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PUBLICATIONS

2023

 

46. Camarero JJ, Colangelo M, Rita A, Hevia A, Pizarro M, Voltas J. 2023. A multi-proxy framework to detect insect defoliations in tree rings: a case study on pine processionary. Frontiers in Ecology and Evolution, 11, August 2023https://doi.org/10.3389/fevo.2023.1192036
 

 

45. Roquette JG, Ortega-Rodriguez DR, Portal-Cahuana LA, de Almeida Lobo F, Hevia A, Sánchez-Salguero R, Wallace Pereira de Carvalho H, Tomazello-Filho M. 2023. Environmental forensics evaluation of residual soybean sludge using trees of Brazilian savannah. Environmental Nanotechnology, Monitoring & Management, 20, December 2023, 10084. https://doi.org/10.1016/j.enmm.2023.100814

44. Ortega-Rodriguez DR, Sánchez-Salguero R, Hevia A, Granato-Souza D, Cintra BBL, Hornink B, Andreu-Hayles L, Assis_Pereira G, Roig FA, Tomazello-Filho M. 2023. Climate variability of the southern Amazon inferred by a multi-proxy tree-ring approach using Cedrela fissilis Vell. Science of the Total Environment 2023, May 1; 871: 162064. https://doi.org/10.1016/j.scitotenv.2023.162064

43. Ortega Rodríguez DR, Sánchez-Salguero R, Hevia A, Granato-Souza D, Assis_Pereira G, Roig FA, Tomazello-Filho M. 2023. Long- and short-term impacts of climate and dry-season on wood traits of Cedrela fissilis Vell. in southern Brazilian Amazon. Agricultural and Forest Meteorology 333, 15 April 2023, 109392. https://doi.org/10.1016/j.agrformet.2023.109392

2022

42. Ortega-Rodriguez DR, Hevia A, Sánchez-Salguero R, Bermudez Dobbertin S, Rosero-Alvarado J,Chavesta M, Tomazello-Filho M. Novel yield model of Pinus patula Schltdl. & Cham. growth near the ecological limit in Northwestern Peruvian Andes. Forests 2022, 13(12), 2109. Special Issue Forest Biometrics. https://doi.org/10.3390/f13122109.

 

41. Hevia, A.; Calzado, A.; Alejano, R.; Vázquez-Piqué, J. 2022. Identification of Old-Growth Mediterranean Forests using Airborne Laser Scanning and Geostatistical Analysis. Remote Sensing 2022, 14(16), 4040. Special Issue 3D Point Clouds in Forest Remote Sensing: Part II. https://doi.org/10.3390/rs14164040

40.  Ortega Rodriguez DR, Hevia A, Sánchez-Salguero R, Santini Jr L, Pereira deCarvalho HW, Roig FA, Tomazello-Filho M.2022.  Exploring wood anatomy, density and chemistry profiles to understand the tree-ring formation in Amazonian tree species. Dendrochronologia 71: 125915. https://doi.org/10.1016/j.dendro.2021.125915. Q1 (2020).

 

39. Dorado-Liñán I, Ayarzagüena B, Babst F, Xu G, Gil L, Battipaglia G, Buras A, Čada V, Camarero JJ, Cavin L, Claessens H, Drobyshev I, Garamszegi B, Grabner M, Hacket-Pain A, Hartl C, Hevia A, Janda P, Jump AS, Kazimirovic M, Keren, S, Kreyling J, Land A, Latte N, Levanič T, van der Maaten E, van der Maaten-Theunissen M, Martínez-Sancho E, Menzel A, Mikoláš M, Motta R, Muffler L, Nola P, Panayotov M, Petritan AM, Petritan IC, Popa I, Prislan P, Roibu C-C, Rydval M, Sánchez-Salguero R, Scharnweber T, Stajić B, Svoboda M, Tegel WW, Teodosiu M, Toromani E, Trotsiuk V, Turcu D-O, Weigel R, Wilmking M, Zang C, Zlatanov T, Trouet V. 2022. Jet stream position explains regional anomalies in European beech forest productivity and tree growth. Nature Communications 13,  2015 (2022). https://doi.org/10.1038/s41467-022-29615-8. Q1 (2020)

