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Awais M. Kamboh
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2020 – today
- 2024
- [j13]Mohammed A. Alqarni, Hira Masood, Adil Jowad Qureshi, Muiz Alvi, Haziq Arbab, Hassan Aqeel Khan, Awais Mehmood Kamboh, Saima Shafait, Faisal Shafait:
NeuroAssist: Open-Source Automatic Event Detection in Scalp EEG. IEEE Access 12: 170321-170334 (2024) - 2022
- [j12]Faiq Khalid, Imran Hafeez Abbassi, Semeen Rehman, Awais Mehmood Kamboh, Osman Hasan, Muhammad Shafique:
ForASec: Formal Analysis of Hardware Trojan-Based Security Vulnerabilities in Sequential Circuits. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 41(4): 1167-1180 (2022) - 2020
- [j11]Raheel Asif, Sajid Saleem, Syed Ali Hassan, Soltan Abed Alharbi, Awais Mehmood Kamboh:
Epileptic Seizure Detection With a Reduced Montage: A Way Forward for Ambulatory EEG Devices. IEEE Access 8: 65880-65890 (2020)
2010 – 2019
- 2019
- [j10]Taimoor Tariq, Muhammad Hashim Satti, Hamid M. Kamboh, Maryam Saeed, Awais M. Kamboh:
Computationally efficient fully-automatic online neural spike detection and sorting in presence of multi-unit activity for implantable circuits. Comput. Methods Programs Biomed. 179 (2019) - [j9]Imran Hafeez Abbassi, Faiq Khalid, Osman Hasan, Awais Mehmood Kamboh:
Using gate-level side channel parameters for formally analyzing vulnerabilities in integrated circuits. Sci. Comput. Program. 171: 42-66 (2019) - [c15]Imran Hafeez Abbassi, Faiq Khalid, Semeen Rehman, Awais Mehmood Kamboh, Axel Jantsch, Siddharth Garg, Muhammad Shafique:
TrojanZero: Switching Activity-Aware Design of Undetectable Hardware Trojans with Zero Power and Area Footprint. DATE 2019: 914-919 - 2018
- [j8]Imran Hafeez Abbassi, Faiq Khalid, Osman Hasan, Awais Mehmood Kamboh, Muhammad Shafique:
McSeVIC: A Model Checking Based Framework for Security Vulnerability Analysis of Integrated Circuits. IEEE Access 6: 32240-32257 (2018) - [j7]Muhammad Sohaib J. Solaija, Sajid Saleem, Khawar Khurshid, Syed Ali Hassan, Awais Mehmood Kamboh:
Dynamic Mode Decomposition Based Epileptic Seizure Detection from Scalp EEG. IEEE Access 6: 38683-38692 (2018) - [i1]Imran Hafeez Abbassi, Faiq Khalid, Semeen Rehman, Awais Mehmood Kamboh, Axel Jantsch, Siddharth Garg, Muhammad Shafique:
TrojanZero: Switching Activity-Aware Design of Undetectable Hardware Trojans with Zero Power and Area Footprint. CoRR abs/1812.02770 (2018) - 2017
- [j6]Muhammad Zubair Ahmad, Awais Mehmood Kamboh, Sajid Saleem, Amir Ali Khan:
Mallat's Scattering Transform Based Anomaly Sensing for Detection of Seizures in Scalp EEG. IEEE Access 5: 16919-16929 (2017) - [c14]Amama Mahmood, Rida Zainab, Rushda Basir Ahmad, Maryam Saeed, Awais Mehmood Kamboh:
Classification of multi-class motor imagery EEG using four band common spatial pattern. EMBC 2017: 1034-1037 - [c13]Taimoor Tariq, Muhammad Hashim Satti, Maryam Saeed, Awais Mehmood Kamboh:
Low SNR neural spike detection using scaled energy operators for implantable brain circuits. EMBC 2017: 1074-1077 - [c12]Aymen Ayaz, Muhammad Zubair Ahmad, Khawar Khurshid, Awais M. Kamboh:
MRI based automated diagnosis of Alzheimer's: Fusing 3D wavelet-features with clinical data. EMBC 2017: 1210-1213 - [c11]Sarwat Fatima, Awais M. Kamboh:
Decoding brain cognitive activity across subjects using multimodal M/EEG neuroimaging. EMBC 2017: 3224-3227 - [c10]Khawaja Taimoor Tanweer, Syed Rafay Hasan, Awais Mehmood Kamboh:
Motion artifact reduction from PPG signals during intense exercise using filtered X-LMS. ISCAS 2017: 1-4 - 2016
- [c9]Muhammad H. Malik, Maryam Saeed, Awais M. Kamboh:
Automatic threshold optimization in nonlinear energy operator based spike detection. EMBC 2016: 774-777 - [c8]Imran Hafeez Abbasi, Faiq Khalid Lodhi, Awais Mehmood Kamboh, Osman Hasan:
Formal Verification of Gate-Level Multiple Side Channel Parameters to Detect Hardware Trojans. FTSCS 2016: 75-92 - [c7]Saadullah Amin, Awais Mehmood Kamboh:
A robust approach towards epileptic seizure detection. MLSP 2016: 1-6 - 2015
- [j5]Sami Ur Rehman, Awais Mehmood Kamboh:
A CMOS Micro-power and Area Efficient Neural Recording and Stimulation Front-End for Biomedical Applications. Circuits Syst. Signal Process. 34(6): 1725-1746 (2015) - [j4]Kamran Babar, Rehan Hafiz, Khawar Khurshid, Awais M. Kamboh, Ali Hassan, Farhan Riaz, Byeungwoo Jeon:
A scalable architecture for geometric correction of multi-projector display systems. Displays 40: 104-112 (2015) - 2014
- [c6]Masab Ahmad, Awais Mehmood Kamboh, Rehan Hafiz:
Power & throughput optimized lifting architecture for Wavelet Packet Transform. ISCAS 2014: 2205-2208 - 2013
- [c5]Sami Ur Rehman, Awais M. Kamboh:
A new architecture for neural signal amplification in implantable brain machine interfaces. EMBC 2013: 2744-2747 - 2011
- [c4]Awais M. Kamboh, Andrew J. Mason:
Channel characterization for implant to body surface communication. ISCAS 2011: 913-916 - 2010
- [c3]Awais M. Kamboh, Yuning Yang, Karim G. Oweiss, Andrew J. Mason:
Design of a configurable neural Data compression system for intra-cortical implants. ISCAS 2010: 3473-3476
2000 – 2009
- 2009
- [c2]Awais M. Kamboh, Karim G. Oweiss, Andrew J. Mason:
Resource Constrained VLSI Architecture for Implantable Neural Data Compression Systems. ISCAS 2009: 1481-1484 - 2008
- [j3]Awais M. Kamboh, Andrew J. Mason, Karim G. Oweiss:
Analysis of Lifting and B-Spline DWT Implementations for Implantable Neuroprosthetics. J. Signal Process. Syst. 52(3): 249-261 (2008) - 2007
- [j2]Awais M. Kamboh, Matthew Raetz, Karim G. Oweiss, Andrew J. Mason:
Area-Power Efficient VLSI Implementation of Multichannel DWT for Data Compression in Implantable Neuroprosthetics. IEEE Trans. Biomed. Circuits Syst. 1(2): 128-135 (2007) - [j1]Karim G. Oweiss, Andrew J. Mason, Yasir Suhail, Awais M. Kamboh, Kyle E. Thomson:
A Scalable Wavelet Transform VLSI Architecture for Real-Time Signal Processing in High-Density Intra-Cortical Implants. IEEE Trans. Circuits Syst. I Regul. Pap. 54-I(6): 1266-1278 (2007) - [c1]Awais M. Kamboh, Matthew Raetz, Andrew J. Mason, Karim G. Oweiss:
Area-Power Efficient Lifting-Based DWT Hardware for Implantable Neuroprosthetics. ISCAS 2007: 2371-2374
Coauthor Index
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last updated on 2024-12-02 21:26 CET by the dblp team
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