Shedding light onto live molecular targets
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Summary
Optical sensing of specific molecular targets and pathways deep inside living mice has become possible as a result of a number of advances, which will provide new tools making it possible to understand more fully the functioning of protein networks, diagnose disease earlier and speed along drug discovery.
- Type
- review
- Published
- 2003-01-01
- Cited by
- 1,898
- References
- 85
- Access
- Open access
- OpenAlex
- https://openalex.org/W2025244200
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4311576
Keywords
Biocompatible material, Drug discovery, Nanotechnology, Computational biology, Computer science
References
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- Non-invasive optical spectroscopy and imaging of human brain function.
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- In vivo identification of colonic dysplasia using fluorescence endoscopic imaging.
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- Deep subsurface imaging in tissues using spectral and polarization filtering.
Cited by
- Monte Carlo method for bioluminescence tomography.
- Functional imaging in small animals using X-ray computed Tomography -study of physiologic measurement reproducibility
- Dual-modality in vivo monitoring of subventricular zone stem cell migration and metabolism.
- Investigating Pharmacology In Vivo Using Magnetic Resonance and Optical Imaging
- Chapter 5: Imaging in depth: controversies and opportunities.
- Sensors as tools for quantitation, nanotoxicity and nanomonitoring assessment of engineered nanomaterials.
- Development of a Universal Anti–Polyethylene Glycol Reporter Gene for Noninvasive Imaging of PEGylated Probes
- Hybrid x-ray/optical luminescence imaging: characterization of experimental conditions.
- In vivo fluorescence lifetime optical projection tomography
- Establishment and Characterization of a Transgenic Mouse Model for In Vivo Imaging of Bmp4 Expression in the Pancreas
- In situ labeling and imaging of cellular protein via a bi-functional anticancer aptamer and its fluorescent ligand.
- Optimizing the synthesis of CdS/ZnS core/shell semiconductor nanocrystals for bioimaging applications
- Dual PET and Near-Infrared Fluorescence Imaging Probes as Tools for Imaging in Oncology
- Mathematical method in optical molecular imaging
- Liposome-supported enzymatic peritoneal dialysis.
- X-ray fluorescence tomographic system design and image reconstruction
- Recent advances in all-protein chromophore technology.
- Hyperspectral and multispectral optical bioluminescence and fluorescence tomography in small animal imaging
- Magnetic resonance and fluorescence based molecular imaging technologies.
- Combined in vivo molecular and anatomic imaging for detection of ovarian carcinoma-associated protease activity and integrin expression in mice.
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