 

38. Gazol A, Camarero JJ, Sánchez-Salguero R, Zavala MA, Serra-Maluquer X, Gutiérrez E, de Luis M, Sangüesa-Barreda G, Novak K, Rozas V, Tíscar PA, Linares JC, Martínez del Castillo E, Ribas M, García-González I, Silla F, Camison A, Génova M, Olano JM, Hereş AM, Curiel Yuste J, Longares LA, Hevia A, Galván JD, Ruiz-Benito P. 2022. Tree growth response to drought partially explains regional-scale growth and mortality patterns in Iberian forests. Ecological Applications. https://doi.org/10.1002/eap.2589. Q1 (2020)

2021

37. Petritan, A.M.; Petritan, I.C.; Hevia, A.Walentowskie, H.; Bouriaud, O.; Sánchez-Salguero, R. 2021. Climate warming predispose sessile oak forests to drought-induced tree mortality regardless of management legacies. Forest Ecology and Management 491, 119097. https://doi.org/10.1016/j.foreco.2021.119097. Q1(2020)

http://hdl.handle.net/10272/19875

36. Pompa-García, M.; Hevia, A.; Camarero, J.J. 2021.  Minimum and maximum wood density as proxies of water availability in two Mexican pine species coexisting in a seasonally dry area. Trees (2021). https://doi.org/10.1007/s00468-020-02062-y

35. Molina-Valero, J.A.; Camarero, J.J.; Álvarez-González, J.G.; Cerioni, M.; Hevia, A.; Sánchez-Salguero, R.; Martin-Benito, D.; Pérez-Cruzado, C. 2021. Mature Forests hold maximum live biomass stocks. Forest Ecology and Management 480,  118635. https://doi.org/10.1016/j.foreco.2020.118635. Q1(2019)

2020

34. Alves, A.*; Hevia, A.*; Simões, R.; Majada, J.; Alia, R.; Rodrigues, J. 2020 (in press). Improving spatial synchronization between X-ray and near-infrared spectra information to predict wood density profiles. Wod Science and Technology 54(5): 1151-1164 . https://doi.org/10.1007/s00226-020-01207-z. Q1(2019)

http://hdl.handle.net/10272/18860

* These authors contributed equally to this work.

33. Gazol, A.; Camarero, J.J.; Sánchez-Salguero, R.; Vicente-Serrano, S.M.; Serra-Maluquer, X.; Gutiérrez, E.; De Luis, M.; Sangüesa-Barreda, G.; Novak, K.; Rozas, V.; Tíscar, P.A.; Linares, J.C.; Martínez del Castillo, E.; Ribas, M.; García-González, I.; Silla, F.; Camisón, A.; Génova, M.; Olano, J.M.; Hereş, A.-M.; Curiel Yuste, J.; Longares, L.A.; Hevia, A.; Tomàs-Burguera, M.; Galván, J.D. 2020. Drought legacies are short, prevail in dry conifer forests and depend on growth variability. Journal of Ecology 108(6): 2473-2484. Special Feature: Citizen Science. https://doi.org/10.1111/1365-2745.13435. Q1(2019)

http://hdl.handle.net/10272/18891

32. Bose, A.K.; Gessler, A.; Bolte, A.; Bottero, A.; Buras, A.; Cailleret, M.; Camarero, J.J.; Haeni, M.; Hereş, A-M., Hevia, A., Lévesque, M.; Linares, J.C.; Martinez-Vilalta, J.; Matías, L.; Menzel, A.; Sánchez-Salguero, R.; Saurer, M.; Vennetier, M.; Ziche, D.; Rigling, A. 2020. Growth and resilience responses of Scots pine to extreme droughts across Europe depend on pre-drought growth conditions. Global Change Biology 26(8): 4521-4537. https://doi.org/10.1111/gcb.15153. Q1(2019)

