Keyphrases
Hyperpolarized
100%
Membrane Lipids
100%
Activated nucleotides
100%
Electromechanical Coupling
100%
Voltage Sensor Domain
100%
Cyclic nucleotide-gated Channel
100%
Helix
60%
Hyperpolarization
60%
Voltage-gated Ion Channels
40%
Molecular Dynamics Simulation
20%
Lipids
20%
Hydrophobic Interaction
20%
Pacemaker
20%
Occupancy
20%
Possible Mechanisms
20%
State Dependence
20%
Closed State
20%
Neuronal Cells
20%
Low Voltage
20%
Enhanced Sampling
20%
Cardiac Cells
20%
Lipid Molecules
20%
Open State
20%
Pore-forming
20%
Hydrogen Bonding Pattern
20%
Domain Switching
20%
Pore Gating
20%
Advanced Models
20%
Pore Opening
20%
Rhythmic Firing
20%
Coupling Mechanism
20%
Serine Residues
20%
Gate Charge
20%
Structural Simulation
20%
HCN1
20%
Downward Movement
20%
Modeling Strategy
20%
Ion Channel Structure
20%
α-helical
20%
Molecular Simulation Study
20%
Coupling Interface
20%
Domino Effect
20%
Hydrophilic Interaction
20%
Electromechanical Coupling Efficiency
20%
Biochemistry, Genetics and Molecular Biology
Electric Potential
100%
Membrane Lipid
100%
Excitation Contraction Coupling
100%
Cyclic Nucleotide-Gated Ion Channel
100%
Lipid
40%
Voltage-Gated Channel
40%
Channel Gating
20%
HCN1
20%
Chemical Phenomena
20%
Computer Simulation
20%
Serine
20%
Neuroscience
Membrane Lipid
100%
Excitation Contraction Coupling
100%
Cyclic Nucleotide-Gated Ion Channel
100%
Voltage-Gated Ion Channel
66%
Channel Gating
33%
Serine
33%
HCN1
33%
Chemistry
Membrane Lipid
100%
Cyclic Nucleotide
100%
Hydrogen Bonding
33%
Molecular Dynamics
33%
Coupling Reaction
33%
Serine Residue
33%
Hydrophilicity
33%
Engineering
Voltage Sensor
100%
Channel Structure
20%
Lipid Molecule
20%
Modeling Strategy
20%
Domino Effect
20%
Hydrophobic Interaction
20%
Computer Simulation
20%
Hydrophilicity
20%
Material Science
Electromechanical Coupling
100%
Hydrogen Bonding
33%
Molecular Simulation
33%
Serine
33%