The tug-of-war model of motor-driven cargo transport is formulated as an intermittent trapping process. An immobile trap, representing the cellular machinery that sequesters a motor-driven cargo for eventual use, is located somewhere within a microtubule track. A particle representing a motor-driven cargo that moves randomly with a forward bias is introduced at the beginning of the track. The particle switches randomly between a fast moving phase and a slow moving phase. When in the slow moving phase, the particle can be captured by the trap. To account for the possibility the particle avoids the trap, an absorbing boundary is placed at the end of the track. Two local signaling mechanisms—intended to improve the chances of capturing the tar...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
Human thoughts and behavior are the outcome of communication between neurons in our brains. There is...
Most models designed to study the bidirectional movement of cargos as they are driven by molecular m...
The tug-of-war model of motor-driven cargo transport is formulated as an intermittent trapping proce...
The tug-of-war model of motor-driven cargo transport is formulated as an intermittent trapping proce...
We formulate the tug-of-war model of microtubule cargo transport by multiple molecular motors as an ...
Synaptic cargo trafficking is essential for synapse formation, function and plasticity. In order to ...
We develop a mathematical model of the motor-based transport and delivery of vesicles to synaptic ta...
We present a quasi-steady state reduction of a linear reaction-hyperbolic master equation describing...
Eukaryotic cells are divided into a complex system of compartments, with their spatial organization ...
Intracellular transport via the microtubule motors kinesin and dynein plays an important role in mai...
International audienceNoise affects all biological processes from molecules to cells, organisms and ...
The brain is a complex organ, responsible for the most important tasks performed by humans and anima...
The spatial organization of the cell depends upon intracellular trafficking of cargos hauled along m...
We present a stochastic model of NMDA N-methyl d-aspartate receptor transport along a dendrite prior...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
Human thoughts and behavior are the outcome of communication between neurons in our brains. There is...
Most models designed to study the bidirectional movement of cargos as they are driven by molecular m...
The tug-of-war model of motor-driven cargo transport is formulated as an intermittent trapping proce...
The tug-of-war model of motor-driven cargo transport is formulated as an intermittent trapping proce...
We formulate the tug-of-war model of microtubule cargo transport by multiple molecular motors as an ...
Synaptic cargo trafficking is essential for synapse formation, function and plasticity. In order to ...
We develop a mathematical model of the motor-based transport and delivery of vesicles to synaptic ta...
We present a quasi-steady state reduction of a linear reaction-hyperbolic master equation describing...
Eukaryotic cells are divided into a complex system of compartments, with their spatial organization ...
Intracellular transport via the microtubule motors kinesin and dynein plays an important role in mai...
International audienceNoise affects all biological processes from molecules to cells, organisms and ...
The brain is a complex organ, responsible for the most important tasks performed by humans and anima...
The spatial organization of the cell depends upon intracellular trafficking of cargos hauled along m...
We present a stochastic model of NMDA N-methyl d-aspartate receptor transport along a dendrite prior...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
Human thoughts and behavior are the outcome of communication between neurons in our brains. There is...
Most models designed to study the bidirectional movement of cargos as they are driven by molecular m...