1. INTRODUCTION
Estimating motion in live cell imaging is a fundamental task to analyse dynamic properties of biological phenomena [1], [2]. The difficulties arise from the variety of situations encountered in microscopy images. Indeed, we have to deal with different imaging modalities (e.g. fluorescence microscopy, contrast-phase imaging) in order to observe interacting structures with different sizes and shapes such as cells, vesicles, microtubules, with different types of motion and deformation. A lot of works have addressed specific biological issues [3], [4], [5], [6], but none general framework is currently available. In this paper, we propose a novel optical flow estimation method providing accurate motion fields in various challenging conditions occuring in live cell image sequences.