<div><p>Motile eukaryotic cells migrate with directional persistence by alternating left and right turns, even in the absence of external cues. For example, <em>Dictyostelium discoideum</em> cells crawl by extending distinct pseudopods in an alternating right-left pattern. The mechanisms underlying this zig-zag behavior, however, remain unknown. Here we propose a new Excitable Cortex and Memory (EC&M) model for understanding the alternating, zig-zag extension of pseudopods. Incorporating elements of previous models, we consider the cell cortex as an excitable system and include global inhibition of new pseudopods while a pseudopod is active. With the novel hypothesis that pseudopod activity makes the local cortex temporarily more excitable ...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
Cell migration in the absence of external cues is well described by a correlated random walk. Most s...
Motile eukaryotic cells migrate with directional persistence by alternating left and right turns, ev...
Eukaryotic cells extend pseudopodia for movement. In the absence of external cues, cells move in ran...
Eukaryotic cells extend pseudopodia for movement. In the absence of external cues, cells move in ran...
Eukaryotic cells extend pseudopodia for movement. In the absence of external cues, cells move in ran...
Many amoeboid cells move by extending pseudopods. Here I present a new stochastic model for chemotax...
The path of moving eukaryotic cells depends on the kinetics and direction of extending pseudopods. A...
AbstractMany amoeboid cells move by extending pseudopods. Here I present a new stochastic model for ...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
Cell migration in the absence of external cues is well described by a correlated random walk. Most s...
Motile eukaryotic cells migrate with directional persistence by alternating left and right turns, ev...
Eukaryotic cells extend pseudopodia for movement. In the absence of external cues, cells move in ran...
Eukaryotic cells extend pseudopodia for movement. In the absence of external cues, cells move in ran...
Eukaryotic cells extend pseudopodia for movement. In the absence of external cues, cells move in ran...
Many amoeboid cells move by extending pseudopods. Here I present a new stochastic model for chemotax...
The path of moving eukaryotic cells depends on the kinetics and direction of extending pseudopods. A...
AbstractMany amoeboid cells move by extending pseudopods. Here I present a new stochastic model for ...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of eukaryotic chemotaxis remains unclear despite intensive study. The most frequently ...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
The mechanism of chemotaxis is one of the most interesting issues in modern cell biology. Recent wor...
Cell migration in the absence of external cues is well described by a correlated random walk. Most s...