Search results for " Muscle hypertrophy"

showing 6 items of 6 documents

The Ketogenic Diet and Sport: A Possible Marriage?

2015

The ketogenic diet (KD) is used widely as a weight loss strategy and, more rarely, as therapy for some diseases. In many sports, weight control is often necessary (boxing, weightlifting, wrestling, etc.), but the KD usually is not considered. Our hypothesis is that KD might be used to achieve fat loss without affecting strength/power performance negatively.

Blood Glucosemedicine.medical_treatmentPhysiologyPhysical Therapy Sports Therapy and RehabilitationBody Mass Indexskeletal muscle hypertrophyDiet Carbohydrate-RestrictedWeight lossWeight LossmedicineHumansBody Fat DistributionOrthopedics and Sports MedicineMuscle StrengthMuscle SkeletalBody fat distributionSportendurancebusiness.industryMedicine (all)Power performanceWeight controlWeight Loendurance; ketogenic diet; skeletal muscle hypertrophy; strength; weight loss; Blood Glucose; Body Fat Distribution; Body Mass Index; Diet Carbohydrate-Restricted; Humans; Muscle Strength; Muscle Skeletal; Physical Endurance; Sports; Ketogenic Diet; Weight Loss; Orthopedics and Sports Medicine; Physical Therapy Sports Therapy and Rehabilitation; Medicine (all)ketogenic dietPhysical Endurancemedicine.symptombusinessDiet KetogenicstrengthBody mass indexFat lossKetogenic dietSportsHuman
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Neuromuscular Adaptations after Blood Flow Restriction Training Combined with Nutritional Supplementation: A Preliminary Study

2019

Blood fl ow restriction training (BFRT) has been shown to be an eff ective alternative technique to conventional resistance training to increase skeletal muscle hypertrophy and strength. However, neuromuscular response to BFRT in combination with nutritional supplementation has rarely been studied. Th e purpose of this study was to investigate the eff ects of BFRT combined with creatine monohydrate (CrM) and/or hydroxymethyl butyrate (HMB) on skeletal muscle size and strength. Fift een healthy males were randomly divided into three groups: a) BFRT without supplementation (C-BFR); b) BFRT with CrM supplementation (0.3 g / kg-1) (CrM-BFR); and c) BFRT with CrM (0.3 g / kg-1) and HMB (3 g) sup…

Occlusion trainingNutritional SupplementationFisioteràpiabusiness.industryocclusion trainingMuscle strengthRehabilitationSkeletal muscle hypertrophyPhysiologyPhysical Therapy Sports Therapy and RehabilitationBlood flow restrictionSkeletal muscle hypertrophyGV557-1198.995Sports medicineMuscle strengthmuscle strengthEducación Física y DeportivaMedicineOrthopedics and Sports MedicinebusinessRC1200-1245Sports
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Does the addition of single joint exercises to a resistance training program improve changes in performance and anthropometric measures in untrained …

2018

The present study compared changes in muscle performance and anthropometric measures in young men performing resistance training (RT) programs composed of only multi joint (MJ) exercises, or with the addition of single joint (SJ) exercises (MJ+SJ). Twenty untrained men were randomized to MJ or MJ+SJ groups for 8 weeks. Both groups performed the same MJ exercises. The difference was that the MJ+SJ group added SJ exercises for upper and lower limbs. Participants were tested for 10 repetitions maximum (10RM), flexed arm circumference, and biceps and triceps skinfolds. Both groups significantly increased 10RM load for the bench press (MJ 38.5%, MJ+SJ 40.1%), elbow extension (MJ 28.7%, MJ+SJ 31.…

Strength traininglcsh:MedicineBench pressBicepslcsh:QM1-69503 medical and health sciences0302 clinical medicineMedicineOrthopedics and Sports MedicineTraining volumeIsolation exerciseLeg pressMolecular BiologyMulti jointbusiness.industrylcsh:RSignificant differenceResistance traininglcsh:Human anatomy030229 sport sciencesCell BiologyAnthropometryExercise selectionExercise selection; Isolation exercise; Muscle hypertrophy; Strength training; Training volume; Neurology (clinical); Orthopedics and Sports Medicine; Cell Biology; Molecular BiologyMuscle hypertrophyNeurology (clinical)Strength trainingbusinessNuclear medicine030217 neurology & neurosurgeryEuropean Journal of Translational Myology
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Single joint exercises do not provide benefits in performance and anthropometric changes in recreational bodybuilders

2020

The purpose of the present study was to compare the changes in anthropometric measures and muscle performance in users and non-users of androgenic anabolic steroids (AAS) performing resistance training (RT) programmes involving only multiple joint (MJ) exercises or a combination of MJ and single joint (SJ) exercises. Thirty recreational bodybuilders were divided into 4 groups: non-AAS users performing only MJ exercises (MJ), non-AAS users performing MJ + SJ (MJ + SJ), AAS users performing only MJ exercises (AAS − MJ) and AAS users performing MJ + SJ exercises (AAS − MJ + SJ). Before and after 8 weeks of training, the participants were tested for 10 repetition maximum (10RM) in different RT …

exercise selection muscle definition Muscle hypertrophy muscle strength resistance exerciseSettore M-EDF/01 - Metodi E Didattiche Delle Attivita' Motorie
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Morphometry of myocardial apex in endurance-trained mice of different ages

1979

Mitochondrial volume density, surface density of the outer mitochondrial membrane, the mean number and size of mitochondria, and the mean surface density of crista membranes together with the volume densities of myofibrils and sarcoplasmic space were morpho-metrically analyzed in cardiac muscle of two groups of sedentary control mice aged 3 and 7 months, and in two groups of mice trained either 1 month rather intensely or 4 months moderately. Of the calculated mitochondrial variables only the surface density of the outer mitochondrial membrane differed between the older controls and the older trained animals, the density being slightly smaller in the trained group. The myofibrillar volume d…

medicine.medical_specialtyPhysical Education and TrainingTime FactorsPhysiologyMyocardiumSarcoplasmAge FactorsCardiac muscleStereologyOrgan SizeBiologyMitochondria HeartMiceCristamedicine.anatomical_structureCardiac muscle hypertrophyEndocrinologyEndurance trainingInternal medicinePhysical EndurancemedicineAnimalsMyocyteMyofibrilActa Physiologica Scandinavica
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Stimuli and sensors that initiate skeletal muscle hypertrophy following resistance exercise

2018

One of the most striking adaptations to exercise is the skeletal muscle hypertrophy that occurs in response to resistance exercise. A large body of work shows that a mammalian target of rapamycin complex 1 (mTORC1)-mediated increase of muscle protein synthesis is the key, but not sole, mechanism by which resistance exercise causes muscle hypertrophy. While much of the hypertrophy signaling cascade has been identified, the initiating, resistance exercise-induced and hypertrophy-stimulating stimuli have remained elusive. For the purpose of this review, we define an initiating, resistance exercise-induced and hypertrophy-stimulating signal as “hypertrophy stimulus,” and the sensor of such a s…

medicine.medical_specialtyPhysiologySkeletal muscle hypertrophylihaksetmuscle protein030204 cardiovascular system & hematologyMechanotransduction CellularMuscle hypertrophyWeight-Bearing03 medical and health sciencesskeletal muscle hypertrophy0302 clinical medicineStress PhysiologicalPhysiology (medical)Internal medicinemedicineAnimalsHumansMechanotransductionta315Muscle Skeletalbusiness.industryResistance trainingSkeletal muscleResistance Training030229 sport sciencesHypertrophyhypertrophy sensorEndocrinologymedicine.anatomical_structurelihasmassahypertrophy stimulusvoimaharjoitteluproteiinitSignal transductionbusiness
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