Robert Kozma 0001
Person information
- affiliation: University of Memphis, Dept. of Mathematical Sciences, TN, USA
- affiliation: University of Massachusetts, Department of Computer Science, Amherst, MA; USA
- affiliation: University of California at Berkeley, EECS, CA, USA
- affiliation: University of Otago, Dept. of Information Science, Dunedin, New Zealand
- affiliation: Tohoku University, Department of Quantum Science and Engineering, Sendai, Japan
- affiliation: Delft University of Technology, Netherlands
Other persons with the same name
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2010 – today
- 2019
- [j41]Svante Janson
, Robert Kozma, Miklós Ruszinkó, Yury Sokolov:
A modified bootstrap percolation on a random graph coupled with a lattice. Discrete Applied Mathematics 258: 152-165 (2019) - [j40]Daniel J. Saunders, Devdhar Patel
, Hananel Hazan, Hava T. Siegelmann, Robert Kozma:
Locally connected spiking neural networks for unsupervised feature learning. Neural Networks 119: 332-340 (2019) - [c55]Robert Kozma, Raymond Noack, Hava T. Siegelmann:
Models of Situated Intelligence Inspired by the Energy Management of Brains. SMC 2019: 567-572 - [i10]Devdhar Patel, Hananel Hazan, Daniel J. Saunders, Hava T. Siegelmann, Robert Kozma:
Improved robustness of reinforcement learning policies upon conversion to spiking neuronal network platforms applied to ATARI games. CoRR abs/1903.11012 (2019) - [i9]Daniel J. Saunders, Devdhar Patel, Hananel Hazan, Hava T. Siegelmann, Robert Kozma:
Locally Connected Spiking Neural Networks for Unsupervised Feature Learning. CoRR abs/1904.06269 (2019) - [i8]Hananel Hazan, Daniel J. Saunders, Darpan T. Sanghavi, Hava T. Siegelmann, Robert Kozma:
Lattice Map Spiking Neural Networks (LM-SNNs) for Clustering and Classifying Image Data. CoRR abs/1906.11826 (2019) - [i7]Daniel J. Saunders, Cooper Sigrist, Kenneth Chaney, Robert Kozma, Hava T. Siegelmann:
Minibatch Processing in Spiking Neural Networks. CoRR abs/1909.02549 (2019) - [i6]Sneha Aenugu, Abhishek Sharma, Sasikiran Yelamarthi, Hananel Hazan, Philip S. Thomas, Robert Kozma:
Reinforcement learning with spiking coagents. CoRR abs/1910.06489 (2019) - 2018
- [j39]Hananel Hazan
, Daniel J. Saunders, Hassaan Khan, Devdhar Patel, Darpan T. Sanghavi, Hava T. Siegelmann, Robert Kozma:
BindsNET: A Machine Learning-Oriented Spiking Neural Networks Library in Python. Front. Neuroinform. 2018 (2018) - [c54]Gabriel P. Andrade, Miklós Ruszinkó, Robert Kozma:
Graph Models of Neurodynamics to Support Oscillatory Associative Memories. IJCNN 2018: 1-8 - [c53]Hananel Hazan
, Daniel J. Saunders, Darpan T. Sanghavi, Hava T. Siegelmann, Robert Kozma:
Unsupervised Learning with Self-Organizing Spiking Neural Networks. IJCNN 2018: 1-6 - [c52]Daniel J. Saunders, Hava T. Siegelmann, Robert Kozma, Miklós Ruszinkó:
STDP Learning of Image Patches with Convolutional Spiking Neural Networks. IJCNN 2018: 1-7 - [c51]Robert Kozma, Roman Ilin, Hava T. Siegelmann:
Evolution of Abstraction Across Layers in Deep Learning Neural Networks. INNS Conference on Big Data 2018: 203-213 - [c50]Jeffery Jonathan Joshua Davis, Robert Kozma:
Visualization of Human Cognitive States Monitored by High-density EEG Arrays. INNS Conference on Big Data 2018: 219-231 - [c49]Robert Kozma, Raymond Noack, Chetan Manjesh:
Neuroenergetics of Brain Operation and Implications for Energy-Aware Computing. SMC 2018: 722-727 - [i5]Hananel Hazan, Daniel J. Saunders, Hassaan Khan, Darpan T. Sanghavi, Hava T. Siegelmann, Robert Kozma:
