This work presents a mixed-signal physical-computation-electronics for monitoring three vital signs; namely heart rate, blood pressure, and blood oxygen saturation; from electrocardiography, arterial blood pressure, and photoplethysmography signals in real-time. The computational circuits are implemented on a reconfigurable and programmable signal-processing platform, namely field-programmable analog array (FPAA). The design leverages the core enabling technology of FPAA, namely floating-gate CMOS devices, and an on-chip low-power microcontroller to achieve energy-efficiency while not compromising accuracy. The custom physical-computation-electronics operating in CMOS subthreshold region, performs low-level (i.e., physiologically-relevant f...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
\u3cp\u3eThis paper presents a voltage-scalable digital signal processing system designed for the us...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
This work presents a mixed-signal physical-computation-electronics for monitoring three vital signs;...
This work presents a mixed-signal physical-computation-electronics for monitoring three vital signs;...
We present a mixed-signal system for extracting hemodynamic parameters in real-time from noisy elect...
This thesis investigates the possibility of detecting weak vital signs, such as heartbeat and respir...
This thesis investigates the possibility of detecting weak vital signs, such as heartbeat and respir...
This paper presents a power efficient analog front-end (AFE) for electrocardiogram (ECG) signal moni...
Biological signal sensing and processing has greatly improved our understanding about the body. With...
Advancements in device technology along with development of robust and sophisticated signal processi...
Cardiovascular disease remains the main cause of death, and great efforts are spent on the design of...
The FPGA-based platform is critical for producing an inexpensive early validation platform design. I...
The FPGA-based platform is critical for producing an inexpensive early validation platform design. I...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
\u3cp\u3eThis paper presents a voltage-scalable digital signal processing system designed for the us...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
This work presents a mixed-signal physical-computation-electronics for monitoring three vital signs;...
This work presents a mixed-signal physical-computation-electronics for monitoring three vital signs;...
We present a mixed-signal system for extracting hemodynamic parameters in real-time from noisy elect...
This thesis investigates the possibility of detecting weak vital signs, such as heartbeat and respir...
This thesis investigates the possibility of detecting weak vital signs, such as heartbeat and respir...
This paper presents a power efficient analog front-end (AFE) for electrocardiogram (ECG) signal moni...
Biological signal sensing and processing has greatly improved our understanding about the body. With...
Advancements in device technology along with development of robust and sophisticated signal processi...
Cardiovascular disease remains the main cause of death, and great efforts are spent on the design of...
The FPGA-based platform is critical for producing an inexpensive early validation platform design. I...
The FPGA-based platform is critical for producing an inexpensive early validation platform design. I...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...
\u3cp\u3eThis paper presents a voltage-scalable digital signal processing system designed for the us...
This paper has major aim to design a low cost, low power, reliable, and easy to use biomedical instr...