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This article has been cited by the following article(s):
Calibration of a new transient thermal dissipation–based Internet of Things (IoT)-sensor for xylem sap flow density measurements for three different temperate tree species
David Dluhosch, Shahla Asgharinia, Francesco Renzi, Benjamin D Hesse, Lasse Löffelbein, Riccardo Valentini, Thorsten E E Grams, Timo Gebhardt and Roberto Tognetti Tree Physiology 45(6) (2025) https://doi.org/10.1093/treephys/tpaf047
Heat tracer-based sap flow methods for tree transpiration measurements: a mini review and bibliometric analysis
Jiaming Wang, Neil C Turner, Hao Feng, Miles Dyck, Hailong He and Tracy Lawson Journal of Experimental Botany 74(3) 723 (2023) https://doi.org/10.1093/jxb/erac424
Measurement of low sap flux density in plants using the single needle heat pulse probe
Multi-species test and calibration of an improved transient thermal dissipation system of sap flow measurement with a single probe
Sophea Nhean, Supat Isarangkool Na Ayutthaya, Alain Rocheteau, Frederic C Do and Roberto Tognetti Tree Physiology 39(6) 1061 (2019) https://doi.org/10.1093/treephys/tpz017
A single‐probe heat pulse method for estimating sap velocity in trees
Comment on “Sap flow measurements by a single thermal dissipation probe: exploring the transient regime” — Ann. For. Sci. 66 (2009) by Mahjoub et al. and “Sap flow measurement by a single thermal dissipation probe in transient regime: implementation of the method and test under field conditions” — Ann. For. Sci. 1-9 (2012) by Masmoudi et al.