Artículos de revistas sobre el tema "Root sytem architecture"
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Atger, Claire y Claude Edelin. "Premières données sur l'architecture comparée des systèmes racinaires et caulinaires". Canadian Journal of Botany 72, n.º 7 (1 de julio de 1994): 963–75. http://dx.doi.org/10.1139/b94-122.
Texto completoGodoy, Eduardo P., Rubens A. Tabile, Robson R. D. Pereira, Giovana T. Tangerino, Arthur J. V. Porto y Ricardo Y. Inamasu. "Design and implementation of an electronic architecture for an agricultural mobile robot". Revista Brasileira de Engenharia Agrícola e Ambiental 14, n.º 11 (noviembre de 2010): 1240–47. http://dx.doi.org/10.1590/s1415-43662010001100015.
Texto completoMorita, Shigenori y Jun Abe. "Grasping root system architecture". Root Research 23, n.º 4 (2014): 99–106. http://dx.doi.org/10.3117/rootres.23.99.
Texto completoZiegler, Clare, Rosemary J. Dyson y Iain G. Johnston. "Model selection and parameter estimation for root architecture models using likelihood-free inference". Journal of The Royal Society Interface 16, n.º 156 (julio de 2019): 20190293. http://dx.doi.org/10.1098/rsif.2019.0293.
Texto completoTsybulnyk, Serhii, Viktoriia Nakoryk y Diana Pivtorak. "DESIGN OF THE ARCHITECTURE OF THE AUTOMATED SYSTEM FOR CREATING THE ACCOMPANYING DOCUMENTATION OF THE EDUCATIONAL PROCESS". Bulletin of Kyiv Polytechnic Institute. Series Instrument Making, n.º 67(1) (30 de junio de 2024): 77–83. http://dx.doi.org/10.20535/1970.67(1).2024.306737.
Texto completoChen, Ying L., Vanessa M. Dunbabin, Art J. Diggle, Kadambot H. M. Siddique y Zed Rengel. "Development of a novel semi-hydroponic phenotyping system for studying root architecture". Functional Plant Biology 38, n.º 5 (2011): 355. http://dx.doi.org/10.1071/fp10241.
Texto completoNicola, Silvana. "Understanding Root Systems to Improve Seedling Quality". HortTechnology 8, n.º 4 (octubre de 1998): 544–49. http://dx.doi.org/10.21273/horttech.8.4.544.
Texto completoAkikawa, Motohiro y Masayuki Yamamura. "Materializing Architecture for Processing Multimodal Signals for a Humanoid Robot Control System". Journal of Advanced Computational Intelligence and Intelligent Informatics 25, n.º 3 (20 de mayo de 2021): 335–45. http://dx.doi.org/10.20965/jaciii.2021.p0335.
Texto completoMaslard, Corentin, Mustapha Arkoun, Christophe Salon y Marion Prudent. "Root architecture characterization in relation to biomass allocation and biological nitrogen fixation in a collection of European soybean genotypes". OCL 28 (2021): 48. http://dx.doi.org/10.1051/ocl/2021033.
Texto completoSombu, Alwin Suryono, Ryadi Adityavarman y John Petrus Talan. "Physical systems - Balinese cultural meaning in Three Monkeys Restaurant architecture in Sanur Bali". ARTEKS : Jurnal Teknik Arsitektur 9, n.º 1 (1 de abril de 2024): 59–68. http://dx.doi.org/10.30822/arteks.v9i1.2715.
Texto completoMorris, Emily C., Marcus Griffiths, Agata Golebiowska, Stefan Mairhofer, Jasmine Burr-Hersey, Tatsuaki Goh, Daniel von Wangenheim et al. "Shaping 3D Root System Architecture". Current Biology 27, n.º 17 (septiembre de 2017): R919—R930. http://dx.doi.org/10.1016/j.cub.2017.06.043.
Texto completoCERITOGLU, Mustafa, Figen CERITOGLU, Murat ERMAN y Harun BEKTAS. "Root system variation of pulse crops at early vegetative stage". Notulae Botanicae Horti Agrobotanici Cluj-Napoca 48, n.º 4 (22 de diciembre de 2020): 2182–97. http://dx.doi.org/10.15835/nbha48412054.
