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Ideas and perspectives: tracing terrestrial ecosystem water fluxes using hydrogen and oxygen stable isotopes - challenges and opportunities from an interdisciplinary perspective
Penna, D., Hopp, L., Scandellari, F., Allen, S. T., Benettin, P., Beyer, M., Geris, J., Klaus, J., Marshall, J. D., Schwendenmann, L., Volkmann, T. H. M., von Freyberg, J., Amin, A., Ceperley, N., Engel, M., Frentress, J., Giambastiani, Y., McDonnell, J. J., Zuecco, G., … Kirchner, J. W. (2018). Ideas and perspectives: tracing terrestrial ecosystem water fluxes using hydrogen and oxygen stable isotopes - challenges and opportunities from an interdisciplinary perspective. Biogeosciences, 15(21), 6399-6415. https://doi.org/10.5194/bg-15-6399-2018
20th century changes in carbon isotopes and water-use efficiency: tree-ring-based evaluation of the CLM4.5 and LPX-Bern models
Keller, K. M., Lienert, S., Bozbiyik, A., Stocker, T. F., Churakova (Sidorova), O. V., Frank, D. C., Klesse, S., Koven, C. D., Leuenberger, M., Riley, W. J., Saurer, M., Siegwolf, R., Weigt, R. B., & Joos, F. (2017). 20th century changes in carbon isotopes and water-use efficiency: tree-ring-based evaluation of the CLM4.5 and LPX-Bern models. Biogeosciences, 14(10), 2641-2673. https://doi.org/10.5194/bg-14-2641-2017
Quantification of dynamic soil-vegetation feedbacks following an isotopically labelled precipitation pulse
Piayda, A., Dubbert, M., Siegwolf, R., Cuntz, M., & Werner, C. (2017). Quantification of dynamic soil-vegetation feedbacks following an isotopically labelled precipitation pulse. Biogeosciences, 14(9), 2293-2306. https://doi.org/10.5194/bg-14-2293-2017
Simulating oxygen isotope ratios in tree ring cellulose using a dynamic global vegetation model
Keel, S. G., Joos, F., Spahni, R., Saurer, M., Weigt, R. B., & Klesse, S. (2016). Simulating oxygen isotope ratios in tree ring cellulose using a dynamic global vegetation model. Biogeosciences, 13(13), 3869-3886. https://doi.org/10.5194/bg-13-3869-2016
Multi-isotope labelling of organic matter by diffusion of <sup>2</sup>H/<sup>18</sup>O-H<sub>2</sub>O vapour and <sup>13</sup>C-CO<sub>2</sub> into the leaves and its distribution within the plan
Studer, M. S., Siegwolf, R. T. W., Leuenberger, M., & Abiven, S. (2015). Multi-isotope labelling of organic matter by diffusion of 2H/18O-H2O vapour and 13C-CO2 into the leaves and its distribution within the plant. Biogeosciences, 12(6), 1865-1879. https://doi.org/10.5194/bg-12-1865-2015
Carbon transfer, partitioning and residence time in the plant-soil system: A comparison of two 13CO<sub>2</sub> labelling techniques
Studer, M. S., Siegwolf, R. T. W., & Abiven, S. (2014). Carbon transfer, partitioning and residence time in the plant-soil system: A comparison of two 13CO2 labelling techniques. Biogeosciences, 11(6), 1637-1648. https://doi.org/10.5194/bg-11-1637-2014
Progress and challenges in using stable isotopes to trace plant carbon and water relations across scales
Werner, C., Schnyder, H., Cuntz, M., Keitel, C., Zeeman, M. J., Dawson, T. E., Badeck, F. W., Brugnoli, E., Ghashghaie, J., Grams, T. E. E., Kayler, Z. E., Lakatos, M., Lee, X., Máguas, C., Ogée, J., Rascher, K. G., Siegwolf, R. T. W., Unger, S., Welker, J., … Gessler, A. (2012). Progress and challenges in using stable isotopes to trace plant carbon and water relations across scales. Biogeosciences, 9(8), 3083-3111. https://doi.org/10.5194/bg-9-3083-2012
Summer drought reduces total and litter-derived soil CO<sub>2</sub> effluxes in temperate grassland - Clues from a 13C litter addition experiment
Joos, O., Hagedorn, F., Heim, A., Gilgen, A. K., Schmidt, M. W. I., Siegwolf, R. T. W., & Buchmann, N. (2010). Summer drought reduces total and litter-derived soil CO2 effluxes in temperate grassland - Clues from a 13C litter addition experiment. Biogeosciences, 7(3), 1031-1041. https://doi.org/10.5194/bg-7-1031-2010