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Updated: Feb 3, 2026

Techniques for Imaging Ca2+ Signaling in Human Sperm
Published on: June 16, 2010
Hydrodynamic Clustering of Human Sperm in Viscoelastic Fluids
Kenta Ishimoto1,2, Eamonn A Gaffney3
1Wolfson Centre for Mathematical Biology, Mathematical Institute, University of Oxford, Oxford, OX2 6GG, UK. ishimoto@maths.ox.ac.uk.
Abstract:
We have numerically investigated sperm clustering behaviours, modelling cells as superpositions of regularised flow singularities, coarse-grained from experimentally obtained digital microscopy of human sperm, both in watery medium and a highly viscous-weakly elastic, methylcellulose medium. We find that the cell yaw and cell pulling dynamics inhibit clustering in low viscosity media. In contrast clustering is readily visible in simulations modelling sperm within a methylcellulose medium, in line with previous observations that bovine sperm clustering is much more prominent in a rheological polyacrylamide medium. Furthermore, the fine-scale details of sperm flagellar movement substantially impact large-scale collective behaviours, further motivating the need for the digital microscopy and characterization of sperm to understand their dynamics.
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