Extensive research in the area of optical sensing for medical diagnostics requires development of tissue phantoms with optical properties similar to those of living human tissues. Development and improvement of in vivo optical measurement systems requires the use of stable tissue phantoms with known characteristics, which are mainly used for calibration of such systems and testing their performance over time. Optical and mechanical properties of phantoms depend on their purpose. Nevertheless, they must accurately simulate specific tissues they are supposed to mimic. Many tissues and organs including head possess a multi-layered structure, with specific optical properties of each layer. However, such a structure is not always addressed in th...
Current innovations in optical imaging, measurement techniques, and data analysis algorithms express...
Local and superficial near-infrared (NIR) optical-property characterization of turbid biological tis...
A well-characterized broadband (600-1100 nm) phantom recipe was presented to manufacture tissue-mimi...
Extensive research in the area of optical sensing for medical diagnostics requires development of ti...
Emerging biomedical instrumentation for imaging and diagnostics requires tissue-mimicking phantoms w...
Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performanc...
Tissue simulating phantoms can provide a valuable platform for quantitative evaluation of the perfor...
The design and characterization of optical phantoms which have the same absorption and scattering ch...
The interest in optical healthcare technologies has increased significantly over the recent years. T...
A novel methodology is presented to mimic diffuse reflectance spectra of arbitrary biological tissue...
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
In diagnostic and therapeutic applications of light in medicine, it is vital to evaluate the optical...
AbstractThe objective of this paper is to present fabrication methods of phantoms that simulate opti...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...
Current innovations in optical imaging, measurement techniques, and data analysis algorithms express...
Local and superficial near-infrared (NIR) optical-property characterization of turbid biological tis...
A well-characterized broadband (600-1100 nm) phantom recipe was presented to manufacture tissue-mimi...
Extensive research in the area of optical sensing for medical diagnostics requires development of ti...
Emerging biomedical instrumentation for imaging and diagnostics requires tissue-mimicking phantoms w...
Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performanc...
Tissue simulating phantoms can provide a valuable platform for quantitative evaluation of the perfor...
The design and characterization of optical phantoms which have the same absorption and scattering ch...
The interest in optical healthcare technologies has increased significantly over the recent years. T...
A novel methodology is presented to mimic diffuse reflectance spectra of arbitrary biological tissue...
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
In diagnostic and therapeutic applications of light in medicine, it is vital to evaluate the optical...
AbstractThe objective of this paper is to present fabrication methods of phantoms that simulate opti...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...
Current innovations in optical imaging, measurement techniques, and data analysis algorithms express...
Local and superficial near-infrared (NIR) optical-property characterization of turbid biological tis...
A well-characterized broadband (600-1100 nm) phantom recipe was presented to manufacture tissue-mimi...