è tanto comples..."
Store:EMit01
Created page with "== Introduzione == Prima di entrare nel vivo della discussione riguardante la patologia della nostra paziente Mary Poppins quella che dai capitoli precedenti sembra di tipo neuromotriia ed in particolare un 'Spasmo emimasticatorio' dovremmo focalizzare alcuni punti selettivi che ci aiuteranno a comprendere l'importanza dello excursus dei capitoli precedenti per finire al determinante processo di decriptazione del segnale. Cominciamo con il dire che non è tanto comples..."
Spasmo emimasticatorio
Created page with "{{transl|it}} left|200x200px Questo capitolo e la serie di sub capitoli saranno dedicati principalmente al caso clinico della nostra povera paziente Mary Poppins che ha dovuto aspettare ben 10 anni per avere una diagnosi certa e dettagliata di Spasmo Emimasticatorio trovandosi tra due fuochi quello del contesto odontoiatrico, e quello neurologico oltre tutte le altre branche della medicina incontrate nel percorso clinico tipo la derma..."
10 November 2022
Store:QLMit03
Observazioni
−17
Store:QLMfr09
Created page with "==4. Quantum instruments from the scheme of indirect measurements== The basic model for construction of quantum instruments is based on the scheme of indirect measurements. This scheme formalizes the following situation: measurement’s outputs are generated via interaction of a system <math>S</math> with a measurement apparatus <math>M</math> . This apparatus consists of a complex physical device interacting with <math>S</math> and a pointer that shows the result of me..."
Store:QLMfr04
Created page with "==2. Classical versus quantum probability== CP was mathematically formalized by Kolmogorov (1933)<ref name=":2" /> This is the calculus of probability measures, where a non-negative weight <math>p(A)</math> is assigned to any event <math>A</math>. The main property of CP is its additivity: if two events <math>O_1, O_2</math> are disjoint, then the probability of disjunction of these events equals to the sum of probabilities: {| width="80%" | |- | width="33%" | ..."
Modélisation de type quantique en biologie avec des systèmes et des instruments quantiques ouverts
Created page with "{{transl|en}} {{FR | Title = Quantum-like modeling in biology with open quantum systems and instruments | author1 = Irina Basieva | author2 = Andrei Khrennikov | author3 = Masanao Ozawa | Source = https://pubmed.ncbi.nlm.nih.gov/33347968/<!-- where this work comes from or where was it was retrieved (URL) --> | Original = <!-- link to the original screenshot or PDF print from the retrieval --> | Date = 2021<!-- date of the original work, when the author/s publish..."
Modellazione quantistica in biologia con sistemi e strumenti quantistici aperti
Created page with "{{transl|en}} {{FR | Title = Quantum-like modeling in biology with open quantum systems and instruments | author1 = Irina Basieva | author2 = Andrei Khrennikov | author3 = Masanao Ozawa | Source = https://pubmed.ncbi.nlm.nih.gov/33347968/<!-- where this work comes from or where was it was retrieved (URL) --> | Original = <!-- link to the original screenshot or PDF print from the retrieval --> | Date = 2021<!-- date of the original work, when the author/s publish..."
Quantum-like modeling in biology with open quantum systems and instruments - en
Replaced content with "{{transl|en}} {{FR | Title = Quantum-like modeling in biology with open quantum systems and instruments | author1 = Irina Basieva | author2 = Andrei Khrennikov | author3 = Masanao Ozawa | Source = https://pubmed.ncbi.nlm.nih.gov/33347968/<!-- where this work comes from or where was it was retrieved (URL) --> | Original = <!-- link to the original screenshot or PDF print from the retrieval --> | Date = 2021<!-- date of the original work, when the author/s pub..."
−22,375
Store:QLMes18
Created page with "===11.3. Psychological functions=== Now, we turn to the model presented in Section 10. A neural network is modeled as a compound quantum system; its state is presented in tensor product of single-neuron state spaces. Brain’s functions perform self-measurements modeled within theory of open quantum systems. (There is no need to consider state’s collapse.) State’s dynamics of some brain’s function (psychological function) <math>F</math> is described by the quantum..."
Store:QLMde18
Created page with "===11.3. Psychological functions=== Now, we turn to the model presented in Section 10. A neural network is modeled as a compound quantum system; its state is presented in tensor product of single-neuron state spaces. Brain’s functions perform self-measurements modeled within theory of open quantum systems. (There is no need to consider state’s collapse.) State’s dynamics of some brain’s function (psychological function) <math>F</math> is described by the quantum..."
