1、Patil SM, Henke M, Chandramouli M and Jagarlapudi A; Die Rolle virtueller Pflanzen in der digitalen Landwirtschaft (2024) Book chapter in: Chaudhary S, Biradar CM, Divakaran S, Raval MS (eds) ”Digitales Ökosystem für Innovationen in der Landwirtschaft”,book series “Studen in Big Data 121”, Springer Nature Singapore Pte Ltd., doi:10.1007/978-981-97-2498-7_8; date: 2024-08-17
2、Li WJ, Zhang K, Liu JX, Wu JA, Zhang Y, and Henke M (2024) Optimizing Daylily Cultivation: Integrating Physiological Modeling and Planting Patterns for Enhanced Yield and Resource Efficiency, Frontiers in Plant Science (JCR Q1,IF = 5.6,通讯作者).
3、Zhao D, Xu TY, Henke M, Yang H, Zhang CJ, Cheng JP, Yang GJ (2024) A method to rapidly construct 3D canopy scenes for maize and their spectral response evaluation, Computers and Electronics in Agriculture, 224, doi:10.1016/j.compag.2024.109138. (中科院一区,IF = 8.3).
4、Xu LF, He KR, Henke M, Buck-Sorlin GH (2024) Mixed particle swarm optimization algorithm-based approach to optimize spatial distribution of virtual maize, Computers and Electronics in Agriculture. (中科院一区,IF = 8.3).
5、Xu DM, Henke M, Li YM, Zhang Y, Liu AH, Liu XG and Li TL (2024) Optimal Design of light Mlicroclimate and Planting Strategy for Chinese Solar Greenhouses Using 3D Light Environment Simulations, Energy, 302, 131805, doi: 10.1016/j.energy.2024.131805. (中科院一区,IF = 9, 并列第一作者).
6、Zhang Y, Henke M, Li YM, Xu DM, Liu XA, Liu XA and Li TL (2022) Analysing the impact of greenhouse planting strategy and plant architecture on tomato plant physiology and estimated dry matter; Frontiers in Plant Science, 13:828252, 1-19, doi: 10.3389/fpls.2022.828252. (JCR Q1,IF = 7.255,并列第一作者).
7、Henke M, Junker A, Neumann K, Altmann T and Gladilin E (2021) Semi-automated ground truth segmentation and phenotyping of plant structures using k-means clustering of Eigen-colors (kmSeg); Agriculture, 11, 1098, doi: 10.3390/agriculture11111098. (JCR Q2,IF = 3.459,第一作者).
8、Zhang Y, Henke M, Buck-Sorlin GH, Li YM, Xu H, Liu XA and Li TL (2021) Estimating canopy leaf physiology of tomato plants grown in a solar greenhouse: Evidence from simulations of light and thermal microclimate using a Functional-Structural Plant Model; Agricultural and Forest Meteorology, 307, 108494, 1-17, doi: 10.1016/j.agrformet.2021.108494. (中科院1区,IF = 7.021,并列第一作者).
9、Henke M, Junker A, Neumann K, Altmann T and Gladilin E (2020) A two-step registration classification approach to automated segmentation of multimodal images for highthroughput green-house plant phenotyping; Plant Methods, 16(95), 1-10, doi: 10.1186/s13007-020-00637-x. (JCR Q1,IF = 5.904,第一作者).
10、Henke M, Junker A, Neumann K, Altmann T and Gladilin E (2019) Comparison and extension of three methods for automated registration of multi-modal plant images; Plant Methods, 15(1), 44, doi: 10.1186/s13007-019-0426-8. (JCR Q1,IF = 5.904,第一作者).
11、Henke M, Sarlikioti V, Kurth W, Buck-Sorlin GH and Pagès L (2014) Exploring root developmental plasticity to nitrogen with a three-dimensional architectural model; Plant and Soil, 385(1-2), 49-62, doi: 10.1007/s11104-014-2221-7. (JCR Q1,IF = 5.44,第一作者).