Author:
Tufoni Cristina,Battistella Alice,Luppi Stefania,Boscolo Rita,Ricci Giuseppe,Lazzarino Marco,Andolfi Laura
Abstract
Abstract
Background
One of the causes of male infertility is associated with altered spermatozoa motility. These sperm features are frequently analyzed by image-based approaches, which, despite allowing the acquisition of crucial parameters to assess sperm motility, they are unable to provide details regarding the flagellar beating forces, which have been neglected until now.
Results
In this work we exploit Fluidic Force Microscopy to investigate and quantify the forces associated with the flagellar beating frequencies of human spermatozoa. The analysis is performed on two groups divided according to the progressive motility of semen samples, as identified by standard clinical protocols. In the first group, 100% of the spermatozoa swim linearly (100% progressive motility), while, in the other, spermatozoa show both linear and circular motility (identified as 80 − 20% progressive motility). Significant differences in flagellar beating forces between spermatozoa from semen sample with different progressive motility are observed. Particularly, linear motile spermatozoa exhibit forces higher than those with a circular movement.
Conclusions
This research can increase our understanding of sperm motility and the role of mechanics in fertilization, which could help us unveil some of the causes of idiopathic male infertility.
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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1. Learning sperm cells part segmentation with class-specific data augmentation;2024 16th International Conference on Human System Interaction (HSI);2024-07-08