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New tool reveals what happens in the brain when we learn

New tool reveals what happens in the brain when we learn

Scientists have long been trying to understand how the brain learns. Now, there is a new tool that can help them see what happens in the brain when we learn.

The tool is called fMRI, or functional magnetic resonance imaging. It can show which parts of the brain are active when we are doing different tasks.

For example, when we are reading, the part of the brain that controls our eyesight is active. When we are listening to music, the part of the brain that controls our hearing is active.

This is the first time that scientists have been able to see how the brain learns in real time.

The tool could help scientists understand how the brain changes when we learn new things. It could also help them understand how diseases like Alzheimer’s disease and dementia affect the brain.

The tool is still new, and scientists are still learning how to use it. But it has the potential to revolutionize our understanding of the brain.

A new tool has been developed which has provided insight into how the brain learns. The tool, which is based on machine learning, is able to ‘read’ brain activity and predict what is happening in someone’s mind.

The tool has been found to be accurate in predicting what is happening in the brain when people are carrying out simple tasks, such as looking at pictures or moving their hands. The findings could help to improve our understanding of how the brain learns and could lead to better methods of teaching in the future.

The tool works by analysing the activity of neurons in the brain. It is able to identify patterns of activity which correspond to different thoughts and activities.

The researchers who developed the tool say that it could be used to help people with learning difficulties, as it could be used to identify what is happening in the brain when they are struggling to learn.

The tool is still in its early stages and more research is needed to confirm its accuracy. However, the findings so far are promising and could lead to a better understanding of how the brain learns.

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