default search action
Adam Noel
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j26]Mitra Rezaei, Hamidreza Arjmandi, Mohammad Zoofaghari, Kajsa P. Kanebratt, Liisa Vilén, David Janzén, Peter Gennemark, Adam Noel:
Spheroidal Molecular Communication via Diffusion: Signaling Between Homogeneous Cell Aggregates. IEEE Trans. Mol. Biol. Multi Scale Commun. 10(1): 197-210 (2024) - 2023
- [j25]Hamidreza Arjmandi, Hamdan Awan, Huy Tran, Maximilian Schäfer, Werner Haselmayr, Adam Noel:
Guest Editorial Introduction to the Special Feature on the 6th Workshop on Molecular Communications. IEEE Trans. Mol. Biol. Multi Scale Commun. 9(1): 4-7 (2023) - [c32]Hamidreza Arjmandi, Mohammad Zoofaghari, Mitra Rezaei, Kajsa P. Kanebratt, Liisa Vilén, David Janzén, Peter Gennemark, Adam Noel:
Diffusive Molecular Communication with a Spheroidal Receiver for Organ-on-Chip Systems. ICC 2023: 4464-4469 - [c31]Ibrahim Isik, Hamidreza Arjmandi, Christophe Corre, Adam Noel:
Biophysical Model for Signal-Embedded Droplet Soaking into 2D Cell Culture. NANOCOM 2023: 53-58 - [c30]Mahir Taher, Anne Straube, Adam Noel:
Generalized Model of Neurite Trafficking. NANOCOM 2023: 150-151 - [c29]Adam Noel, Hamidreza Arjmandi:
On the Order Statistics of Chemical Kinetics and Their Role in Molecular Communication. NANOCOM 2023: 158-159 - [c28]Yanahan Paramalingam, Hamidreza Arjmandi, Adam Noel:
Role of Channel Capacity in Biofilm. NANOCOM 2023: 164-165 - [i44]Hamidreza Arjmandi, Mohammad Zoofaghari, Mitra Rezaei, Kajsa P. Kanebratt, Liisa Vilén, David Janzén, Peter Gennemark, Adam Noel:
Diffusive Molecular Communication with a Spheroidal Receiver for Organ-on-Chip Systems. CoRR abs/2302.09265 (2023) - [i43]Mitra Rezaei, Hamidreza Arjmandi, Mohammad Zoofaghari, Kajsa P. Kanebratt, Liisa Vilén, David Janzén, Peter Gennemark, Adam Noel:
Spheroidal Molecular Communication via Diffusion: Signaling Between Homogeneous Cell Aggregates. CoRR abs/2312.04427 (2023) - 2022
- [j24]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Membrane Fusion-Based Transmitter Design for Static and Diffusive Mobile Molecular Communication Systems. IEEE Trans. Commun. 70(1): 132-148 (2022) - [j23]Shivani Dhok, Lokendra Chouhan, Adam Noel, Prabhat Kumar Sharma:
Cooperative Molecular Communication in Drift-Induced Diffusive Cylindrical Channel. IEEE Trans. Mol. Biol. Multi Scale Commun. 8(1): 44-55 (2022) - 2021
- [j22]Dadi Bi, Apostolos Almpanis, Adam Noel, Yansha Deng, Robert Schober:
A Survey of Molecular Communication in Cell Biology: Establishing a New Hierarchy for Interdisciplinary Applications. IEEE Commun. Surv. Tutorials 23(3): 1494-1545 (2021) - [j21]Yuting Fang, Adam Noel, Andrew W. Eckford, Nan Yang, Jing Guo:
Characterization of Cooperators in Quorum Sensing With 2D Molecular Signal Analysis. IEEE Trans. Commun. 69(2): 799-816 (2021) - [j20]Werner Haselmayr, Jari A. K. Hyttinen, Maximilian Schäfer, Mauro Femminella, Richard J. Morris, Kerstin Lenk, Adam Noel, Michael Taynnan Barros:
