QuantaLab (@quantalab) 's Twitter Profile
QuantaLab

@quantalab

Laboratory for Research Methods in Quantitative Remote Sensing (QuantaLab), Institute for Sustainable Agriculture, CSIC, Spain

ID: 1660962090151219200

linkhttps://quantalab.ias.csic.es/ calendar_today23-05-2023 10:53:48

37 Tweet

63 Followers

99 Following

IAS-CSIC (@ias_csic) 's Twitter Profile Photo

Pablo Zarco: "La investigación tiene que basarse en la calidad y no en la cantidad" eldiadecordoba.es/cordoba/pablo-… vía El Día de Córdoba 📰 🗣️entrevista a Pablo J. Zarco-Tejada #cienciaparalagricultura #CSIC CSIC Divulga CSIC Andalucía y Extremadura IAS-CSIC QuantaLab

Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Latest research by Anne Wang Anne Wang 🌱 assessed plant traits from Sentinel-2 to characterize leaf nitrogen variability in almond orchards. Airborne hyperspectral imagery as a benchmark demonstrated that almond nutrient levels could be mapped. doi.org/10.1007/s11119…

Latest research by Anne Wang <a href="/happy99yueyue/">Anne Wang 🌱</a> assessed plant traits from Sentinel-2 to characterize leaf nitrogen variability in almond orchards. Airborne hyperspectral imagery as a benchmark demonstrated that almond nutrient levels could be mapped. doi.org/10.1007/s11119…
Tomas Poblete (@tomaspoblete17) 's Twitter Profile Photo

In our latest study (doi.org/10.1016/j.agrf…), we used hyperspectral imagery to estimate chlorophyll a+b in radiata pine, comparing empirical and Radiative Transfer Models (RTM). Greenhouse and field trials revealed how structural complexity influences Ca+b estimation.

In our latest study (doi.org/10.1016/j.agrf…), we used hyperspectral imagery to estimate chlorophyll a+b in radiata pine, comparing empirical and Radiative Transfer Models (RTM). Greenhouse and field trials revealed how structural complexity influences Ca+b estimation.
Tomas Poblete (@tomaspoblete17) 's Twitter Profile Photo

Another successful campaign in Renmark! Collected hyperspectral & thermal data to uncover crop yield variability in almond orchards for Thulasi Vishwanath's PhD thesis HyperSens Lab. Excited for the insights ahead! Pablo J. Zarco-Tejada Victoria Gonzalez Na Wang Anne Wang 🌱 Science at Melbourne

Another successful campaign in Renmark! Collected hyperspectral &amp; thermal data to uncover crop yield variability in almond orchards for Thulasi Vishwanath's PhD thesis <a href="/HyperSensLab/">HyperSens Lab</a>. Excited for the insights ahead! <a href="/ZarcoTejada/">Pablo J. Zarco-Tejada</a> <a href="/vicgd1977/">Victoria Gonzalez</a> <a href="/LalaWang17/">Na Wang</a>
<a href="/happy99yueyue/">Anne Wang 🌱</a> <a href="/SciMelb/">Science at Melbourne</a>
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Great research discussions with colleagues Andries Potgieter and Scott Chapman from QLD Alliance for Agriculture & Food Innovation at University of Queensland UQ News visiting QuantaLab and IAS-CSIC. Ongoing collaboration on hyperspectral and thermal remote sensing for physiological condition and stress detection.

Great research discussions with colleagues Andries Potgieter and Scott Chapman from <a href="/QAAFI/">QLD Alliance for Agriculture & Food Innovation</a> at University of Queensland <a href="/UQ_News/">UQ News</a> visiting <a href="/QuantaLab/">QuantaLab</a> and <a href="/IAS_CSIC/">IAS-CSIC</a>. Ongoing collaboration on hyperspectral and thermal remote sensing for physiological condition and stress detection.
IAS-CSIC (@ias_csic) 's Twitter Profile Photo

🛩️🌳 La teledetección al servicio de la agricultura y los ecosistemas forestales - Pablo J Zarco #cienciaparalagricultura #CSIC CSIC Divulga IAS-CSIC @Quantalab Pablo J. Zarco-Tejada elDiario.es #blog #LaCuadraturadelCírculo elDiario.es ias.csic.es/?p=37932

