Title of article :
Single Quantum Dot Tracking Based on Perceptual Grouping Using Minimal Paths in a Spatiotemporal Volume
Author/Authors :
S. Bonneau، نويسنده , , M. Dahan، نويسنده , , and L. D. Cohen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
Semiconductor quantum dots (QDs) are new fluorescent
probes with great promise for ultrasensitive biological
imaging. When detected at the single-molecule level, QD-tagged
molecules can be observed and tracked in the membrane of live
cells over unprecedented durations. The motion of these individual
molecules, recorded in sequences of fluorescence images, can reveal
aspects of the dynamics of cellular processes that remain
hidden in conventional ensemble imaging. Due to QD complex
optical properties, such as fluorescence intermittency, the quantitative
analysis of these sequences is, however, challenging and
requires advanced algorithms. We present here a novel approach,
which, instead of a frame by frame analysis, is based on perceptual
grouping in a spatiotemporal volume. By applying a detection
process based on an image fluorescence model, we first obtain an
unstructured set of points. Individual molecular trajectories are
then considered as minimal paths in a Riemannian metric derived
from the fluorescence image stack. These paths are computed with
a variant of the fast marching method and few parameters are
required. We demonstrate the ability of our algorithm to track
intermittent objects both in sequences of synthetic data and in
experimental measurements obtained with individual QD-tagged
receptors in the membrane of live neurons. While developed
for tracking QDs, this method can, however, be used with any
fluorescent probes.
Keywords :
active contours , cellular imaging , minimal paths , Perceptual grouping , single-molecule tracking (SMT). , group marching , Quantum dot , energy minimization
Journal title :
IEEE TRANSACTIONS ON IMAGE PROCESSING
Journal title :
IEEE TRANSACTIONS ON IMAGE PROCESSING