Special Issue - Advances in Molecular Communications: Theory, Experiment, and Application. IEEE Trans. Mol. Biol. Multi Scale Commun. 7(2): 69-72 (2021) - [c27]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Membrane Fusion-Based Transmitter Design for Molecular Communication Systems. ICC 2021: 1-6 - [i42]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Membrane Fusion-Based Transmitter Design for Static and Diffusive Mobile Molecular Communication Systems. CoRR abs/2104.11864 (2021) - 2020
- [j19]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Channel Characterization for 1-D Molecular Communication With Two Absorbing Receivers. IEEE Commun. Lett. 24(6): 1150-1154 (2020) - [j18]Lokendra Chouhan, Prabhat Kumar Sharma, Adam Noel:
Molecular Communication in Fractional Diffusive Channel. IEEE Commun. Lett. 24(10): 2172-2176 (2020) - [c26]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Parameter Estimation in a Noisy 1D Environment via Two Absorbing Receivers. GLOBECOM 2020: 1-7 - [i41]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Parameter Estimation in a Noisy 1D Environment via Two Absorbing Receivers. CoRR abs/2004.13259 (2020) - [i40]Yuting Fang, Adam Noel, Andrew W. Eckford, Nan Yang, Jing Guo:
Characterization of Cooperators in Quorum Sensing with 2D Molecular Signal Analysis. CoRR abs/2006.04706 (2020) - [i39]Dadi Bi, Apostolos Almpanis, Adam Noel, Yansha Deng, Robert Schober:
A Survey of Molecular Communication in Cell Biology: Establishing a New Hierarchy for Interdisciplinary Applications. CoRR abs/2009.00090 (2020) - [i38]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Membrane Fusion-Based Transmitter Design for Molecular Communication Systems. CoRR abs/2011.00887 (2020)
2010 – 2019
- 2019
- [j17]Vahid Jamali, Arman Ahmadzadeh, Wayan Wicke, Adam Noel, Robert Schober:
Channel Modeling for Diffusive Molecular Communication - A Tutorial Review. Proc. IEEE 107(7): 1256-1301 (2019) - [j16]Yuting Fang, Adam Noel, Nan Yang, Andrew W. Eckford, Rodney A. Kennedy:
Symbol-by-Symbol Maximum Likelihood Detection for Cooperative Molecular Communication. IEEE Trans. Commun. 67(7): 4885-4899 (2019) - [j15]Hamidreza Arjmandi, Mohammad Zoofaghari, Adam Noel:
Diffusive Molecular Communication in a Biological Spherical Environment With Partially Absorbing Boundary. IEEE Trans. Commun. 67(10): 6858-6867 (2019) - [j14]Adam Noel, Shayan Monabbati, Dimitrios Makrakis, Andrew W. Eckford:
Modeling Interference-Free Neuron Spikes With Optogenetic Stimulation. IEEE Trans. Mol. Biol. Multi Scale Commun. 5(2): 100-111 (2019) - [c25]Yuting Fang, Adam Noel, Andrew W. Eckford, Nan Yang:
Expected Density of Cooperative Bacteria in a 2D Quorum Sensing Based Molecular Communication System. GLOBECOM 2019: 1-6 - [c24]Apostolos Almpanis, Christophe Corre, Adam Noel:
Agent Based Modeling of the Rhizobiome with Molecular Communication and Game Theory. NANOCOM 2019: 20:1-20:7 - [i37]Yuting Fang, Weisi Guo, Matteo Icardi, Adam Noel, Nan Yang:
Molecular Information Delivery in Porous Media. CoRR abs/1903.03738 (2019) - [i36]Xinyu Huang, Yuting Fang, Adam Noel, Nan Yang:
Channel Characterization for 1D Molecular Communication with Two Absorbing Receivers. CoRR abs/1911.00142 (2019) - 2018
- [j13]Adam Noel, Dimitrios Makrakis, Andrew W. Eckford:
Distortion Distribution of Neural Spike Train Sequence Matching With Optogenetics. IEEE Trans. Biomed. Eng. 65(12): 2814-2826 (2018) - [j12]Yuting Fang, Weisi Guo, Matteo Icardi, Adam Noel, Nan Yang:
