In vivo tomographic imaging of near-infrared fluorescent probes
Mol Imaging. 2002;1:82-8 - PMID: 12920848 - DOI: 10.1162/15353500200201121
Ratio imaging of enzyme activity using dual wavelength optical reporters
Mol Imaging. 2003;1:89-95 - PMID: 12920849 - DOI: 10.1162/15353500200201124
Oligomerization of paramagnetic substrates result in signal amplification and can be used for MR imaging of molecular targets
Mol Imaging. 2002;1:16-23 - PMID: 12920857 - DOI: 10.1162/15353500200200001
Imaging reactive oxygen species in arthritis.
Mol Imaging. 2004;3(3):159-62 - PMID: 15530251 - DOI: 10.1162/15353500200404124
Meeting Report: High-Throughput Technologies for In Vivo Imaging Agents
Mol Imaging. 2005;4:1-6
Methotrexate-induced accumulation of fluorescent annexin v in collagen-induced arthritis
Mol Imaging. 2005;4(1):1-6 - PMID: 15967121 - DOI: 10.1162/15353500200504142
Transfection agent induced nanoparticle cell loading
Mol Imaging. 2005;4(3):165-71 - PMID: 16194448 - DOI: 10.1162/15353500200505100
MIPortal: A High Capacity Server for Molecular Imaging Research.
Mol Imaging. 2005;4(4):425-31 - PMID: 16285904 - DOI: 10.2310/7290.2005.05136
Detection of dysplastic intestinal adenomas using a fluorescent folate imaging probe
Mol Imaging. 2005;4 (1):67-74 - PMID: 15912902
High throughput identification of phage-derived imaging agents
Mol Imaging. 2006;5(1):24-30 - PMID: 16779967
Clickable nanoparticles for targeted imaging
Mol Imaging. 2006;(5) 2:122-128 - PMID: 16954026
Cellular Imaging of Inflammation in Atherosclerosis Using Magnetofluorescent Nanomaterials
Mol Imaging. 2006;(5) 2 :85-92 - PMID: 16954022
Normalized transillumination of fluorescent proteins in small animals.
Mol Imaging. 2006;5 (2):153-9 - PMID: 16954030
Cell internalization of magnetic nanoparticles using transfection agents.
Mol Imaging. 2007;(6) 1:1-9 - PMID: 17311760
Three-dimensional in vivo imaging of green fluorescent protein-expressing T cells in mice with noncontact fluorescence molecular tomography.
Mol Imaging. 2007;6(2):96-107 - PMID: 17445504
Real-time multichannel imaging framework for endoscopy, catheters, and fixed geometry intraoperative systems.
Mol Imaging. 2007;6(3):147-55 - PMID: 17532881
Improved in vivo whole-animal detection limits of green fluorescent protein-expressing tumor lines by spectral fluorescence imaging.
Mol Imaging. 2007;6(4):269-76 - PMID: 17711782
Assessment of cardiovascular apoptosis in the isolated rat heart by magnetic resonance molecular imaging.
Mol Imaging. 2006;5(2):115-21 - PMID: 16954025
Imaging molecular expression on vascular endothelial cells by in vivo immunofluorescence microscopy.
Mol Imaging. 2006;5:31-40 - PMID: 16779968 - PMCID: PMC2801601
Real-time detection of circulating apoptotic cells by in vivo flow cytometry.
Combination metastasis-targeted external beam radiation therapy with 177Lu-PSMA-617 in patients with advanced castration-resistant prostate cancer.
Pract Radiat Oncol. 2025;15(6):e597-e605 - PMID: 40274261 - PMCID: PMC12776608 - DOI: 10.1016/j.prro.2025.03.010
An open-source, automated machine learning approach for large-scale image retrieval for thoracic aorta analysis studies.
JAMIA Open. 2025;8(4):ooaf066 - PMID: 40662082 - PMCID: PMC12257624 - DOI: 10.1093/jamiaopen/ooaf066
Determinants of red blood cell alloantibody detection duration: analysis of multiply alloimmunized patients supports peritransfusion factors.
Transfusion. 2017;57(8):1930-1937 - PMID: 28639314 - DOI: 10.1111/trf.14157
Experimental three-dimensional fluorescence reconstruction of diffuse media by use of a normalized Born approximation.
