Data:academicpapers.json: Difference between revisions
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"description": "A significant challenge for neuroscientists is to determine how both electrical and chemical signals affect the activity of cells and circuits and how the nervous system subsequently translates that activity into behavior. Remote, bidirectional manipulation of those signals with high spatiotemporal precision is an ideal approach to addressing that challenge" | "description": "A significant challenge for neuroscientists is to determine how both electrical and chemical signals affect the activity of cells and circuits and how the nervous system subsequently translates that activity into behavior. Remote, bidirectional manipulation of those signals with high spatiotemporal precision is an ideal approach to addressing that challenge" | ||
}, | }, | ||
{ | { | ||
"id": "item1", | "id": "item1", | ||
Revision as of 11:26, 29 December 2024
[
{
"name": "Remote Control of Neuronal Signaling",
"url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC3082452/",
"author": "Sarah C Rogan, Bryan L Roth",
"publishDate": "2011-06",
"description": "A significant challenge for neuroscientists is to determine how both electrical and chemical signals affect the activity of cells and circuits and how the nervous system subsequently translates that activity into behavior. Remote, bidirectional manipulation of those signals with high spatiotemporal precision is an ideal approach to addressing that challenge"
},
{
"id": "item1",
"name": "Example 1",
"url": "https://example1.com",
"author": "Author A",
"date": "2024-12-25"
},
{
"id": "item2",
"name": "Another Example",
"url": "https://example2.com",
"author": "Author B",
"date": "2024-12-26"
},
{
"id": "item3",
"name": "Example 3",
"url": "https://example3.com",
"author": "Author A",
"date": "2024-12-27"
}
]