http://hdl.handle.net/10272/18190

31. Hevia, A.; Campelo, F.; Chambel, R.; Vieira, J.; Alía, R.; Majada, J.; Sánchez-Salguero, R. 2020.  What matters more for wood traits in Pinus halepensis Mill., provenance or climate? Annals of Forest Science 77(55) (2020).  https://doi.org/10.1007/s13595-020-00956-y. Q1(2019)

http://hdl.handle.net/10272/18487

30. Régolini, M.; Meredieu, C.; Jactel, H.; Arias-González, A.; Branco, M.; Cantero, A.; Castro, A.; Fraysse, J-Y.; Gardiner, B.; Hevia, A.; Lario, F.J.; Pater, C.S.; Rodríguez-Soalleiro, R.; Soares, P.; Orazio, C. 2020. Multi-criteria analysis to compare multiple risks associated with management alternatives in planted forests. Forest Systems 29(2) (2020). https://doi.org/10.5424/fs/2020292-15660 . Q3(2019)

29. Camarero, J.J.; Hevia, A. 2020. Links between climate, drought and minimum wood density in conifers. IAWA J. 41(2): 236-255. https://doi.org/10.1163/22941932-bja10005. Q2(2019)

http://hdl.handle.net/10272/17719

28. Vicente-Serrano, S.M.; Martín-Hernández, N.; Camarero, J.J.; Gazol, A.; Sánchez-Salguero, R.; Peña-Gallardo, M.; El Kenawya, A.; Domínguez-Castro, F.; Tomas-Burguerad, M.; Gutiérrez, E.; De Luis, M.; Sangüesa-Barreda, G.; Nova, K.; Rozas, V.; Tíscar, P.A.; Linares, J.C.; Martínez del Castillo, E.; Ribas, M.; García-González, I.; Silla, F.; Camisón, A.; Génova, M.; Olano, J.M.; Longares, L.A.; Hevia, A., Galván, J.D. Linking tree-ring growth and satellite-derived gross primary growth in multiple forest biomes. Temporal-scale matters. Ecological Indicators. https://doi.org/10.1016/j.ecolind.2019.105753. Q1(2017)

http://hdl.handle.net/10272/17765

2019

27. Björklund, J.; von Arx, G.; Nievergelt, D.; Wilson, R.; Van den Bulcke, J.; Günther, B.; Loader, N.J.; Rydval, M.; Fonti, P.; Scharnweber, T.; Andreu‐Hayles, L.; Büntgen, U.; D'Arrigo, R.; Davi, N.; De Mil T.; Esper, J.; Gärtner, H.; Geary, J.; Gunnarson, B.E.; Hartl, C.; Hevia, A.; Song, H.; Janecka, K.; Kaczka, R.J.; Kirdyanov, A.V.; Kochbeck, M.; Liu, Y.; Meko, M.; Mundo, I.; Nicolussi, K.; Oelkers, R.; Pichler, T.; Sánchez‐Salguero, R.; Schneider, L.; Schweingruber, F.; Timonen, M.; Trouet, V.; Van Acker, J.; Verstege, A.; Villalba, R.; Wilmking, M.; Frank, D. 2019. Scientific merits and analytical challenges of tree-ring densitometry. Reviews of Geophysiscs 57(4). https://doi.org/10.1029/2019RG000642. Q1(2017)

http://hdl.handle.net/10272/17807

 

26. Gut, U.; Arvai, m.; Bijak, s.; Camarero, J.J.;  Cedro, A.; Cruz-García, R.; Garamszegi, B.; Hacket-Pain, A.; Hevia, A.; Huang, W.; Isaac-Renton, M.; Kaczka, R.; Kazimirovic, M.; Kedziora, W.; Kern, Z.; Klisz, M.; Kolar, T.; Korner, M.; Kuznetsova, V.; Montwe, D.; Petritan, A.M.; Petritan, I.C.; Plavcova, L.; Rehschuh, R.; Rocha, E.; Rybnicek, M.; Sánchez-Salguero, R.; Schroder, J.; Schwab, N.; Stajic, B.; Tomusiak, R.; Wilmking, M.; Sass-Klaassen, U.; Buras, A. 2019. No systematic effects of sampling direction on climate-growth relationships in a large-scale, multi-species tree-ring data set. Dendrochronologia. https://doi.org/10.1016/j.dendro.2019.125624. Q1(2017)

http://hdl.handle.net/10272/17802

 

25. Hevia, A.; Sánchez-Salguero, R.; Camarero, J.J.; Querejeta, J.I.; Sangüesa-Barreda, G.; Gazol, A. 2019. Long-term nutrient imbalances linked to drought-triggered forest dieback. Science of the Total Environment 690: 1254-1267. https://doi.org/10.1016/j.scitotenv.2019.06.515. Q1(2017)

http://hdl.handle.net/10272/18102

24. Sánchez-Salguero, R.; Camarero, J.J.; Hevia, A.; Sangüesa-Barreda, G.; Galván, J.D.; Gutiérrez, E. 2019. Testing annual tree-ring chemistry by X-ray fluorescence for dendroclimatic studies in high-elevation forests from the Spanish Pyrenees. Quaternary International. https://doi.org/10.1016/j.quaint.2018.09.007. Q2(2017)

http://hdl.handle.net/10272/18105

2018

 

23. Camarero, J.J.; Álvarez-Taboada, F.; Hevia, A.; Castedo-Dorado, F. 2018. Radial growth and wood density reflect the impacts and susceptibility to defoliation by gypsy moth and climate in radiata pine. Frontiers in Plant Science 9, 1582. https://doi.org/10.3389/fpls.2018.01582. Q1(2017)

http://hdl.handle.net/10272/16043

22. Peña-Gallardo, M.; Vicente-Serrano, S.M.; Camarero, J.J.; Gazol, A.; Sánchez-Salguero, R.; Domínguez-Castro, F.; El Kenawy, A.; Beguería-Portugés, S.; Gutiérrez, E.; de Luis, M.; Sangüesa-Barreda, G.; Novak, K.; Rozas, V.; Tíscar, P.A.; Linares, J.C.; Martínez del Castillo, E.; Ribas Matamoros, M.; García-González, I.; Silla, F.; Camisón, Á.; Génova, M.; Olano, J.M.; Longares, L.A.; Hevia, A.; Galván, J.D. 2018. Drought Sensitiveness on Forest Growth in Peninsular Spain and the Balearic Islands. Forests 2018, 9: 524. https://doi.org/10.3390/f9090524. Q2(2017)

21. Gazol, ​A.; Camarero, J.J.; Vicente-Serrano, S.M.; Sánchez-Salguero, R.; Gutiérrez, E.; de Luis, M.; Sangüesa-Barreda, G.; Novak, K. ; Rozas, V. ; Tiscar, P.A.; Linares, J.C.; Martín-Hernández, N.; Martínez del Castillo, E.; Ribas, M. ; García-González, I.; Silla, F.; Camisón, A.; Génova, M.; Olano, J.M.; Longares L.A.; Hevia, A.; Tomás-Burguera, M.; Galván, J.D. 2018. Forest resilience to drought across biomes. Global Change Biology, 24 (5): 2143-2158. https://doi.org/10.1111/gcb.14082. Q1(2017)

 

 

20. Hevia, A.; Sánchez-Salguero, R.; Camarero, J.J.; Buras, A.; Sangüesa-Barreda, G.; Galván, J.D.; Gutiérrez, E. 2018. Towards a better understanding of long-term woodchemistry variations in old-growth forests: A case study on ancient Pinus uncinata trees from the Pyrenees. Science of the Total Environment, 625: 220-232. https://doi.org/10.1016/j.scitotenv.2017.12.229. Q1(2017)

19. Moreno-Fernández, D.*; Hevia, A.*; Majada, J.; Cañellas, I. 2018. Do Common Silvicultural Treatments Affect Wood Density of Mediterranean Montane Pines? Forests, 9 (2):  80. https://doi:10.3390/f9020080. Q2(2017)

* These authors contributed equally to this work.

18. Hevia, A.; Crabiffosse, A.; Álvarez-González, J.G.; Ruiz-González, A.D.; Majada, J. 2018. Assessing the effect of pruning and thinning on crown fire hazard in young Atlantic maritime pine forests. J. Environ. Manage., 205: 9-17. https://doi.org/10.1016/j.jenvman.2017.09.051. Q1(2017)

2017

17. González-Ferreiro, E.; Arellano-Pérez, S.; Castedo-Dorado, F.; Hevia, A.; Vega, J.A.; Vega-Nieva, D.; Álvarez-González, J.G.; Ruiz-González, A.D. 2017. Modelling the vertical distribution of canopy fuel load using national forest inventory and low-density airbone laser scanning data. PloS one 12(4), e0176114. https://doi.org/10.1371/journal.pone.0176114. Q1(2017)

http://hdl.handle.net/10347/15627

16. Hevia, A.; Crabiffosse, A.; Álvarez-González, JG; Ruiz-González, A.D.; Majada, J. 2017. Novel approach to assessing residual biomass from pruning: A case study in Atlantic Pinus pinaster Ait. timber forests. Renewable Energy, 107: 620-628. https://doi.org/10.1016/j.renene.2017.02.029. Q1(2017)

15. Sánchez-Salguero, R.; Camarero, J.J.; Carrer, M.; Gutiérrez, E.; Alla, A.Q.; Andreu Hayles, L.; Hevia, A.; Koutavas, A.; Martínez-Sancho, E.; Nola, P.; Papadopoulos, A.; Pasho, E.; Toromani, E.; Carreira, J.A.; Linares, J.C. 2017. Climate extremes and predicted warming threaten Mediterranean fir refugia. PNAS, 114(47): E10142–E10150. https://doi.org/10.1073/pnas.1708109114. Q1(2017)

14. Sánchez-Salguero, R.*; Hevia, A.*; Camarero, J.J. et al. 2017. An intensive tree-ring experience: Connecting education and research during the 25th European Dendroecological Fieldweek (Asturias, Spain). Dendrochronologia, 42: 80-93.  https://doi.org/10.1016/j.dendro.2016.12.005. Q2(2017)

* These authors contributed equally to this work.

2016

13. González‐García, M.; Almeida, A.C., Hevia, A.; Majada, J.,;Beadle, C. 2016. Application of a process‐based model for predicting the productivity of Eucalyptus nitens bioenergy plantations in Spain. GCB Bioenergy, 8(1): 194-210. https://doi.org/10.1111/gcbb.12256. Q1(2016)

 

12. Hevia, A.; Álvarez-González, J.G.; Majada, J. 2016. Comparison of pruning effects on tree growth, productivity and dominance of two major timber conifer species. Forest Ecology and Management, 374: 82-92. https://doi.org/10.1016/j.foreco.2016.05.001. Q1(2016)

11. Hevia, A.; Álvarez-González, J.G.; Majada, J. 2016. Effects of pruning on knotty core taper and form of Pinus radiata and Pinus pinaster. Eur. J. Wood Prod. 74(5): 741-750. https://doi.org/10.1007/s00107-016-1019-0. Q2(2016)

10. Hevia, A.; Álvarez-González, J.G.; Ruiz-Fernández, E.; Prendes, C.; Ruiz-González, A.D.; Majada, J.; González-Ferreiro, E. 2016. Modelling canopy fuel and forest stand variables and characterizing the influence of thinning in the stand structure using airborne LiDAR. Revista de Teledetección (Special issue: Active Remote Sensing in Forest Applications), 45: 41 - 55. Q4(2016)

http://hdl.handle.net/10347/16246

9. Scharnweber, T.; Hevia, A.; Buras, A.; van der Maaten, E.; Wilmking, M. 2016. Common trends in elements? Within- and between-tree variations of wood-chemistry measured by X-ray fluorescence — A dendrochemical study. Science of the Total Environment, 566: 1245-1253. https://doi.org/10.1016/j.scitotenv.2016.05.182. Q1(2016)

2015

 

