نتایج جستجو برای: exhaled breath condensate

تعداد نتایج: 32239  

Journal: :Immunology and Allergy Clinics of North America 2007

Journal: :European journal of medical research 2007
P Latzin J Beck-Ripp D Hartl A Bartenstein J Noss Matthias Griese

OBJECTIVE Increased levels of 8-isoprostane were found in various human lung diseases suggesting 8-isoprostane as a marker of pulmonary oxidative stress in vivo. The exact role in pediatric lung diseases has not been defined yet. The goal of this study was to clarify the role of 8-isoprostane in nasally exhaled breath condensate as possible marker of oxidative stress in children with different ...

Journal: :Journal of Occupational Medicine and Toxicology (London, England) 2006
Luis M Gonzalez-Reche Anita K Musiol Alice Müller-Lux Thomas Kraus Thomas Göen

BACKGROUND Determinations of inflammatory markers in exhaled breath condensate were used to assess airway inflammation. The most applied method for this kind of determination is enzyme immunoassay. For research purposes to find new or to relate concrete biomarkers to different pulmonary diseases, a simultaneous determination of different inflammatory markers would be advantageous. METHODS We ...

Journal: :Immunology and Allergy Clinics of North America 2007

Journal: :Physical review. D, Particles and fields 1996
Huang Sarcevic Thews Wang

We present a novel method for studying the formation of a disoriented chiral condensate (DCC) in high-energy hadronic and heavy-ion collisions utilizing a discrete wavelet transformation. Due to its salient feature of space-scale locality, the discrete wavelet proves to be very eeective in probing physics simultaneously at diierent locations in phase space and at diierent scales. We show that t...

Journal: :Physical review letters 2006
Anatoly A Svidzinsky Marlan O Scully

We present a new method of calculating the distribution function and fluctuations for a Bose-Einstein condensate (BEC) of N interacting atoms. The present formulation combines our previous master equation and canonical ensemble quasiparticle techniques. It is applicable both for ideal and interacting Bogoliubov BEC and yields remarkable accuracy at all temperatures. For the interacting gas of 2...

Journal: :Physical review letters 2009
G Nardin K G Lagoudakis M Wouters M Richard A Baas R André Le Si Dang B Pietka B Deveaud-Plédran

We report on time-resolved measurements of the first order spatial coherence in an exciton-polariton Bose-Einstein condensate. Long-range spatial coherence is found to set in right at the onset of stimulated scattering, on a picosecond time scale. The coherence reaches its maximum value after the population and decays slowly, staying up to a few hundred picoseconds. This behavior can be qualita...

Journal: :Optics express 2005
T Meyrath F Schreck J Hanssen C Chuu M Raizen

We present an experimental method to create a single high frequency optical trap for atoms based on an elongated Hermite-Gaussian TEM01 mode beam. This trap results in confinement strength similar to that which may be obtained in an optical lattice. We discuss an optical setup to produce the trapping beam and then detail a method to load a Bose-Einstein Condensate (BEC) into a TEM01 trap. Using...

Journal: :Physical review letters 2015
N S Voronova A A Elistratov Yu E Lozovik

We theoretically analyze exciton-photon oscillatory dynamics within a homogenous polariton gas in the presence of energy detuning between the cavity and quantum well modes. Whereas pure Rabi oscillations consist of the particle exchange between the photon and exciton states in the polariton system without any oscillations of the phases of the two subcondensates, we demonstrate that any nonzero ...

Journal: :Physical review letters 2001
F Schreck L Khaykovich K L Corwin G Ferrari T Bourdel J Cubizolles C Salomon

We report the observation of coexisting Bose-Einstein condensate (BEC) and Fermi gas in a magnetic trap. With a very small fraction of thermal atoms, the 7Li condensate is quasipure and in thermal contact with a 6Li Fermi gas. The lowest common temperature is 0.28 microK approximately 0.2(1)T(C) = 0.2(1)T(F) where T(C) is the BEC critical temperature and T(F) the Fermi temperature. The 7Li cond...

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