A review of progress in single particle tracking: from methods to biophysical insights
Optical microscopy has for centuries been a key tool to study living cells with minimum
invasiveness. The advent of single molecule techniques over the past two decades has …
invasiveness. The advent of single molecule techniques over the past two decades has …
Lévy walks
Random walk is a fundamental concept with applications ranging from quantum physics to
econometrics. Remarkably, one specific model of random walks appears to be ubiquitous …
econometrics. Remarkably, one specific model of random walks appears to be ubiquitous …
Objective comparison of methods to decode anomalous diffusion
Deviations from Brownian motion leading to anomalous diffusion are found in transport
dynamics from quantum physics to life sciences. The characterization of anomalous diffusion …
dynamics from quantum physics to life sciences. The characterization of anomalous diffusion …
Anomalous diffusion models and their properties: non-stationarity, non-ergodicity, and ageing at the centenary of single particle tracking
Modern microscopic techniques following the stochastic motion of labelled tracer particles
have uncovered significant deviations from the laws of Brownian motion in a variety of …
have uncovered significant deviations from the laws of Brownian motion in a variety of …
Anomalous transport in the crowded world of biological cells
A ubiquitous observation in cell biology is that the diffusive motion of macromolecules and
organelles is anomalous, and a description simply based on the conventional diffusion …
organelles is anomalous, and a description simply based on the conventional diffusion …
Theoretical perspective on the glass transition and amorphous materials
A theoretical perspective is provided on the glass transition in molecular liquids at thermal
equilibrium, on the spatially heterogeneous and aging dynamics of disordered materials …
equilibrium, on the spatially heterogeneous and aging dynamics of disordered materials …
Stochastic models of intracellular transport
The interior of a living cell is a crowded, heterogenuous, fluctuating environment. Hence, a
major challenge in modeling intracellular transport is to analyze stochastic processes within …
major challenge in modeling intracellular transport is to analyze stochastic processes within …
Protein crowding in lipid bilayers gives rise to non-Gaussian anomalous lateral diffusion of phospholipids and proteins
Biomembranes are exceptionally crowded with proteins with typical protein-to-lipid ratios
being around 1∶ 50− 1∶ 100. Protein crowding has a decisive role in lateral membrane …
being around 1∶ 50− 1∶ 100. Protein crowding has a decisive role in lateral membrane …
Strange kinetics of single molecules in living cells
For centuries, physical imaging tools have been opening new frontiers in biology. The
discovery of the cell nucleus by Scottish botanist Robert Brown was made possible by early …
discovery of the cell nucleus by Scottish botanist Robert Brown was made possible by early …
[LIBRO][B] Stochastic processes in cell biology
PC Bressloff - 2014 - Springer
One of the major challenges in modern biology is to understand how the molecular
components of a living cell operate in a highly noisy environment. What are the specific …
components of a living cell operate in a highly noisy environment. What are the specific …