University of California, Davis researchers have developed a brain-computer interface (BCI) that enables computer cursor control and clicking, using neural signals from the speech motor cortex. One ...
This improved motion and touch sensing would allow SCI patients to regain autonomy and ownership over their paralyzed limbs and more easily control them while completing tasks in their everyday lives.
Brain-computer interfaces (BCIs) have the potential to make life easier for people with motor or speech disorders, allowing them to manipulate prosthetic limbs and employ computers, among other uses.
Researchers used artificial intelligence to obtain a more objective understanding of cell growth and division without preconceived assumptions. Using a deep-learning neural network, they were able to ...
The list of things that computers can understand about humans gets longer everyday. For example there’s a company called Emotient that offers an API that will scan video, identify the location of one ...
Scientists from The University of Tokyo Institute of Industrial Science have designed a machine learning algorithm to predict the size of an individual cell as it grows and divides. By using an ...
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