Molecular Information Delivery in Porous Media. IEEE Trans. Mol. Biol. Multi Scale Commun. 4(4): 257-262 (2018) - [c23]Wayan Wicke, Tobias Schwering, Arman Ahmadzadeh, Vahid Jamali, Adam Noel, Robert Schober:
Modeling Duct Flow for Molecular Communication. GLOBECOM 2018: 206-212 - [c22]Lanting Zha, Yansha Deng, Adam Noel, Maged Elkashlan, Arumugam Nallanathan:
Transceiver Observations in Asymmetric and Symmetric Diffusive Molecular Communication Systems. GLOBECOM 2018: 206-212 - [c21]Yuting Fang, Adam Noel, Nan Yang, Andrew W. Eckford, Rodney A. Kennedy:
Maximum Likelihood Detection for Cooperative Molecular Communication. ICC 2018: 1-7 - [c20]Adam Noel, Shayan Monabbati, Dimitrios Makrakis, Andrew W. Eckford:
Timing Control of Single Neuron Spikes with Optogenetic Stimulation. ICC 2018: 1-6 - [c19]Yiran Wang, Adam Noel, Nan Yang:
A New Simulation Algorithm for Absorbing Receiver in Molecular Communication. SECON Workshops 2018: 60-63 - [i35]Yuting Fang, Adam Noel, Nan Yang, Andrew W. Eckford, Rodney A. Kennedy:
Symbol-by-Symbol Maximum Likelihood Detection for Cooperative Molecular Communication. CoRR abs/1801.02890 (2018) - [i34]Yiran Wang, Adam Noel, Nan Yang:
A New Simulation Algorithm for Absorbing Receiver in Molecular Communication. CoRR abs/1803.04638 (2018) - [i33]Yiran Wang, Adam Noel, Nan Yang:
A Novel A Priori Simulation Algorithm for Absorbing Receivers in Diffusion-Based Molecular Communication Systems. CoRR abs/1809.00808 (2018) - [i32]Vahid Jamali, Arman Ahmadzadeh, Wayan Wicke, Adam Noel, Robert Schober:
Channel Modeling for Diffusive Molecular Communication - A Tutorial Review. CoRR abs/1812.05492 (2018) - 2017
- [j11]Yansha Deng, Weisi Guo, Adam Noel, Arumugam Nallanathan, Maged Elkashlan:
Enabling Energy Efficient Molecular Communication via Molecule Energy Transfer. IEEE Commun. Lett. 21(1): 254-257 (2017) - [j10]Arman Ahmadzadeh, Vahid Jamali, Adam Noel, Robert Schober:
Diffusive Mobile Molecular Communications Over Time-Variant Channels. IEEE Commun. Lett. 21(6): 1265-1268 (2017) - [j9]Yi Lu, Xiayang Wang, Matthew D. Higgins, Adam Noel, Neophytos Neophytou, Mark S. Leeson:
Energy requirements of error correction codes in diffusion-based molecular communication systems. Nano Commun. Networks 11: 24-35 (2017) - [j8]Adam Noel, Karen C. Cheung, Robert Schober, Dimitrios Makrakis, Abdelhakim Hafid:
Simulating with AcCoRD: Actor-based Communication via Reaction-Diffusion. Nano Commun. Networks 11: 44-75 (2017) - [j7]Yansha Deng, Adam Noel, Weisi Guo, Arumugam Nallanathan, Maged Elkashlan:
Analyzing Large-Scale Multiuser Molecular Communication via 3-D Stochastic Geometry. IEEE Trans. Mol. Biol. Multi Scale Commun. 3(2): 118-133 (2017) - [j6]Yuting Fang, Adam Noel, Nan Yang, Andrew W. Eckford, Rodney A. Kennedy:
Convex Optimization of Distributed Cooperative Detection in Multi-Receiver Molecular Communication. IEEE Trans. Mol. Biol. Multi Scale Commun. 3(3): 166-182 (2017) - [c18]Adam Noel, Dimitrios Makrakis, Andrew W. Eckford:
Root Mean Square Error of Neural Spike Train Sequence Matching with Optogenetics. GLOBECOM 2017: 1-6 - [c17]Andrew W. Eckford, Adam Noel:
Asynchronous peak detection for demodulation in molecular communication. ICC 2017: 1-6 - [c16]Yuting Fang, Adam Noel, Yiran Wang, Nan Yang:
Simplified cooperative detection for multi-receiver molecular communication. ITW 2017: 329-333 - [c15]Adam Noel, Yuting Fang, Nan Yang, Dimitrios Makrakis, Andrew W. Eckford:
Effect of local population uncertainty on cooperation in bacteria. ITW 2017: 334-338 - [i31]Arman Ahmadzadeh, Vahid Jamali, Adam Noel, Robert Schober:
Diffusive Mobile Molecular Communications Over Time-Variant Channels. CoRR abs/1702.06887 (2017) - [i30]Adam Noel, Dimitrios Makrakis, Andrew W. Eckford:
Mean Square Error of Neural Spike Train Sequence Matching with Optogenetics. CoRR abs/1704.04795 (2017) - [i29]Yuting Fang, Adam Noel, Nan Yang, Andrew W. Eckford, Rodney A. Kennedy:
Maximum Likelihood Detection for Collaborative Molecular Communication. CoRR abs/1704.05623 (2017) - [i28]Yansha Deng, Adam Noel, Weisi Guo, Arumugam Nallanathan, Maged Elkashlan:
Analyzing Large-Scale Multiuser Molecular Communication via 3D Stochastic Geometry. CoRR abs/1704.06929 (2017) - [i27]Yuting Fang, Adam Noel, Yiran Wang, Nan Yang:
Simplified Cooperative Detection for Multi-Receiver Molecular Communication. CoRR abs/1708.06513 (2017) - [i26]Adam Noel, Dimitrios Makrakis, Andrew W. Eckford:
Distortion Distribution of Neural Spike Train Sequence Matching with Optogenetics. CoRR abs/1708.06641 (2017) - [i25]Wayan Wicke, Tobias Schwering, Arman Ahmadzadeh, Vahid Jamali, Adam Noel, Robert Schober:
Modeling Duct Flow for Molecular Communication. CoRR abs/1711.01479 (2017) - [i24]Adam Noel, Yuting Fang, Nan Yang, Dimitrios Makrakis, Andrew W. Eckford:
Using Game Theory for Real-Time Behavioral Dynamics in Microscopic Populations with Noisy Signaling. CoRR abs/1711.04870 (2017) - 2016
- [c14]Yansha Deng, Adam Noel, Weisi Guo, Arumugam Nallanathan, Maged Elkashlan:
3D Stochastic Geometry Model for Large-Scale Molecular Communication Systems. GLOBECOM 2016: 1-6 - [c13]Yuting Fang, Adam Noel, Nan (Jonas) Yang, Andrew W. Eckford, Rodney A. Kennedy:
Distributed Cooperative Detection for Multi-Receiver Molecular Communication. GLOBECOM 2016: 1-7 - [c12]Adam Noel, Yansha Deng, Dimitrios Makrakis, Abdelhakim Hafid:
Active versus Passive: Receiver Model Transforms for Diffusive Molecular Communication. GLOBECOM 2016: 1-6 - [c11]Yansha Deng, Adam Noel, Maged Elkashlan, Arumugam Nallanathan, Karen C. Cheung:
Molecular communication with a reversible adsorption receiver. ICC 2016: 1-7 - [i23]Yansha Deng, Adam Noel, Maged Elkashlan, Arumugam Nallanathan, Karen C. Cheung:
Modeling and Simulation of Molecular Communication Systems with a Reversible Adsorption Receiver. CoRR abs/1601.00681 (2016) - [i22]Yuting Fang, Adam Noel, Nan (Jonas) Yang, Andrew W. Eckford, Rodney A. Kennedy:
Distributed Cooperative Detection for Multi-Receiver Molecular Communication. CoRR abs/1604.03660 (2016) - [i21]Adam Noel, Yansha Deng, Dimitrios Makrakis, Abdelhakim Hafid:
Active Versus Passive: Receiver Model Transforms for Diffusive Molecular Communication. CoRR abs/1604.04595 (2016) - [i20]Adam Noel, Dimitrios Makrakis, Abdelhakim Hafid:
Channel Impulse Responses in Diffusive Molecular Communication with Spherical Transmitters. CoRR abs/1604.04684 (2016) - [i19]Yansha Deng, Adam Noel, Weisi Guo, Arumugam Nallanathan, Maged Elkashlan:
Stochastic Geometry Model for Large-Scale Molecular Communication Systems. CoRR abs/1605.08311 (2016) - [i18]Adam Noel, Andrew W. Eckford:
Asynchronous Peak Detection for Demodulation in Molecular Communication. CoRR abs/1611.00459 (2016) - [i17]Yuting Fang, Adam Noel, Nan Yang, Andrew W. Eckford, Rodney A. Kennedy:
Convex Optimization of Distributed Cooperative Detection in Multi-Receiver Molecular Communication. CoRR abs/1611.05590 (2016) - [i16]Adam Noel, Karen C. Cheung, Robert Schober, Dimitrios Makrakis, Abdelhakim Hafid:
Simulating with AcCoRD: Actor-Based Communication via Reaction-Diffusion. CoRR abs/1612.00485 (2016) - 2015
- [j5]Adam Noel, Karen C. Cheung, Robert Schober:
Joint Channel Parameter Estimation via Diffusive Molecular Communication. IEEE Trans. Mol. Biol. Multi Scale Commun. 1(1): 4-17 (2015) - [j4]Arman Ahmadzadeh, Adam Noel, Robert Schober:
Analysis and Design of Multi-Hop Diffusion-Based Molecular Communication Networks. IEEE Trans. Mol. Biol. Multi Scale Commun. 1(2): 144-157 (2015) - [j3]Yansha Deng, Adam Noel, Maged Elkashlan, Arumugam Nallanathan, Karen C. Cheung:
Modeling and Simulation of Molecular Communication Systems With a Reversible Adsorption Receiver. IEEE Trans. Mol. Biol. Multi Scale Commun. 1(4): 347-362 (2015) - [c10]Arman Ahmadzadeh, Adam Noel, Andreas Burkovski, Robert Schober:
Amplify-and-Forward Relaying in Two-Hop Diffusion-Based Molecular Communication Networks. GLOBECOM 2015: 1-7 - [c9]Adam Noel, Karen C. Cheung, Robert Schober:
Multi-scale stochastic simulation for diffusive molecular communication. ICC 2015: 1109-1115 - [c8]Adam Noel, Karen C. Cheung, Robert Schober:
On the Statistics of Reaction-Diffusion Simulations for Molecular Communication. NANOCOM 2015: 28:1-28:6 - [i15]Arman Ahmadzadeh, Adam Noel, Andreas Burkovski, Robert Schober:
Amplify-and-Forward Relaying in Two-Hop Diffusion-Based Molecular Communication Networks. CoRR abs/1504.03738 (2015) - [i14]Adam Noel, Karen C. Cheung, Robert Schober:
On the Statistics of Reaction-Diffusion Simulations for Molecular Communication. CoRR abs/1505.05080 (2015) - [i13]Yansha Deng, Adam Noel, Maged Elkashlan, Arumugam Nallanathan, Karen C. Cheung:
Molecular Communication with a Reversible Adsorption Receiver. CoRR abs/1511.09413 (2015) - 2014
- [j2]Adam Noel, Karen C. Cheung, Robert Schober:
A Unifying Model for External Noise Sources and ISI in Diffusive Molecular Communication. IEEE J. Sel. Areas Commun. 32(12): 2330-2343 (2014) - [c7]Adam Noel, Karen C. Cheung, Robert Schober:
Bounds on distance estimation via diffusive molecular communication. GLOBECOM 2014: 2813-2819 - [c6]Arman Ahmadzadeh, Adam Noel, Robert Schober:
Analysis and design of two-hop diffusion-based molecular communication networks. GLOBECOM 2014: 2820-2825 - [c5]Adam Noel, Karen C. Cheung, Robert Schober:
Diffusive molecular communication with disruptive flows. ICC 2014: 3600-3606 - [c4]Adam Noel, Karen C. Cheung, Robert Schober:
Overcoming Noise and Multiuser Interference in Diffusive Molecular Communication. NANOCOM 2014: 1:1-1:9 - [i12]Adam Noel, Karen C. Cheung, Robert Schober:
Bounds on Distance Estimation via Diffusive Molecular Communication. CoRR abs/1404.3238 (2014) - [i11]Arman Ahmadzadeh, Adam Noel, Robert Schober:
Analysis and Design of Two-Hop Diffusion-Based Molecular Communication Networks. CoRR abs/1404.5538 (2014) - [i10]Adam Noel, Karen C. Cheung, Robert Schober:
Joint Channel Parameter Estimation via Diffusive Molecular Communication. CoRR abs/1410.4252 (2014) - [i9]Arman Ahmadzadeh, Adam Noel, Robert Schober:
Analysis and Design of Multi-Hop Diffusion-Based Molecular Communication Networks. CoRR abs/1410.5585 (2014) - [i8]Malcolm A. Egan, Adam Noel, Yansha Deng, Maged Elkashlan, Trung Quang Duong:
The Unreasonable Effectiveness of Blood Pressure Measurement: Molecular Communication in Biological Systems. CoRR abs/1410.5665 (2014) - [i7]Adam Noel, Karen C. Cheung, Robert Schober:
Multi-Scale Stochastic Simulation for Diffusive Molecular Communication. CoRR abs/1412.6135 (2014) - 2013
- [c3]Adam Noel, Karen C. Cheung, Robert Schober:
Using dimensional analysis to assess scalability and accuracy in molecular communication. ICC Workshops 2013: 818-823 - [i6]Adam Noel, Karen C. Cheung, Robert Schober:
Improving Diffusion-Based Molecular Communication with Unanchored Enzymes. CoRR abs/1305.1783 (2013) - [i5]Adam Noel, Karen C. Cheung, Robert Schober:
Using Dimensional Analysis to Assess Scalability and Accuracy in Molecular Communication. CoRR abs/1305.1796 (2013) - [i4]Adam Noel, Karen C. Cheung, Robert Schober:
Improving Receiver Performance of Diffusive Molecular Communication with Enzymes. CoRR abs/1305.1926 (2013) - [i3]Adam Noel, Karen C. Cheung, Robert Schober:
Optimal Receiver Design for Diffusive Molecular Communication with Flow and Additive Noise. CoRR abs/1308.0109 (2013) - [i2]Adam Noel, Karen C. Cheung, Robert Schober:
Diffusive Molecular Communication with Disruptive Flows. CoRR abs/1309.5201 (2013) - [i1]Adam Noel, Karen C. Cheung, Robert Schober:
A Unifying Model for External Noise Sources and ISI in Diffusive Molecular Communication. CoRR abs/1310.5930 (2013) - 2012
- [j1]Adam Noel, Robert Schober:
Convex Sensing-Reporting Optimization for Cooperative Spectrum Sensing. IEEE Trans. Wirel. Commun. 11(5): 1900-1910 (2012) - [c2]Adam Noel, Karen C. Cheung, Robert Schober:
Improving Diffusion-Based Molecular Communication with Unanchored Enzymes. BIONETICS 2012: 184-198 - 2011
- [c1]Adam Noel, Robert Schober:
Convex sensing-reporting optimization for cooperative spectrum sensing. PIMRC 2011: 331-336
Coauthor Index
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).
Privacy notice: By enabling the option above, your browser will contact the API of 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, opencitations.net, and semanticscholar.org to load article reference 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, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and 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 and semanticscholar.org 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 as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional 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 information given by OpenAlex.
last updated on 2024-08-05 20:25 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint