Through-skull fluorescence imaging of the brain in a new near-infrared window.

PubWeight™: 1.14‹?› | Rank: Top 10%

🔗 View Article (PMID 27642366)

Published in Nat Photonics on August 03, 2014

Authors

Guosong Hong1, Shuo Diao1, Junlei Chang2, Alexander L Antaris1, Changxin Chen1, Bo Zhang1, Su Zhao1, Dmitriy N Atochin3, Paul L Huang3, Katrin I Andreasson4, Calvin J Kuo2, Hongjie Dai1

Author Affiliations

1: Department of Chemistry, Stanford University, Stanford, California 94305, USA.
2: Division of Hematology, School of Medicine, Stanford University, Stanford, California 94305, USA.
3: Cardiovascular Research Center and Cardiology Division, Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts 02129, USA.
4: Department of Neurology and Neurological Sciences, Stanford University Medical Center, Stanford, California 94305, USA.

Articles citing this

A small-molecule dye for NIR-II imaging. Nat Mater (2015) 1.01

Use of labeled tomato lectin for imaging vasculature structures. Histochem Cell Biol (2014) 0.85

Traumatic Brain Injury Imaging in the Second Near-Infrared Window with a Molecular Fluorophore. Adv Mater (2016) 0.83

Graphene-based nanomaterials for bioimaging. Adv Drug Deliv Rev (2016) 0.82

Recent advances of semiconducting polymer nanoparticles in in vivo molecular imaging. J Control Release (2016) 0.81

Non-covalent polymer wrapping of carbon nanotubes and the role of wrapped polymers as functional dispersants. Sci Technol Adv Mater (2015) 0.81

High-Resolution Ultrasound-Switchable Fluorescence Imaging in Centimeter-Deep Tissue Phantoms with High Signal-To-Noise Ratio and High Sensitivity via Novel Contrast Agents. PLoS One (2016) 0.80

Quantitative Tissue Spectroscopy of Near Infrared Fluorescent Nanosensor Implants. J Biomed Nanotechnol (2016) 0.78

Molecular imaging of biological systems with a clickable dye in the broad 800- to 1,700-nm near-infrared window. Proc Natl Acad Sci U S A (2017) 0.77

Reactive oxygen species generating systems meeting challenges of photodynamic cancer therapy. Chem Soc Rev (2016) 0.75

Near-Infrared Photoluminescent Carbon Nanotubes for Imaging of Brown Fat. Sci Rep (2017) 0.75

Non-degenerate 2-photon excitation in scattering medium for fluorescence microscopy. Opt Express (2016) 0.75

Extended-focus optical coherence microscopy for high-resolution imaging of the murine brain. Biomed Opt Express (2016) 0.75

Structured illumination diffuse optical tomography for noninvasive functional neuroimaging in mice. Neurophotonics (2017) 0.75

In vivo gastrointestinal drug-release monitoring through second near-infrared window fluorescent bioimaging with orally delivered microcarriers. Nat Commun (2017) 0.75

Continuous injection synthesis of indium arsenide quantum dots emissive in the short-wavelength infrared. Nat Commun (2016) 0.75

Long-term intravenous administration of carboxylated single-walled carbon nanotubes induces persistent accumulation in the lungs and pulmonary fibrosis via the nuclear factor-kappa B pathway. Int J Nanomedicine (2016) 0.75

Novel bright-emission small-molecule NIR-II fluorophores for in vivo tumor imaging and image-guided surgery. Chem Sci (2017) 0.75

Boosting the down-shifting luminescence of rare-earth nanocrystals for biological imaging beyond 1500 nm. Nat Commun (2017) 0.75

Tunable long persistent luminescence in the second near-infrared window via crystal field control. Sci Rep (2017) 0.75

Live imaging of follicle stimulating hormone receptors in gonads and bones using near infrared II fluorophore. Chem Sci (2017) 0.75

Single Nanotube Spectral Imaging To Determine Molar Concentrations of Isolated Carbon Nanotube Species. Anal Chem (2017) 0.75

Articles cited by this

Heart disease and stroke statistics--2013 update: a report from the American Heart Association. Circulation (2012) 30.79

Deep tissue two-photon microscopy. Nat Methods (2005) 14.95

In vivo near-infrared fluorescence imaging. Curr Opin Chem Biol (2003) 10.76

Fluctuations and stimulus-induced changes in blood flow observed in individual capillaries in layers 2 through 4 of rat neocortex. Proc Natl Acad Sci U S A (1998) 6.95

