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Sub-nanowatt ultrasonic bio-telemetry using B-scan imaging
Sri Harsha Kondapalli
,
Shantanu Chakrabartty
Department of Electrical & Systems Engineering
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
McKelvey School of Engineering
DBBS - Computational and Systems Biology
DBBS - Neurosciences
Research output
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peer-review
1
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Keyphrases
Ultrasonic
100%
B-scan Imaging
100%
Biotelemetry
100%
Nanoenergy
100%
Implantable Devices
75%
Ultrasonic Telemetry
50%
Image Dataset
50%
Wireless
25%
B-mode Ultrasound
25%
Water Bath
25%
B-scan
25%
Energy Budget
25%
Energy Requirement
25%
Decoder
25%
Communication Link
25%
Commercial-off-the-shelf Components
25%
Ultrasonic Transducer Arrays
25%
Energy Dissipation
25%
Wirelessly
25%
Transmission Rate
25%
Decoding Algorithm
25%
Transmission Power Level
25%
Microcontroller Board
25%
Bit Error Rate
25%
Implantation Depth
25%
Transmission Medium
25%
Telemetry Link
25%
Linear Ultrasound
25%
RF Transceiver
25%
Transmission Power
25%
Ultrasound Imaging System
25%
Telemetry Parameter
25%
Engineering
Ultrasonics
100%
Medical Implant
100%
Power Transmission
66%
Transducer
33%
Imaging Systems
33%
Power Level
33%
Radio Frequency
33%
Communication Link
33%
Microcontroller
33%
Energy Dissipation
33%
Bit Error Rate
33%
Measured Result
33%
Energy Requirement
33%
Decoding Algorithm
33%
Transceiver
33%
Linear Element
33%
Computer Science
Ultrasound
100%
Transmission Power
66%
Commercial off the Shelf
33%
Imaging Systems
33%
Communication Link
33%
Microcontroller
33%
Decoding Algorithm
33%
Transmission Medium
33%
Transmission Rate
33%
Energy Dissipation
33%
Maximum Threshold
33%
Linear Element
33%
Physics
Telemetry
100%
Ultrasound
100%
Transducer
20%
Bit Error Rate
20%
Ultrasound Imaging
20%