Store:QLMfr18
Gianfranco moved page Store:QLMfr8 to Store:QLMfr18 without leaving a redirect
mStore:QLMfr18
Created page with "===11.3. Psychological functions=== Now, we turn to the model presented in Section 10. A neural network is modeled as a compound quantum system; its state is presented in tensor product of single-neuron state spaces. Brain’s functions perform self-measurements modeled within theory of open quantum systems. (There is no need to consider state’s collapse.) State’s dynamics of some brain’s function (psychological function) <math>F</math> is described by the quantum..."
Store:QLMit18
Created page with "===11.3. Psychological functions=== Now, we turn to the model presented in Section 10. A neural network is modeled as a compound quantum system; its state is presented in tensor product of single-neuron state spaces. Brain’s functions perform self-measurements modeled within theory of open quantum systems. (There is no need to consider state’s collapse.) State’s dynamics of some brain’s function (psychological function) <math>F</math> is described by the quantum..."
Store:QLMen18
Created page with "===11.3. Psychological functions=== Now, we turn to the model presented in Section 10. A neural network is modeled as a compound quantum system; its state is presented in tensor product of single-neuron state spaces. Brain’s functions perform self-measurements modeled within theory of open quantum systems. (There is no need to consider state’s collapse.) State’s dynamics of some brain’s function (psychological function) <math>F</math> is described by the quantum..."
Store:QLMes17
Created page with "==11. Compound biosystems== ===11.1. Entanglement of information states of biosystems=== The state space <math>{\mathcal{H}}</math> of the biosystem <math>S</math> consisting of the subsystems <math>S_j,j=1,2,....n</math>, is the tensor product of subsystems’ state spaces<math>{\mathcal{H}}_j</math> , so {| width="80%" | |- | width="33%" |'''<big>*</big>''' | width="33%" |<math>\Im=\Im_1\otimes....\otimes\Im_n</math> | width="33%" align="right" |<math>(31)</math>..."
Store:QLMde17
Created page with "==11. Compound biosystems== ===11.1. Entanglement of information states of biosystems=== The state space <math>{\mathcal{H}}</math> of the biosystem <math>S</math> consisting of the subsystems <math>S_j,j=1,2,....n</math>, is the tensor product of subsystems’ state spaces<math>{\mathcal{H}}_j</math> , so {| width="80%" | |- | width="33%" |'''<big>*</big>''' | width="33%" |<math>\Im=\Im_1\otimes....\otimes\Im_n</math> | width="33%" align="right" |<math>(31)</math>..."
Store:QLMfr17
Created page with "==11. Compound biosystems== ===11.1. Entanglement of information states of biosystems=== The state space <math>{\mathcal{H}}</math> of the biosystem <math>S</math> consisting of the subsystems <math>S_j,j=1,2,....n</math>, is the tensor product of subsystems’ state spaces<math>{\mathcal{H}}_j</math> , so {| width="80%" | |- | width="33%" |'''<big>*</big>''' | width="33%" |<math>\Im=\Im_1\otimes....\otimes\Im_n</math> | width="33%" align="right" |<math>(31)</math>..."
Store:QLMit17
Created page with "==11. Compound biosystems== ===11.1. Entanglement of information states of biosystems=== The state space <math>{\mathcal{H}}</math> of the biosystem <math>S</math> consisting of the subsystems <math>S_j,j=1,2,....n</math>, is the tensor product of subsystems’ state spaces<math>{\mathcal{H}}_j</math> , so {| width="80%" | |- | width="33%" |'''<big>*</big>''' | width="33%" |<math>\Im=\Im_1\otimes....\otimes\Im_n</math> | width="33%" align="right" |<math>(31)</math>..."
Store:QLMen17
Created page with "==11. Compound biosystems== ===11.1. Entanglement of information states of biosystems=== The state space <math>{\mathcal{H}}</math> of the biosystem <math>S</math> consisting of the subsystems <math>S_j,j=1,2,....n</math>, is the tensor product of subsystems’ state spaces<math>{\mathcal{H}}_j</math> , so {| width="80%" | |- | width="33%" |'''<big>*</big>''' | width="33%" |<math>\Im=\Im_1\otimes....\otimes\Im_n</math> | width="33%" align="right" |<math>(31)</math>..."
Store:QLMes16
Created page with "==9. Epigenetic evolution within theory of open quantum systems== In paper (Asano et al., 2012b), a general model of the epigenetic evolution unifying neo-Darwinian with neo-Lamarckian approaches was created in the framework of theory of open quantum systems. The process of evolution is represented in the form of ''adaptive dynamics'' given by the quantum(-like) master equation describing the dynamics of the information state of epigenome in the process of interaction wi..."
