Related Experiment Video
Updated: Sep 16, 2026

Mouse Oocyte In Vitro Maturation, Fertilization, and Culture of Preimplantation Embryos
Published on: May 29, 2026
Automation and autonomy in the IVF laboratory: concepts and implications for embryologists
Jacques Cohen1, Gerardo Mendizabal-Ruiz2, Giles Anthony Palmer3
1Conceivable Life Sciences, New York, NY, USA; IVF 2.0, Liverpool, UK; International IVF Initiative (I3), New York, NY, USA.
Abstract:
Automation is regarded as the next phase in the evolution of laboratory IVF. Despite technological advances, most laboratory procedures remain operator-dependent, contributing to variability in performance and outcomes. While automation has improved reproducibility and efficiency in many areas of medicine, its adoption in IVF has been slow. This review examines how automation may be integrated into IVF laboratories through a set of conceptual distinctions. Automation refers to the execution of procedural steps by machine-controlled systems, whereas autonomy describes the degree to which such systems can operate without human intervention. This review distinguishes between static automation, which maintains or monitors the laboratory environment, and dynamic automation, which manipulates biological material directly. This review also introduces the concepts of under- and over-automation, and considers the relationship between autonomy and technical complexity. These distinctions highlight the unique challenges of IVF, where procedures involve handling irreplaceable cells. Increasing automation does not necessarily imply increasing autonomy. Effective design must balance standardization with human oversight and intervention. Automation in IVF laboratories will likely progress gradually through integration of dynamic systems under continued human supervision. The central challenge will be to improve consistency and laboratory capacity while preserving clinical responsibility, trust in automation, and professional satisfaction.

