Page 284

Proceedings of International Conference on Climate Change, Biodiversity and Ecosystem Services for the Sustainable Development Goals : Policy and Practice 27-29 June 2016 at the Sirindhorn International Environmental Park, Cha-am, Phetchaburi, Thailand

Tanaka,  H.Komatsu,  M.  Suzuki,  and  C.  Tantasirin,  “Inter-annual  variation  in  growing  season  length  of  a  tropical  seasonal  forest  in  northern  Thailand,”  For. Ecol.  Manage.,  Vol.229,  pp.333-339,  2006. 17 K.  Tanaka,  C.  Tantasirin,  and  M.  Suzuki,  “Interannual  variation  in  leaf  expansion  and  outbreak  of  a  teak  defoliator  at  a  teak stand  in  northern  Thailand.,”  Ecol.  Appl.,  Vol.21,  no.5,  pp.1792-1801,  2011. 18 N.  Yoshifuji,  Y.  Igarashi,  N.  Tanaka,  K.  Tanaka,  T.  Sato,  C.  Tantasirin,  and  M.  Suzuki,  “Inter-annual  variation  in  the  response  of  leaf-out  onset  to  soil moisture increase  in  a  teak  plantation  in  northern  Thailand.,”  Int.  J.  Biometeorol.,  Vol.58,  pp.2025-2029,  2014. 19 L.  Eklundha  and  P.  Jönssonb,  “TIMESAT  3.1  software manual,”  Lund  Univ.  Sweden, pp.1-82,  2012. 20 P.  Jönsson  and  L.  Eklundh,  “TIMESAT-A  program  for  analyzing  time-series  of  satellite  sensor  data,”  Comput.  Geosci.,  Vol.30,  pp.833-845,  2004. 21 A.  Palacios-Orueta,  M.  Huesca,  M.L.  Whiting,  J.  Litago,  S.  Khanna,  M.  Garcia, and  S.L.  Ustin,  “Derivation  of  phenological metrics  by  function  fitting  to  time-series  of  Spectral  Shape  Indexes  AS1  and  AS2:  Mapping  cotton  phenological  stages  using MODIS  time  series,”  Remote  Sens.  Environ.,Vol.126,  pp.148-159,  2012. 22 P.  Jonsson  and  L.  Eklundh,  “Seasonality  extraction  from  satellite  sensor  data  BT- Frontiers  of  Remote  Sensing  Information  Processing,”  Frontiers  of  Remote  Sensing  Information  Processing.  pp.487-500,  2008. 23 C.  Dytham,  Choosing  and  Using  Statistics A  Biologist’s  Guide,  3rd  ed.,  Vol.87.  A  John Wiley  &  Sons,  Ltd.,  Publication,  2011,  pp.734-735. 24 R.  Madugundu,  V.  Nizalapur,  and  C.S.  Jha,  “Estimation  of  LAI  and  above-ground biomass  in  deciduous  forests: Western  Ghats  of  Karnataka,  India,”  Int.  J.  Appl.  Earth  Obs.  Geoinf.,  Vol.10,  pp.211-219,  2008. 25 L.  Van  Der  Linden,  J.  Grainger,  L.  D.  P.  Cognitive,  and  L.  D.  P.   Cognitive,  “Relationships  of  NDVI,  Biomass,  and  Leaf  Area  Index  (LAI)  for  six  key  plant  species  in  Barrow,  Alaska,”  PeerJ  PrePrints, pp.1-17,  2015. 26 S.  Potithep,  N.K.  Nasahara,  H.  Muraoka, S.  Nagai,  R.  Suzuki,  and  E.  Science,  “What  Is  the  Actual  Relationship  Between LAI  and  VI  in  a  Deciduous  Broadleaf  Forest ?”,  Remote  Sens.  Spat.  Inf.  Sci.,  Vol.XXXVIII,  no.  VI,  pp.609-614,  2010. 282 Proceedings  of  the  International  Conference  on  Climate  Change,  Biodiversity  and  Ecosystem  Services  for  the Sustainable  Development  Goals  (SDGs):  Policy  and  Practice  27-29  June  2016,  Cha-am,  Phetchaburi,  Thailand


Proceedings of International Conference on Climate Change, Biodiversity and Ecosystem Services for the Sustainable Development Goals : Policy and Practice 27-29 June 2016 at the Sirindhorn International Environmental Park, Cha-am, Phetchaburi, Thailand
To see the actual publication please follow the link above