N Parazoo
Dados Biográficos
| ID | 7994515 |
|---|---|
| NOME | N Parazoo |
| PRENOMES | N |
| SOBRENOME | Parazoo |
| ASSINATURA | PARAZOO N |
| AFILIAÇÕES | Jet Propulsion Laboratory |
| ORCID | 0000-0002-4165-4532 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 4 |
| TOTAL DE CITAÇÕES | 0 |
| TOTAL COMO AUTOR | 4 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2021 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2025 |
| ÍNDICE H | 0 |
Observing system needs for understanding carbon–climate feedbacks
Carbon–climate (CC) feedbacks — arising from response of land and ocean carbon sinks to elevated CO 2 and climate warming — are critical yet highly uncertain drivers of Earth’s climate trajectory. Processes such as permafrost thaw, tropical forest dieback, reduced ocean uptake, and intensifying climate extremes are already weakening natural carbon sinks, with potential to amplify warming and accelerate crossing of tipping points. Detecting and qu…
The biogeophysical impacts of land cover change on climate extremes in the Arctic and Boreal regions
Land cover change (LCC)-climate interactions could amplify or mitigate climate change in the Arctic and Boreal regions. Revealing the impacts of LCC on climate extremes helps to improve risk assessment capability and provides targeted adaptation and mitigation strategies to enhance regional climate resilience. In this study, we parameterized remotely-sensed land cover maps into the Community Earth System Model version 2 (CESM2) to examine the bio…
Climate change is enforcing physiological changes in Arctic Ecosystems
Remote sensing and site-level observations have shown unprecedented changes in Arctic ecosystems owing to climate warming. These observations include greening and browning trends in Arctic vegetation as well as changes in species composition both in the tundra and the boreal forests. Here, we leveraged solar induced chlorophyll fluorescence (SIF) to study changes in ecosystem phenology across the pan-Arctic domain from 2000 to 2020. Ecoregions, a…
Spatial covariation between solar-induced fluorescence and vegetation indices from Arctic-Boreal landscapes
The Arctic-Boreal Zone (ABZ) is characterized by spatially heterogeneous vegetation composition and structure, leading to challenges for inferring patterns in vegetation productivity. A mechanistic understanding of the patterns and processes underlying spectral remote sensing observations is necessary to overcome these challenges. Solar-induced chlorophyll fluorescence (SIF), near-infrared reflectance of vegetation (NIRv), and chlorophyll/caroten…
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Spatial covariation between solar-induced fluorescence and vegetation indices from Arctic-Boreal landscapes
The Arctic-Boreal Zone (ABZ) is characterized by spatially heterogeneous vegetation composition and structure, leading to challenges for inferring patterns in vegetation productivity. A mechanistic understanding of the patterns and processes underlying spectral remote sensing observations is necessary to overcome these challenges. Solar-induced chlorophyll fluorescence (SIF), near-infrared reflectance of vegetation (NIRv), and chlorophyll/caroten…
Climate change is enforcing physiological changes in Arctic Ecosystems
Remote sensing and site-level observations have shown unprecedented changes in Arctic ecosystems owing to climate warming. These observations include greening and browning trends in Arctic vegetation as well as changes in species composition both in the tundra and the boreal forests. Here, we leveraged solar induced chlorophyll fluorescence (SIF) to study changes in ecosystem phenology across the pan-Arctic domain from 2000 to 2020. Ecoregions, a…
Observing system needs for understanding carbon–climate feedbacks
Carbon–climate (CC) feedbacks — arising from response of land and ocean carbon sinks to elevated CO 2 and climate warming — are critical yet highly uncertain drivers of Earth’s climate trajectory. Processes such as permafrost thaw, tropical forest dieback, reduced ocean uptake, and intensifying climate extremes are already weakening natural carbon sinks, with potential to amplify warming and accelerate crossing of tipping points. Detecting and qu…
The biogeophysical impacts of land cover change on climate extremes in the Arctic and Boreal regions
Land cover change (LCC)-climate interactions could amplify or mitigate climate change in the Arctic and Boreal regions. Revealing the impacts of LCC on climate extremes helps to improve risk assessment capability and provides targeted adaptation and mitigation strategies to enhance regional climate resilience. In this study, we parameterized remotely-sensed land cover maps into the Community Earth System Model version 2 (CESM2) to examine the bio…
Climate change (4 obras) · Arctic (3 obras) · Climate change and permafrost (3 obras) · Environmental Science (3 obras) · Geography (3 obras) · Physical geography (3 obras) · Boreal (2 obras) · Climatology (2 obras) · Cryospheric studies and observations (2 obras) · Ecology (2 obras)