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Koushik Nagasubramanian
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Plant disease identification using explainable 3D deep learning on hyperspectral images
K Nagasubramanian, S Jones, AK Singh, S Sarkar, A Singh, ...
Plant methods 15, 1-10, 2019
330*2019
Ntire 2020 challenge on spectral reconstruction from an rgb image
B Arad, R Timofte, O Ben-Shahar, YT Lin, GD Finlayson
Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern …, 2020
2132020
Hyperspectral band selection using genetic algorithm and support vector machines for early identification of charcoal rot disease in soybean stems
K Nagasubramanian, S Jones, S Sarkar, AK Singh, A Singh, ...
Plant methods 14, 1-13, 2018
1652018
Challenges and opportunities in machine-augmented plant stress phenotyping
A Singh, S Jones, B Ganapathysubramanian, S Sarkar, D Mueller, ...
Trends in Plant Science 26 (1), 53-69, 2021
1332021
Development of optimized phenomic predictors for efficient plant breeding decisions using phenomic-assisted selection in soybean
K Parmley, K Nagasubramanian, S Sarkar, B Ganapathysubramanian, ...
Plant Phenomics, 2019
722019
How useful is active learning for image‐based plant phenotyping?
K Nagasubramanian, T Jubery, F Fotouhi Ardakani, SV Mirnezami, ...
The Plant Phenome Journal 4 (1), e20020, 2021
242021
Automated trichome counting in soybean using advanced image‐processing techniques
SV Mirnezami, T Young, T Assefa, S Prichard, K Nagasubramanian, ...
Applications in plant sciences 8 (7), e11375, 2020
212020
High-throughput phenotyping in soybean
AK Singh, A Singh, S Sarkar, B Ganapathysubramanian, W Schapaugh, ...
High-throughput crop phenotyping, 129-163, 2021
202021
PIRM2018 challenge on spectral image super-resolution: methods and results
M Shoeiby, A Robles-Kelly, R Timofte, R Zhou, F Lahoud, S Susstrunk, ...
Proceedings of the European Conference on Computer Vision (ECCV) Workshops, 0-0, 2018
192018
Usefulness of interpretability methods to explain deep learning based plant stress phenotyping
K Nagasubramanian, AK Singh, A Singh, S Sarkar, ...
arXiv preprint arXiv:2007.05729, 2020
182020
Plant phenotyping with limited annotation: Doing more with less
K Nagasubramanian, A Singh, A Singh, S Sarkar, ...
The Plant Phenome Journal 5 (1), e20051, 2022
172022
Self‐supervised learning improves classification of agriculturally important insect pests in plants
S Kar, K Nagasubramanian, D Elango, ME Carroll, CA Abel, A Nair, ...
The Plant Phenome Journal 6 (1), e20079, 2023
16*2023
Cyber-agricultural systems for crop breeding and sustainable production
S Sarkar, B Ganapathysubramanian, A Singh, F Fotouhi, S Kar, ...
Trends in plant science, 2023
92023
Distributed deep learning for persistent monitoring of agricultural fields
Y Esfandiari, K Nagasubramanian, F Fotouhi, PS Schnable, ...
NeurIPS 2021 AI for Science Workshop, 2021
62021
On load disaggregation using discrete events
NK Thokala, MG Chandra, K Nagasubramanian
2016 IEEE Innovative Smart Grid Technologies-Asia (ISGT-Asia), 324-329, 2016
62016
Exploring the use of 3D point cloud data for improved plant stress rating
S Chiranjeevi, T Young, TZ Jubery, K Nagasubramanian, S Sarkar, ...
AI for Agriculture and Food Systems, 2022
52022
Privacy-preserving deep models for plant stress phenotyping
M Cho, K Nagasubramanian, AK Singh, A Singh, ...
AI for Agriculture and Food Systems, 2022
32022
Self-supervised maize kernel classification and segmentation for embryo identification
D Dong, K Nagasubramanian, R Wang, UK Frei, TZ Jubery, T Lübberstedt, ...
Frontiers in Plant Science 14, 1108355, 2023
12023
frontiers Research Topics January 2024
J Li, Y Li, J Qiao, L Li, X Wang, J Yao, G Liao, A Das, SD Choudhury, ...
Machine Vision and Machine Learning for Plant Phenotyping and Precision …, 2024
2024
Baskar Ganapathysubramanian3 1. Department of Electrical Engineering, Iowa State University, Ames, USA 2. Department of Agronomy, Iowa State University, Ames, USA 3. Department …
K Nagasubramanian, AK Singh, A Singh, S Sarkar
Plant phenotyping with limited annotation: Doing more with less, 104, 2022
2022
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