Three-dimensional sperm surface reconstruction: a novel approach to assessing sperm morphology. Academic Article uri icon

Overview

abstract

  • OBJECTIVE: To create a rapid, inexpensive, efficient, and reproducible real-time three-dimensional (3-D) analysis of viable spermatozoa. Previous studies have demonstrated that abnormal semen profiles are associated with a modest increase in the frequency of sperm chromosomal abnormalities, and that sperm with aberrations in the shape and contours of the head may be carriers of chromatinic defects. Although high-power magnification and enhanced video-generated magnification have been suggested, these techniques are inherently limited by the clarity of the image, the time required for the analysis, and the risk of variable head-positioning during imaging. DESIGN: In vitro experiment. SETTING: University-affiliated infertility research laboratory. PATIENT(S): Anonymous sperm donors. INTERVENTION(S): Individual motile sperm were identified, analyzed at ×600 magnification, and a 10-second digital video was obtained. MAIN OUTCOME MEASURE(S): Image-tracking software captured serial photographs of sperm from recorded videos. Images were automatically extracted from each video frame using enhanced correlation coefficient maximization; the general shape of the sperm was extracted via space-carving. The reconstructed image was rotated to permit viewing from any direction, and the final image was rendered through interpolation. RESULT(S): This technique yielded images that enable noninvasive, 3-D, real-time, in vitro assessment of sperm surface morphology. CONCLUSION(S): This proof-of-principle demonstrates that by keeping spermatozoa in a fluid environment, a 3-D sperm-surface reconstruction can be created. This technique can be automated, requires minimal computing power, and utilizes equipment already available in most embryology laboratories.

publication date

  • September 9, 2015

Research

keywords

  • Cell Shape
  • Image Interpretation, Computer-Assisted
  • Imaging, Three-Dimensional
  • Microscopy, Video
  • Spermatozoa

Identity

Scopus Document Identifier

  • 84945539557

Digital Object Identifier (DOI)

  • 10.1016/j.fertnstert.2015.08.024

PubMed ID

  • 26363386

Additional Document Info

volume

  • 104

issue

  • 6