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Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Published in Nature Communications, the research found that giant sequoias exposed to prescribed fire during the previous 10 years were nearly four times more likely to survive the 2020 Castle Fire and the 2021 KNP Complex Fire than nearby untreated trees.
Using donated brain tissue from older adults with and without cognitive decline, along with samples from cognitively healthy centenarians, the team uncovered distinct cellular programs and immune cell states linked to both disease progression and resistance. The findings, published in Nature Medicine, point to changes in microglia, the brain’s resident immune cells, as a potentially important focus for future Alzheimer’s treatments.