Texto completoBilokon, O. S. "Software Architecture of Navigation Systems for Control Modules of Robotics". Èlektronnoe modelirovanie 45, n.º 5 (10 de octubre de 2023): 103–12. http://dx.doi.org/10.15407/emodel.45.05.103.
Texto completoDuque, Luis O. "Early root phenotyping in sweetpotato (Ipomoea batatas L.) uncovers insights into root system architecture variability". PeerJ 11 (19 de julio de 2023): e15448. http://dx.doi.org/10.7717/peerj.15448.
Texto completoColchado-López, Joel, R. Cristian Cervantes y Ulises Rosas. "A Linear Model to Describe Branching and Allometry in Root Architecture". Plants 8, n.º 7 (12 de julio de 2019): 218. http://dx.doi.org/10.3390/plants8070218.
Texto completoGifford, Miriam L., Guohua Xu, Lionel X. Dupuy, Kris Vissenberg y Greg Rebetzke. "Root architecture and rhizosphere–microbe interactions". Journal of Experimental Botany 75, n.º 2 (8 de enero de 2024): 503–7. http://dx.doi.org/10.1093/jxb/erad488.
Texto completoHaber, Adam. "A Multi-Agent Control Architecture for a Rescue Robot". Proceedings of the AAAI Conference on Artificial Intelligence 26, n.º 1 (20 de septiembre de 2021): 2392–93. http://dx.doi.org/10.1609/aaai.v26i1.8183.
Texto completoTang, Feng, Geng Sheng Rao, Qiang Chen y Ping Zhang. "Open Robot Control Platform Based on LSOA". Applied Mechanics and Materials 341-342 (julio de 2013): 719–26. http://dx.doi.org/10.4028/www.scientific.net/amm.341-342.719.
Texto completoRamos-Rivera, Johnatan, Harianto Rahardjo, Daryl Lee Tsen-Tieng, Nong Xuefeng y Fong Yok King. "Mechanical response of the real tree root architecture under lateral load". Canadian Journal of Forest Research 50, n.º 7 (julio de 2020): 595–607. http://dx.doi.org/10.1139/cjfr-2019-0332.
Texto completoGao, H. J. y H. Q. Yang. "Nitric oxide effect on root architecture development in Malus seedlings". Plant, Soil and Environment 57, No. 9 (30 de agosto de 2011): 418–22. http://dx.doi.org/10.17221/209/2011-pse.
Texto completoBensaci, Chaima, Youcef Zennir, Denis Pomorski, Fares Innal y Yiliu Liu. "Distributed vs. Hybrid Control Architecture Using STPA and AHP - Application to an Autonomous Mobile Multi-robot System". International Journal of Safety and Security Engineering 11, n.º 1 (28 de febrero de 2021): 1–12. http://dx.doi.org/10.18280/ijsse.110101.
Texto completoFitter, A. H. y T. R. Stickland. "Fractal Characterization of Root System Architecture". Functional Ecology 6, n.º 6 (1992): 632. http://dx.doi.org/10.2307/2389956.
Texto completoDeak, Karen I. y Jocelyn Malamy. "Osmotic regulation of root system architecture". Plant Journal 43, n.º 1 (16 de mayo de 2005): 17–28. http://dx.doi.org/10.1111/j.1365-313x.2005.02425.x.
Texto completoLynch, Jonathan. "1002 ADAPTATION OF BEAN SEEDLINGS TO LOW P AVAILABILITY". HortScience 29, n.º 5 (mayo de 1994): 573b—573. http://dx.doi.org/10.21273/hortsci.29.5.573b.
Texto completoTruong, Thomas, Anh Dinh y Khan Wahid. "An Ultra-Wideband Frequency System for Non-Destructive Root Imaging". Sensors 18, n.º 8 (26 de julio de 2018): 2438. http://dx.doi.org/10.3390/s18082438.
Texto completoŠtofko, P. y M. Kodrík. "Comparison of the root system architecture between windthrown and undamaged spruces growing in poorly drained sites". Journal of Forest Science 54, No. 4 (29 de abril de 2008): 150–60. http://dx.doi.org/10.17221/3101-jfs.
Texto completoMajhi, Prasanta Kumar, Sarita Pradhan, Partha Pratim Behera, Ritik Digamber Bisane y Prashant Kumar Sharma. "Regulation and Expression of Phytohormones for Root Architectural Trait Development in Rice: A Review". International Journal of Environment and Climate Change 13, n.º 10 (21 de agosto de 2023): 740–48. http://dx.doi.org/10.9734/ijecc/2023/v13i102711.
Texto completoERMAN, Murat, Fatih ÇIĞ, Figen CERITOGLU y Mustafa CERITOGLU. "Plant growth promoting bacteria enhances photosynthesis, nodulation and root system architecture in lentil under lead toxicity". Journal of Central European Agriculture 23, n.º 3 (2022): 582–91. http://dx.doi.org/10.5513/jcea01/23.3.3577.
Texto completoSUN, Si-Min, Bei HAN, Lin CHEN, Wei-Nan SUN, Xian-Long ZHANG y Xi-Yan YANG. "Root system architecture analysis and genome-wide association study of root system architecture related traits in cotton". Acta Agronomica Sinica 48, n.º 5 (1 de mayo de 2022): 1081–90. http://dx.doi.org/10.3724/sp.j.1006.2022.14067.
Texto completoGonzález-Santamarta, Miguel Á., Francisco J. Rodríguez-Lera, Claudia Álvarez-Aparicio, Ángel M. Guerrero-Higueras y Camino Fernández-Llamas. "MERLIN a Cognitive Architecture for Service Robots". Applied Sciences 10, n.º 17 (29 de agosto de 2020): 5989. http://dx.doi.org/10.3390/app10175989.
Texto completoKrystyna, Zarzyńska, Boguszewska-Mańkowska Dominika y Nosalewicz Artur. "Differences in size and architecture of the potato cultivars root system and their tolerance to drought stress". Plant, Soil and Environment 63, No. 4 (25 de abril de 2017): 159–64. http://dx.doi.org/10.17221/4/2017-pse.
Texto completoLesmes-Vesga, Ricardo A., Liliana M. Cano, Mark A. Ritenour, Ali Sarkhosh, José X. Chaparro y Lorenzo Rossi. "Rhizoboxes as Rapid Tools for the Study of Root Systems of Prunus Seedlings". Plants 11, n.º 16 (9 de agosto de 2022): 2081. http://dx.doi.org/10.3390/plants11162081.
Texto completoSaleem, Muhammad, Audrey D. Law, Mohammad Radhi Sahib, Zahida H. Pervaiz y Qingming Zhang. "Impact of root system architecture on rhizosphere and root microbiome". Rhizosphere 6 (junio de 2018): 47–51. http://dx.doi.org/10.1016/j.rhisph.2018.02.003.
Texto completoIqbal, Muhammad, Bhakti Yudho Suprapto, Hera Hikmarika, Hermawati Hermawati y Suci Dwijayanti. "Design of Real-Time Face Recognition and Emotion Recognition on Humanoid Robot Using Deep Learning". Jurnal Ecotipe (Electronic, Control, Telecommunication, Information, and Power Engineering) 9, n.º 2 (6 de octubre de 2022): 149–58. http://dx.doi.org/10.33019/jurnalecotipe.v9i2.3044.
Texto completoTZAFESTAS, ELPIDA S., SPYROS N. RAPTIS y SPYROS G. TZAFESTAS. "MULTI-AGENT ROBOT ARCHITECTURES: THE DECOMPOSITION ISSUE AND A CASE STUDY". International Journal on Artificial Intelligence Tools 07, n.º 02 (junio de 1998): 163–87. http://dx.doi.org/10.1142/s021821309800010x.
Texto completoDouglas, D. A. "Clonal architecture of Salix setchelliana (gravel bar willow) in Alaska". Canadian Journal of Botany 69, n.º 3 (1 de marzo de 1991): 590–96. http://dx.doi.org/10.1139/b91-080.
Texto completoOsmont, Karen S., Richard Sibout y Christian S. Hardtke. "Hidden Branches: Developments in Root System Architecture". Annual Review of Plant Biology 58, n.º 1 (junio de 2007): 93–113. http://dx.doi.org/10.1146/annurev.arplant.58.032806.104006.
Texto completoLavenus, Julien, Soazig Guyomarc’h y Laurent Laplaze. "PIN Transcriptional Regulation Shapes Root System Architecture". Trends in Plant Science 21, n.º 3 (marzo de 2016): 175–77. http://dx.doi.org/10.1016/j.tplants.2016.01.011.
Texto completoHochholdinger, Frank. "Untapping root system architecture for crop improvement". Journal of Experimental Botany 67, n.º 15 (agosto de 2016): 4431–33. http://dx.doi.org/10.1093/jxb/erw262.
Texto completoMattupalli, Chakradhar, Anand Seethepalli, Larry M. York y Carolyn A. Young. "Digital Imaging to Evaluate Root System Architectural Changes Associated with Soil Biotic Factors". Phytobiomes Journal 3, n.º 2 (enero de 2019): 102–11. http://dx.doi.org/10.1094/pbiomes-12-18-0062-r.
Texto completoZulfiqar, Alveena, Beenish Jehan Azhar, Aroosa Zeb, Asyia Zeenat, Sitwat Aman, Scott A. Heckerthorn y Samina N. Shakeel. "Screening of Rice Varieties based on Remodeling of Root Architecture Linked to Enhanced Phosphorus Transporters and Ethylene Signaling for Better Phosphorous Acquisition under Limiting Conditions". Sains Malaysiana 50, n.º 6 (30 de junio de 2021): 1621–38. http://dx.doi.org/10.17576/jsm-2021-5006-10.
Texto completoRao, Shiwangni, Roger Armstrong, Viridiana Silva-Perez, Abeya T. Tefera y Garry M. Rosewarne. "Pulse Root Ideotype for Water Stress in Temperate Cropping System". Plants 10, n.º 4 (3 de abril de 2021): 692. http://dx.doi.org/10.3390/plants10040692.
Texto completoLobet, Guillaume, Michael P. Pound, Julien Diener, Christophe Pradal, Xavier Draye, Christophe Godin, Mathieu Javaux et al. "Root System Markup Language: Toward a Unified Root Architecture Description Language". Plant Physiology 167, n.º 3 (22 de enero de 2015): 617–27. http://dx.doi.org/10.1104/pp.114.253625.
Texto completoWang, Jun-bang, Xiu-juan Zhang y Chu Wu. "Advances in experimental methods for root system architecture and root development". Journal of Forestry Research 26, n.º 1 (15 de enero de 2015): 23–32. http://dx.doi.org/10.1007/s11676-015-0017-0.
Texto completoLee, Joo-Ho, Noriaki Ando y Hideki Hashimoto. "Mobile Robot Architecture in Intelligent Space". Journal of Robotics and Mechatronics 11, n.º 2 (20 de abril de 1999): 165–70. http://dx.doi.org/10.20965/jrm.1999.p0165.
Texto completoYang, Shuo, Xinjun Mao, Sen Yang y Zhe Liu. "Towards a hybrid software architecture and multi-agent approach for autonomous robot software". International Journal of Advanced Robotic Systems 14, n.º 4 (1 de julio de 2017): 172988141771608. http://dx.doi.org/10.1177/1729881417716088.
Texto completoZhu, Jinming, Shawn M. Kaeppler y Jonathan P. Lynch. "Topsoil foraging and phosphorus acquisition efficiency in maize (Zea mays)". Functional Plant Biology 32, n.º 8 (2005): 749. http://dx.doi.org/10.1071/fp05005.
Texto completoDanjon, Frédéric, Hayfa Khuder y Alexia Stokes. "Deep Phenotyping of Coarse Root Architecture in R. pseudoacacia Reveals That Tree Root System Plasticity Is Confined within Its Architectural Model". PLoS ONE 8, n.º 12 (27 de diciembre de 2013): e83548. http://dx.doi.org/10.1371/journal.pone.0083548.
Texto completoWen, Tiancheng. "Research on Architecture Design of Mobile Video Surveillance System in Information Room Based on Intelligent Robot Technology". Wireless Communications and Mobile Computing 2022 (10 de septiembre de 2022): 1–7. http://dx.doi.org/10.1155/2022/6479000.
Texto completoDay, Susan, P. Eric Wiseman, Sarah Dickinson y J. Roger Harris. "Contemporary Concepts of Root System Architecture of Urban Trees". Arboriculture & Urban Forestry 36, n.º 4 (1 de julio de 2010): 149–59. http://dx.doi.org/10.48044/jauf.2010.020.
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