GAST
- Known as:
- GAST
- Catalog number:
- 009125A
- Product Quantity:
- 250ul
- Category:
- -
- Supplier:
- ABM
- Gene target:
- GAST
Ask about this productRelated genes to: GAST
- Gene:
- GAST NIH gene
- Name:
- gastrin
- Previous symbol:
- GAS
- Synonyms:
- -
- Chromosome:
- 17q21.2
- Locus Type:
- gene with protein product
- Date approved:
- 2001-06-22
- Date modifiied:
- 2015-08-25
Related products to: GAST
Bovine gastrin (GAST) ELISA kitBovine gastrin (GAST) ELISA kitBovine gastrin (GAST) ELISA kitBovine gastrin (GAST) ELISA kit, Species Bovine, Sample Type serum, plasmaCat gastrin (GAST) ELISA kitCat Gastrin (GAST) ELISA KitCat Gastrin (GAST) ELISA KitCat Gastrin (GAST) ELISA KitCat gastrin (GAST) ELISA kit, Species Cat, Sample Type serum, plasmaChicken gastrin (GAST) ELISA kitCLIA Bos taurus,Bovine,GAS,GAST,GastrinCLIA Canis familiaris,Canis lupus familiaris,Dog,GAS,GAST,GastrinCLIA GAS,GAST,Gastrin,Homo sapiens,HumanCLIA Gas,Gast,Gastrin,Mouse,Mus musculusCLIA GAS,GAST,Gastrin,Pig,Sus scrofa Related articles to: GAST
- Metabolic dysfunction-associated steatotic liver disease (MASLD) is a heterogeneous condition where overlapping cardiometabolic risk factors challenge accurate prognostic prediction. - Source: PubMed
Publication date: 2026/07/29
Diambra LuisSookoian SilviaPirola Carlos Jose - To evaluate the repeatability and consistency of rapid quantitative Na MRI of the human calf, an acquisition-weighted stack-of-stars (AW-SOSt) sequence was implemented on a 7T MRI system and used for all measurements. Three variants, differing only in nominal in-plane spatial resolution (2.5, 5.0, and 7.5 mm) and corresponding acquisition times (8:04, 4:02, and 2:41 min), while maintaining a constant slice thickness of 15 mm, were employed for imaging the calf skeletal muscle. Quantitative consistency across resolutions and repeatability was evaluated in simulations and consecutive measurements of 10 healthy volunteers. The apparent tissue sodium concentration (aTSC) was determined using a postprocessing pipeline consisting of a B, B, relaxation, and partial volume correction (PVC). Deviations of the determined aTSC from simulated ground truth were below 6.0%. The simulated coefficient of variation (CV) improved with decreasing spatial resolution from 1.1% to 0.9%. The in vivo findings matched the simulation results. The CV improved with increasing voxel size, decreasing from 2.7% at 2.5-mm resolution to 2.0% at 7.5-mm resolution. Measurements remained highly consistent across different in-plane resolutions, with a small increase in aTSC (≈0.2 mM) observed as a difference between lower resolutions (7.5 mm) and the highest resolution (2.5 mm). All applied protocols showed good repeatability and high consistency between the protocols. aTSC quantification using low-resolution Na MRI showed improved repeatability, whereas in vivo measurements showed no effect on quantitative accuracy. This study demonstrates that low-resolution Na MRI with short acquisition times combined with PVC could be a practical alternative to commonly used "high-resolution" techniques with long acquisition times for quantifying aTSC in calf muscle tissue. - Source: PubMed
Höhn Jordan MWilferth TobiasGast Lena VGerhalter TeresaKopp ChristophUder MichaelNagel Armin M - The terminal ileum (TI) is commonly affected in people with cystic fibrosis (pwCF), but limited quantitative information is available on its appearance and dimensions. This study aimed to use magnetic resonance imaging (MRI) to: 1) measure the diameter of the distal TI in healthy volunteers (HVs) and pwCF; 2) test the hypothesis that the diameter of the TI in pwCF is larger than in HVs. - Source: PubMed
Publication date: 2026/07/25
Alqarni FaizKumasaka SomaTaylor MadeleineRecto ArantxaSills DarrenSaumtally HishamHamann CharlotteLim GracePaul JanYule AlexanderHoad Caroline LPeckham DanielStewart Iain DMonaghan Tanya Mvan der Gast ChristopherGathercole KatieGowland Penny ASpiller Robin CSmyth Alan RMarciani Luca - Understanding the dynamical properties of coupled phase oscillator systems with heterogeneous oscillator frequencies has been a long-standing challenge of complex systems theory. While the seminal work of Ott and Antonsen dramatically improved our theoretical understanding of coupled phase oscillators for a small family of oscillator frequency distributions, we here present a mean-field reduction method for arbitrary frequency distributions. Our method leverages the drastic dimensionality reduction obtained for Lorentzian frequency distributions, and combines it with a data-driven multi-ensemble approach. As such, the method renders the Ott-Antonsen equations directly applicable to empirical distributions of phase oscillator frequencies, often achieving a drastic dimensionality reduction and allowing to study real-world physical and biological systems by means of stability, sensitivity, and bifurcation analyses. - Source: PubMed
Publication date: 2026/07/22
Gast RichardTakasu ShotaroSchmidt HelmutKennedy Ann - We report the unique properties of cosmic phosphorus (P), chlorine (Cl), argon (Ar), potassium (K), and calcium (Ca) fluxes in the GV to TV rigidity range collected by the Alpha Magnetic Spectrometer (AMS) on the International Space Station. With a total of one million events collected over 13.5 years, we observed that the rigidity dependencies of the five fluxes are well described by the sums of a primary cosmic ray component and a secondary cosmic ray component. The abundance ratios of all five elements to Si at the source are accurately determined independent of cosmic ray propagation. The source abundance of Ar and Ca (even-Z elements) is larger than P, Cl, and K (odd-Z elements). The secondary components of the P and the Cl fluxes are each ∼1/3 of the F flux, and the secondary components of the Ar, K, and Ca fluxes are each ∼1/2 of the F flux. The twenty elements measured by AMS, from He to Ca and Fe, can be categorized into four classes, two primary and two secondary, based on their rigidity dependence. - Source: PubMed
Aceituno AAguilar MAlpat BAmbrosi GAnderson HAntunes JArruda LAttig NBagwell CBarao FBarbanera MBarrin LBartoloni ABattiston RBayyari ABelyaev NBertucci BBindi VBollweg KBolster JBorchiellini MBorgia BBoschini M JBourquin MBrugnoni CBurger W JCai H YCai X DCapell MCasaus JCassidy JCastellini GCervelli FChang Y HChen G MChen G RChen HChen HChen H SChen YCheng LChou H YChouridou SChoutko VChung C HClark CCoignet GConsolandi CContin ACorti CCui Y XCui ZDadzie KD'Angelo FDass ADelgado CDella Torre SDemirköz M BDerome LDi Falco SDi Felice VDíaz CDimiccoli Fvon Doetinchem PDong FDotson MDuranti MEgorov AEllison AFaldi FFehr DFeng JFiandrini EFisher PFormato VGarcía-López R JGaldames AGargiulo CGast HGe T TGervasi MGhezzer L EGiovacchini FGómez-Coral D MGong JGrandi DGraziani MGuidetti RGuan CHe Z HHeber BHernández-Nicolás FHöfer LHsieh T HHu J YHuang B WIonica MIncagli MJia YiJinchi HKappe TKaradöller EKaragöz GKastelic JKirn ThKounina OKounine AKoutsenko VKrasnopevtsev DKuhlman AKulemzin ALa Vacca GLaudi ELaurenti GLazzizzera ILee H TLee S CLi H LLi J HLi J QLi MLi QLi QLi Q YLi S LLi Z HLiao PLin C HLippert TLiu P CLiu ZLu S QLuo J ZLuo QLuo S DLuo XiMañá CMarín JMartínez GMasi NMaurin DMedvedeva TMenchaca-Rocha AMeng QMikhailov V VMolero MMott PMussolin LNajafi Jozani YNicolaidis RNikonov NNozzoli FOcampo-Peleteiro JOliva AOrcinha MPalmonari FPaniccia MPashnin APauluzzi MPelosi DPensotti SPerez DPietzcker PPlyaskin VPoluianov SPridöhl DPuccetti NQu Z YQuadrani LRafiei M MRancoita P GRapin DRobyn ERodríguez-García IRomaneehsen LRossi FRozhkov ARozza DSagdeev RSchael SSchultz von Dratzig ASchwering GSeo E SShan B SShukla ASiedenburg TSiemko ASilvestre GSchledewitz DSong J WSong X JSonnabend RStrekalovsky AStrigari LStuzhin ASu TSun QSun Z TTabarroni LTacconi MTang Z CTeoh J JTian JTian YeTian YTing Samuel C CTing S MTomassetti NTorsti JUbaldi AUsoskin IVagelli VVainio RVäisänen PValencia-Otero MValente EValtonen EVan Hove EVázquez Acosta MVecchi MVelasco MWang J CWang L QWang N HWang SWang XWang Z MWaqas MWeng Z LWu HWu Z BXiao J NXiong R QXiong Y ZXu WYan QYan Z XYang H TYang YYi HYou Y HYu MYu Y MYu Z QYuan B QZhang CZhang F ZZhang JZhang J HZhang ZZhao P WZheng Z MZhou H FZhuang H LZhukov VZou L KZuberi MZuccon P