🛩️🌳 La teledetección al servicio de la agricultura y los ecosistemas forestales - Pablo J Zarco
#cienciaparalagricultura #CSIC <a href="/CSICdivulga/">CSIC Divulga</a> <a href="/IAS_CSIC/">IAS-CSIC</a> @Quantalab <a href="/ZarcoTejada/">Pablo J. Zarco-Tejada</a> <a href="/eldiarioes/">elDiario.es</a> #blog #LaCuadraturadelCírculo <a href="/eldiarioes/">elDiario.es</a> 
ias.csic.es/?p=37932
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Enjoyed the hospitality and great atmosphere with former and new colleagues at the International Symposium on Smart Agriculture Technology in Nanjing, China, presenting IAS-CSIC & University of Melbourne work on the dynamics of hyperspectral traits for crop stress detection.

Enjoyed the hospitality and great atmosphere with former and new colleagues at the International Symposium on Smart Agriculture Technology in Nanjing, China, presenting <a href="/IAS_CSIC/">IAS-CSIC</a> &amp; <a href="/UniMelb/">University of Melbourne</a> work on the dynamics of hyperspectral traits for crop stress detection.
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Our new internationally collaborative paper in Phytopathology explores the opportunities and challenges of combining optical sensing with epidemiological modelling. apsjournals.apsnet.org/doi/10.1094/PH…

Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Rice blast infection signals revealed. Multi-temporal proximal hyperspectral imagery captured the transition of disease lesions from asymptomatic to symptomatic stages, distinguishing subtle pathogen-induced signals. doi.org/10.1016/j.rse.…

Rice blast infection signals revealed. Multi-temporal proximal hyperspectral imagery captured the transition of disease lesions from asymptomatic to symptomatic stages, distinguishing subtle pathogen-induced signals.

doi.org/10.1016/j.rse.…
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

We found a distinct contribution of the blue spectral region and fluorescence emission when explaining needle nitrogen and phosphorus variability with hyperspectral imagery. Research led by Peiye Li University of Melbourne with HyperSens Lab & QuantaLab IAS-CSIC. sciencedirect.com/science/articl…

We found a distinct contribution of the blue spectral region and fluorescence emission when explaining needle nitrogen and phosphorus variability with hyperspectral imagery. Research led by Peiye Li <a href="/UniMelb/">University of Melbourne</a> with <a href="/HyperSensLab/">HyperSens Lab</a> &amp; <a href="/QuantaLab/">QuantaLab</a> <a href="/IAS_CSIC/">IAS-CSIC</a>.

sciencedirect.com/science/articl…
HyperSens Lab (@hypersenslab) 's Twitter Profile Photo

Our latest paper, led by Peiye Li as part of her PhD thesis, disentangled the roles of the blue spectral region and SIF in predicting nitrogen and phosphorus in Pinus radiata using hyperspectral imagery. sciencedirect.com/science/articl… Tomas Poblete Pablo J. Zarco-Tejada Science at Melbourne QuantaLab

Our latest paper, led by Peiye Li as part of her PhD thesis, disentangled the roles of the blue spectral region and SIF in predicting nitrogen and phosphorus in Pinus radiata using hyperspectral imagery.
sciencedirect.com/science/articl…
<a href="/TomasPoblete17/">Tomas Poblete</a> <a href="/ZarcoTejada/">Pablo J. Zarco-Tejada</a> <a href="/SciMelb/">Science at Melbourne</a> <a href="/QuantaLab/">QuantaLab</a>
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Airborne hyperspectral and field campaign for innovative fluorescence, photosynthesis & water stress in vineyards and orchards in Valencia, Spain. Collaborative research between Diego Intrigliolo CIDEinvestiga & IAS-CSIC with QuantaLab & IrriSens-CSIC and HyperSens Lab University of Melbourne.

