Related Experiment Video
Updated: Jan 19, 2026

Rabbit Embryo Thawing: A Warming Procedure to Recover Cryopreserved Rabbit Embryos for Embryo Transfer
The effect of catheter rotation during its withdrawal on frozen thawed embryo-transfer cycles outcomes: A
Maryam Eftekhar1, Lida Saeed1,2, Masrooreh Hoseini1
1Yazd Reasearch and Clinical Center for Infertility, Yazd Reproductive Science Institute, Shahid Sadoughi University, Yazd, Iran.
Background:
Embryo transfer (ET) is the last and the most clinical process in assisted reproductive technology cycle. It has been suggested that cervical mucus interacts with an adequate embryo transfer in different ways. A few studies showed that catheter rotation could discharge mucus entrapped in the embryo to neutralize embryo displacement.
Objective:
The aim of this present study was to compare the outcome of frozen embryo transfer (FET) based on catheter rotation during withdrawal.
Materials And Methods:
In this case-control study, the clinical documents of 240 women who experienced frozen embryo transfer cycles were reviewd. The subjects were divided into two groups (n = 120/each), including A) the rotation treatment group (360°) that underwent ET using catheter rotation and B) the control group including the subjects who experienced ET with no catheter rotation. Clinical and chemical pregnancies and implantation rates were compared between two groups.
Results:
Results showed that there is no significant difference between the basic clinical and demographic features of both groups (p 0.05). A significant difference was observed in terms of the rate of chemical pregnancy between groups (21.7% vs 43.3%, p = 0.001 respectively). In addition, the rate of clinical pregnancy was significantly higher in study group than the control (33.35% vs 14.2%, p = 0.002 respectively).
Conclusion:
Our results demonstrated that catheter rotation during withdrawal increased the implantation rate and clinical pregnancy.
Related Concept Videos
02:31Rabbit Embryo Thawing: A Warming Procedure to Recover Cryopreserved Rabbit Embryos for Embryo Transfer
Degassing Liquids with Freeze-Pump-Thaw Cycling
Degassing refers to the process by which dissolved gases are removed from a liquid. The presence of dissolved gases such as oxygen or carbon dioxide can impede chemical reactions that utilize sensitive reagents, interfere with spectroscopic measurements, or can induce unwanted bubble formation.
07:02Minimally Invasive Embryo Transfer and Embryo Vitrification at the Optimal Embryo Stage in Rabbit Model
06:46Use of Freeze-thawed Embryos for High-efficiency Production of Genetically Modified Mice
04:02Embryo Transfer Into Rabbit: A Procedure for Laparoscopy-Guided Transfer of Embryos Into Oviduct of Ovulating Recipient Female Rabbit Model
05:41Embryo Transfer Surgery via Laparotomy in Gilts
