We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phantoms with tunable scattering spectra, spanning visible, and near-infrared regimes. These phantoms use optical polishing agents (aluminum oxide powders) at various grit sizes to approximate in vivo tissue scattering particles across multiple size distributions (range: 17 to 3 μm). This class of tunable scattering phantoms is used to mimic distinct changes in wavelength-dependent scattering properties observed in tissue pathologies such as partial thickness burns. Described by a power-law dependence on wavelength, the scattering magnitude of these phantoms scale linearly with particle concentration over a physiologic range [μ's=(0.5 to 2.0 mm−1...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...
We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phanto...
We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phanto...
We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phanto...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...
Tissue simulating phantoms can provide a valuable platform for quantitative evaluation of the perfor...
Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performanc...
Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performanc...
The design and characterization of optical phantoms which have the same absorption and scattering ch...
(dimethylsiloxane)-based tissue-simulating phantoms with tunable reduced scattering and absorption c...
(dimethylsiloxane)-based tissue-simulating phantoms with tunable reduced scattering and absorption c...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...
We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phanto...
We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phanto...
We present a method for low-cost fabrication of polydimethylsiloxane (PDMS) tissue simulating phanto...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...
We present a fabrication process for Polydimethylsiloxane (PDMS) tissue simulating phantoms with tun...
Tissue simulating phantoms can provide a valuable platform for quantitative evaluation of the perfor...
Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performanc...
Tissue simulating phantoms provide a valuable platform for quantitative evaluation of the performanc...
The design and characterization of optical phantoms which have the same absorption and scattering ch...
(dimethylsiloxane)-based tissue-simulating phantoms with tunable reduced scattering and absorption c...
(dimethylsiloxane)-based tissue-simulating phantoms with tunable reduced scattering and absorption c...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present an alternative to the conventional approach, phantoms without scattering nanoparticles, w...
We present a tissue mimicking optical phantom recipe to create robust well tested solid phantoms. Th...