Opt Lett. 2001;26(12):893-5 - PMID: 18040483 - DOI: 10.1364/ol.26.000893
Would near-infrared fluorescence signals propagate through large human organs for clinical studies? Errata.
Opt Lett. 2002;27(18):1652 - PMID: 18026531 - DOI: 10.1364/ol.27.001652
Fast analytical approximation for arbitrary geometries in diffuse optical tomography.
Opt Lett. 2002;27(7):527-9 - PMID: 18007854 - DOI: 10.1364/ol.27.000527
Would near-infrared fluorescence signals propagate through large human organs for clinical studies?
Opt Lett. 2002;27(5):333-5 - PMID: 18007794 - DOI: 10.1364/ol.27.000333
Mortality and extraintestinal cancers in patients with primary sclerosing cholangitis and inflammatory bowel disease.
J Crohns Colitis. 2014;8(9):956-63 - PMID: 24559536 - PMCID: PMC4136996 - DOI: 10.1016/j.crohns.2014.01.019
Steady state anisotropy two-photon microscopy resolves multiple, spectrally similar fluorophores, enabling in vivo multilabel imaging.
Feasibility of in vivo imaging of fluorescent proteins using lifetime contrast.
Transillumination fluorescence imaging in mice using biocompatible upconverting nanoparticles
In vivo flow cytometer for real-time detection and quantification of circulating cells.
Fiber-coupled multiplexed confocal microscope.
Opt Lett. 2000;25:954-6 - PMID: 18064238 - DOI: 10.1364/ol.25.000954
In vivo retinal imaging by optical coherence tomography.
Opt Lett. 1993;18(21):1864-6 - PMID: 19829430 - DOI: 10.1364/ol.18.001864
Imaging of molecular probe activity with Born-normalized fluorescence optical projection tomography.
Pupil plane differential detection microscopy.
Complete-angle projection diffuse optical tomography by use of early photons
Opt Lett. 2005;30(4):409-11 - PMID: 15762444 - DOI: 10.1364/ol.30.000409
Free-space fluorescence molecular tomography utilizing 360 degrees geometry projections.
Opt Lett. 2007;32(4):382-4 - PMID: 17356660 - DOI: 10.1364/ol.32.000382
Multispectral photoacoustic imaging of fluorochromes in small animals.
Opt Lett. 2007;32(19):2891-3 - PMID: 17909608 - DOI: 10.1364/ol.32.002891
Retinal flow cytometer.
In vivo fluorescent imaging of the mouse retina using adaptive optics.
Polarization-sensitive optoacoustic tomography of optically diffuse tissues.
Opt Lett. 2008;33(20):2308-10 - PMID: 18923605 - DOI: 10.1364/ol.33.002308
Normalized Born ratio for fluorescence optical projection tomography.
High-spectral-resolution coherent anti-Stokes Raman scattering with interferometrically detected broadband chirped pulses.
Opt Lett. 2006;31(10):1543-5 - PMID: 16642166 - DOI: 10.1364/ol.31.001543
Spectroscopic spectral-domain optical coherence microscopy.
Opt Lett. 2006;31:1079-81 - PMID: 16625909 - DOI: 10.1364/ol.31.001079
A hepcidin lowering agent mobilizes iron for incorporation into red blood cells in an adenine-induced kidney disease model of anemia in rats.
Nephrol Dial Transplant. 2013;28(7):1733-1743 - PMID: 23345622 - PMCID: PMC3707526 - DOI: 10.1093/ndt/gfs584
The iron cycle in CKD: from genetics and experimental models to CKD patients.
Nephrol Dial Transplant. 2013;29(2):263-73 - PMID: 24235084 - PMCID: PMC3910345 - DOI: 10.1093/ndt/gft443
Pacing in high field cardiac magnetic resonance imaging:.
Pacing Clin Electrophysiol. 2004;27(5):671-4 - PMID: 15125728 - DOI: 10.1111/j.1540-8159.2004.00506.x
In vivo cell tracking with video rate multimodality laser scanning microscopy
IEEE J Sel Top Quant. 2008;14:10:18
Selective Cell Killing by Microparticle Absorption of Pulsed Laser Radiation
IEEE J Sel Top Quant. 1999;5:963-8