default search action
Paolo Motto Ros
Person information
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j19]Angela-Tafadzwa Shumba, Suleyman Mahircan Demir, Vincenzo Mariano Mastronardi, Francesco Rizzi, Gaia De Marzo, Luca Fachechi, Paolo Motto Ros, Danilo Demarchi, Luigi Patrono, Massimo de Vittorio:
Monitoring Cardiovascular Physiology Using Bio-Compatible AlN Piezoelectric Skin Sensors. IEEE Access 12: 16951-16962 (2024) - [j18]Andrea Bontempi, Danilo Demarchi, Paolo Motto Ros:
Design of Wireless Power Smart Personal Protective Equipment for Industrial Internet of Things. IEEE Access 12: 79613-79625 (2024) - [j17]Andrea Valerio, Danilo Demarchi, Brendan O'Flynn, Paolo Motto Ros, Salvatore Tedesco:
Development of a Personalized Multiclass Classification Model to Detect Blood Pressure Variations Associated with Physical or Cognitive Workload. Sensors 24(11): 3697 (2024) - [j16]Gian Luca Barbruni, Francesca Rodino, Paolo Motto Ros, Danilo Demarchi, Diego Ghezzi, Sandro Carrara:
A Wearable Real-Time System for Simultaneous Wireless Power and Data Transmission to Cortical Visual Prosthesis. IEEE Trans. Biomed. Circuits Syst. 18(3): 580-591 (2024) - 2023
- [c64]Marco Pogliano, Irene Buraioli, Alessandro Sanginario, Danilo Demarchi, Paolo Motto Ros:
3D-Printer-Based Test-Bench for Contactless Respiratory Monitoring Systems. SENSORS 2023: 1-4 - [c63]Matilde Cerbai, Gian Luca Barbruni, Paolo Motto Ros, Danilo Demarchi, Diego Ghezzi, Sandro Carrara:
An Ultra-Miniaturised CMOS Clock and Data Recovery System for Wireless ASK Transmission. ISCAS 2023: 1-5 - [c62]Suleyman Mahircan Demir, Lorenzo Marzano, Paolo Motto Ros, Luca Fachechi, Danilo Demarchi, Massimo de Vittorio:
Wearable Multiple Body Signal Monitoring System with Single Biocompatible AlN Piezoelectric Sensor. ISCAS 2023: 1-5 - [c61]Andrea Mongardi, Fabio Rossi, Andrea Prestia, Danilo Demarchi, Paolo Motto Ros:
Live Demonstration: A Wearable Armband for Real-Time Control of Multi-DOF Robotic Actuators. ISCAS 2023: 1 - [c60]Antonio Coviello, Anna Bersani, Paolo Motto Ros, Fabiana Del Bono, Danilo Demarchi, Umberto Spagnolini, Maurizio Magarini:
Comparison of Data Compression Methods for Implanted Real-Time Peripheral Nervous System. MetroXRAINE 2023: 110-115 - 2022
- [j15]Umberto Garlando, Stefano Calvo, Mattia Barezzi, Alessandro Sanginario, Paolo Motto Ros, Danilo Demarchi:
Ask the plants directly: Understanding plant needs using electrical impedance measurements. Comput. Electron. Agric. 193: 106707 (2022) - [j14]Paolo Motto Ros, Danilo Demarchi, Sandro Carrara:
Editorial: Smart dust: Micro and nano scale devices for highly-integrated localized and distributed smart systems for precision and personalized medicine. Frontiers Neurorobotics 16 (2022) - [j13]Andrea Prestia, Fabio Rossi, Andrea Mongardi, Paolo Motto Ros, Massimo Ruo Roch, Maurizio Martina, Danilo Demarchi:
Motion Analysis for Experimental Evaluation of an Event-Driven FES System. IEEE Trans. Biomed. Circuits Syst. 16(1): 3-14 (2022) - [j12]Andrea Mongardi, Fabio Rossi, Andrea Prestia, Paolo Motto Ros, Massimo Ruo Roch, Maurizio Martina, Danilo Demarchi:
Hand Gestures Recognition for Human-Machine Interfaces: A Low-Power Bio-Inspired Armband. IEEE Trans. Biomed. Circuits Syst. 16(6): 1348-1365 (2022) - [c59]Nicolò Landra, Andrea Prestia, Andrea Mongardi, Fabio Rossi, Danilo Demarchi, Paolo Motto Ros:
A Biomimetic Multichannel Synergistic Calibration for Event-Driven Functional Electrical Stimulation. BioCAS 2022: 85-89 - [c58]Fabio Rossi, Andrea Prestia, Andrea Mongardi, Nicolò Landra, Paolo Motto Ros, Danilo Demarchi:
Live Demonstration: A Real-Time Bio-Mimetic System for Multichannel FES Control. BioCAS 2022: 248 - [c57]Andrea Prestia, Fabio Rossi, Andrea Mongardi, Danilo Demarchi, Paolo Motto Ros:
Raspberry Pi based Modular System for Multichannel Event-Driven Functional Electrical Stimulation Control. EMBC 2022: 2592-2597 - [c56]Fabiana Del Bono, Andrea Bontempi, Nicola Di Trani, Danilo Demarchi, Alessandro Grattoni, Paolo Motto Ros:
Wireless Power Transfer Closed-Loop Control for Low-Power Active Implantable Medical Devices. IEEE SENSORS 2022: 1-4 - [c55]Gian Luca Barbruni, Paolo Motto Ros, Danilo Demarchi, Sandro Carrara, Diego Ghezzi:
Ultra-Miniaturised CMOS Current Driver for Wireless Biphasic Intracortical Microstimulation. MOCAST 2022: 1-4 - 2021
- [j11]Simone Aiassa, Paolo Motto Ros, Ivan Ny Hanitra, Davide Tunzi, Maurizio Martina, Sandro Carrara, Danilo Demarchi:
Smart Portable Pen for Continuous Monitoring of Anaesthetics in Human Serum With Machine Learning. IEEE Trans. Biomed. Circuits Syst. 15(2): 294-302 (2021) - [j10]Marco Crepaldi, Alessandro Barcellona, Giorgio Zini, Alberto Ansaldo, Paolo Motto Ros, Alessandro Sanginario, Claudia Cuccu, Danilo Demarchi, Luca Giulio Brayda:
Live Wire - A Low-Complexity Body Channel Communication System for Landmark Identification. IEEE Trans. Emerg. Top. Comput. 9(3): 1248-1264 (2021) - [c54]Martina Becchio, Niccoló Voster, Andrea Prestia, Andrea Mongardi, Fabio Rossi, Paolo Motto Ros, Massimo Ruo Roch, Maurizio Martina, Danilo Demarchi:
Live Demonstration: Event-Driven Hand Gesture Recognition for Wearable Human-Machine Interface. BioCAS 2021: 1 - [c53]Andrea Mongardi, Fabio Rossi, Elia Pellegrino, Paolo Motto Ros, Massimo Ruo Roch, Maurizio Martina:
Low Latency Protocols Investigation for Event-Driven Wireless Body Area Networks. BioCAS 2021: 1-6 - [c52]Gian Luca Barbruni, Sandro Carrara, Paolo Motto Ros, Danilo Demarchi:
From 0.18µm to 28nm CMOS Down-scaling for Data Links in Body Dust Applications. IEEE SENSORS 2021: 1-4 - [c51]Michele Caon, Paolo Motto Ros, Maurizio Martina, Tiziano Bianchi, Enrico Magli, Francisco Membibre, Alexis Ramos, Antonio Latorre, Murray Kerr, Stefan Wiehle, Helko Breit, Dominik Günzel, Srikanth Mandapati, Ulrich Balss, Björn Tings:
Very Low Latency Architecture for Earth Observation Satellite Onboard Data Handling, Compression, and Encryption. IGARSS 2021: 7791-7794 - [c50]Paolo Motto Ros, Michele Caon, Tiziano Bianchi, Maurizio Martina, Enrico Magli:
High-Level Synthesis of a Single/Multi-Band Optical and SAR Image Compression and Encryption Hardware Accelerator. IGARSS 2021: 7835-7838 - [c49]Umberto Garlando, Lee Bar-On, Paolo Motto Ros, Alessandro Sanginario, Stefano Calvo, Maurizio Martina, Adi Avni, Yosi Shacham-Diamand, Danilo Demarchi:
Analysis of in Vivo Plant Stem Impedance Variations in Relation with External Conditions Daily Cycle. ISCAS 2021: 1-5 - [c48]Gian Luca Barbruni, Fabio Asti, Paolo Motto Ros, Diego Ghezzi, Danilo Demarchi, Sandro Carrara:
A 20 Mbps, 433 MHz RF ASK Transmitter to Inductively Power a Distributed Network of Miniaturised Neural Implants. MeMeA 2021: 1-6 - 2020
- [j9]Matteo Bruno Lodi, Nicola Curreli, Alessandro Fanti, Claudia Cuccu, Danilo Pani, Alessandro Sanginario, Andrea Spanu, Paolo Motto Ros, Marco Crepaldi, Danilo Demarchi, Giuseppe Mazzarella:
A Periodic Transmission Line Model for Body Channel Communication. IEEE Access 8: 160099-160115 (2020) - [j8]Fabio Rossi, Paolo Motto Ros, Ricardo Maximiliano Rosales, Danilo Demarchi:
Embedded Bio-Mimetic System for Functional Electrical Stimulation Controlled by Event-Driven sEMG. Sensors 20(5): 1535 (2020) - [j7]Maurizio Capra, Stefano Sapienza, Paolo Motto Ros, Alessio Serrani, Maurizio Martina, Alessandro Puiatti, Paolo Bonato, Danilo Demarchi:
Assessing the Feasibility of Augmenting Fall Detection Systems by Relying on UWB-Based Position Tracking and a Home Robot. Sensors 20(18): 5361 (2020) - [j6]Gian Luca Barbruni, Paolo Motto Ros, Danilo Demarchi, Sandro Carrara, Diego Ghezzi:
Miniaturised Wireless Power Transfer Systems for Neurostimulation: A Review. IEEE Trans. Biomed. Circuits Syst. 14(6): 1160-1178 (2020) - [j5]David Alejandro Fernandez Guzman, Paolo Motto Ros, Danilo Demarchi, Marco Crepaldi:
A Low-Complexity 6DOF Magnetic Tracking System Based on Pre-Computed Data Sets for Wearable Applications. IEEE Trans. Circuits Syst. 67-I(12): 5065-5078 (2020) - [c47]Umberto Garlando, Lee Bar-on, Paolo Motto Ros, Alessandro Sanginario, Sebastian Peradotto, Yosi Shacham-Diamand, Adi Avni, Maurizio Martina, Danilo Demarchi:
Towards Optimal Green Plant Irrigation: Watering and Body Electrical Impedance. ISCAS 2020: 1-5
2010 – 2019
- 2019
- [c46]Fabio Rossi, Ricardo Maximiliano Rosales, Paolo Motto Ros, Danilo Demarchi:
Real-Time Embedded System for Event-Driven sEMG Acquisition and Functional Electrical Stimulation Control. ApplePies 2019: 207-212 - [c45]Andrea Mongardi, Fabio Rossi, Paolo Motto Ros, Alessandro Sanginario, Massimo Ruo Roch, Maurizio Martina, Danilo Demarchi:
Live Demonstration: Low Power Embedded System for Event-Driven Hand Gesture Recognition. BioCAS 2019: 1 - [c44]Andrea Mongardi, Paolo Motto Ros, Fabio Rossi, Massimo Ruo Roch, Maurizio Martina, Danilo Demarchi:
A Low-Power Embedded System for Real-Time sEMG based Event-Driven Gesture Recognition. ICECS 2019: 65-68 - [c43]Lee Bar-on, Sebastian Peradotto, Alessandro Sanginario, Paolo Motto Ros, Yosi Shacham-Diamand, Danilo Demarchi:
In-Vivo Monitoring for Electrical Expression of Plant Living Parameters by an Impedance Lab System. ICECS 2019: 178-180 - [c42]Andrea De Marcellis, Guido Di Patrizio Stanchieri, Paolo Motto Ros, Maurizio Martina, Danilo Demarchi, Chiara Bartolozzi, Marco Faccio, Elia Palange:
Impulse-Based Asynchronous Serial Communication Protocol on Optical Fiber Link for AER Systems. ICECS 2019: 370-373 - [c41]Fabio Rossi, Paolo Motto Ros, Sofia Cecchini, Andrea Crema, Silvestro Micera, Danilo Demarchi:
An Event-Driven Closed-Loop System for Real-Time FES Control. ICECS 2019: 867-870 - [c40]Andrea De Marcellis, Guido Di Patrizio Stanchieri, Marco Faccio, Elia Palange, Paolo Motto Ros, Maurizio Martina, Danilo Demarchi, Chiara Bartolozzi:
Live Demonstration: Event-Driven Serial Communication on Optical Fiber. ISCAS 2019: 1 - [c39]Paolo Motto Ros, Enrico Macrelli, Alessandro Sanginario, Yosi Shacham-Diamand, Danilo Demarchi:
Electronic System for Signal Transmission Inside Green Plant Body. ISCAS 2019: 1-5 - 2018
- [c38]Fabio Rossi, Paolo Motto Ros, Stefano Sapienza, Paolo Bonato, Emilio Bizzi, Danilo Demarchi:
Wireless Low Energy System Architecture for Event-Driven Surface Electromyography. ApplePies 2018: 179-185 - [c37]Sofia Milanese, Diego Marino, Francesca Stradolini, Paolo Motto Ros, Federico Pleitavino, Danilo Demarchi, Sandro Carrara:
Wearablc System for Spinal Cord Injury Rehabilitation with Muscle Fatigue Feedback. IEEE SENSORS 2018: 1-4 - [c36]Chiara Bartolozzi, Paolo Motto Ros, Riccardo Peloso, Francesco Diotalevi, Marco Crepaldi, Maurizio Martina, Danilo Demarchi:
Live Demonstration: Tactile Events from Off-The-Shelf Sensors in a Robotic Skin. ISCAS 2018: 1- - [c35]Edoardo Bonizzoni, Alessandro Puiatti, Stefano Sapienza, Paolo Motto Ros, Danilo Demarchi, Paolo Bonato:
UWB Tracking for Home Care Systems with Off-the-Shelf Components. ISCAS 2018: 1-5 - [c34]Fabio Rossi, Paolo Motto Ros, Danilo Demarchi:
Live Demonstration: Low Power System for Event-Driven Control of Functional Electrical Stimulation. ISCAS 2018: 1- - [c33]Stefano Sapienza, Paolo Motto Ros, David Alejandro Fernandez Guzman, Fabio Rossi, Rossana Terracciano, Elisa Cordedda, Danilo Demarchi:
On-Line Event-Driven Hand Gesture Recognition Based on Surface Electromyographic Signals. ISCAS 2018: 1-5 - 2017
- [c32]Simone Aiassa, Paolo Motto Ros, Guido Masera, Maurizio Martina:
A low power architecture for AER event-processing microcontroller. BioCAS 2017: 1-4 - [c31]Chiara Bartolozzi, Paolo Motto Ros, Francesco Diotalevi, Marco Crepaldi:
Live demonstration: Tactile events from off-the-shelf sensors in a robotic skin. BioCAS 2017: 1 - [c30]David Alejandro Fernandez Guzman, Stefano Sapienza, Bianca Sereni, Paolo Motto Ros:
Very low power event-based surface EMG acquisition system with off-the-shelf components. BioCAS 2017: 1-4 - [c29]Paolo Motto Ros, Beatrice Miccoli, Alessandro Sanginario, Danilo Demarchi:
Low-power architecture for integrated CMOS bio-sensing. BioCAS 2017: 1-4 - [c28]Francesca Stradolini, Eleonora Lavalle, Paolo Motto Ros, Giovanni De Micheli, Danilo Demarchi, Sandro Carrara:
Live demonstration: An IoT smartwatch-based system for intensive care monitoring. BioCAS 2017: 1 - [c27]Chiara Bartolozzi, Paolo Motto Ros, Francesco Diotalevi, Nawid Jamali, Lorenzo Natale, Marco Crepaldi, Danilo Demarchi:
Event-driven encoding of off-the-shelf tactile sensors for compression and latency optimisation for robotic skin. IROS 2017: 166-173 - [c26]Francesca Stradolini, Abuduwaili Tuoheti, Paolo Motto Ros, Danilo Demarchi, Sandro Carrara:
Raspberry Pi Based System for Portable and Simultaneous Monitoring of Anesthetics and Therapeutic Compounds. NGCAS 2017: 101-104 - 2016
- [j4]Stefano Sapienza, Marco Crepaldi, Paolo Motto Ros, Alberto Bonanno, Danilo Demarchi:
On Integration and Validation of a Very Low Complexity ATC UWB System for Muscle Force Transmission. IEEE Trans. Biomed. Circuits Syst. 10(2): 497-506 (2016) - [c25]Matteo Stoppa, Paolo Motto Ros, Marco Crepaldi, Alessandro Chiolerio, Danilo Demarchi:
A quasi-digital pressure/touch sensor prototype for orbital targets contact event monitoring. ISCAS 2016: 2843-2846 - [c24]Francesca Stradolini, Eleonora Lavalle, Giovanni De Micheli, Paolo Motto Ros, Danilo Demarchi, Sandro Carrara:
Paradigm-Shifting Players for IoT: Smart-Watches for Intensive Care Monitoring. MobiHealth 2016: 71-78 - [c23]Marco Crepaldi, Alessandro Sanginario, Paolo Motto Ros, Danilo Demarchi:
Low-latency asynchronous networking for the IoT: Routing analog pulse delays using IR-UWB. NEWCAS 2016: 1-4 - 2015
- [j3]Marco Crepaldi, Matteo Stoppa, Paolo Motto Ros, Danilo Demarchi:
An Analog-Mode Impulse Radio System for Ultra-Low Power Short-Range Audio Streaming. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(12): 2886-2897 (2015) - [c22]Masoud Shahshahani Amirhossein, Paolo Motto Ros, Alberto Bonanno, Marco Crepaldi, Maurizio Martina, Danilo Demarchi, Guido Masera:
An all-digital spike-based ultra-low-power IR-UWB dynamic average threshold crossing scheme for muscle force wireless transmission. DATE 2015: 1479-1484 - [c21]Paolo Motto Ros, Marco Crepaldi, Chiara Bartolozzi, Danilo Demarchi:
Asynchronous DC-free serial protocol for event-based AER systems. ICECS 2015: 248-251 - [c20]Paolo Motto Ros, Marco Crepaldi, Danilo Demarchi:
A hybrid quasi-digital/neuromorphic architecture for tactile sensing in humanoid robots. IWASI 2015: 126-130 - 2014
- [j2]Marco Crepaldi, Silvia Macis, Paolo Motto Ros, Danilo Demarchi:
A 0.07 mm2 Asynchronous Logic CMOS Pulsed Receiver Based on Radio Events Self-Synchronization. IEEE Trans. Circuits Syst. I Regul. Pap. 61-I(3): 750-763 (2014) - [c19]Alessia Damilano, Marco Crepaldi, Paolo Motto Ros, Danilo Demarchi:
A 130 nm Event-Driven Voltage and Temperature Insensitive Capacitive ROC. DSD 2014: 663-666 - [c18]Marco Crepaldi, Paolo Motto Ros, Danilo Demarchi:
A 130 nm CMOS IR-UWB receiver based on baseband cross-phase detection. ICECS 2014: 814-817 - [c17]Marco Crepaldi, Paolo Motto Ros, Alberto Bonanno, Marco Morello, Danilo Demarchi:
A non-coherent IR-UWB receiver for high sensitivity short distance estimation. ISCAS 2014: 1905-1908 - 2013
- [j1]Alberto Bonanno, Marco Crepaldi, Ismael Rattalino, Paolo Motto Ros, Danilo Demarchi, Pierluigi Civera:
A 0.13~µm CMOS Operational Schmitt Trigger R-to-F Converter for Nanogap-Based Nanosensors Read-Out. IEEE Trans. Circuits Syst. I Regul. Pap. 60-I(4): 975-988 (2013) - [c16]Ismael Rattalino, Paolo Motto Ros, Irene Taurino, Fernando Cortes-Salazar, Gianluca Piccinini, Danilo Demarchi, Giovanni De Micheli, Sandro Carrara:
Nanogap-based enzymatic-free electrochemical detection of glucose. BioCAS 2013: 130-133 - [c15]Paolo Motto Ros, Marco Crepaldi, Alberto Bonanno, Danilo Demarchi:
Wireless Multi-channel Quasi-digital Tactile Sensing Glove-Based System. DSD 2013: 673-680 - [c14]Marco Crepaldi, Paolo Motto Ros, Danilo Demarchi, John L. Buckley, Brendan O'Flynn, Davide Quaglia:
A Physical-Aware Abstraction Flow for Efficient Design-Space Exploration of a Wireless Body Area Network Application. DSD 2013: 1005-1012 - [c13]Marco Crepaldi, Paolo Motto Ros, Mariagrazia Graziano, Danilo Demarchi:
A 130nm PMOS drain-degenerated ratioless level-shifter for near-threshold designs. ETFA 2013: 1-7 - [c12]Paolo Motto Ros, Marco Paleari, Nicolo Celadon, Alessandro Sanginario, Alberto Bonanno, Marco Crepaldi, Paolo Ariano, Danilo Demarchi:
A wireless address-event representation system for ATC-based multi-channel force wireless transmission. IWASI 2013: 51-56 - [c11]Alberto Bonanno, Valentina Cauda, Marco Crepaldi, Paolo Motto Ros, Marco Morello, Danilo Demarchi, Pierluigi Civera:
A low-power Read-Out Circuit and low-cost assembly of nanosensors onto a 0.13 μm CMOS Micro-for-Nano chip. IWASI 2013: 125-130 - 2012
- [c10]Paolo Motto Ros, Eros Pasero:
Defects Detection in Pistachio Nuts Using Artificial Neural Networks. WIRN 2012: 147-156 - 2011
- [c9]Paolo Motto Ros, Eros Pasero:
Interfacing an AER Vision Sensor with a Tactile Display: a Proposal for a New Haptic Feedback Device. WIRN 2011: 332-343 - 2010
- [c8]Paolo Motto Ros, Eros Pasero:
Design and Evaluation of Neural Networks for an Embedded Application. IEA/AIE (3) 2010: 11-20 - [c7]Paolo Motto Ros, Eros Pasero:
A framework for developing Neural Networks based mobile appliances. IJCNN 2010: 1-8 - [c6]Paolo Motto Ros:
A Comparison Study for a Neural Network Based Embedded Appliance. WIRN 2010: 152-161
2000 – 2009
- 2009
- [c5]Paolo Motto Ros, Eros Pasero, Paolo Del Giudice, Vittorio Dante, Erminio Petetti:
Interactive Reader Device for Visually Impaired People. WIRN 2009: 306-313 - 2007
- [c4]Paolo Motto Ros, Eros Pasero:
Artificial Neural Networks for Real Time Reader Devices. IJCNN 2007: 2442-2447 - [c3]Sergio Tota, Mario R. Casu, Paolo Motto Ros, Massimo Ruo Roch, Maurizio Zamboni:
The NoCRay Graphic Accelerator: a Case-study for MP-SoC Network-on-Chip Design Methodology. SoC 2007: 1-4 - [c2]Paolo Motto Ros, Eros Pasero:
Real Time Reader Device for Blind People. KES (3) 2007: 292-299 - [c1]Sergio Tota, Mario R. Casu, Paolo Motto Ros, Massimo Ruo Roch, Maurizio Zamboni:
A methodology and a case-study for network-on-chip based MP-SoC architectures. Nano-Net 2007: 9
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 2024-10-07 21:23 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint