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Rice develops nanosensor for precision chemical analysis

Rice University scientists develop a nanosensor that can precisely analyze chemical information, opening doors for new methods to examine single molecules. The technology has widespread applications in environmental science, chemistry and biosensing, with potential early detection of cancer.

SourceRice University·JournalApplied Physics Letters·DateJan 10, 2003

Rice deciphers optical spectra of carbon nanotubes

Researchers at Rice University have precisely identified the optical signatures of 33 'species' of light-emitting carbon nanotubes, revolutionizing the field of nanotechnology. This breakthrough enables chemists to measure nanotubes using simple and faster methods, accelerating research in this rapidly evolving field.

SourceRice University·JournalScience·DateNov 28, 2002
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Research reveals a more complete picture of breast tissue

The Dartmouth team is learning about breast tissue structure and behavior using magnetic resonance elastography, electrical impedance spectral imaging, microwave imaging spectroscopy, and near infrared spectral imaging. By combining these four techniques, they aim to provide a more complete picture of normal and abnormal breast tissue.

SourceDartmouth College·DateSep 16, 2002

Chemists show proteins behave differently inside cells than they do in water solutions

Researchers at UNC Chapel Hill used nuclear magnetic resonance spectroscopy to study the effects of crowded environments on protein shape. They found that intrinsically unstructured proteins exhibit a definite folded-up shape when inside cells, unlike their apparent lack of structure in water solutions.

SourceUniversity of North Carolina at Chapel Hill·JournalProceedings of the National Academy of Sciences·DateSep 13, 2002

'Missing link' molecule may offer clues to sulfur in air, space

Researchers at Ohio State University have synthesized hydrogen thioperoxide (HSOH), a sulfur-containing molecule considered a 'missing link' in its chemical family. The molecule's unique spectral pattern was recorded using a new laboratory instrument, FASSST, allowing scientists to study it for the first time.

SourceOhio State University·DateJun 25, 2002
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Advanced instrument destined for Keck telescope completed at UC Santa Cruz

The DEIMOS instrument will multiply the power of current Keck spectroscopy by a factor of seven, enabling observations of distant galaxies and shedding light on the formation and evolution of galaxies. With its massive detector and advanced optics, DEIMOS will create the most comprehensive map of the distant universe ever attempted.

SourceUniversity of California - Santa Cruz·DateFeb 7, 2002

Astronomers unveil first detection of dark matter object in the Milky Way

Researchers from the Lawrence Livermore National Laboratory have detected a dark matter object in the Milky Way using microlensing light data and spectroscopy. The team measured the mass, distance, and velocity of the MACHO, a small star with a mass between 5% and 10% of the sun's mass at a distance of 600 light-years.

SourceDOE/Lawrence Livermore National Laboratory·JournalNature·DateDec 5, 2001

New portable device senses chemical weapons

Researchers at the University of Delaware have developed a portable detection platform that can detect chemical and biological weapons using infrared spectroscopy. The device, about the size of a large shoebox, can identify even small amounts of agents in solid, liquid or vapor phases.

SourceUniversity of Delaware·DateDec 3, 2001

A step forward in nanotechnology

Researchers at the University of Michigan developed a new technique combining coherent nonlinear optical spectroscopy and near-field microscopy to detect quantum coherence in extended structures. This breakthrough enables sub-wavelength resolution, bringing nanotechnology closer to sophisticated devices.

SourceUniversity of Michigan·JournalScience·DateSep 21, 2001
Aranet4 Home CO2 Monitor

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Brown scientists identify Tagish Lake meteorite's origin in space

Researchers use reflectance spectroscopy to determine the meteorite's composition, providing clues about early solar chemical evolution and differing from any seen in meteorites so far. The findings were published by NASA's Johnson Space Center and Brown University, funded by grants from NASA.

SourceBrown University·JournalScience·DateAug 23, 2001

NC State physicists get first glimpse of nanoscale molecular behavior

Researchers have discovered a new method for measuring the molecular properties of materials, allowing them to study nanostructures in unprecedented detail. The Gradient-Field-Raman (GFR) spectroscopy technique reveals unique vibration patterns that couldn't be explained by previous methods.

SourceNorth Carolina State University·JournalPhysical Review Letters·DateNov 5, 2000
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Multidimensional technique enhances vibrational spectroscopy

Researchers at the University of Illinois have developed a multidimensional technique that enhances vibrational spectroscopy, allowing for unprecedented detail in studying molecular vibrations. This new method enables femtosecond-resolved snapshots of molecular motions, providing insights into the fundamental mechanics of molecules.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalThe Journal of Physical Chemistry·DateAug 31, 2000

New approach to ensuring unadulterated honey pot

Penn State researchers have created a rapid test method to identify adulterated honey using spectroscopy, capable of detecting as little as 1% beet sugar invert. The new approach aims to meet US standards for natural honey products with nutraceutical properties.

SourcePenn State·DateAug 20, 2000

Measuring alcohol levels in breath, blood … and now the brain

Researchers have developed a new method to measure alcohol concentrations directly in the human brain using proton magnetic resonance spectroscopy (MRS). This technique allows scientists to study the physical interactions between alcohol and brain membranes, providing insights into the biological basis of alcohol abuse.

SourceAlcoholism: Clinical & Experimental Research·DateAug 13, 2000
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Polymeric chains in 'Flatland' reveal surprises, researchers say

Researchers discovered that flexible polymers behave differently on surfaces compared to in bulk, with a stronger dependence on chain length. The study used two-photon fluorescence correlation spectroscopy to monitor individual molecule motions and found that chains 'entangle' with the surface, causing them to flatten.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalNature·DateJul 12, 2000

Imaging of brain chemicals improves Alzheimers diagnosis

Researchers use MRI and magnetic resonance spectroscopy to detect Alzheimer's disease by measuring chemical markers in the brain. The study found that this technique can distinguish patients with Alzheimer's from those without the disease and identify patterns of damage consistent with the disease.

SourceUniversity of California - San Francisco·DateJul 10, 2000

Brain scans of Gulf War veterans show brain damage

A study published in Radiology found that Gulf War veterans experienced significant brain-cell loss, particularly in the brain stem, right basal ganglia, and left basal ganglia. The loss of functioning brain cells was linked to various symptoms, including joint pain, fatigue, dizziness, and mental confusion.

SourceUT Southwestern Medical Center·JournalRadiology·DateMay 24, 2000

Chemists report using infrared lasers to probe key molecular interactions

Researchers have developed a new technique called Doubly Vibrationally Enhanced (DOVE) Four Wave Mixing, which uses two infrared lasers to study molecular connections and vibrations. This method allows chemists to gain insights into complex scientific problems, such as bacterial resistance to antibiotics and soil weathering.

SourceUniversity of Wisconsin-Madison·JournalPhysical Review Letters·DateFeb 7, 2000
Apple MacBook Pro 14-inch (M4 Pro)

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Advanced light source uncovers new clues to high-temperature superconductivity

Researchers used angle-resolved photoemission spectroscopy to study the electronic structure of Nd-LSCO, finding charge carriers segregated into one-dimensional lines and exhibiting quantum fluctuations that give rise to two-dimensional effects. This discovery may help resolve a paradox between different theories of superconductivity.

SourceDOE/Lawrence Berkeley National Laboratory·JournalScience·DateOct 11, 1999

Structure Of HDL Cholesterol Determined

Researchers used new techniques to study HDL particles, verifying the lipid bilayer structure and confirming a key finding about protein orientation. The study resolves a long-standing controversy over the structure of HDL, shedding light on its role in cardiovascular health.

SourceUniversity of Pennsylvania School of Medicine·JournalJournal of Biological Chemistry·DateMay 24, 1999

How Can You Tell Whether Corn Is Fungus-Ridden?

Researchers have developed a new technique to spot contaminated corn by listening for telltale noises made by mouldy kernels when exposed to infrared strobe light. The method uses Fourier Transform Infrared Photoacoustic Spectroscopy (FTIR-PAS) and achieves a 96% accuracy in spotting clean and contaminated corn.

SourceNew Scientist·JournalThe New Scientist·DateApr 14, 1999
AmScope B120C-5M Compound Microscope

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Scientists Show That Normal-looking Cells In Cervical Cancer May Be Abnormal

Researchers use infrared spectroscopy to analyze over 2,000 individual cervical cells from women with dysplasia and cervical cancer, finding that normal-looking cells have distinct abnormal spectra. This could simplify Pap test evaluation and lead to earlier cancer detection and prevention.

SourceRockefeller University·JournalProceedings of the National Academy of Sciences·DateDec 21, 1998

UK Researchers Develop New Means To Assess Plaques In Blood Vessels

A UK research team has identified vulnerable atherosclerotic plaques in human aortic tissue using near-infrared spectroscopy. The technology aims to predict which plaques are harmless and which pose a risk of rupture, enabling targeted treatment to prevent heart attacks and strokes.

SourceUniversity of Kentucky Medical Center·DateNov 8, 1998

Weapons Can Now Be Scanned To See What Horrors They Conceal

Researchers developed portable isotopic neutron spectroscopy (PINS) to analyze warhead contents, revealing most Solomon Islands warheads contained mustard gas. The system uses neutrons from californium to record gamma-ray emission, identifying chemical elements and fills.

SourceNew Scientist·JournalThe New Scientist·DateOct 28, 1998

New Technique Reveals Identity Of Near-Neighbor Atoms

Researchers at Berkeley Lab have developed a new technique called MARPE, which directly determines the identity of an atom and its neighbors. The method works by analyzing the energies of electrons emitted when excited by photons, revealing the presence and identity of neighboring atoms.

SourceDOE/Lawrence Berkeley National Laboratory·JournalScience·DateSep 17, 1998

System Combines Capillary Electrophoresis And NMR Spectroscopy

The new microfluidic-NMR system enables high-performance capillary electrophoresis separations and simultaneous NMR spectroscopy, facilitating the development of desktop spectrometers. The technology has significant applications in drug discovery and combinatorial chemistry.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·DateJul 6, 1998
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New Fluorescence Technique For Ultra-Sensitive Enzyme Characterization Developed - Screening Catalytic Activity At The Single-Molecule Level

A new fluorescence technique has been developed for ultra-sensitive enzyme characterization at the single-molecule level. The technique, known as dual-color fluorescence cross-correlation spectroscopy, allows for precise and highly specific detection of molecules in large unspecific fluorescent backgrounds.

SourceMax-Planck-Gesellschaft·JournalProceedings of the National Academy of Sciences·DateMar 12, 1998

Measurement Technique Provides Snapshot Of Cell Physiology

A new measurement technique developed by researchers at the University of Illinois can identify and measure up to 30 compounds found in a single cell. The method uses nanoliter sampling, capillary electrophoresis, and fluorescence spectroscopy to provide a detailed snapshot of the cell's physiology.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalNeuron·DateMar 2, 1998

3-D Structure of Human Tumor-Suppressor Protein Produced

The study, led by Ming-Daw Tsai, used nuclear magnetic resonance spectroscopy to determine the 3D structure of the p16 protein. The researchers aim to develop a drug that mimics p16 to treat cancer, which is expected to target more than 70 different types of cancer.

SourceOhio State University·JournalMolecular Cell·DateMar 2, 1998