Optical tissue phantoms (OTPs) have been extensively applied to the evaluation of imaging systems and surgical training. Due to their human tissue‐mimicking characteristics, OTPs can provide accurate optical feedback on the performance of image‐guided surgical instruments, simulating the biological sizes and shapes of human organs, and preserving similar haptic responses of original tissues. This review summarizes the essential components of OTPs (i.e., matrix, scattering and absorbing agents, and fluorophores) and the various manufacturing methods currently used to create suitable tissue‐mimicking phantoms. As photobleaching is a major challenge in OTP fabrication and its feedback accuracy, phantom photostability and how the photobleaching...
Tissue-mimicking phantoms are of great interest in the development of bio-medical applications. Inst...
Because of their compatibility and precise results bio-optical methods based on measurements of the ...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...
In diagnostic and therapeutic applications of light in medicine, it is vital to evaluate the optical...
A well-characterized broadband (600-1100 nm) phantom recipe was presented to manufacture tissue-mimi...
The design and characterization of optical phantoms which have the same absorption and scattering ch...
Emerging biomedical instrumentation for imaging and diagnostics requires tissue-mimicking phantoms w...
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...
Objectives For the development and validation of diagnostic procedures based on microscopic methods,...
Tissue simulating phantoms can provide a valuable platform for quantitative evaluation of the perfor...
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
Tissue-mimicking phantoms are of great interest in the development of bio-medical applications. Inst...
Because of their compatibility and precise results bio-optical methods based on measurements of the ...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...
In diagnostic and therapeutic applications of light in medicine, it is vital to evaluate the optical...
A well-characterized broadband (600-1100 nm) phantom recipe was presented to manufacture tissue-mimi...
The design and characterization of optical phantoms which have the same absorption and scattering ch...
Emerging biomedical instrumentation for imaging and diagnostics requires tissue-mimicking phantoms w...
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...
Objectives For the development and validation of diagnostic procedures based on microscopic methods,...
Tissue simulating phantoms can provide a valuable platform for quantitative evaluation of the perfor...
We present the optical measurement techniques used in human skin phantom studies. Their accuracy and...
Tissue-mimicking phantoms are of great interest in the development of bio-medical applications. Inst...
Because of their compatibility and precise results bio-optical methods based on measurements of the ...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...