Row 4955
Content Data
This page contains data entry 4955 from the Axioma AXP content repository. The structured data below represents the complete record for this entry.
One of the mysteries in neuroscience is how tools that capture relatively few components of brain activity have allowed scientists to predict behavior in mice, while much of the complexity of a mouse brain is “irrelevant background noise,” says Rockefeller University physicist [Alipasha Vaziri](https://www.rockefeller.edu/our-scientists/heads-of-laboratories/1132-alipasha-vaziri/).
In 2021, Vaziri’s lab developed [light-beads microscopy](https://www.rockefeller.edu/news/30982-new-microscopy-technique-reveals-activity-of-one-million-neurons-across-the-mouse-brain/) (LBM), which enabled a 100-fold increase in the number of neurons that could be simultaneously recorded.
LBM will be used in the [Rockefeller Brain Observatory](https://www.rockefeller.edu/research/interdisciplinary-centers/kavli/initiatives/), a new initiative spearheaded by Vaziri to make pioneering, commercially unavailable instruments accessible to neuroscientists “that can do things that are otherwise impossible,” Vaziri says.
Vaziri and his team are also helping researchers at several universities, including at Stanford University and UCL-London, to replicate LBM technology in their own neuroscience labs. The data they’ve amassed from the current study is also available for analysis by other researchers.
Read more [here](https://magazine.mindplex.ai/mp_news/new-microscopy-technique-reveals-activity-of-one-million-neurons-across-the-mouse-brain/).
| Field | Value |
|---|---|
| text | One of the mysteries in neuroscience is how tools that capture relatively few components of brain activity have allowed scientists to predict behavior in mice, while much of the complexity of a mouse brain is “irrelevant background noise,” says Rockefeller University physicist [Alipasha Vaziri](https://www.rockefeller.edu/our-scientists/heads-of-laboratories/1132-alipasha-vaziri/). In 2021, Vaziri’s lab developed [light-beads microscopy](https://www.rockefeller.edu/news/30982-new-microscopy-tec… |
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| datetime | 2024-04-24 |
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Raw Record
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"text": "One of the mysteries in neuroscience is how tools that capture relatively few components of brain activity have allowed scientists to predict behavior in mice, while much of the complexity of a mouse brain is “irrelevant background noise,” says Rockefeller University physicist [Alipasha Vaziri](https://www.rockefeller.edu/our-scientists/heads-of-laboratories/1132-alipasha-vaziri/).\n\nIn 2021, Vaziri’s lab developed [light-beads microscopy](https://www.rockefeller.edu/news/30982-new-microscopy-technique-reveals-activity-of-one-million-neurons-across-the-mouse-brain/) (LBM), which enabled a 100-fold increase in the number of neurons that could be simultaneously recorded.\n\nLBM will be used in the [Rockefeller Brain Observatory](https://www.rockefeller.edu/research/interdisciplinary-centers/kavli/initiatives/), a new initiative spearheaded by Vaziri to make pioneering, commercially unavailable instruments accessible to neuroscientists “that can do things that are otherwise impossible,” Vaziri says. \n\nVaziri and his team are also helping researchers at several universities, including at Stanford University and UCL-London, to replicate LBM technology in their own neuroscience labs. The data they’ve amassed from the current study is also available for analysis by other researchers.\n\nRead more [here](https://magazine.mindplex.ai/mp_news/new-microscopy-technique-reveals-activity-of-one-million-neurons-across-the-mouse-brain/). ",
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Entry Information
- Entry ID: 4955
- Repository: Axioma AXP
- Dataset: arrmlet/reddit_dataset_36
- Total Entries: 100,000