8. González-García, M.; Hevia, A.; Majada, J.; de Anta, R.C.; Barrio-Anta, M. 2015. Dynamic growth and yield model including environmental factors for Eucalyptus nitens (Deane & Maiden) Maiden short rotation woody crops in Northwest Spain. New Forests, 46(3): 387-407. https://doi.org/10.1007/s11056-015-9467-7. Q2(2015)

 

7. González-García, M.; Hevia, A.; Majada, J.; Rubiera, F.; Barrio-Anta, M. 2015. Nutritional, carbon and energy evaluation of Eucalyptus nitens short rotation bioenergy plantations in northwestern Spain. iForest - Biogeosciences and Forestry, 9(2): 303-310. https://doi: 10.3832/ifor1505-008. Q2(2015)

 

6. Hevia, A.; Cao, Q.V.; Álvarez-González, J.G.; Ruiz-González, A.D.; von Gadow, K. 2015. Compatibility of whole-stand and individual-tree models using composite estimators and disaggregation. Forest Ecology and Management, 348: 46-56. https://doi.org/10.1016/j.foreco.2015.03.035. Q1(2015)

5. Sánchez-Salguero, R.; Camarero, J.J.; Hevia, A.; Madrigal-González, J.; Linares, J.C.; Ballesteros-Canovas, J.A.; Sánchez-Miranda, A.; Alfaro-Sánchez, R.; Sangüesa-Barreda, G.; Galván, J.D.; Gutiérrez, E.; Génova, M.; Rigling, A. 2015. What drives growth of Scots pine in continental Mediterranean climates: Drought, low temperatures or both? Agric. For. Meteorol., 206: 151-162. https://doi.org/10.1016/j.agrformet.2015.03.004. Q1(2015)

4. Sánchez-Salguero, R. ; Linares, J.C.; Camarero, J.J.; Madrigal-González, J.; Hevia, A.; Sánchez- Miranda, A.; Ballesteros-Cánovas J.A.; Alfaro-Sánchez, R.; García-Cervigón, A.I.; Bigler, C.; Rigling, A. 2015. Disentangling the effects of competition and climate on individual tree growth: A retrospective and dynamic approach in Scots pine. Forest Ecology and Management, 358: 12-25. https://doi.org/10.1016/j.foreco.2015.08.034. Q1(2015)

2014

 

3. Moreno-Fernández, D.; Sánchez-González, M.; Álvarez-González, J.G.; Hevia, A.; Majada, J.; Cañellas, I.; Gea-Izquierdo, G. 2014. Response to the interaction of thinning and pruning of two pine species in Mediterranean mountains. European Journal of Forest Research, 133(5): 883-843. https://doi.org/10.1007/s10342-014-0800-z. Q1(2014)

2013

2. González-García, M.; Hevia, A.; Majada, J.; Barrio-Anta, M. 2013. Above-ground biomass estimation at tree and stand level for short rotation plantations of Eucalyptus nitens (Deane & Maiden) Maiden in Northwest Spain. Biomass and Bioenergy, 54: 147-157.  https://doi.org/10.1016/j.biombioe.2013.03.019. Q1(2013)

1. Touchan, R.; Meko, D.M.; Ballesteros-Cánovas, J.A.; Sánchez-Salguero, R.; Camarero, J.J.; Kerchouche, D.; Muntan, E.; Khabcheche, M.; Blanco, J.A.; Rodriguez Morata, C.; Garófano-Gómez, V.; Martínez, L.A.; Alfaro-Sánchez, R.; Garah, K.; Hevia, A.; Madrigal-González, J.; Sánchez-Miranda, A.; Shestakova, T.A.; Tabakova, M. 2013. Education report Dendrochronology course in Valsain Forest. Segovia, Spain. Tree-Ring research, 69(2): 93 -100. https://doi.org/10.3959/1536-1098-69.2.93. Q2(2013)

 

Hevia, A.; Vilčko, F.; Álvarez-González, J.G. 2013. Dynamic stand growth model for Norway spruce forests based on long-term experiments in Germany. Recursos Rurais (Revista Oficial do IBADER, Instituto de Biodiversidade Agraria e Desenvolvemento Rural), 9: 45-54.

http://hdl.handle.net/10347/16271

Scientific publications

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