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Registros recuperados : 159 | |
61. | | SILVA, M. F. da; GUIMARÃES, A. L. D.; VALLIM, J. H.; MIRANDA, E. M. de. Microrganismos diazotróficos inoculados em feijão caupi. cv. Guariba no Sudoeste da Amazônia. In: REUNIÃO BRASILEIRA DE FERTILIDADE DO SOLO E NUTRIÇÃO DE PLANTAS, 30.; REUNIÃO BRASILEIRA SOBRE MICORRIZAS, 14.; SIMPÓSIO BRASILEIRO DE MICROBIOLOGIA DO SOLO, 12.; REUNIÃO BRASILEIRA DE BIOLOGIA DO SOLO, 9.; SIMPÓSIO SOBRE SELÊNIO NO BRASIL, 1., 2012, Maceió. A responsabilidade socioambiental da pesquisa agrícola: anais. Viçosa, MG: SBCS, 2012. Biblioteca(s): Embrapa Acre. |
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70. | | SILVA, M. F. da; FUKUJI, T. S.; PIUGA, F. F.; ALMEIDA, A. M. R. Mancha em sementes de soja causadas pelo Bean line pattern mosaic virus. Fitopatologia Brasileira, v. 26, p. 520, ago. 2001. Suplemento. Resumo 924. Edição do XXXIV Congresso Brasileiro de Fitopatologia, São Pedro, SP, ago. 2001. Biblioteca(s): Embrapa Soja. |
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71. | | SILVA, M. F. da; ANJOS, L. H. C. dos; PEREZ, D. V.; PEREIRA, M. G. Levantamento dos níveis de acidez e de alguns macronutrientes a partir da análise química de solos do Estado do Rio de Janeiro. In: CONGRESSO LATINO AMERICANO DE CIÊNCIA DO SOLO, 13.; REUNIÃO BRASILEIRA DE BIOLOGIA DO SOLO, 1.; SIMPÓSIO BRASILEIRO SOBRE MICROBIOLOGIA DO SOLO, 4.; REUNIÃO BRASILEIRA SOBRE MICORRIZAS, 6.; REUNIÃO BRASILEIRA DE MANEJO E CONSERVAÇÃO DO SOLO E DA ÁGUA, 11., 1996, Águas de Lindóia. Solo suelo 96. Campinas: Sociedade Brasileira de Ciência do Solo, 1996. 1 CD-ROM. Biblioteca(s): Embrapa Solos. |
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Registros recuperados : 159 | |
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Registro Completo
Biblioteca(s): |
Embrapa Meio Ambiente. |
Data corrente: |
27/11/2019 |
Data da última atualização: |
27/11/2019 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
BISPO, P. da C.; PARDINI, M.; PAPATHANASSIOU, K. P.; KUGLER, F.; BALZTER, H.; RAINS, D.; SANTOS, J. R. dos; RIZAEV, I. G.; TANSEY, K.; SILVA, M. F. da; ARAUJO, L. S. de. |
Afiliação: |
POLYANNA DA CONCEICAO BISPO, University of Leicester; MATTEO PARDINI, German Aerospace Center; KONSTANTINUS P PAPATHANASSIOU, German Aerospace Center; FLORIAN KUGLER, German Aerospace Center; HEIKO BALTZER, Ghent University; DOMINIK RAINS, University of Leicester; JOAO ROBERTO DOS SANTOS, INPE; IGOR G RIZAEV, University of Bristol; KEVIN TANSEY, University of Leicester; MAIZA FERREIRA DA SILVA, SGE; LUCIANA SPINELLI DE ARAUJO, CNPMA. |
Título: |
Mapping forest successional stages in the Brazilian Amazon using forest heights derived from TanDEM-X SAR interferometry. |
Ano de publicação: |
2019 |
Fonte/Imprenta: |
Remote Sensing of Environment, v. 232, 2019. Article 111194. |
DOI: |
https://doi.org/10.1016/j.rse.2019.05.013 |
Idioma: |
Inglês |
Conteúdo: |
Abstract: Knowledge of the spatial patterns of successional stages (i.e., primary and secondary forest) in tropical forests allows to monitor forest preservation, mortality and regeneration in relation to natural and anthropogenic disturbances. Different successional stages have also different capabilities of re-establishing carbon stocks. Therefore, a successful discrimination of successional stages over wide areas can lead to an improved quantification of above ground biomass and carbon stocks. The reduction of the mapping uncertainties is especially a challenge due to high heterogeneity of the tropical vegetation. In this framework, the development of innovative remote sensing approaches is required. Forests (top) height (and its spatial distribution) are an important structural parameter that can be used to differentiate between different successional stages, and can be provided by Interferometric Synthetic Aperture Radar (InSAR) acquisitions. In this context, this paper investigates the potential of forest heights estimated from TanDEM-X InSAR data and a LiDAR digital terrain model (DTM) for separating successional stages (primary or old growth and secondary forest at different stages of succession) by means of a maximum likelihood classification. The study was carried out in the region of the Tapajós National Forest (Pará, Brazil) in the Amazon biome. The forest heights for three years (2012, 2013 and 2016) were estimated from a single-polarization in bistatic mode using InSAR model-based inversion techniques aided by the LiDAR digital terrain model. The validation of the TanDEM-X forest heights with independent LiDAR H100 datasets was carried out in the location of seven field inventory plots (measuring 50?×?50?m, equivalent to 0.25?ha), also allowing for the validation of the LiDAR datasets against the field data. The validation of the estimated heights showed a high correlation (r?=?0.93) and a low uncertainty (RMSE?=?3?m). The information about the successional stages and forest heights from field datasets was used to select training samples in the LiDAR and TanDEM-X forest heights to classify successional stages with a maximum likelihood classifier. The identification of different stages of forest succession based on TanDEM-X forest heights was possible with an overall accuracy of about 80%. MenosAbstract: Knowledge of the spatial patterns of successional stages (i.e., primary and secondary forest) in tropical forests allows to monitor forest preservation, mortality and regeneration in relation to natural and anthropogenic disturbances. Different successional stages have also different capabilities of re-establishing carbon stocks. Therefore, a successful discrimination of successional stages over wide areas can lead to an improved quantification of above ground biomass and carbon stocks. The reduction of the mapping uncertainties is especially a challenge due to high heterogeneity of the tropical vegetation. In this framework, the development of innovative remote sensing approaches is required. Forests (top) height (and its spatial distribution) are an important structural parameter that can be used to differentiate between different successional stages, and can be provided by Interferometric Synthetic Aperture Radar (InSAR) acquisitions. In this context, this paper investigates the potential of forest heights estimated from TanDEM-X InSAR data and a LiDAR digital terrain model (DTM) for separating successional stages (primary or old growth and secondary forest at different stages of succession) by means of a maximum likelihood classification. The study was carried out in the region of the Tapajós National Forest (Pará, Brazil) in the Amazon biome. The forest heights for three years (2012, 2013 and 2016) were estimated from a single-polarization in bistatic mode usi... Mostrar Tudo |
Palavras-Chave: |
Forest height; TanDEM-X. |
Thesagro: |
Floresta Tropical; Mapa; Sensoriamento Remoto. |
Thesaurus NAL: |
Forest succession; Height; Interferometry; synthetic aperture radar; Tropical forests. |
Categoria do assunto: |
X Pesquisa, Tecnologia e Engenharia |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/205662/1/ARAUJO-SPINELLI-Mapping-Forest-2019.pdf
|
Marc: |
LEADER 03451naa a2200373 a 4500 001 2115303 005 2019-11-27 008 2019 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1016/j.rse.2019.05.013$2DOI 100 1 $aBISPO, P. da C. 245 $aMapping forest successional stages in the Brazilian Amazon using forest heights derived from TanDEM-X SAR interferometry.$h[electronic resource] 260 $c2019 520 $aAbstract: Knowledge of the spatial patterns of successional stages (i.e., primary and secondary forest) in tropical forests allows to monitor forest preservation, mortality and regeneration in relation to natural and anthropogenic disturbances. Different successional stages have also different capabilities of re-establishing carbon stocks. Therefore, a successful discrimination of successional stages over wide areas can lead to an improved quantification of above ground biomass and carbon stocks. The reduction of the mapping uncertainties is especially a challenge due to high heterogeneity of the tropical vegetation. In this framework, the development of innovative remote sensing approaches is required. Forests (top) height (and its spatial distribution) are an important structural parameter that can be used to differentiate between different successional stages, and can be provided by Interferometric Synthetic Aperture Radar (InSAR) acquisitions. In this context, this paper investigates the potential of forest heights estimated from TanDEM-X InSAR data and a LiDAR digital terrain model (DTM) for separating successional stages (primary or old growth and secondary forest at different stages of succession) by means of a maximum likelihood classification. The study was carried out in the region of the Tapajós National Forest (Pará, Brazil) in the Amazon biome. The forest heights for three years (2012, 2013 and 2016) were estimated from a single-polarization in bistatic mode using InSAR model-based inversion techniques aided by the LiDAR digital terrain model. The validation of the TanDEM-X forest heights with independent LiDAR H100 datasets was carried out in the location of seven field inventory plots (measuring 50?×?50?m, equivalent to 0.25?ha), also allowing for the validation of the LiDAR datasets against the field data. The validation of the estimated heights showed a high correlation (r?=?0.93) and a low uncertainty (RMSE?=?3?m). The information about the successional stages and forest heights from field datasets was used to select training samples in the LiDAR and TanDEM-X forest heights to classify successional stages with a maximum likelihood classifier. The identification of different stages of forest succession based on TanDEM-X forest heights was possible with an overall accuracy of about 80%. 650 $aForest succession 650 $aHeight 650 $aInterferometry 650 $asynthetic aperture radar 650 $aTropical forests 650 $aFloresta Tropical 650 $aMapa 650 $aSensoriamento Remoto 653 $aForest height 653 $aTanDEM-X 700 1 $aPARDINI, M. 700 1 $aPAPATHANASSIOU, K. P. 700 1 $aKUGLER, F. 700 1 $aBALZTER, H. 700 1 $aRAINS, D. 700 1 $aSANTOS, J. R. dos 700 1 $aRIZAEV, I. G. 700 1 $aTANSEY, K. 700 1 $aSILVA, M. F. da 700 1 $aARAUJO, L. S. de 773 $tRemote Sensing of Environment$gv. 232, 2019. Article 111194.
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