Search results for "Acid–base homeostasis"

showing 10 items of 13 documents

Dietary acid load and renal function have varying effects on blood acid-base status and exercise performance across age and sex

2017

Diet composition influences acid-base status of the body. This may become more relevant as renal functional capacity declines with aging. We examined the effects of low (LD) versus high dietary acid load (HD) on blood acid-base status and exercise performance. Participants included 22 adolescents, 33 young adults (YA), and 33 elderly (EL), who followed a 7-day LD and HD in a randomized order. At the end of both diet periods the subjects performed a cycle ergometer test (3 × 10 min at 35%, 55%, 75%, and (except EL) until exhaustion at 100% of maximal oxygen uptake). At the beginning of and after the diet periods, blood samples were collected at rest and after all workloads. Oxygen uptake, r…

AdultMalemedicine.medical_specialtyAdolescentPhysiologyEndocrinology Diabetes and MetabolismBicarbonateRenal functionPhysiology030209 endocrinology & metabolismAcid–base homeostasisKidneyKidney Function Tests03 medical and health scienceschemistry.chemical_compoundOxygen Consumption0302 clinical medicinePhysiology (medical)Internal medicineHeart rateHumansMedicineAerobic exerciseExerciseRespiratory exchange ratioAgedAcid-Base EquilibriumNutrition and Dieteticsbusiness.industryVO2 max030229 sport sciencesGeneral MedicineMiddle AgedDietBicarbonatesEndocrinologyBreath TestschemistryExercise TestFemaleBase excessbusinessApplied Physiology, Nutrition, and Metabolism
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Säure-Basen-Status gelagerter und gewaschener Erythrozyten

2001

Anesthesiology and Pain MedicineChromatographybusiness.industryEmergency MedicineMedicineBase excessGeneral MedicineAcid–base homeostasisCritical Care and Intensive Care Medicinebusinessains · Anästhesiologie · Intensivmedizin · Notfallmedizin · Schmerztherapie
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Effect of diet composition on acid–base balance in adolescents, young adults and elderly at rest and during exercise

2014

Diets rich in animal protein and cereal grains and deficient in vegetables and fruits may cause low-grade metabolic acidosis, which may impact exercise and health. We hypothesized that (1) a normal-protein diet with high amount of vegetables and fruits (HV) induces more alkaline acid-base balance compared with a high-protein diet with no vegetables and fruits (HP) and (2) diet composition has a greater impact on acid-base balance in the elderly (ELD).In all, 12-15 (adolescents (ADO)), 25-35 (young adults (YAD)) and 60-75 (ELD)-year-old male and female subjects (n=88) followed a 7-day HV and a 7-day HP in a randomized order and at the end performed incremental cycle ergometer tests. We inves…

GerontologyAdultMalemedicine.medical_specialtyAdolescentRestMedicine (miscellaneous)Acid–base homeostasisYoung AdultFeeding behaviorInternal medicineMedicineHomeostasisHumansExercise physiologyYoung adultChildta315ExerciseRest (music)Balance (ability)AgedAcid-Base EquilibriumNutrition and Dieteticsbusiness.industrydiet compositionDiet compositionOsmolar Concentrationsocial sciencesFeeding BehaviorCarbon DioxideHydrogen-Ion ConcentrationMiddle Agedhumanitiesacid–base balanceDietEndocrinologyExercise TestFemalebusinessEuropean Journal of Clinical Nutrition
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Effects of 12-Week Low or Moderate Dietary Acid Intake on Acid–Base Status and Kidney Function at Rest and during Submaximal Cycling

2018

Prolonged effects of dietary acid intake on acid–base status and kidney function have not yet been studied in an intervention study in healthy subjects. Dietary acid load can be estimated by calculating the potential renal acid load (PRAL) of foods. Effects of low-PRAL and moderate-PRAL diets on acid–base status and kidney function were investigated during a 12-week exercise training period. Healthy, 20–50-year-old men (n = 21) and women (n = 25) participated in the study and were randomly divided into low-PRAL and moderate-PRAL groups. Before (PRE), mid-phase (MID) and after the intervention (POST), the subjects participated in measurement sessions, where a 12-h urine sample and fasting bl…

