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3D Maize Plant Reconstruction Based on Georeferenced Overlapping LiDAR Point Clouds.

, , , , , and . Remote Sensing, 7 (12): 17077-17096 (2015)

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3D Maize Plant Reconstruction Based on Georeferenced Overlapping LiDAR Point Clouds., , , , , and . Remote Sensing, 7 (12): 17077-17096 (2015)Iterative individual plant clustering in maize with assembled 2D LiDAR data., , , , and . Computers in Industry, (2018)Crop Row Detection in Maize for Developing Navigation Algorithms Under Changing Plant Growth Stages., , , , and . ROBOT (1), volume 417 of Advances in Intelligent Systems and Computing, page 371-382. Springer, (2015)Determination of stem position and height of reconstructed maize plants using a time-of-flight camera., , , , and . Comput. Electron. Agric., (2018)Correction: Vázquez-Arellano, M., et al. 3-D Imaging Systems for Agricultural Applications - A Review. Sensors 2016, 16, 618., , , and . Sensors, 16 (7): 1039 (2016)Leaf Area Estimation of Reconstructed Maize Plants Using a Time-of-Flight Camera Based on Different Scan Directions., , , , and . Robotics, 7 (4): 63 (2018)3-D Imaging Systems for Agricultural Applications - A Review., , , and . Sensors, 16 (5): 618 (2016)3D Imaging with a Sonar Sensor and an Automated 3-Axes Frame for Selective Spraying in Controlled Conditions., , , , , and . J. Imaging, 3 (1): 9 (2017)Reconstruction of geo-referenced maize plants using a consumer time-of-flight camera in different agricultural environments., , , and . GIL Jahrestagung, volume P-253 of LNI, page 213-216. GI, (2016)3-D reconstruction of maize plants using a time-of-flight camera., , , , , and . Comput. Electron. Agric., (2018)