Related Experiment Video
Updated: Aug 7, 2026

Morphometric Protocol for the Objective Assessment of Blastocyst Behavior During Vitrification and Warming Steps
Published on: February 28, 2019
Quantitative grading of a human blastocyst: optimal inner cell mass size and shape
K S Richter1, D C Harris, S T Daneshmand
1Fertility Center of Las Vegas, Las Vegas, Nevada 89117, USA.
Objective:
To investigate the predictive value of quantitative measurements of blastocyst morphology on subsequent implantation rates after transfer.
Design:
Prospective observational study.
Setting:
Private assisted reproductive technology center.
Patient(S):
One hundred seventy-four IVF patients receiving transfers of expanded blastocyst-stage embryos on day 5 (n = 112) or day 6 (n = 62) after oocyte retrieval.
Intervention(S):
None.
Main Outcome Measure(S):
Blastocyst diameter, number of trophectoderm cells, inner cell mass (ICM) size, ICM shape, and implantation and pregnancy rates.
Result(S):
Blastocyst diameter and trophectoderm cell numbers were unrelated to implantation rates. Day 5 expanded blastocysts with ICMs of >4,500 microm(2) implanted at a higher rate than did those with smaller ICMs (55% vs. 31%). Day 5 expanded blastocysts with slightly oval ICMs implanted at a higher rate (58%) compared with those with either rounder ICMs (7%) or more elongated ICMs (33%). Implantation rates were highest (71%) for embryos with both optimal ICM size and shape. Pregnancy rates were higher for day 5 transfers of optimally shaped ICMs compared with day 5 transfers of optimally sized ICMs.
Conclusion(S):
Quantitative measurements of the inner cell mass are highly indicative of blastocyst implantation potential. Blastocysts with relatively large and/or slightly oval ICMs are more likely to implant than other blastocysts.

