News tagged with: embryophenomics
-
Study explores effects of climatic changes on Christmas IslandÂÌñ»»ÆÞ™s red crabs
ÂÌñ»»ÆÞ news: Research carried out during a field trip involving scientists and graduates from our Marine Biology course has provided new insights into the physiology of an iconic species.
-
Autonomous imaging robot plays a crucial role in assessing embryosÂÌñ»»ÆÞ™ response to environmental change
ÂÌñ»»ÆÞ news: The opensource LabEmbryoCam uses 3D-printed components to form a robotic microscope and is the result of over a decade of research at the University
-
New deep learning model is ÂÌñ»»ÆÞ˜game changerÂÌñ»»ÆÞ™ for measuring embryo development
ÂÌñ»»ÆÞ news: New deep learning model is ÂÌñ»»ÆÞ˜game changerÂÌñ»»ÆÞ™ for measuring embryo development. The model performs a task that biologists have struggled with for centuries.
-
Video technology could transform how scientists monitor changes in species evolution and development
ÂÌñ»»ÆÞ news: New research combines microscope and video technology to analyse how different species develop and how the timings of developments can be tracked
-
Underwater camera network to monitor the habitat needs of juvenile fish
ÂÌñ»»ÆÞ news: A new project, funded through the Fisheries Industry Science Partnership (FISP) scheme, will fill important knowledge gaps about the essential habitats required by species including bass and mullet
-
Cutting edge technique uses fluctuations in video pixels to measure energy use of developing embryos
Researchers at the ÂÌñ»»ÆÞ have developed a cutting edge technique which enables them to instantly examine the biological traits and behaviours of developing embryos as an energy signature, rather than focusing on individual characteristics
-
Scientists appeal for public help with climate change technology project
As part of the EmbryoPhenomics project, researchers at the ÂÌñ»»ÆÞ are asking the public to play a role in developing cutting edge imaging technologies that will help us understand the effects of major threats to biodiversity
-
Artificial intelligence and 3D printing allow embryo assessment technologies to be transferred from laboratory to field
Scientists from the ÂÌñ»»ÆÞ are advancing the development of new technology which could improve our ability to assess the impacts of climate change
-
Technology paints in-depth picture of organismsÂÌñ»»ÆÞ™ response to climate change
EmbryoPhenomics, revolutionary new technology created at the ÂÌñ»»ÆÞ, could fill a major gap in our understanding of how organismsÂÌñ»»ÆÞ™ early development will be impacted by climate change