BindsNET: A machine learning-oriented spiking neural networks library in Python. CoRR abs/1806.01423 (2018) - [i4]Hananel Hazan, Daniel J. Saunders, Darpan T. Sanghavi, Hava T. Siegelmann, Robert Kozma:
Unsupervised Learning with Self-Organizing Spiking Neural Networks. CoRR abs/1807.09374 (2018) - [i3]Daniel J. Saunders, Hava T. Siegelmann, Robert Kozma, Miklós Ruszinkó:
STDP Learning of Image Patches with Convolutional Spiking Neural Networks. CoRR abs/1808.08173 (2018) - 2017
- [j38]Minho Lee, Steven L. Bressler, Robert Kozma:
Advances in Cognitive Engineering Using Neural Networks. Neural Networks 92: 1-2 (2017) - [c48]Raymond Noack, Chetan Manjesh, Miklós Ruszinkó, Hava T. Siegelmann, Robert Kozma:
Resting state neural networks and energy metabolism. IJCNN 2017: 228-235 - [c47]Roman Ilin, Thomas Watson, Robert Kozma:
Abstraction hierarchy in deep learning neural networks. IJCNN 2017: 768-774 - [c46]Jeffery Jonathan Joshua Davis, Robert Kozma:
Amplitude-phase relationship of brain dynamics viewed by ECoG using FIR-based Hilbert analysis. SSCI 2017: 1-8 - [c45]Raymond Noack, Jeffery Jonathan Joshua Davis, Chetan Manjesh, Robert Kozma:
Neuro-energetic aspects of cognition - The role of pulse-wave-pulse conversion in the interpretation of brain imaging data. SSCI 2017: 1-8 - 2016
- [j37]Robert Kozma, Marko Puljic:
Pattern-based computing via sequential phase transitions in hierarchical mean field neuropercolation. Theor. Comput. Sci. 633: 54-70 (2016) - [j36]Sanqing Hu, Hui Wang, Jianhai Zhang, Wanzeng Kong, Yu Cao, Robert Kozma:
Comparison Analysis: Granger Causality and New Causality and Their Applications to Motor Imagery. IEEE Trans. Neural Netw. Learning Syst. 27(7): 1429-1444 (2016) - [c44]Jeffery Jonathan Davis, Robert Kozma, Chin-Teng Lin
, Walter J. Freeman:
Spatio-temporal EEG pattern extraction using high-density scalp arrays. IJCNN 2016: 889-896 - [c43]Catalina Elzo, Pablo A. Estévez
, Robert Kozma:
Modeling quasi-periodic lightcurves using neuropercolation. IJCNN 2016: 2023-2030 - [c42]Jianhai Zhang, Ming Chen, Sanqing Hu, Yu Cao, Robert Kozma:
PNN for EEG-based Emotion Recognition. SMC 2016: 2319-2323 - [c41]Robert Kozma, Yury Sokolov, Marko Puljic, Sanqing Hu, Miklós Ruszinkó:
Modeling learning and strategy formation as phase transitions in cortical networks. SMC 2016: 4099-4105 - 2015
- [j35]Yury Sokolov, Robert Kozma, Ludmilla D. Werbos, Paul J. Werbos
:
Complete stability analysis of a heuristic approximate dynamic programming control design. Automatica 59: 9-18 (2015) - [c40]Jeffery Jonathan Joshua Davis, Robert Kozma, Walter J. Freeman:
The Art of Encephalography to Understand and Discriminate Higher Cognitive Functions Visualizing Big Data on Brain Imaging Using Brain Dynamics Movies. INNS Conference on Big Data 2015: 56-63 - [p1]Robert Kozma, Jun Wang
, Zhigang Zeng:
Neurodynamics. Handbook of Computational Intelligence 2015: 607-648 - 2014
- [c39]Jayanta K. Dutta, Bonny Banerjee, Roman Ilin, Robert Kozma:
Abnormal event detection in EEG imaging - Comparing predictive and model-based approaches. CIBCI 2014: 10-15 - [c38]Jeffery Jonathan Davis, Robert Kozma:
Sensitivity analysis of Hilbert transform with band-pass FIR filters for robust brain computer interface. CIBCI 2014: 16-23 - [c37]Mark H. Myers, Robert Kozma, Jeffery Jonathan Davis, Roman Ilin:
Phase cone detection optimization in EEG data. IJCNN 2014: 2504-2511 - [c36]Yury Sokolov, Robert Kozma:
Stability of dynamic brain models in neuropercolation approximation. SMC 2014: 2230-2233 - 2013
- [j34]Robert Kozma, Marko Puljic:
Learning Effects in Coupled Arrays of Cellular Neural Oscillators. Cognitive Computation 5(2): 164-169 (2013) - [j33]Muhammad M. R. Khan, Khan M. Iftekharuddin, Ernest McCracken, Khandakar Islam
, Sushil Bhurtel, Lan Wang, Robert Kozma:
Autonomous wireless radar sensor mote for target material classification. Digital Signal Processing 23(3): 722-735 (2013) - [j32]Robert Kozma, Marko Puljic:
Hierarchical random cellular neural networks for system-level brain-like signal processing. Neural Networks 45: 101-110 (2013) - [c35]Jeffery Jonathan Davis, Robert Kozma:
Creation of knowledge & meaning manifested via cortical singularities in cognition: Towards a methodology to understand intentionality and critical behavior in neural correlates of awareness. CCMB 2013: 15-22 - [c34]Roman Ilin, Robert Kozma:
Detection of spatiotemporal phase patterns in ECoG using adaptive mixture models. IJCNN 2013: 1-7 - [c33]Mark H. Myers, Charlotte A. Joure, Carley Johnston, Aaron Canales, Akshay Padmanabha, Robert Kozma:
Spatial alignment of scalp EEG activity during cognitive tasks. IJCNN 2013: 1-8 - [i2]Yury Sokolov, Robert Kozma, Ludmilla Werbos, Paul J. Werbos:
Complete stability analysis of a heuristic ADP control design. CoRR abs/1308.3282 (2013) - 2012
- [j31]Ludmilla Werbos, Robert Kozma, Rodrigo Silva-Lugo
, Giovanni Egidio Pazienza, Paul J. Werbos
:
Metamodeling and the Critic-based approach to multi-level optimization. Neural Networks 32: 179-185 (2012) - [j30]Robert Kozma, Lan Wang, Khan M. Iftekharuddin, Ernest McCracken, Muhammad M. R. Khan, Khandakar Islam
, Sushil Bhurtel, Rustu Murat Demirer:
A Radar-Enabled Collaborative Sensor Network Integrating COTS Technology for Surveillance and Tracking. Sensors 12(2): 1336-1351 (2012) - [c32]Gahangir Hossain
, Mark H. Myers, Robert Kozma:
Study of Phase Relationships in ECoG Signals Using Hilbert-Huang Transforms. BICS 2012: 174-182 - [c31]Jeffery Jonathan Davis, Robert Kozma:
Analysis of phase relationship in ECoG using Hilbert transform and information theoretic measures. IJCNN 2012: 1-7 - [c30]Walter J. Freeman, Robert Kozma, Giuseppe Vitiello:
Adaptation of the generalized Carnot cycle to describe thermodynamics of cerebral cortex. IJCNN 2012: 1-8 - [c29]Roman Ilin, Robert Kozma:
Cognitively motivated learning of categorical data with Modeling Fields Theory. IJCNN 2012: 1-8 - 2011
- [c28]Giovanni Egidio Pazienza, Robert Kozma, Jordi Albo-Canals:
Percolation in memristive networks. IJCNN 2011: 2761-2763 - [c27]Ludmilla Werbos, Robert Kozma, Rodrigo Silva-Lugo
, Giovanni Egidio Pazienza, Paul J. Werbos
:
Metamodeling for large-scale optimization tasks based on object networks. IJCNN 2011: 2905-2910 - [c26]Mark H. Myers, Robert Kozma:
Modeling normal/epileptic brain dynamics with potential application in titration therapy. IJCNN 2011: 3085-3092 - [c25]Giovanni Egidio Pazienza, Robert Kozma:
Memristor as an archetype of dynamic data-driven systems and applications to sensor networks. ICCS 2011: 1782-1787 - 2010
- [j29]Marko Puljic, Robert Kozma:
Broad-band Oscillations by Probabilistic Cellular Automata. J. Cellular Automata 5(6): 491-507 (2010) - [j28]Walter J. Freeman, Robert Kozma:
Freeman's mass action. Scholarpedia 5(1): 8040 (2010) - [c24]Robert Kozma, Marko Puljic:
Chaotic behavior in probabilistic cellular neural networks. IJCNN 2010: 1-7
2000 – 2009
- 2009
