Cells exist in three dimensions, and they have a dynamic skeleton and filaments that help them maintain and stabilize their form and structure. The molecules that create the cellular cytoskeleton, ...
Just as the skeleton and muscles move the human body and hold its shape, all the cells of the body are stabilized and moved by a cellular skeleton. Unlike the vertebrate skeleton, this cellular ...
New research by University of Wisconsin-Madison scientists reveals how a cellular filament helps neural stem cells clear damaged and clumped proteins, an important step in eventually producing new ...
A new model describes the coordination of beating cilia, allowing reserchers to predict their functional behavior. Staff fom the Max Planck Institute for Dynamics and Self-Organization (MPIDS) ...
New research by University of Wisconsin-Madison scientists reveals how a cellular filament helps neural stem cells clear damaged and clumped proteins, an important step in eventually producing new ...
A new model describes the coordination of beating cilia allowing to predict their functional behavior. Researchers analyzed the formation of metachronal waves in arrays of cilia and how external cues ...
Just as the skeleton and muscles move the human body and hold its shape, the cells of the body are stabilized and moved by a cellular skeleton. This cellular skeleton is a dynamic structure, ...
Cilia are filamentous, hair-like structures that can be found on nearly all cells of the human body. Depending on the tissue, they fulfill a plethora of essential tasks, such as the transport of mucus ...