Search results for "JUNO"

showing 10 items of 20 documents

Mini-Laparoscopically Guided Percutaneous Gastrostomy and Jejunostomy

2003

Abstract Background: Percutaneous endoscopic tube placement can be problematic under certain circumstances: absence of transillumination of the abdominal wall, percutaneous jejunostomy in patients with a PEG tube and recurrent aspiration, enteral feeding access after gastrectomy, and obstruction of the upper GI tract. As an alternative in these problematic situations, a technique was developed for placing feeding tubes under visual control by using mini-laparoscopy. Methods: Placement of a feeding tube with mini-laparoscopy with the patient under conscious sedation was considered for 17 patients in whom standard PEG placement was impossible. Techniques used were the following: combined mini…

AdultMaleEnteroscopymedicine.medical_specialtyPercutaneousmedicine.medical_treatmentConscious SedationJejunostomyEnteral NutritionmedicineHumansIntubationRadiology Nuclear Medicine and imagingIntubation GastrointestinalFeeding tubeAgedGastrostomymedicine.diagnostic_testbusiness.industryGastroenterologyMiddle AgedGastrostomySurgeryEndoscopyJejunostomyFemaleLaparoscopybusinessPercutaneous Endoscopic TubeGastrointestinal Endoscopy
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Prospects for detecting the diffuse supernova neutrino background with JUNO

2022

We present the detection potential for the diffuse supernova neutrino background (DSNB) at the Jiangmen Underground Neutrino Observatory (JUNO), using the inverse-beta-decay (IBD) detection channel on free protons. We employ the latest information on the DSNB flux predictions, and investigate in detail the background and its reduction for the DSNB search at JUNO. The atmospheric neutrino induced neutral current (NC) background turns out to be the most critical background, whose uncertainty is carefully evaluated from both the spread of model predictions and an envisaged in situ measurement. We also make a careful study on the background suppression with the pulse shape discrimination (PSD) …

JUNOilmaisimetastrofysiikkatutkimuslaitteetneutriinothiukkasfysiikkadiffuse supernova neutrino backgrounddetection potential
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Sub-percent precision measurement of neutrino oscillation parameters with JUNO

2022

JUNOneutriino-oskillaatioprecision measurementilmaisimettutkimuslaitteetreactor antineutrinoneutriinotneutrino oscillationhiukkasfysiikka
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Feasibility and physics potential of detecting 8B solar neutrinos at JUNO

2021

The Jiangmen Underground Neutrino Observatory (JUNO) features a 20 kt multi-purpose underground liquid scintillator sphere as its main detector. Some of JUNO's features make it an excellent location for B-8 solar neutrino measurements, such as its low-energy threshold, high energy resolution compared with water Cherenkov detectors, and much larger target mass compared with previous liquid scintillator detectors. In this paper, we present a comprehensive assessment of JUNO's potential for detecting B solar neutrinos via the neutrino-electron elastic scattering process. A reduced 2 MeV threshold for the recoil electron energy is found to be achievable, assuming that the intrinsic radioactive …

JUNOneutriino-oskillaatiosolar neutrinoPhysics::Instrumentation and DetectorsilmaisimettutkimuslaitteetneutriinotHigh Energy Physics::Experimenthiukkasfysiikkaydinfysiikka
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Tipos nomenclaturales de lirios ibéricos (Iris y géneros relacionados, Iridaceaae)

2012

Nomenclatural types are reported for seventeen taxa belonging to Iris and six related genera, which are accepted in the forthcoming treatment of Iridaceae for Flora iberica. Among them, 13 lectotypes and one neotype are designated for the first time, and three previous typifications are briefly commented. Se presentan los tipos nomenclaturales de 17 táxones pertenecientes a Iris y otros seis géneros relacionados, que se aceptan en el tratamiento de las Iridaceae para Flora iberica. De ellos, se designan por primera vez 13 lectótipos y un neótipo, y se comentan brevemente tres tipificaciones previas. This research was partly supported by Flora iberica project, parts VIII & IX (CGL2008-02982-…

JunoTipificaciónLimnirisNomenclatureBotánicaCiencias biológicasIrisXiphionPenínsula Ibérica:CIENCIAS DE LA VIDA [UNESCO]ChamaeirisTypificationUNESCO::CIENCIAS DE LA VIDANomenclaturaHermodactylusGynandririsIberian Peninsula
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Zvaigžņotā Debess: 2016, Rudens (233)

2016

Latvijas Universitāte

LVU astronomijas studenti – vēstulesLatvijas 44.atklātā skolēnu astronomijas olimpiāde10 skolas ar labākajiem matemātikas eksāmena rezultātiem 2015./16.māc.gadā:NATURAL SCIENCES::Physics::Astronomy and astrophysics [Research Subject Categories]FU Orionis – maiņzvaigžņu fenomensDebess spīdekļi – 2016. gada rudensHabla kosmiskais teleskops – pēdējā apkopeLatvijas 40.skolēnu zinātniskā konferenceLatvijas 66.matemātikas olimpiāde – uzdevumu atrisinājumiPirmie datori LatvijāNeitronu zvaigznes galaktiku magnētiskais lauksBaldones Šmidta teleskopa pirmā fotogrāfija – 50Vladislavam Locānam – 70Natālijai Cimahovičai – 90Viktoram Freijam – 110Kazimiram Lapuškam – 80Latvijas Zinātņu akadēmijai – 70Merkura tranzīts – vērojumi RīgāNASA zonde Juno Jupitera sistēmāPilns Saules aptumsums Sulavesi salā
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Distillation and stripping pilot plants for the JUNO neutrino detector: Design, operations and reliability

2019

Abstract This paper describes the design, construction principles and operations of the distillation and stripping pilot plants tested at the Daya Bay Neutrino Laboratory, with the perspective to adapt these processes, system cleanliness and leak-tightness standards to the final full scale plants to be used for the purification of the liquid scintillator of the JUNO neutrino detector. The main goal of these plants is to remove radio impurities from the liquid scintillator while increasing its optical attenuation length. Purification of liquid scintillator will be performed with a system combining alumina oxide, distillation, water extraction and steam (or N 2 gas) stripping. Such a combined…

Large-scale experimentNuclear and High Energy PhysicsPhysics - Instrumentation and DetectorsLiquid scintillatorAttenuation length; LAB; Large-scale experiments; Light yield; Liquid scintillator; Nitrogen purging; Radiopurity; Scintillator transparency; Nuclear and High Energy Physics; Instrumentationscintillation counter: liquidMixing (process engineering)Full scaleFOS: Physical sciencesRadiopurityfabricationScintillator01 natural sciences7. Clean energyStripping (fiber)law.inventionNOlaw0103 physical sciencesthorium: admixtureAttenuation length; LAB; Large-scale experiments; Light yield; Liquid scintillator; Nitrogen purging; Radiopurity; Scintillator transparency[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]010306 general physicsProcess engineeringDistillationInstrumentationbackground: radioactivityNuclear and High Energy PhysicPhysicsLABJUNOLarge-scale experiments010308 nuclear & particles physicsbusiness.industryuranium: admixtureSettore FIS/01 - Fisica SperimentaleAttenuation lengthInstrumentation and Detectors (physics.ins-det)Attenuation lengthNitrogen purgingNeutrino detectorScintillator transparencyNeutrinobusinessaluminum: oxygenLight yield
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The Design and Sensitivity of JUNO's scintillator radiopurity pre-detector OSIRIS

2021

The European physical journal / C 81(11), 973 (2021). doi:10.1140/epjc/s10052-021-09544-4

Liquid scintillatorPhysics - Instrumentation and DetectorsPhysics and Astronomy (miscellaneous)Physics::Instrumentation and Detectorsscintillation counter: liquidmeasurement methodsQC770-798Astrophysics01 natural sciencesthorium: nuclidedesign [detector]neutrinoRadioactive purityPhysicsLow energy neutrinoJUNOliquid [scintillation counter]biologySettore FIS/01 - Fisica SperimentaleDetectorInstrumentation and Detectors (physics.ins-det)3. Good healthQB460-466Physics::Space Physicsnuclide [uranium]FOS: Physical sciencesScintillatornuclide [thorium]530NONuclear physicsPE2_2uranium: nuclideNuclear and particle physics. Atomic energy. Radioactivity0103 physical sciencesddc:530Sensitivity (control systems)[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]010306 general physicsJUNO neutrino physics liquid scintillatorEngineering (miscellaneous)background: radioactivitydetector: designMeasurement method010308 nuclear & particles physicsradioactivity [background]biology.organism_classificationsensitivityHigh Energy Physics::ExperimentReactor neutrinoOsiris
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Postoperative intussusception in childhood

1998

Over a period of 10 years, five children developed postoperative intussusception after intra-abdominal procedures at the Department of Pediatric Surgery of the Johannes Gutenberg University Mainz. Two appendectomies, one ileal resection for a Meckel's diverticulum, one operative procedure for Hirschsprung's disease plus intestinal neuronal dysplasia type B, and one hiatoplasty with jejunostomy preceded the intussusception. Three of the five children were older than 2 years. The clinical symptoms consisted primarily of abdominal distension, diffuse abdominal pain, bilious vomiting, and rectal bleeding in one case. Preoperative diagnosis was achieved in four cases by abdominal ultrasound. Pla…

Malemedicine.medical_specialtyAbdominal painmedicine.medical_treatmentHydrostatic pressurePostoperative ComplicationsIntussusception (medical disorder)LaparotomyAbdomenmedicineHumansChildIntestinal neuronal dysplasiabusiness.industryInfantInvaginationGeneral MedicineAbdominal distensionmedicine.diseaseSurgeryChild PreschoolPediatrics Perinatology and Child HealthJejunostomyFemaleSurgeryRadiologymedicine.symptombusinessIntussusceptionPediatric Surgery International
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Radioactivity control strategy for the JUNO detector

2021

JUNO is a massive liquid scintillator detector with a primary scientific goal of determining the neutrino mass ordering by studying the oscillated anti-neutrino flux coming from two nuclear power plants at 53 km distance. The expected signal anti-neutrino interaction rate is only 60 counts per day, therefore a careful control of the background sources due to radioactivity is critical. In particular, natural radioactivity present in all materials and in the environment represents a serious issue that could impair the sensitivity of the experiment if appropriate countermeasures were not foreseen. In this paper we discuss the background reduction strategies undertaken by the JUNO collaboration…

Nuclear and High Energy PhysicsPhysics - Instrumentation and DetectorsPhysics::Instrumentation and DetectorsNuclear engineeringMonte Carlo methodControl (management)measurement methodsFOS: Physical sciencesQC770-798Scintillator7. Clean energy01 natural sciencesNOPE2_2Nuclear and particle physics. Atomic energy. Radioactivity0103 physical sciences[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]ddc:530Sensitivity (control systems)010306 general physicsPhysicsJUNOliquid [scintillation counter]010308 nuclear & particles physicsbusiness.industryDetectorSettore FIS/01 - Fisica Sperimentaleradioactivity [background]suppression [background]Instrumentation and Detectors (physics.ins-det)Monte Carlo [numerical calculations]Nuclear powerthreshold [energy]sensitivityNeutrino Detectors and Telescopes (experiments)GEANTNeutrinobusinessEnergy (signal processing)
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