Airborne hyperspectral and field campaign for innovative fluorescence, photosynthesis &amp; water stress in vineyards and orchards in Valencia, Spain. Collaborative research between <a href="/DIntrigliolo/">Diego Intrigliolo</a> <a href="/CidEinvestiga/">CIDEinvestiga</a> &amp; <a href="/IAS_CSIC/">IAS-CSIC</a> with <a href="/QuantaLab/">QuantaLab</a> &amp; <a href="/IrriSens/">IrriSens-CSIC</a> and <a href="/HyperSensLab/">HyperSens Lab</a> <a href="/UniMelb/">University of Melbourne</a>.
Na Wang (@lalawang17) 's Twitter Profile Photo

In IGARSS 2025, we were happy to introduce a new approach to compensate for atmospheric effects on at-sensor radiance and the added fluorescence signal. Thanks to Pablo J. Zarco-Tejada Tomas Poblete Anirudh Belwalkar and Ran (University of Nebraska–Lincoln). HyperSens Lab University of Melbourne QuantaLab

In IGARSS 2025, we were happy to introduce a new approach to compensate for atmospheric effects on at-sensor radiance and the added fluorescence signal. Thanks to <a href="/ZarcoTejada/">Pablo J. Zarco-Tejada</a> <a href="/TomasPoblete17/">Tomas Poblete</a> <a href="/anirudhb20/">Anirudh Belwalkar</a> and Ran (University of Nebraska–Lincoln). <a href="/HyperSensLab/">HyperSens Lab</a> <a href="/UniMelb/">University of Melbourne</a> <a href="/QuantaLab/">QuantaLab</a>
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

QuantaLab and its international dimension. We welcome Anirudh Belwalkar Anirudh Belwalkar and Hamza Mghari Hamza Mghari to work on hyperspectral and thermal imaging for stress detection, in collaboration with Na Wang Na Wang and the @quantalab team. Happy to have you in Córdoba!!

QuantaLab and its international dimension. We welcome Anirudh Belwalkar <a href="/anirudhb20/">Anirudh Belwalkar</a> and Hamza Mghari <a href="/MghariHamza/">Hamza Mghari</a> to work on hyperspectral and thermal imaging for stress detection, in collaboration with Na Wang <a href="/LalaWang17/">Na Wang</a> and the @quantalab team. Happy to have you in Córdoba!!
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Our new review paper shows that hyperspectral remote sensing is a new frontier in crop disease monitoring. Early detection for sustainable farming is feasible despite challenges in cost & adoption. ieeexplore.ieee.org/document/11173…

Our new review paper shows that hyperspectral remote sensing is a new frontier in crop disease monitoring. Early detection for sustainable farming is feasible despite challenges in cost &amp; adoption.
ieeexplore.ieee.org/document/11173…
IrriSens-CSIC (@irrisens) 's Twitter Profile Photo

IrriSens-CSIC successfully completed the field campaign over super-intensive almond orchards. Periodical measurements of water status, photosynthetic rate, and vegetation structural parameters across fields with different irrigation treatments. Collaborative research with QuantaLab.

<a href="/IrriSens/">IrriSens-CSIC</a> successfully completed the field campaign over super-intensive almond orchards. Periodical measurements of water status, photosynthetic rate, and vegetation structural parameters across fields with different irrigation treatments. Collaborative research with <a href="/QuantaLab/">QuantaLab</a>.
Pablo J. Zarco-Tejada (@zarcotejada) 's Twitter Profile Photo

Mitigating the phenological effects on rice blast detection with hyperspectral data adapting a radiative transfer model. A new step forward. Int'l collaboration led by Tao Cheng and Bowen Xue China Njau with HyperSens Lab University of Melbourne & QuantaLab IAS-CSIC sciencedirect.com/science/articl…

Mitigating the phenological effects on rice blast detection with hyperspectral data adapting a radiative transfer model. A new step forward. Int'l collaboration led by Tao Cheng and Bowen Xue <a href="/njau_china/">China Njau</a> with <a href="/HyperSensLab/">HyperSens Lab</a> <a href="/UniMelb/">University of Melbourne</a> &amp; <a href="/QuantaLab/">QuantaLab</a>
<a href="/IAS_CSIC/">IAS-CSIC</a> 

sciencedirect.com/science/articl…