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SMAC Corp fopi
Proposed anticontrollers to introduce chaos in the biological models of diseases
Fopi, supplied by SMAC Corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/whale+optimization+algorithm+based+fopi+controllers/fopi/pmc09236268-100-48-2
Average 90 stars, based on 1 article reviews
fopi - by Bioz Stars, 2026-09
90/100 stars

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1) Product Images from "Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases"

Article Title: Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases

Journal: Chaos, solitons, and fractals

doi: 10.1016/j.chaos.2021.111419

Proposed anticontrollers to introduce chaos in the biological models of diseases
Figure Legend Snippet: Proposed anticontrollers to introduce chaos in the biological models of diseases

Techniques Used: Introduce

Comparative analysis of the designed anticontrollers to induce chaos
Figure Legend Snippet: Comparative analysis of the designed anticontrollers to induce chaos

Techniques Used: Generated

Related Articles

Introduce:

Article Title: Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases
Article Snippet: SSSFAC 1 0.9737 Initially stable trajectories turn chaotic after addition of controller at 100s. ( ) FOPI SMAC 1 0.20504 Initially periodic trajectories turn chaotic after addition of controller at 100s ( ) The EEG signals extracted from the central and temporal lobes of the cerebral cortex display periodic or stable dynamics on the onset of FOPI that destroys the normal process of the brain.

Generated:

Article Title: Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases
Article Snippet: SSSFAC 1 0.9737 Initially stable trajectories turn chaotic after addition of controller at 100s. ( ) FOPI SMAC 1 0.20504 Initially periodic trajectories turn chaotic after addition of controller at 100s ( ) The EEG signals extracted from the central and temporal lobes of the cerebral cortex display periodic or stable dynamics on the onset of FOPI that destroys the normal process of the brain.

Virus:

Article Title: Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases
Article Snippet: SSSFAC 1 0.9737 Initially stable trajectories turn chaotic after addition of controller at 100s. ( ) FOPI SMAC 1 0.20504 Initially periodic trajectories turn chaotic after addition of controller at 100s ( ) The EEG signals extracted from the central and temporal lobes of the cerebral cortex display periodic or stable dynamics on the onset of FOPI that destroys the normal process of the brain.

Infection:

Article Title: Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases
Article Snippet: SSSFAC 1 0.9737 Initially stable trajectories turn chaotic after addition of controller at 100s. ( ) FOPI SMAC 1 0.20504 Initially periodic trajectories turn chaotic after addition of controller at 100s ( ) The EEG signals extracted from the central and temporal lobes of the cerebral cortex display periodic or stable dynamics on the onset of FOPI that destroys the normal process of the brain.

Concentration Assay:

Article Title: Control and Anticontrol of chaos in Fractional-order models of Diabetes, HIV, Dengue, Migraine, Parkinson’s and Ebola Virus diseases
Article Snippet: SSSFAC 1 0.9737 Initially stable trajectories turn chaotic after addition of controller at 100s. ( ) FOPI SMAC 1 0.20504 Initially periodic trajectories turn chaotic after addition of controller at 100s ( ) The EEG signals extracted from the central and temporal lobes of the cerebral cortex display periodic or stable dynamics on the onset of FOPI that destroys the normal process of the brain.



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