This paper presents experimental study of real human skin material parameter extraction based on terahertz (THz) time-domain spectroscopy in the band 0.1-2.5 THz. Results in this paper show that electromagnetic properties of the human skin distinctively affect the path loss and noise temperature parameters of the communication link, which are vital for channel modeling of in-body nanonetworks. Refractive index and absorption coefficient values are evaluated for dermis layer of the human skin. Repeatability and consistency of the data are accounted for in the experimental investigation and the morphology of the skin tissue is verified using a standard optical microscope. Finally, the results of this paper are compared with the available work...
The non-ionizing and non-invasive nature of THz radiation, combined with its high sensitivity to wat...
Terahertz (THz) light is in the range of electromagnetic waves with frequencies between 0.1 and 10 T...
Apart from the effect of path loss and signal-dependent molecular absorption noise, the capabilities...
This paper presents experimental study of real human skin material parameter extraction based on ter...
Copyright: 2016. IEEE. Personal use is permitted, but republication/redistribution requires IEEE per...
In this paper, the intrinsic material properties of human skin via THz Time Domain Spectroscopy has ...
This paper presents an experimental investigation of excised human skin tissue material parameters b...
This paper presents the investigation of the electromagnetic properties of human skin tissues using ...
PhDIn pursuit of enhancing the capabilities of healthcare diagnostics and monitoring, the electromag...
This paper focuses on the development of a novel radio channel model inside the human skin at the te...
Nano-technology has received great progress since its proposal specifically for biomedical applicati...
PhDBody centric communication has been extensively studied in the past for a range of frequencies, ...
The elegant concept of Nanocommunication at terahertz (THz) frequency is proposed with its main focu...
Terahertz (THz) frequencies have a strong sensitivity to water, a property which has led to research...
Water content of the skin is an important parameter for controlling the penetration rate of chemical...
The non-ionizing and non-invasive nature of THz radiation, combined with its high sensitivity to wat...
Terahertz (THz) light is in the range of electromagnetic waves with frequencies between 0.1 and 10 T...
Apart from the effect of path loss and signal-dependent molecular absorption noise, the capabilities...
This paper presents experimental study of real human skin material parameter extraction based on ter...
Copyright: 2016. IEEE. Personal use is permitted, but republication/redistribution requires IEEE per...
In this paper, the intrinsic material properties of human skin via THz Time Domain Spectroscopy has ...
This paper presents an experimental investigation of excised human skin tissue material parameters b...
This paper presents the investigation of the electromagnetic properties of human skin tissues using ...
PhDIn pursuit of enhancing the capabilities of healthcare diagnostics and monitoring, the electromag...
This paper focuses on the development of a novel radio channel model inside the human skin at the te...
Nano-technology has received great progress since its proposal specifically for biomedical applicati...
PhDBody centric communication has been extensively studied in the past for a range of frequencies, ...
The elegant concept of Nanocommunication at terahertz (THz) frequency is proposed with its main focu...
Terahertz (THz) frequencies have a strong sensitivity to water, a property which has led to research...
Water content of the skin is an important parameter for controlling the penetration rate of chemical...
The non-ionizing and non-invasive nature of THz radiation, combined with its high sensitivity to wat...
Terahertz (THz) light is in the range of electromagnetic waves with frequencies between 0.1 and 10 T...
Apart from the effect of path loss and signal-dependent molecular absorption noise, the capabilities...