Maleand promotion of well-beingKidney DiseasekestävyysharjoitteluPhysiology030204 cardiovascular system & hematologyKidneyruokavaliotchemistry.chemical_compound0302 clinical medicinedietary acid loadYoung adultta315kidney functionmunuaisetAcid-Base EquilibriumKidneyNutrition and Dieteticsdietary acid load; acid–base status; net acid excretion; exercise training; kidney functionHydrogen-Ion ConcentrationMiddle Agedmedicine.anatomical_structureacid–base statusFemaleCyclinglcsh:Nutrition. Foods and food supplyAdultBicarbonateacid-base statusRenal and urogenitalhappo-emästasapainoRenal functionlcsh:TX341-641Acid–base homeostasisnet acid excretionArticleYoung Adult03 medical and health sciencesFood SciencesClinical ResearchComplementary and Integrative HealthmedicineHumans3.3 Nutrition and chemopreventionMetabolic and endocrineNutrition6.7 PhysicalTraining periodbusiness.industryPreventionEvaluation of treatments and therapeutic interventionsResistance Training030229 sport sciencesPrevention of disease and conditionsDietchemistryExercise TestPhysical EnduranceNet acid excretionbusinessexercise trainingFood AnalysisFood ScienceNutrients; Volume 10; Issue 3; Pages: 323
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Are control of extracellular acid-base balance and regulation of skeleton genes linked to resistance to ocean acidification in adult sea urchins?

2020

SCOPUS: ar.j

Settore BIO/07 - EcologiaCO2 ventsEnvironmental EngineeringClimate ChangeOceans and SeasMechanical propertiesAcid–base homeostasisEnvironnement et pollutionDICGene expressionExtracellularEnvironmental ChemistryAnimalsSeawaterWaste Management and DisposalGeneSkeletonCO2 ventAcid-Base EquilibriumResistance (ecology)ChemistryOcean acidificationOcean acidificationCarbon DioxideHydrogen-Ion ConcentrationbiomineralizationPollutionSkeleton (computer programming)adult sea urchinsCell biologyTechnologie de l'environnement contrôle de la pollutionqPCRSea UrchinsTraitement des déchetsGene expressionEchinodermsThe Science of the total environment
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Alteration of anion gap during almost total plasma replacement with synthetic colloids in piglets

2000

In ten piglets (body weight 8.2-11.6 kg), acid base, electrolyte and anion gap changes were investigated during almost total plasma replacement with hydroxyethyl starch (HES) and modified fluid gelatin (GEL) in saline solution using a cell saver autotransfusion technique. During the study, there were only moderate acid base changes, but marked disturbances in anion balance. At study end, the mean chloride concentration was significantly higher (mmol/l: normal values 97-108, HES 116 +/- 1.5, GEL 108 +/- 1.1, p0.01) and the mean anion gap was significantly lower in the HES group in comparison to the GEL group (mmol/l: normal values 5-14, HES 3 +/- 1.7, GEL 11.9 +/- 0.9, p0.01). It is conclude…

Swinemedicine.medical_treatmentPlasma SubstitutesAnion gapAcid–base homeostasisElectrolyteHydroxyethyl starchCritical Care and Intensive Care MedicineChlorideHydroxyethyl Starch DerivativesBlood Transfusion AutologousElectrolytesRandom AllocationColloidmedicineAnimalsColloidsSalineAcid-Base EquilibriumChromatographybusiness.industrySuccinatesMetabolic acidosisHydrogen-Ion Concentrationmedicine.diseaseDisease Models AnimalAnimals NewbornBiochemistryFluid TherapyGelatinFemalebusinessmedicine.drugIntensive Care Medicine
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Topiramate and Metabolic Acidosis in Infants and Toddlers

2002

Summary:  Purpose: Topiramate (TPM) inhibits carbonic anhydrase, with metabolic acidosis as a possible side effect, although this has been reported in only two adult cases. We investigated the acid–base metabolism in infants and toddlers treated with TPM. Methods: Nine infants and toddlers aged 5 months to 2.3 years (median, 6 months) were treated with TPM at maximal doses of 8.2–26 mg/kg/day (median, 11 mg/kg/day). The maximal TPM dose was achieved after 8–35 days (median, 17 days). TPM was given in addition to other antiepileptic drugs (AEDs) in five cases and as a sole AED in four patients with refractory epilepsy resistant to multiple AEDs. The diagnoses were infantile spasms (n = 5), e…

Topiramatemedicine.medical_specialtyEpilepsia partialis continuaFructoseAcid–base homeostasisDrug Administration ScheduleTopiramateHyperventilationmedicineHumansAcidosisAcid-Base EquilibriumEpilepsyDose-Response Relationship Drugbusiness.industryMetabolic disorderAge FactorsInfantMetabolic acidosisHydrogen-Ion Concentrationmedicine.diseaseSurgeryBicarbonatesTreatment OutcomeNeurologyChild PreschoolAnesthesiaAnticonvulsantsBase excessNeurology (clinical)Blood Gas Analysismedicine.symptomAcidosisbusinessFollow-Up Studiesmedicine.drugEpilepsia
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Could the acid-base status of Antarctic sea urchins indicate a better-than-expected resilience to near-future ocean acidification?

2015

13 pages; International audience; Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more acidic conditions. Polar oceans are particularly affected due to their low temperature, low carbonate content and mixing patterns, for instance upwellings. Calcifying organisms are expected to be highly impacted by the decrease in the oceans' pH and carbonate ions concentration. In particular, sea urchins, members of the phylum Echinodermata, are hypothesized to be at risk due to their high-magnesium calcite skeleton. However, tolerance to ocean acidification in metazoans is first linked to acid–base regulation capacities of the extracellular fluids. No infor…

acid-base regulationClimate Change[SDE.MCG]Environmental Sciences/Global ChangesAntarctic RegionsAmphipneustes lorioliocean acidificationAcid–base homeostasisbiology.animalsea urchinsAnimalsEnvironmental ChemistrySterechinus neumayeriSeawater14. Life underwaterSouthern OceanSea urchinGeneral Environmental ScienceAcid-Base EquilibriumGlobal and Planetary ChangeCarbon dioxide in Earth's atmosphere[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyEchinodermata [Echinoderms]EcologybiologyEcologyechinodermsOcean acidificationGlobal changebiology.organism_classificationacid–base regulation[ SDE.MCG ] Environmental Sciences/Global ChangesOceanography13. Climate actionAntarcticaSeawater[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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The Influence of Oxygen Affinity of Blood and Cerebral Blood Flow on Cerebral Oxygen Supply

1969

The quantity of oxygen transported, per unit of time, by the blood to the brain, is determined by the blood flow, the oxygen capacity, and the oxygen affinity of the blood. The O2-exchange between the blood and the tissue cells depends mainly on the oxygen transport characteristics of the blood and the O2 diffusion conditions in the blood and tissue.

chemistryCerebral blood flowDiffusionBiophysicsOxygen transportchemistry.chemical_elementAcid–base homeostasisBlood flowCerebral oxygenOxygen affinityOxygen
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Physiologische Erythrozyten-Protektionslösung (PEP)

2001

chemistry.chemical_compoundAnesthesiology and Pain MedicinechemistryBiochemistryBicarbonateEmergency MedicineBase excessGeneral MedicineAcid–base homeostasisCritical Care and Intensive Care Medicineains · Anästhesiologie · Intensivmedizin · Notfallmedizin · Schmerztherapie
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