Store:QLMde16
Created page with "==9. Epigenetic evolution within theory of open quantum systems== In paper (Asano et al., 2012b), a general model of the epigenetic evolution unifying neo-Darwinian with neo-Lamarckian approaches was created in the framework of theory of open quantum systems. The process of evolution is represented in the form of ''adaptive dynamics'' given by the quantum(-like) master equation describing the dynamics of the information state of epigenome in the process of interaction wi..."
Store:QLMfr16
Created page with "==9. Epigenetic evolution within theory of open quantum systems== In paper (Asano et al., 2012b), a general model of the epigenetic evolution unifying neo-Darwinian with neo-Lamarckian approaches was created in the framework of theory of open quantum systems. The process of evolution is represented in the form of ''adaptive dynamics'' given by the quantum(-like) master equation describing the dynamics of the information state of epigenome in the process of interaction wi..."
Store:QLMit16
Created page with "==9. Epigenetic evolution within theory of open quantum systems== In paper (Asano et al., 2012b), a general model of the epigenetic evolution unifying neo-Darwinian with neo-Lamarckian approaches was created in the framework of theory of open quantum systems. The process of evolution is represented in the form of ''adaptive dynamics'' given by the quantum(-like) master equation describing the dynamics of the information state of epigenome in the process of interaction wi..."
Store:QLMen16
Created page with "==9. Epigenetic evolution within theory of open quantum systems== In paper (Asano et al., 2012b), a general model of the epigenetic evolution unifying neo-Darwinian with neo-Lamarckian approaches was created in the framework of theory of open quantum systems. The process of evolution is represented in the form of ''adaptive dynamics'' given by the quantum(-like) master equation describing the dynamics of the information state of epigenome in the process of interaction wi..."
Quantum-like modeling in biology with open quantum systems and instruments - en
no edit summary
−21,304
Store:QLMes15
Created page with "===8.3. Operation of biological functions through decoherence=== To make the previous considerations concrete, let us consider a pure quantum state as the initial state. Suppose that a biological function <math>F</math> is dichotomous, <math>F=0,1 </math>, and it is symbolically represented by the Hermitian operator that is diagonal in orthonormal basis <math>|0\rangle</math>,<math>|1\rangle</math> . (We consider the two dimensional state space — the qubit space.) Le..."
Store:QLMde15
Created page with "===8.3. Operation of biological functions through decoherence=== To make the previous considerations concrete, let us consider a pure quantum state as the initial state. Suppose that a biological function <math>F</math> is dichotomous, <math>F=0,1 </math>, and it is symbolically represented by the Hermitian operator that is diagonal in orthonormal basis <math>|0\rangle</math>,<math>|1\rangle</math> . (We consider the two dimensional state space — the qubit space.) Le..."
Store:QLMfr15
Created page with "===8.3. Operation of biological functions through decoherence=== To make the previous considerations concrete, let us consider a pure quantum state as the initial state. Suppose that a biological function <math>F</math> is dichotomous, <math>F=0,1 </math>, and it is symbolically represented by the Hermitian operator that is diagonal in orthonormal basis <math>|0\rangle</math>,<math>|1\rangle</math> . (We consider the two dimensional state space — the qubit space.) Le..."
Store:QLMit15
Created page with "===8.3. Operation of biological functions through decoherence=== To make the previous considerations concrete, let us consider a pure quantum state as the initial state. Suppose that a biological function <math>F</math> is dichotomous, <math>F=0,1 </math>, and it is symbolically represented by the Hermitian operator that is diagonal in orthonormal basis <math>|0\rangle</math>,<math>|1\rangle</math> . (We consider the two dimensional state space — the qubit space.) Le..."
Store:QLMen15
Created page with "===8.3. Operation of biological functions through decoherence=== To make the previous considerations concrete, let us consider a pure quantum state as the initial state. Suppose that a biological function <math>F</math> is dichotomous, <math>F=0,1 </math>, and it is symbolically represented by the Hermitian operator that is diagonal in orthonormal basis <math>|0\rangle</math>,<math>|1\rangle</math> . (We consider the two dimensional state space — the qubit space.) Le..."
Store:QLMes14
Created page with "===8.2. Biological functions in the quantum Markov framework=== We turn to the open system dynamics with the GKSL-equation. In our modeling, Hamiltonian <math>\widehat{\mathcal{H}}</math> and Lindbladian <math>\widehat{{L}}</math> represent some special ''biological function'' <math>F</math> (see Khrennikov et al., 2018) for details. Its functioning results from interaction of internal and external information flows. In Sections 10, 11.3, <math>F</math> is some ''..."