TY - GEN
T1 - GUI Sustainable Model for Detection of Some Neurological Disorders based on the Effects of Potassium Ion Bifurcation
AU - Ishrat, Zaiba
AU - Ahmed, Taslima
AU - Srivastava, Ankit Kumar
AU - Chaudhary, Vishal
AU - Singh, Hitendra
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - Hodgkin & Huxley (H&H) model of the neuron cell is famous experimental achievement in the field of neurobiology. After this analysis of H&H neuron model, many other versions have been established, but neuroscientists use H&H equation as a role model for neuronal analysis. Due to this reason, this model can reproduce electrophysiological formulation at a desired range. The formulation of the H&H model on the excitable neuron is simulated in many research activities. But how the various resultants are related with abnormal condition of neurons is not established in research model. Various parameters of H&H model are responsible for a particular neurological condition or behavior are not experimented or clearly explained. Therefore, H&H equations variables and the responses are plotted for further research. It is reviewed from research that bifurcations of H&H parameter at a particular range can be related to abnormal condition of neuronal behavior such as AD, TBI, and PD etc. This paper can analyze the relationship of abnormal condition of neuron with the various specifications of H&H equations by using bifurcation rules. This paper also explains the effects of potassium inverse resistance on the response of neuron by proposing a simple modified GUI Sustainable Model of H&H model. Such analysis has importance because potassium signaling systems are responsible for some disease such as Alzheimer's disease (AD).
AB - Hodgkin & Huxley (H&H) model of the neuron cell is famous experimental achievement in the field of neurobiology. After this analysis of H&H neuron model, many other versions have been established, but neuroscientists use H&H equation as a role model for neuronal analysis. Due to this reason, this model can reproduce electrophysiological formulation at a desired range. The formulation of the H&H model on the excitable neuron is simulated in many research activities. But how the various resultants are related with abnormal condition of neurons is not established in research model. Various parameters of H&H model are responsible for a particular neurological condition or behavior are not experimented or clearly explained. Therefore, H&H equations variables and the responses are plotted for further research. It is reviewed from research that bifurcations of H&H parameter at a particular range can be related to abnormal condition of neuronal behavior such as AD, TBI, and PD etc. This paper can analyze the relationship of abnormal condition of neuron with the various specifications of H&H equations by using bifurcation rules. This paper also explains the effects of potassium inverse resistance on the response of neuron by proposing a simple modified GUI Sustainable Model of H&H model. Such analysis has importance because potassium signaling systems are responsible for some disease such as Alzheimer's disease (AD).
KW - Bifurcation Range
KW - Hodgkin-Huxley (H&H)
KW - Sustainable model
UR - https://www.scopus.com/pages/publications/105013623568
U2 - 10.1109/SUSTAINED63638.2024.11074085
DO - 10.1109/SUSTAINED63638.2024.11074085
M3 - Conference contribution
AN - SCOPUS:105013623568
T3 - 2024 1st International Conference on Sustainability and Technological Advancements in Engineering Domain, SUSTAINED 2024
SP - 433
EP - 436
BT - 2024 1st International Conference on Sustainability and Technological Advancements in Engineering Domain, SUSTAINED 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 1st International Conference on Sustainability and Technological Advancements in Engineering Domain, SUSTAINED 2024
Y2 - 13 December 2024 through 14 December 2024
ER -