In vivo dendritic calcium dynamics in neocortical pyramidal neurons. Nature (1997) 6.33

Three-dimensional microscopy of the tumor microenvironment in vivo using optical frequency domain imaging. Nat Med (2009) 5.41

Band gap fluorescence from individual single-walled carbon nanotubes. Science (2002) 5.34

First performance evaluation of a dual-source CT (DSCT) system. Eur Radiol (2005) 5.21

An evaluation of confocal versus conventional imaging of biological structures by fluorescence light microscopy. J Cell Biol (1987) 4.59

Light scattering in Intralipid-10% in the wavelength range of 400-1100 nm. Appl Opt (1991) 4.34

Two-photon imaging to a depth of 1000 microm in living brains by use of a Ti:Al2O3 regenerative amplifier. Opt Lett (2003) 4.20

Laser speckle contrast imaging in biomedical optics. J Biomed Opt (2010) 4.17

Structure-assigned optical spectra of single-walled carbon nanotubes. Science (2002) 3.80

High resolution X-ray computed tomography: an emerging tool for small animal cancer research. Neoplasia (2000) 3.22

Thinned-skull cranial window technique for long-term imaging of the cortex in live mice. Nat Protoc (2010) 3.11

Chronic optical access through a polished and reinforced thinned skull. Nat Methods (2010) 2.92

A route to brightly fluorescent carbon nanotubes for near-infrared imaging in mice. Nat Nanotechnol (2009) 2.85

In vivo three-photon microscopy of subcortical structures within an intact mouse brain. Nat Photonics (2013) 2.79

Bioimaging: second window for in vivo imaging. Nat Nanotechnol (2009) 2.48

Comparison of CT and CT angiography source images with diffusion-weighted imaging in patients with acute stroke within 6 hours after onset. Stroke (2002) 2.33

In vivo two-photon microscopy to 1.6-mm depth in mouse cortex. J Biomed Opt (2011) 2.16

Two-photon microscopy as a tool to study blood flow and neurovascular coupling in the rodent brain. J Cereb Blood Flow Metab (2012) 2.08

Deep-tissue anatomical imaging of mice using carbon nanotube fluorophores in the second near-infrared window. Proc Natl Acad Sci U S A (2011) 2.01

All-optical anatomical co-registration for molecular imaging of small animals using dynamic contrast. Nat Photonics (2007) 1.82

Multifunctional in vivo vascular imaging using near-infrared II fluorescence. Nat Med (2012) 1.74

Laser speckle contrast imaging of cerebral blood flow. Ann Biomed Eng (2011) 1.67

In vivo fluorescence imaging with Ag2S quantum dots in the second near-infrared region. Angew Chem Int Ed Engl (2012) 1.30

Rare-earth-doped biological composites as in vivo shortwave infrared reporters. Nat Commun (2013) 1.15

Chapter 10. In vivo measurements of blood flow and glial cell function with two-photon laser-scanning microscopy. Methods Enzymol (2008) 1.12

M13 phage-functionalized single-walled carbon nanotubes as nanoprobes for second near-infrared window fluorescence imaging of targeted tumors. Nano Lett (2012) 1.11

Laser Speckle Contrast Imaging: theory, instrumentation and applications. IEEE Rev Biomed Eng (2013) 1.01

Ultrafast fluorescence imaging in vivo with conjugated polymer fluorophores in the second near-infrared window. Nat Commun (2014) 0.99

Digital reconstruction and morphometric analysis of human brain arterial vasculature from magnetic resonance angiography. Neuroimage (2013) 0.98

Use of in vivo near-infrared laser confocal endomicroscopy with indocyanine green to detect the boundary of infiltrative tumor. J Neurosurg (2011) 0.96

Three-dimensional imaging of single nanotube molecule endocytosis on plasmonic substrates. Nat Commun (2012) 0.93

Biological imaging using nanoparticles of small organic molecules with fluorescence emission at wavelengths longer than 1000 nm. Angew Chem Int Ed Engl (2013) 0.89

Near-infrared II fluorescence for imaging hindlimb vessel regeneration with dynamic tissue perfusion measurement. Circ Cardiovasc Imaging (2014) 0.86

Dynamic changes in murine vessel geometry assessed by high-resolution magnetic resonance angiography: a 9.4T study. J Magn Reson Imaging (2008) 0.85

Imaging depths of near-infrared quantum dots in first and second optical windows. Mol Imaging (2012) 0.82

High-resolution structural and functional assessments of cerebral microvasculature using 3D Gas ΔR2*-mMRA. PLoS One (2013) 0.78