0000000000135955

AUTHOR

Huub Maas

0000-0002-2304-2735

showing 10 related works from this author

Mechanical Coupling Between Muscle-Tendon Units Reduces Peak Stresses

2017

The presence of mechanical linkages between synergistic muscles and their common tendons may distribute forces among the involved structures. We review studies, using humans and other animals, examining muscle and tendon interactions and discuss the hypothesis that connections between muscle bellies and within tendons may serve as a mechanism to distribute forces and mitigate peak stresses. peerReviewed

displacementmusculoskeletal diseasesMaterials scienceinjurylihaksetPhysical Therapy Sports Therapy and RehabilitationStrain (injury)sidekudoksetTendonsjänteet03 medical and health sciencesstrain0302 clinical medicineTendon InjuriesmedicineAnimalsHumansOrthopedics and Sports Medicineskeletal muscleMuscle Skeletalconnective tissuerasitusAchilles tendonforce transmissionSkeletal muscle030229 sport sciencesmusculoskeletal systemmedicine.diseaseTendonCoupling (electronics)Mechanism (engineering)Achilles tendonmedicine.anatomical_structureStress Mechanicalkantajännevammat030217 neurology & neurosurgeryMuscle ContractionBiomedical engineeringExercise and Sport Sciences Reviews
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Changes in Muscle Activity Patterns and Joint Kinematics During Gait in Hemophilic Arthropathy

2020

Hemophilic arthropathy is the result of repetitive intra-articular bleeding and synovial inflammation. In people with hemophilic arthropathy (PWHA), very little is known about the neural control of individual muscles during movement. The aim of the present study was to assess if the neural control of individual muscles and coordination between antagonistic muscle pairs and joint kinematics during gait are affected in PWHA. Thirteen control subjects (CG) walked overground at their preferred and slow velocity (1 m/s), and 14 PWHA walked overground at the preferred velocity (1 m/s). Joint kinematics and temporal gait parameters were assessed using four inertial sensors. Surface electromyograph…

joint damageelectromyographyPhysiologyVastus medialisElectromyography030204 cardiovascular system & hematologyKnee JointBicepslcsh:Physiologyknee joint03 medical and health sciences0302 clinical medicinePhysiology (medical)medicineankle jointlower limb kinematicsOriginal Researchmedicine.diagnostic_testlcsh:QP1-981business.industryAnatomymusculoskeletal systemGaithemophilic arthropathymedicine.anatomical_structureGait analysisgait analysisAnkleRange of motionbusiness030217 neurology & neurosurgeryFrontiers in Physiology
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Modular reorganization of gait in chronic but not in artificial knee joint constraint

2021

It is currently unknown if modular reorganization does occur if not the central nervous system, but the musculoskeletal system is affected. The aims of this study were to investigate 1) the effects of an artificial knee joint constraint on the modular organization of gait in healthy subjects; and 2) the differences in modular organization between healthy subjects with an artificial knee joint constraint and people with a similar but chronic knee joint constraint. Eleven healthy subjects and eight people with a chronic knee joint constraint walked overground at 1 m/s. The healthy subjects also walked with a constraint limiting knee joint movement to 20_. The total variance accounted (tVAF) f…

Adultmusculoskeletal diseasesmedicine.medical_specialtyPhysiologyComputer scienceKnee JointArtificial kneeMuscle synergyPhysical medicine and rehabilitationGait (human)Motor controlmedicineHumansLower limb kinematicsRange of Motion ArticularMuscle Skeletalbusiness.industryGeneral NeuroscienceLower limb kinematicsMotor controlMiddle AgedModular designKnee jointBiomechanical PhenomenaConstraint (information theory)Gait analysisGait analysisKnee Prosthesisbusinesshuman activities
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Neuromuscular control during gait in people with haemophilic arthropathy

2019

Introduction: Effects of haemophilic arthropathy on neuromuscular control during gait are currently unknown. Aims: (a) To assess how haemophilic arthropathy affects the complexity of neuromuscular control during gait; (b) To investigate the relationship between complexity of neuromuscular control and joint impairment. Methods: Thirteen control subjects (CG) walked overground at their preferred and a slow velocity and thirteen people with haemophilic arthropathy (PWHA) walking at their preferred velocity. Surface electromyography (EMG) was collected from eleven leg muscles. Electromyography variance explained by muscle synergies (sets of co-activated muscles that can be recruited by a single…

AdultMalemedicine.medical_specialtyhaemophiliaElectromyographyWalking030204 cardiovascular system & hematologyKnee Jointsurface electromyographyHaemophiliaHemophilia AHemophilia BSeverity of Illness Indexknee joint03 medical and health sciencesYoung Adult0302 clinical medicinePhysical medicine and rehabilitationSDG 3 - Good Health and Well-beingneuromuscular controlmedicineCluster AnalysisHumansankle jointMuscle SkeletalGaitGenetics (clinical)medicine.diagnostic_testbusiness.industryElectromyographymuscle synergyMotor controlHematologyGeneral MedicineExplained variationmedicine.diseaseGaitmedicine.anatomical_structureCase-Control Studies/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingAnkleNeuromuscular controlJoint Diseasesbusinesshuman activities030215 immunology
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Non-uniformity of displacement and strain within the Achilles tendon is affected by joint angle configuration and differential muscle loading.

2020

Although the Achilles tendon (AT) has been studied for more than a century, a complete understanding of the mechanical and functional consequences of AT structural organization is currently lacking. The aim of this study was to assess how joint angle configuration affects subtendon displacement and strain of soleus (SOL) and lateral gastrocnemius (LG) muscles. Knots sutured onto SOL and LG subtendons of 12 Wistar rats, were videotaped to quantify displacements and the ankle torque was assessed for different isometric activation conditions (i.e., individual and simultaneous) of the triceps surae muscles. Changing ankle and knee joint angle affected the magnitude of displacement, relative dis…

displacementMaleStrain (injury)lihakset02 engineering and technologyIsometric exerciseKnee JointStrainWeight-Bearing0302 clinical medicineSoleusgastrocnemiusOrthopedics and Sports MedicinerasitusAchilles tendonRehabilitationankle torqueBiomechanical Phenomenamedicine.anatomical_structureAnkle torquekantajännebiomekaniikkaMaterials science0206 medical engineeringBiomedical EngineeringBiophysicsshearAchilles Tendonjänteet03 medical and health sciencesstrainmedicineGastrocnemiusAnimalsDisplacement (orthopedic surgery)Rats WistarMuscle SkeletalBalance (ability)soleusShearDisplacementmedicine.disease020601 biomedical engineeringRatsnilkatAchilles tendonTorqueJoint angleJointsAnkle030217 neurology & neurosurgeryBiomedical engineeringJournal of biomechanics
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Assessment of tensile mechanical properties of the Achilles tendon in adult patients with haemophilic arthropathy.

2019

AdultMale030204 cardiovascular system & hematologyAchilles TendonBiomechanical Phenomena03 medical and health sciences0302 clinical medicineTensile StrengthHemarthrosisUltimate tensile strengthHumansMedicineGenetics (clinical)OrthodonticsHaemophilic arthropathyReproducibilityAchilles tendonAdult patientsbusiness.industryHematologyGeneral MedicineBiomechanical Phenomenamedicine.anatomical_structureFemalebusiness030215 immunologyHaemophilia
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Force transmission and interactions between synergistic muscles

2023

The classical view of muscles as independent motors has been challenged over the past decades. An alternative view has emerged in which muscles are not isolated but embedded in a three-dimensional connective tissue network that links them to adjacent muscles and other non-muscular structures in the body. Animal studies showing that the forces measured at the distal and proximal ends of a muscle are not equal have provided undisputable evidence that these connective tissue linkages are strong enough to serve as an extra pathway for muscular force transmission. In this historical review, we first introduce the terminology and anatomy related to these pathways of muscle force transmission and …

vuorovaikutusMuscle mechanicsRehabilitationBiomedical EngineeringBiophysicstorquelihaksetsidekudoksetmuscle mechanicsmyofascialepimuscularTorqueEpimuscularOrthopedics and Sports Medicinevoimantuotto (fysiologia)faskiatbiomekaniikkaConnective tissueFasciaMyofascialfasciaconnective tissue
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Non-uniform displacement and strain between the soleus and gastrocnemius subtendons of rat Achilles tendon

2018

Achilles tendon (AT) comprises of 3 subtendons arising from the soleus (SOL) and the lateral (LG) and medial (MG) heads of the gastrocnemius muscle. While recent human studies show differential displacement within AT, these displacements have not been attributed to specific subtendons. We tested the hypothesis that the SOL and LG subtendons show differential displacement and strain during various combinations of SOL, LG, and MG excitations. Movement of knots, sutured onto SOL and LG subtendons of 12 Wistar rats, was videotaped, while the muscles were stimulated intramuscularly and ankle torque was assessed. When SOL only was stimulated, the plantar flexion torque was the smallest among the …

Male0301 basic medicineanatomyPhysical Therapy Sports Therapy and RehabilitationAchilles TendonPlantar flexion03 medical and health sciencesGastrocnemius muscle0302 clinical medicinemedicineAnimalsOrthopedics and Sports MedicineDisplacement (orthopedic surgery)Active stateRats WistarMuscle Skeletalta315Achilles tendonStrain (chemistry)Human studiesChemistryankle torquedeformation030229 sport sciencesAnatomy3-dimensional modelRatsAchilles tendon030104 developmental biologymedicine.anatomical_structureTorquecalcaneal tendontriceps suraekantajänneAnkle JointAnkle torqueMuscle Contraction
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Controlled intermittent shortening contractions of a muscle-tendon complex: muscle fibre damage and effects on force transmission from a single head …

2005

This study was performed to examine effects of prolonged (3 h) intermittent shortening (amplitude 2 mm) contractions (muscles were excited maximally) of head III of rat extensor digitorum longus muscle (EDL III) on indices of muscle damage and on force transmission within the intact anterior crural compartment. Three hours after the EDL III exercise, muscle fibre damage, as assessed by immunohistochemical staining of structural proteins (i.e. dystrophin, desmin, titin, laminin-2), was found in EDL, tibialis anterior (TA) and extensor hallucis longus (EHL) muscles. The damaged muscle fibres were not uniformly distributed throughout the muscle cross-sections, but were located predominantly ne…

MaleTime Factorsanimal structuresPhysiologyMolecular Sequence DataMuscle Fibers SkeletalVesicular Transport ProteinsMuscle ProteinsBiochemistryDesminExtensor digitorum longus muscleTendonsSDG 3 - Good Health and Well-beingmedicineAnimalsRNA MessengerMuscle fibreRats WistarMuscle SkeletalbiologyChemistryReverse Transcriptase Polymerase Chain ReactionMETIS-229512Compartment (ship)Gene Expression Profilingmusculoskeletal neural and ocular physiologyMembrane ProteinsCell BiologyAnatomyOrgan Sizemusculoskeletal systemTendonRatsSlack lengthmedicine.anatomical_structureIR-104003Models Animalbiology.protein/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingTitinDesminStress MechanicalDystrophintissuesMuscle Contraction
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Does ankle joint power reflect type of muscle action of soleus and gastrocnemius during walking in cats and humans?

2013

The main objective of this paper is to highlight the difficulties of identifying shortening and lengthening contractions based on analysis of power produced by resultant joint moments. For that purpose, we present net ankle joint powers and muscle fascicle/muscle-tendon unit (MTU) velocities for medial gastrocnemius (MG) and soleus (SO) muscles during walking in species of different size (humans and cats). For the cat, patterns of ankle joint power and MTU velocity of MG and SO during stance were similar: negative power (ankle moment×angular velocity<0), indicating absorption of mechanical energy, was associated with MTU lengthening, and positive power (generation of mechanical energy) w…

Muscle fascicleAdultMaleConcentricBiomedical EngineeringBiophysicsWalkingConcentricMuscle fascicle03 medical and health sciences0302 clinical medicineMuscle actionSpecies SpecificityMedicineEccentricAnimalsHumansOrthopedics and Sports MedicineSDG 7 - Affordable and Clean Energyta315Muscle SkeletalEccentricMechanical energyCATS/dk/atira/pure/sustainabledevelopmentgoals/affordable_and_clean_energyContractionbusiness.industryRehabilitationCat030229 sport sciencesAnatomyFascicleJoint powermedicine.anatomical_structureMuscle–tendon unitCatsAnklebusiness030217 neurology & neurosurgeryAnkle JointHuman
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