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Texture Analysis of H-scan Ultrasound Images for the Characterization of Breast Tumors
Conference paper
Zhanjie Zhang, Sio Hang Pun, Peng Un Mak, Hung Chun Li, Kung Jui Hou, Mang I Vai. Texture Analysis of H-scan Ultrasound Images for the Characterization of Breast Tumors[C]:Springer Science and Business Media Deutschland GmbH, 2024, 302-309.
Authors:
Zhanjie Zhang
;
Sio Hang Pun
;
Peng Un Mak
;
Hung Chun Li
;
Kung Jui Hou
; et al.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2024/08/26
Breast Cancer
H-scan
Texture Analysis
Tissue Characterization
Ultrasound Imaging
A Low-Power Variable Gain Amplifier Design with 70-DB Gain Range and 1.28-DB Gain Error for Ultrasound Imaging System
Conference paper
Ma, Jieyu, Yu, Yuanyu, Wang, Jiujiang, Mak, Peng Un, Li, Hungchun, Yu, Liu, Qiu, Weibao, Pun, Sio Hang, Vai, Mang I.. A Low-Power Variable Gain Amplifier Design with 70-DB Gain Range and 1.28-DB Gain Error for Ultrasound Imaging System[C]:SPRINGER INTERNATIONAL PUBLISHING, 2024, 140-148.
Authors:
Ma, Jieyu
;
Yu, Yuanyu
;
Wang, Jiujiang
;
Mak, Peng Un
;
Li, Hungchun
; et al.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2024/05/16
Cell-based Topology
Cmos Variable Gain Amplifier
Db-linear
Low Power Amplifier
Ultrasound Imaging
Dynamic Equivalent Circuit Models for Intracardiac Communication in Leadless Pacemakers
Conference paper
Li, Dongming, Wang, Jiamei, Mou, Pedro Antonio, Yin, Yadong, Pun, Sio Hang, Mak, Peng Un, Li, Hungchun, Gao, Yueming, Vai, Mang I.. Dynamic Equivalent Circuit Models for Intracardiac Communication in Leadless Pacemakers[C], 2024, 336-345.
Authors:
Li, Dongming
;
Wang, Jiamei
;
Mou, Pedro Antonio
;
Yin, Yadong
;
Pun, Sio Hang
; et al.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2024/07/04
Dynamic Equivalent Circuit Models
Intracardiac Circuit Phantom
Intracardiac Communication
Leadless Pacemakers
A 4-Channel Optogenetic Stimulation, 16-Channel Recording Neuromodulation System with Real-Time Micro-LED Detection Function
Journal article
Xia, Yu, Zheng, Ruihan, Wang, Liyang, Zhang, Anguo, Li, Dongming, Wu, Yufei, Gao, Yueming, Xu, Yanyan, Zhang, Baijun, Li, Hungchun, Mak, Peng Un, Vai, Mang I., Pun, Sio Hang. A 4-Channel Optogenetic Stimulation, 16-Channel Recording Neuromodulation System with Real-Time Micro-LED Detection Function[J]. Electronics (Switzerland), 2023, 12(23), 4783.
Authors:
Xia, Yu
;
Zheng, Ruihan
;
Wang, Liyang
;
Zhang, Anguo
;
Li, Dongming
; et al.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
IF:
2.6
/
2.6
|
Submit date:2024/01/02
Asic
Micro-led Detection
Neural Signal Recording
Neural Stimulation
Optogenetic Neuromodulation System
Neural Signal Compression System with Spike Detection Using Compressed Sensing
Conference paper
Ruihan Zheng, Yu Xia, Dongming Li, Liyang Wang, Hung Chun Li, Peng Un Mak, Mang I Vai, Sio Hang Pun. Neural Signal Compression System with Spike Detection Using Compressed Sensing[C], 2023.
Authors:
Ruihan Zheng
;
Yu Xia
;
Dongming Li
;
Liyang Wang
;
Hung Chun Li
; et al.
Favorite
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Submit date:2024/08/26
Emotion Recognition Based on EEG Brain Rhythm Sequencing Technique
Journal article
Jia Wen Li, Shovan Barma, Sio Hang Pun, Mang I Vai, Peng Un Mak. Emotion Recognition Based on EEG Brain Rhythm Sequencing Technique[J]. IEEE Transactions on Cognitive and Developmental Systems, 2023, 15(1), 163-174.
Authors:
Jia Wen Li
;
Shovan Barma
;
Sio Hang Pun
;
Mang I Vai
;
Peng Un Mak
Favorite
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TC[WOS]:
7
TC[Scopus]:
8
IF:
5.0
/
4.6
|
Submit date:2022/08/07
Electroencephalography (Eeg)
Brain Rhythm Sequencing (Brs)
Reassigned Smoothed Pseudo Wigner-ville Distribution (Rspwvd)
Multi-channel Rhythmic Features (Mcrfs)
Emotion Recognition.
Accelerating the phase demodulation process for heterodyne Φ-OTDR using spatial phase shifting
Journal article
Liu,Shuaiqi, Shao,Liyang, Yu,Fei Hong, Lin,Weihao, Xiao,Dongrui, Sun,Siming, Li,Shangru, Pun,Sio Hang, Mak,Peng Un, Vai,Mang I.. Accelerating the phase demodulation process for heterodyne Φ-OTDR using spatial phase shifting[J]. Optics Letters, 2023, 48(4), 1048-1051.
Authors:
Liu,Shuaiqi
;
Shao,Liyang
;
Yu,Fei Hong
;
Lin,Weihao
;
Xiao,Dongrui
; et al.
Favorite
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TC[WOS]:
10
TC[Scopus]:
11
IF:
3.1
/
3.1
|
Submit date:2023/08/03
An Improved Static Membrane Deflection Analysis for Collapse Mode CMUT Fabricated by Sacrificial Release Method
Journal article
Jiujiang Wang, Xin Liu, Yuanyu Yu, Ching-Hsiang Cheng, Kin Fong Lei, Peng Un Mak, Mang I Vai, Sio Hang Pun. An Improved Static Membrane Deflection Analysis for Collapse Mode CMUT Fabricated by Sacrificial Release Method[J]. IEEE Sensors Journal, 2023, 23(3), 2364-2374.
Authors:
Jiujiang Wang
;
Xin Liu
;
Yuanyu Yu
;
Ching-Hsiang Cheng
;
Kin Fong Lei
; et al.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
IF:
4.3
/
4.2
|
Submit date:2023/03/06
Analytical Analysis
Capacitive Micromachined Ultrasonic Transducer (Cmut)
Collapse Mode
Deflection
Substrate Supporting Effect
Supporting Post Bending Effect
Fabrication of CMUTs Using Sacrificial Release Process with Ashing Assisted Polysilicon Release
Conference paper
Che, U. Kin, Liu, Xin, Yu, Yuanyu, Wang, Jiujiang, Pun, Sio Hang, Chen, Fei, Mak, Peng Un, Vai, Mang I.. Fabrication of CMUTs Using Sacrificial Release Process with Ashing Assisted Polysilicon Release[C]. El-Hashash A.:SPIE, 2022, 1245807.
Authors:
Che, U. Kin
;
Liu, Xin
;
Yu, Yuanyu
;
Wang, Jiujiang
;
Pun, Sio Hang
; et al.
Favorite
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TC[Scopus]:
0
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Submit date:2023/01/30
Ashing
Capacitive Micromachined Ultrasonic Transducer
Polysilicon
Sacrificial Layer Release
Stress
Double-Sided Sapphire Optrodes with Conductive Shielding Layers to Reduce Optogenetic Stimulation Artifacts
Journal article
Shen, Junyu, Xu, Yanyan, Xiao, Zhengwen, Liu, Yuebo, Liu, Honghui, Wang, Fengge, Yan, Chaokun, Wang, Liyang, Chen, Changhao, Wu, Zhisheng, Liu, Yang, Mak, Peng Un, Vai, Mang I., Pun, Sio Hang, Lei, Tim C., Zhang, Baijun. Double-Sided Sapphire Optrodes with Conductive Shielding Layers to Reduce Optogenetic Stimulation Artifacts[J]. Micromachines, 2022, 13(11), 1836.
Authors:
Shen, Junyu
;
Xu, Yanyan
;
Xiao, Zhengwen
;
Liu, Yuebo
;
Liu, Honghui
; et al.
Favorite
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TC[WOS]:
3
TC[Scopus]:
3
IF:
3.0
/
3.0
|
Submit date:2022/12/01
Double-sided Optrode
Electromagnetic Shielding Layers
Microelectrodes
Sapphire Substrate
Stimulation Artifacts