default search action
Laleh Najafizadeh
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j12]Emma M. Millon, Ali E. Haddad, Han Yan M. Chang, Laleh Najafizadeh, Tracey J. Shors:
The Feeling of Time Passing Is Associated with Recurrent Sustained Activity and Theta Rhythms Across the Cortex. Brain Connect. 14(1): 39-47 (2024) - [c49]Kevin Wine, Demetrios Lambropoulos, Laleh Najafizadeh, Sasan Haghani:
Incorporating Design Skills in an Introductory Electric Circuits Laboratory. ISCAS 2024: 1-4 - 2023
- [j11]Ali E. Haddad, Laleh Najafizadeh:
The Discriminative Discrete Basis Problem: Definitions, Algorithms, Benchmarking, and Application to Brain's Functional Dynamics. IEEE Trans. Signal Process. 71: 1-16 (2023) - [c48]Weinan Wang, Kevin L. Kilgore, Pedram Mohseni, Laleh Najafizadeh:
Detecting Rises in SBP from PPG for Identifying Autonomic Dysreflexia. BioCAS 2023: 1-5 - [c47]Ashwini Subramanian, Laleh Najafizadeh:
Hierarchical Classification Strategy for Mitigating the Impact of The Presence of Pain in fNIRS-based BCIs. EMBC 2023: 1-4 - [c46]Weinan Wang, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
Demographic Information Fusion Using Attentive Pooling In CNN-GRU Model For Systolic Blood Pressure Estimation. EMBC 2023: 1-4 - [c45]Fatemeh Koochaki, Laleh Najafizadeh:
Identifying Mild Traumatic Brain Injury via Vision Transformer and Bag of Visual Features. NER 2023: 1-4 - 2022
- [j10]Weinan Wang, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
PulseDB: A large, cleaned dataset based on MIMIC-III and VitalDB for benchmarking cuff-less blood pressure estimation methods. Frontiers Digit. Health 4 (2022) - [j9]Weinan Wang, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
Cuff-Less Blood Pressure Estimation From Photoplethysmography via Visibility Graph and Transfer Learning. IEEE J. Biomed. Health Informatics 26(5): 2075-2085 (2022) - [c44]Weinan Wang, Laleh Najafizadeh:
Imaging Physiological Signals. IEEECONF 2022: 465-469 - [c43]Weinan Wang, Fatemeh Marefat, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
The Effects of Filtering PPG Signal on Pulse Arrival Time-Systolic Blood Pressure Correlation. EMBC 2022: 674-677 - [c42]Jiazhen Hong, Foroogh Shamsi, Laleh Najafizadeh:
A Deep Learning Framework Based on Dynamic Channel Selection for Early Classification of Left and Right Hand Motor Imagery Tasks. EMBC 2022: 3550-3553 - 2021
- [c41]Ali Haddad, Laleh Najafizadeh:
Dynamic Decoding of Intention via EEG. ACSCC 2021: 595-599 - [c40]Weinan Wang, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
Cuff-Less Blood Pressure Estimation via Small Convolutional Neural Networks. EMBC 2021: 1031-1034 - [c39]Weinan Wang, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
PulseLab: An Integrated and Expandable Toolbox for Pulse Wave Velocity-based Blood Pressure Estimation. EMBC 2021: 5654-5657 - [c38]Shiva Salsabilian, Laleh Najafizadeh:
A Variational Encoder Framework for Decoding Behavior Choices from Neural Data. EMBC 2021: 6631-6634 - [c37]Shiva Salsabilian, Laleh Najafizadeh:
An Adversarial Variational Autoencoder Approach Toward Transfer Learning for mTBI Identification. NER 2021: 408-411 - [c36]Fatemeh Koochaki, Laleh Najafizadeh:
A Convolutional Autoencoder for Identification of mild Traumatic Brain Injury. NER 2021: 412-415 - 2020
- [c35]Ali Haddad, Laleh Najafizadeh:
On the Spatio-Temporo-Rhythmic Mapping of the Task-Associated Brain Functional Networks. ACSSC 2020: 797-801 - [c34]Weinan Wang, Li Zhu, Fatemeh Marefat, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
Photoplethysmography-Based Blood Pressure Estimation Using Deep Learning. ACSSC 2020: 945-949 - [c33]Ali Haddad, Laleh Najafizadeh:
Classification of EEG Data Based on the Spatio-Temporo-Rhythmic Characteristics of the Task-Discriminating Functional Sub-networks. EMBC 2020: 2865-2868 - [c32]Fatemeh Koochaki, Foroogh Shamsi, Laleh Najafizadeh:
Detecting mTBI by Learning Spatio-temporal Characteristics of Widefield Calcium Imaging Data Using Deep Learning. EMBC 2020: 2917-2920 - [c31]Shiva Salsabilian, Laleh Najafizadeh:
Detection of Mild Traumatic Brain Injury via Topological Graph Embedding and 2D Convolutional Neural Networks. EMBC 2020: 3715-3718 - [c30]Shiva Salsabilian, Li Zhu, Christian R. Lee, David J. Margolis, Laleh Najafizadeh:
Identifying Task-Related Brain Functional States Via Cortical Networks. ISCAS 2020: 1-4 - [c29]Amir Mirbeik-Sabzevari, Laleh Najafizadeh, Negar Tavassolian:
Synthetic Ultra-Wideband Integrated Pulse Generator for Millimeter-Wave Imaging Applications. NEWCAS 2020: 154-157
2010 – 2019
- 2019
- [j8]Laleh Najafizadeh, Milin Zhang, Konstantin Nikolic:
Guest Editorial: Special Issue on Selected Papers From IEEE BioCAS 2018. IEEE Trans. Biomed. Circuits Syst. 13(5): 793-794 (2019) - [j7]Ali E. Haddad, Laleh Najafizadeh:
Source-Informed Segmentation: A Data-Driven Approach for the Temporal Segmentation of EEG. IEEE Trans. Biomed. Eng. 66(5): 1429-1446 (2019) - [j6]Ahmed Al Hilli, Laleh Najafizadeh, Athina P. Petropulu:
Weighted Sparse Bayesian Learning (WSBL) for Basis Selection in Linear Underdetermined Systems. IEEE Trans. Veh. Technol. 68(8): 7353-7367 (2019) - [c28]Fatemeh Koochaki, Laleh Najafizadeh:
Eye Gaze-based Early Intent Prediction Utilizing CNN-LSTM. EMBC 2019: 1310-1313 - [c27]Shiva Salsabilian, Elena Bibineyshvili, David J. Margolis, Laleh Najafizadeh:
Quantifying Changes in Brain Function Following Injury via Network Measures. EMBC 2019: 5217-5220 - [c26]Ali Haddad, Foroogh Shamsi, Maysam Ghovanloo, Laleh Najafizadeh:
Early Decoding of Tongue-Hand Movement from EEG Recordings Using Dynamic Functional Connectivity Graphs. NER 2019: 373-376 - 2018
- [j5]Yi Huang, Li Zhu, Fanpeng Kong, Chun Cheung, Laleh Najafizadeh:
BiCMOS-Based Compensation: Toward Fully Curvature-Corrected Bandgap Reference Circuits. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(4): 1210-1223 (2018) - [c25]Ali Haddad, Foroogh Shamsi, Li Zhu, Laleh Najafizadeh:
Identifying Dynamics of Brain Function Via Boolean Matrix Factorization. ACSSC 2018: 661-665 - [c24]Alexandra Comaniciu, Laleh Najafizadeh:
Enabling Communication for Locked-in Syndrome Patients using Deep Learning and an Emoji-based Brain Computer Interface. BioCAS 2018: 1-4 - [c23]Fatemeh Koochaki, Laleh Najafizadeh:
Predicting Intention Through Eye Gaze Patterns. BioCAS 2018: 1-4 - [c22]Ali E. Haddad, Foroogh Shamsi, Laleh Najafizadeh:
On the Spatiotemporal Characteristics of Class-Discriminating Functional Networks. EMBC 2018: 1923-1926 - [c21]Ali Haddad, Laleh Najafizadeh:
Recognizing task-specific dynamic structure of the brain function from EEG. ISBI 2018: 712-715 - 2017
- [j4]Ahmed Al Hilli, Laleh Najafizadeh, Athina P. Petropulu:
A Weighted Approach for Sparse Signal Support Estimation with Application to EEG Source Localization. IEEE Trans. Signal Process. 65(24): 6551-6565 (2017) - [c20]Tianjiao Zeng, Debbie Peru, Venda Porter Maloney, Laleh Najafizadeh:
Cortical activity changes as related to oral irritation-an fNIRS study. EMBC 2017: 2558-2561 - [c19]Yi Huang, Daniel Browe, Joseph Freeman, Laleh Najafizadeh:
Live demonstration: A frequency-based system for wireless electrical stimulation of iEAPs. ISCAS 2017: 1 - [c18]Laleh Najafizadeh:
Reference circuits for emerging applications-from extreme environment electronics to internet of things. MWSCAS 2017: 1304-1307 - 2016
- [c17]Ali Haddad, Laleh Najafizadeh:
Source-informed segmentation: Towards capturing the dynamics of brain functional networks through EEG. ACSSC 2016: 1290-1294 - [c16]Ali Haddad, Laleh Najafizadeh:
Multi-scale analysis of the dynamics of brain functional connectivity using EEG. BioCAS 2016: 240-243 - [c15]Yi Huang, Daniel Browe, Sanjeevi Thirumurugesan, Joseph Freeman, Laleh Najafizadeh:
In vitro characterization of electronically stimulated ionic electroactive polymers with application to muscle prosthesis. BioCAS 2016: 428-431 - [c14]Ahmed Al Hilli, Laleh Najafizadeh, Athina P. Petropulu:
Generalized range space property for group sparsity of linear underdetermined systems. CISS 2016: 568-571 - [c13]Tuan Le, Gabriel Salles-Loustau, Laleh Najafizadeh, Mehdi Javanmard, Saman A. Zonouz:
Secure Point-of-Care Medical Diagnostics via Trusted Sensing and Cyto-Coded Passwords. DSN 2016: 583-594 - [c12]Tuan Le, Gabriel Salles-Loustau, Laleh Najafizadeh, Mehdi Javanmard, Saman A. Zonouz:
BioMEMS-based coding for secure medical diagnostic devices. EMBC 2016: 4419-4422 - [c11]Yunqi Wang, Laleh Najafizadeh:
On the invariance of EEG-based signatures of individuality with application in biometric identification. EMBC 2016: 4559-4562 - [c10]Yi Huang, Laleh Najafizadeh:
A wirelessly tunable low drop-out regulator for subcutaneous muscle prosthesis. ISCAS 2016: 850-853 - 2015
- [c9]Yi Huang, Fanpeng Kong, Joseph Freeman, Laleh Najafizadeh:
A low drop-out regulator for subcutaneous electrical stimulation of nanofibers used in muscle prosthesis. BioCAS 2015: 1-4 - [c8]Ahmed Al Hilli, Laleh Najafizadeh, Athina P. Petropulu:
EEG sparse source localization via Range Space Rotation. CAMSAP 2015: 265-268 - [c7]Ali E. Haddad, Laleh Najafizadeh:
Global EEG segmentation using singular value decomposition. EMBC 2015: 558-561 - 2014
- [c6]Yi Huang, Li Zhu, Chun Cheung, Laleh Najafizadeh:
A curvature-compensation technique based on the difference of Si and SiGe junction voltages for bandgap voltage circuits. ISCAS 2014: 914-917 - [c5]Yi Huang, Li Zhu, Chun Cheung, Laleh Najafizadeh:
A low temperature coefficient voltage reference utilizing BiCMOS compensation technique. ISCAS 2014: 922-925 - 2013
- [j3]Nader Karamzadeh, Andrei V. Medvedev, Afrouz Azari, Amir Gandjbakhche, Laleh Najafizadeh:
Capturing dynamic patterns of task-based functional connectivity with EEG. NeuroImage 66: 311-317 (2013) - [c4]Yi Huang, Chun Cheung, Laleh Najafizadeh:
A multi-piecewise curvature-corrected technique for bandgap reference circuits. MWSCAS 2013: 305-308 - 2012
- [j2]Franck Amyot, Trelawny Zimmermann, Jason Riley, Jana M. Kainerstorfer, Victor Chernomordik, Eric Mooshagian, Laleh Najafizadeh, Frank Krueger, Amir Gandjbakhche, Eric M. Wassermann:
Normative database of judgment of complexity task with functional near infrared spectroscopy - Application for TBI. NeuroImage 60(2): 879-883 (2012)
2000 – 2009
- 2006
- [j1]Laleh Najafizadeh, Chintha Tellambura:
BER analysis of arbitrary QAM for MRC diversity with imperfect channel estimation in generalized ricean fading channels. IEEE Trans. Veh. Technol. 55(4): 1239-1248 (2006) - 2005
- [c3]Laleh Najafizadeh, Chintha Tellambura:
Exact BER analysis of an arbitrary square/rectangular QAM for MRC diversity with ICE in nonidentical Rayleigh fading channels. ICC 2005: 2387-2391 - 2004
- [c2]Laleh Najafizadeh, Igor M. Filanovsky:
Towards a sub-1 V CMOS voltage reference. ISCAS (1) 2004: 53-56 - [c1]Laleh Najafizadeh, Igor M. Filanovsky:
A simple voltage reference using transistor with ZTC point and PTAT current source. ISCAS (1) 2004: 909-911
Coauthor Index
aka: Ali E. Haddad
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 2024-07-17 21:26 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint