Research Article
You have full text access to this OnlineOpen article
A 500 year dendroclimatic reconstruction of spring–summer precipitation from the lower Bavarian Forest region, Germany
Article first published online: 15 APR 2005
DOI: 10.1002/joc.1150
Copyright © 2005 Royal Meteorological Society
Additional Information
How to Cite
Wilson, R. J. S., Luckman, B. H. and Esper, J. (2005), A 500 year dendroclimatic reconstruction of spring–summer precipitation from the lower Bavarian Forest region, Germany. Int. J. Climatol., 25: 611–630. doi: 10.1002/joc.1150
Publication History
- Issue published online: 15 APR 2005
- Article first published online: 15 APR 2005
- Manuscript Revised: 22 NOV 2004
- Manuscript Accepted: 22 NOV 2004
- Manuscript Received: 8 DEC 2003
- Abstract
- References
- Cited By
Cited in:
- CrossRef
This article has been cited by:
- 1, , , , , , , A millennial long MarchâJuly precipitation reconstruction for southern-central England, Climate Dynamics, 2012,
- 2, , , , , A tree-ring reconstruction of East Anglian (UK) hydroclimate variability over the last millennium, Climate Dynamics, 2012,
- 3, , , , , , Central England temperature since AD 1850: the potential of stable carbon isotopes in British oak trees to reconstruct past summer temperatures, Journal of Quaternary Science, 2012, 27, 4Direct Link:
- 4, , , , Ensemble estimates reveal a complex hydroclimatic sensitivity of pine growth at Carpathian cliff sites, Agricultural and Forest Meteorology, 2012, 160, 100
- 5, , Lake sonar surveys and the search for sub-fossil wood, Dendrochronologia, 2012, 30, 1, 61
- 6, , , , , , A 1000-year reconstruction of summer precipitation from Ireland: Calibration of a peat-based palaeoclimate record, Quaternary International, 2011,
- 7, , , , , Araucaria araucana tree-ring chronologies in Argentina: spatial growth variations and climate influences, Trees, 2011, 26, 2, 443
- 8, , , , , , , Detecting dryness and wetness signals from tree-rings in Shenyang, Northeast China, Palaeogeography, Palaeoclimatology, Palaeoecology, 2011, 302, 3-4, 301
- 9, , , Effects of Tree Age on Climate Signal?? Evidence from Young and Old Trees in a Temperature Forest, Energy Procedia, 2011, 11, 2580
- 10, , , , , , Eigen analysis of tree-ring records: part 2, posing the eigen problem, Theoretical and Applied Climatology, 2011, 107, 1-2, 131
- 11, , , , , , , Long-term summer (AD751–2008) temperature fluctuation in the French Alps based on tree-ring data, Boreas, 2011, 40, 2Direct Link:
- 12, , , , , , A 350 year drought reconstruction from Alpine tree ring stable isotopes, Global Biogeochemical Cycles, 2010, 24, 2
- 13, , , , , Annual temperature history in Southwest Tibet during the last 400 years recorded by tree rings, International Journal of Climatology, 2010, 30, 7Direct Link:
- 14, , , , , Five centuries of Southern Moravian drought variations revealed from living and historic tree rings, Theoretical and Applied Climatology, 2010, 105, 1-2, 167
- 15, , , , Impact of drought on the temporal dynamics of wood formation in Pinus sylvestris, Tree Physiology, 2010, 30, 4, 490
- 16, , , , , Intensified pluvial conditions during the twentieth century in the inland Heihe River Basin in arid northwestern China over the past millennium, Global and Planetary Change, 2010, 72, 3, 192
- 17, , , Climate signal in tree-ring chronologies in a temperate climate: A multi-species approach, Dendrochronologia, 2009, 27, 3, 183
- 18, , , , , , Five centuries of Stockholm winter/spring temperatures reconstructed from documentary evidence and instrumental observations, Climatic Change, 2009, 101, 1-2, 109
- 19, , , , , Frequency-dependent signals in multi-centennial oak vessel data, Palaeogeography, Palaeoclimatology, Palaeoecology, 2009, 275, 1-4, 92
- 20, , , , , , , Inner Alpine conifer response to 20th century drought swings, European Journal of Forest Research, 2009, 129, 3, 289
- 21, , , , , Multi-proxy reconstructions of northeastern Pacific sea surface temperature data from trees and Pacific geoduck, Palaeogeography, Palaeoclimatology, Palaeoecology, 2009, 278, 1-4, 40
- 22
- 23, , , , , , An investigation of the common signal in tree ring stable isotope chronologies at temperate sites, Journal of Geophysical Research, 2008, 113, G4
- 24, , , , Climate signal age effectsâEvidence from young and old trees in the Swiss Engadin, Forest Ecology and Management, 2008, 255, 11, 3783
- 25, , , Climate-growth relationships of relict Pinus tabulaeformis at the northern limit of its natural distribution in northern China, Journal of Vegetation Science, 2008, 19, 3Direct Link:
- 26, , Earlywood vessel size of oak as a potential proxy for spring precipitation in mesic sites, Journal of Biogeography, 2008, 35, 12Direct Link:
- 27, , , , Long-term summer temperature variations in the Pyrenees, Climate Dynamics, 2008, 31, 6, 615
- 28, , , , , On the radial-growth variations of Japanese beech (Fagus crenata) on the northernmost part of Honshu Island, Japan, Journal of Wood Science, 2008, 54, 3, 183
- 29, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Signal strength and climate calibration of a European tree-ring isotope network, Geophysical Research Letters, 2007, 34, 24
- 30, , , , , Warmer early instrumental measurements versus colder reconstructed temperatures: shooting at a moving target, Quaternary Science Reviews, 2007, 26, 25-28, 3298
- 31, , , , Cycles and shifts: 1,300Â years of multi-decadal temperature variability in the Gulf of Alaska, Climate Dynamics, 2006, 28, 4, 425
- 32, , , , , , Interannual growth response of Norway spruce to climate along an altitudinal gradient in the Tatra Mountains, Poland, Trees, 2006, 20, 6, 735
- 33, , , , , , , The twentieth century was the wettest period in northern Pakistan over the past millennium, Nature, 2006, 440, 7088, 1179
- 34
- 35, , , , Five hundred years of gridded high-resolution precipitation reconstructions over Europe and the connection to large-scale circulation, Climate Dynamics, 2005, 26, 4, 387
- 36, , , , , Temperature and precipitation variability in the European Alps since 1500, International Journal of Climatology, 2005, 25, 14Direct Link:

1097-0088/asset/JOC_centre.gif?v=1&s=392766b4fccfb001371ef9b7a825690a48ffca93)
1097-0088/asset/JOC_right.gif?v=1&s=0dac9618b2b4992612d732ba56fc6b92cb55979a)
1097-0088/asset/cover.gif?v=1&s=86bd20c4b9e235b31f03217ea75996a9b5386dc5)