- [j27]Robert Kozma, Daniel S. Levine
, Leonid I. Perlovsky:
Introduction to the special issue on goal-directed neural systems. Neural Networks 22(3): 197-199 (2009) - [j26]Robert Kozma, Walter J. Freeman:
The KIV model of intentional dynamics and decision making. Neural Networks 22(3): 277-285 (2009) - [j25]Robert Kozma, Steven L. Bressler, Leonid I. Perlovsky, Ganesh K. Venayagamoorthy:
Advances in neural networks research: An introduction. Neural Networks 22(5-6): 489-490 (2009) - [c23]Rustu Murat Demirer, Robert Kozma, Mert Çaglar, Yasar Polatoglu:
A new nonlinear filter design for the detection of phase transitions in ECoG data. IJCNN 2009: 671-676 - [c22]Roman Ilin, Robert Kozma:
Sensor integration in KIV brain model for decision making. IJCNN 2009: 1328-1334 - [c21]Mark H. Myers, Robert Kozma:
Seizure prediction through dynamic synchronization measures of neural populations. IJCNN 2009: 2195-2201 - [c20]Robert Kozma, Walter J. Freeman:
Neurodynamics of cognition and consciousness. PerMIS 2009: 147-148 - 2008
- [j24]Robert Kozma, Terry Huntsberger, Hrand Aghazarian, Edward Tunstel, Roman Ilin, Walter J. Freeman:
Intentional Control for Planetary Rover SRR. Advanced Robotics 22(12): 1309-1327 (2008) - [j23]Roman Ilin, Robert Kozma, Paul J. Werbos
:
Beyond Feedforward Models Trained by Backpropagation: A Practical Training Tool for a More Efficient Universal Approximator. IEEE Trans. Neural Networks 19(6): 929-937 (2008) - [c19]Robert Kozma, Leonid I. Perlovsky, JaiSantosh Ankishetty:
Detection of propagating phase gradients in EEG signals using Model Field Theory of non-Gaussian mixtures. IJCNN 2008: 3524-3529 - 2007
- [j22]Igor Beliaev, Robert Kozma:
Time series prediction using chaotic neural networks on the CATS benchmark. Neurocomputing 70(13-15): 2426-2439 (2007) - [c18]Roman Ilin, Robert Kozma:
Control of multi-stable chaotic neural networks using input constraints. IJCNN 2007: 2194-2199 - [c17]Robert Kozma, Ross W. Deming, Leonid I. Perlovsky:
Estimation of Propagating Phase Transients in EEG Data - Application of Dynamic Logic Neural Modeling Approach. IJCNN 2007: 2341-2345 - [c16]Robert Linnehan, John Schindler, David Brady, Robert Kozma, Ross W. Deming, Leonid I. Perlovsky:
Resolving Wall Ambiguities Using Angular Diverse Synthetic Arrays. IJCNN 2007: 2758-2763 - [c15]Robert Kozma, Terry Huntsberger, Hrand Aghazarian, Walter J. Freeman:
Implementing intentional robotics principles using SSR2K platform. IROS 2007: 2262-2267 - [i1]Roman Ilin, Robert Kozma, Paul J. Werbos:
Beyond Feedforward Models Trained by Backpropagation: a Practical Training Tool for a More Efficient Universal Approximator. CoRR abs/0710.4182 (2007) - 2006
- [j21]Paul N. Balister, Béla Bollobás, Robert Kozma:
Large deviations for mean field models of probabilistic cellular automata. Random Struct. Algorithms 29(3): 399-415 (2006) - [c14]Roman Ilin, Robert Kozma, Paul J. Werbos:
Cellular SRN Trained by Extended Kalman Filter Shows Promise for ADP. IJCNN 2006: 506-510 - [c13]Igor Beliaev, Robert Kozma:
Studies on the Memory Capacity and Robustness of Chaotic Dynamic Neural Networks. IJCNN 2006: 3991-3998 - [c12]Kausik Kumar Majumdar, Robert Kozma:
Studies on Sparse Array Cortical Modeling and Memory Cognition Duality. IJCNN 2006: 4954-4957 - 2005
- [j20]Robert Kozma, Marko Puljic, Paul Balister, Béla Bollobás, Walter J. Freeman:
Phase transitions in the neuropercolation model of neural populations with mixed local and non-local interactions. Biological Cybernetics 92(6): 367-379 (2005) - [j19]Marko Puljic, Robert Kozma:
Activation clustering in neural and social networks. Complexity 10(4): 42-50 (2005) - [j18]Robert Kozma, Derek Wong, Rustu Murat Demirer, Walter J. Freeman:
Learning intentional behavior in the K-model of the amygdala and entorhinal cortex with the cortico-hyppocampal formation. Neurocomputing 65-66: 23-30 (2005) - [c11]Robert Kozma, Edward Tunstel:
A Novel Approach to Distributed Sensory Networks Using Biologically-Inspired Sensory Fusion. SMC 2005: 1005-1010 - [c10]Igor Beliaev, Roman Ilin, Robert Kozma:
Nonlinear Neurodynamics Tool for System Analysis and Application for Time Series Prediction. SMC 2005: 1011-1016 - 2004
- [j17]Horatiu Voicu, Robert Kozma, Derek Wong, Walter J. Freeman:
Spatial navigation model based on chaotic attractor networks. Connect. Sci. 16(1): 1-19 (2004) - [j16]Robert Kozma, Walter J. Freeman, Derek Wong, Péter Érdi:
Learning environmental clues in the KIV model of the cortico-hippocampal formation. Neurocomputing 58-60: 721-728 (2004) - [j15]Deliang Wang, Walter J. Freeman, Robert Kozma, Andrzej Lozowski, Ali A. Minai
:
Guest Editorial Special Issue on Temporal Coding for Neural Information Processing. IEEE Trans. Neural Networks 15(5): 953-956 (2004) - [c9]Robert Kozma, Marko Puljic, Paul Balister, Béla Bollobás, Walter J. Freeman:
Neuropercolation: A Random Cellular Automata Approach to Spatio-temporal Neurodynamics. ACRI 2004: 435-443 - [c8]Derek Wong, Robert Kozma, Edward Tunstel, Walter J. Freeman:
Navigation in a Challenging Martian Environment using Multi-sensory Fusion in KIV Model. ICRA 2004: 672-677 - 2003
- [j14]Robert Kozma, Walter J. Freeman, Péter Érdi:
The KIV model - nonlinear spatio-temporal dynamics of the primordial vertebrate forebrain. Neurocomputing 52-54: 819-826 (2003) - [c7]Robert Kozma, Horatiu Voicu, Derek Wong, Walter J. Freeman:
Dynamical neural network algorithm for autonomous learning and navigation control. SMC 2003: 2132-2137 - 2002
- [j13]Robert Kozma, Walter J. Freeman:
Classification of EEG patterns using nonlinear dynamics and identifying chaotic phase transitions. Neurocomputing 44-46: 1107-1112 (2002) - [j12]Prasun K. Roy, Robert Kozma, D. Dutta Majumder:
From neurocomputation to immunocomputation - a model and algorithm for fluctuation-induced instability and phase transition in biological systems. IEEE Trans. Evolutionary Computation 6(3): 292-305 (2002) - 2001
- [j11]Robert Kozma, Walter J. Freeman:
Chaotic Resonance - Methods and Applications for Robust Classification of noisy and Variable Patterns. I. J. Bifurcation and Chaos 11(6): 1607-1630 (2001) - [j10]Robert Kozma, Maritza Alvarado, Linda J. Rogers, Brian Lau
, Walter J. Freeman:
Emergence of un-correlated common-mode oscillations in the sensory cortex. Neurocomputing 38-40: 747-755 (2001) - [j9]Nikola K. Kasabov, Jaesoo Kim, Robert Kozma, Tico Cohen:
Rule Extraction from Fuzzy Neural Networks FuNN: A Method and a Real-World Application. JACIII 5(4): 193-200 (2001) - 2000
- [j8]Nikola K. Kasabov, Robert Kozma:
Methods and systems for intelligent human-computer interaction. Inf. Sci. 123(1-2): 1-2 (2000) - [c6]Robert Kozma, Walter J. Freeman:
Encoding and Recall of Noisy Data as Chaotic Spatio-Temporal Memory Patterns in the Style of the Brains. IJCNN (5) 2000: 33-38
1990 – 1999
- 1999
- [c5]Robert Kozma, Walter J. Freeman:
A possible mechanism for intermittent oscillations in the KIII model of dynamic memories - the case study of olfaction. IJCNN 1999: 52-57 - 1998
- [j7]Nikola Kasabov, Robert Kozma:
Introduction: Hybrid intelligent adaptive systems. Int. J. Intell. Syst. 13(6): 453-454 (1998) - [j6]Nikola Kasabov, Robert Kozma:
Hybrid intelligent adaptive systems: A framework and a case study on speech recognition. Int. J. Intell. Syst. 13(6): 455-466 (1998) - [j5]Robert Kozma, Nikola K. Kasabov, J. S. Kim, A. Cohen:
Integration of connectionist methods and chaotic time-series analysis for the prediction of process data. Int. J. Intell. Syst. 13(6): 519-538 (1998) - [j4]Nikola K. Kasabov, Robert Kozma, Michael J. Watts:
Phoneme-Based Speech Recognition via Fuzzy Neural Networks Modeling and Learning. Inf. Sci. 110(1-2): 61-79 (1998) - [j3]Nikola K. Kasabov, Robert Kozma:
Editorial: Self-Organization and Adaptation in Intelligent Systems. JACIII 2(6): 177 (1998) - [e1]Nikola Kasabov, Robert Kozma, Kitty Ko, Robert O'Shea, George Coghill, Tom Gedeon:
Progress in Connectionist-Based Information Systems: Proceedings of the 1997 International Conference on Neural Information Processing and Intelligent Information Systems, ICONIP 1997, Volume I, Dunedin, New Zealand, 24-28 November, 1997. Springer 1998, ISBN 0-444-88545-5 [contents] - 1997
- [c4]Robert Kozma:
On the conscious and subconscious components of knowledge representation in neural networks. ICNN 1997: 2519-2523 - [c3]Robert Kozma, J. A. Swope, Nikola K. Kasabov, M. J. A. Williams:
Multi-Agent Implementation of Fractal Analysis by Fuzzy Neural Networks. ICONIP (1) 1997: 162-165 - 1996
- [j2]Robert Kozma, Masatake Sakuma, Yoichi Yokoyama, Masaharu Kitamura:
On the accuracy of mapping by neural networks trained by backpropagation with forgetting. Neurocomputing 13(2-4): 295-311 (1996) - 1995
- [j1]Robert Kozma, Masatake Sakuma, S. Sato, Masaharu Kitamura:
An Adaptive Neuro-Fuzzy Signal Processing Method By Using Structural Learning with Forgetting. Intelligent Automation & Soft Computing 1(4): 389-404 (1995) - [c2]Robert Kozma, Masaharu Kitamura, Aleksander Malinowski, Jacek M. Zurada:
On Performance Measures of Artificial Neural Networks Trained by Structural Learning with Forgetting. ANNES 1995: 22-25 - [c1]Robert Kozma, Masaharu Kitamura:
Dynamic structure adaptation in feedforward neural networks-an example of plant monitoring. ICNN 1995: 692-697
Coauthor Index
aka: Jeffery Jonathan Joshua Davis

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
load content from web.archive.org
Privacy notice: By enabling the option above, your browser will contact the API of web.archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from and
to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org and opencitations.net to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy.
Citation data
Add a list of citing articles from to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy.
Tweets on dblp homepage
Show tweets from on the dblp homepage.
Privacy notice: By enabling the option above, your browser will contact twitter.com and twimg.com to load tweets curated by our Twitter accout. At the same time, Twitter will persitently store several cookies with your web browser. While we did signal Twitter to not track our users by setting the "dnt" flag, we do not have any control over how Twitter uses your data. So please proceed with care and consider checking the Twitter privacy policy.
last updated on 2019-12-07 23:52 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint