Open Access

Erratum to: Combined effect of pulse density and grid cell size on predicting and mapping aboveground carbon in fast-growing Eucalyptus forest plantation using airborne LiDAR data

  • Carlos Alberto Silva1, 2Email author,
  • Andrew Thomas Hudak2,
  • Carine Klauberg2,
  • Lee Alexandre Vierling1,
  • Carlos Gonzalez-Benecke3,
  • Samuel de Padua Chaves Carvalho4,
  • Luiz Carlos Estraviz Rodriguez5 and
  • Adrián Cardil6
Carbon Balance and Management201712:14

https://doi.org/10.1186/s13021-017-0082-0

Received: 6 June 2017

Accepted: 13 June 2017

Published: 30 June 2017

The original article was published in Carbon Balance and Management 2017 12:13

Erratum to: Carbon Balance Manage (2017) 12:13 DOI 10.1186/s13021-017-0081-1

Upon publication of the original article [1], the authors noticed that Figure 1 had accidentally been changed to Figure 5. Please see the correct Fig. 1 in this erratum.
Fig. 1

Location of the study area in the State of São Paulo, Brazil. The stars indicate the location of the Eucalyptus plantations

This has also been updated in the original article. We apologise for the error made.

Notes

Declarations

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Authors’ Affiliations

(1)
Department of Natural Resources and Society, College of Natural Resources, University of Idaho, (UI)
(2)
US Forest Service (USDA), Rocky Mountain Research Station, RMRS
(3)
Department of Forest Engineering, Oregon State University
(4)
College of Forestry, Federal University of Mato Grosso
(5)
Department of Forest Sciences, College of Agriculture Luiz de Queiroz (ESALQ), University of Sao Paulo (USP)
(6)
Tecnosylva, Parque Tecnológico de León

Reference

  1. Silva CA, Hudak AT, Klauberg C, Vierling LA, Gonzalez-Benecke C, de Padua Chaves Carvalho S, Rodriguez LCE, Cardil A. Combined effect of pulse density and grid cell size on predicting and mapping aboveground carbon in fast-growing Eucalyptus forest plantation using airborne LiDAR data. Carbon Balance Manage. 2017;12:13. doi:10.1186/s13021-017-0081-1.View ArticleGoogle Scholar

Copyright

© The Author(s) 2017