about
Optical properties of mouse brain tissue after optical clearing with FocusClear™A light emitting diode (LED) based spatial frequency domain imaging system for optimization of photodynamic therapy of nonmelanoma skin cancer: quantitative reflectance imaging.Polarization-sensitive hyperspectral imaging in vivo: a multimode dermoscope for skin analysis.Postoperative quantitative assessment of reconstructive tissue status in a cutaneous flap model using spatial frequency domain imaging.Method for depth-resolved quantitation of optical properties in layered media using spatially modulated quantitative spectroscopyEffects of motion on optical properties in the spatial frequency domain.Quantitative fluorescence imaging of protoporphyrin IX through determination of tissue optical properties in the spatial frequency domainQuantitative near infrared spectroscopic analysis of Q-Switched Nd:YAG treatment of generalized argyria.Preoperative mapping of nonmelanoma skin cancer using spatial frequency domain and ultrasound imagingQuantitative short-wave infrared multispectral imaging of in vivo tissue optical properties.In vivo measurements of cutaneous melanin across spatial scales: using multiphoton microscopy and spatial frequency domain spectroscopyIn vivo isolation of the effects of melanin from underlying hemodynamics across skin types using spatial frequency domain spectroscopy.Separating melanin from hemodynamics in nevi using multimode hyperspectral dermoscopy and spatial frequency domain spectroscopy.Quantitative long-term measurements of burns in a rat model using Spatial Frequency Domain Imaging (SFDI) and Laser Speckle Imaging (LSI).Optical properties of biomimetic probes engineered from erythrocytes.Low-cost tissue simulating phantoms with adjustable wavelength-dependent scattering properties in the visible and infrared rangesSolid tissue simulating phantoms having absorption at 970 nm for diffuse optics.Evaluation of a pointwise microcirculation assessment method using liquid and multilayered tissue simulating phantoms.Portable (handheld) clinical device for quantitative spectroscopy of skin, utilizing spatial frequency domain reflectance techniques.Direct characterization and removal of interfering absorption trends in two-layer turbid media.Method using in vivo quantitative spectroscopy to guide design and optimization of low-cost, compact clinical imaging devices: emulation and evaluation of multispectral imaging systems.Multimode optical dermoscopy (SkinSpect) analysis for skin with melanocytic nevusQuantifying the optical properties of turbid media using polarization sensitive hyperspectral imaging (SkinSpect): two-layer optical phantom studiesQuantifying the optical properties and chromophore concentrations of turbid media using polarization sensitive hyperspectral imaging: optical phantom studiesDevelopment of Spatial Frequency Domain Instrument for the Quantification of Layer Specific Optical Properties of Pigmented LesionsA LED based spatial frequency domain imaging system for optimization of photodynamic therapy of Basal Cell Carcinoma (BCC)Diffuse optical spectroscopy of melanoma-simulating silicone phantoms
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description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Rolf Saager
@ast
Rolf Saager
@en
Rolf Saager
@es
Rolf Saager
@nl
type
label
Rolf Saager
@ast
Rolf Saager
@en
Rolf Saager
@es
Rolf Saager
@nl
prefLabel
Rolf Saager
@ast
Rolf Saager
@en
Rolf Saager
@es
Rolf Saager
@nl
P106
P1153
6603738541
P31
P496
0000-0002-3497-1257