Search results for "Geodesy"

showing 10 items of 116 documents

Measurement of acoustic attenuation in South Pole ice

2010

Using the South Pole Acoustic Test Setup (SPATS) and a retrievable transmitter deployed in holes drilled for the IceCube experiment, we have measured the attenuation of acoustic signals by South Pole ice at depths between 190 m and 500 m. Three data sets, using different acoustic sources, have been analyzed and give consistent results. The method with the smallest systematic uncertainties yields an amplitude attenuation coefficient alpha = 3.20 \pm 0.57 km^(-1) between 10 and 30 kHz, considerably larger than previous theoretical estimates. Expressed as an attenuation length, the analyses give a consistent result for lambda = 1/alpha of ~1/300 m with 20% uncertainty. No significant depth or …

Acoustic attenuation; Acoustics; Ice; Neutrino astronomy; South Pole[PHYS.ASTR.HE]Physics [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE]010504 meteorology & atmospheric sciences[SDU.ASTR.CO]Sciences of the Universe [physics]/Astrophysics [astro-ph]/Cosmology and Extra-Galactic Astrophysics [astro-ph.CO]iceFOS: Physical sciencesAetiology screening and detection [ONCOL 5]Lambda01 natural sciencesneutrino astronomy[PHYS.ASTR.CO]Physics [physics]/Astrophysics [astro-ph]/Cosmology and Extra-Galactic Astrophysics [astro-ph.CO]OpticsSpectrum0103 physical sciencesacousticsInstrumentation and Methods for Astrophysics (astro-ph.IM)0105 earth and related environmental sciencesPhysicsSouth Pole010308 nuclear & particles physicsbusiness.industryAttenuation[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE]TransmitterAttenuation lengthAstronomy and AstrophysicsGeodesy004AmplitudeAttenuation coefficientddc:540NeutrinoAstrophysics - Instrumentation and Methods for AstrophysicsbusinessAcoustic attenuationinfo:eu-repo/classification/ddc/004acoustic attenuation
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Geodetic and geological evidence of active tectonics in south-western Sicily (Italy)

2014

Abstract Integrated geological, geodetic and marine geophysical data provide evidence of active deformation in south-western Sicily, in an area spatially coincident with the macroseismic zone of the destructive 1968 Belice earthquake sequence. Even though the sequence represents the strongest seismic event recorded in Western Sicily in historical times, focal solutions provided by different authors are inconclusive on possible faulting mechanism, which ranges from thrusting to transpression, and the seismogenic source is still undefined. Interferometric (DInSAR) observations reveal a differential ground motion on a SW–NE alignment between Campobello di Mazara and Castelvetrano (CCA), locate…

Active tectonicsPleistoceneSettore GEO/02 - Geologia Stratigrafica E SedimentologicaSettore GEO/03 - Geologia StrutturaleGeodetic datumSicilian fold and thrust belt; Geodesy; Active tectonicsaActive faultTranspressionTectonicsSequence (geology)GeophysicsSeismic hazardThrust faultActive tectonicsaGeologySeismologySicilian fold and thrust beltGeodesyEarth-Surface ProcessesSicilian fold and thrust belt; Geodesy; Active tectonics
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Similar planning strategies for whole-body and arm movements performed in the sagittal plane

2003

The present paper looks for kinematic similarities between whole-body and arm movements executed in the sagittal plane. Eight subjects performed sit-to-stand (STS) and back-to-sit (BTS) movements at their preferred speed in the sagittal plane. Kinematics analysis focused on shoulder motion revealed that STS was composed of a straight, forward displacement followed by a curved, upward displacement while BTS was characterized by a curved, downward and straight, backward displacement. Curvature of the upward displacement was significantly greater than the downward one. Analysis of shoulder-velocity profiles showed that movement duration was significantly longer for BTS compared with STS and th…

AdultCentral Nervous SystemMaleShoulder JointMovement (music)MovementGeneral NeuroscienceBody movementKinematicsGeodesyCurvatureDisplacement (vector)Sagittal planeBiomechanical PhenomenaAccelerationmedicine.anatomical_structureArmmedicineHumansWhole bodyPsychomotor PerformanceGeologyNeuroscience
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The location of the tibial accelerometer does influence impact acceleration parameters during running

2016

Tibial accelerations have been associated with a number of running injuries. However, studies attaching the tibial accelerometer on the proximal section are as numerous as those attaching the accelerometer on the distal section. This study aimed to investigate whether accelerometer location influences acceleration parameters commonly reported in running literature. To fulfil this purpose, 30 athletes ran at 2.22, 2.78 and 3.33 m · s–1 with three accelerometers attached with double-sided tape and tightened to the participants’ tolerance on the forehead, the proximal section of the tibia and the distal section of the tibia. Time-domain (peak acceleration, shock attenuation) and frequency-doma…

AdultMaleAcousticsDecelerationAccelerationPhysical Therapy Sports Therapy and RehabilitationAccelerometerSignallaw.inventionRunningTibial acceleration03 medical and health sciencesAcceleration0302 clinical medicinelawAccelerometryTEORIA DE LA SEÑAL Y COMUNICACIONESTibial accelerationHumansOrthopedics and Sports MedicineTibiaFrequency analysisLegTibiaAttenuation030229 sport sciencesGeodesyShock attenuationShock (mechanics)Biomechanical PhenomenaFrequency analysis030217 neurology & neurosurgeryGeology
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A Slippery Slope: Estimated Slant of Hills Increases with Distance

2014

The slopes of hills tend to be greatly overestimated. Previous studies have found that slope estimates are significantly greater when estimated verbally than with a proprioceptive measure. It has yet to be determined whether these estimates are made for the entire extent of the slope, or whether the estimates in closest proximity are estimated using a different process. Since some parietal cortex neurons respond differently to objects within arm's reach, short-distance slope estimation may utilize these or analogous neurons. Alternatively, greater implied effort might make longer slopes seem steeper. We determined that both verbal and proprioceptive reports of slope are overestimates that …

AdultMaleAdolescentbusiness.industryDistance PerceptionExperimental and Cognitive PsychologyObserver (special relativity)Slippery slopeProprioceptionGeodesyGazeSensory SystemsJudgmentRandom AllocationYoung AdultOphthalmologyOpticsArtificial IntelligenceSpace PerceptionHumansFemalebusinessDepth perceptionMathematicsPerception
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The representation of gravitational force during drawing movements of the arm

1998

The purpose of the present experiment was to study the way in which the central nervous system (CNS) represents gravitational force (GF) during vertical drawing movements of the arm. Movements in four different directions: (a) upward vertical (0 degrees), (b) upward oblique (45 degrees), (c) downward vertical (180 degrees) and (d) downward oblique (135 degrees), and at two different speeds, normal and fast, were executed by nine subjects. Data analysis focused upon arm movement kinematics in the frontal plane and gravitational torques (GTs) exerted around the shoulder joint. Regardless of movement direction, subjects showed straight-line paths for both speed conditions. In addition, movemen…

AdultMaleAnalysis of VarianceMovement (music)MovementGeneral NeuroscienceMotor controlBody movementPlanning TechniquesKinematicsGeodesyAccelerationTorqueVertical directionMotor systemArmHumansTorqueFemaleGravitationMathematicsExperimental Brain Research
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The Temporal Structure of Vertical Arm Movements

2011

Import JabRef | WosArea Life Sciences and Biomedicine - Other Topics; International audience; The present study investigates how the CNS deals with the omnipresent force of gravity during arm motor planning. Previous studies have reported direction-dependent kinematic differences in the vertical plane; notably, acceleration duration was greater during a downward than an upward arm movement. Although the analysis of acceleration and deceleration phases has permitted to explore the integration of gravity force, further investigation is necessary to conclude whether feedforward or feedback control processes are at the origin of this incorporation. We considered that a more detailed analysis of…

AdultMaleCORTEXAnatomy and PhysiologyTime FactorsMovementAccelerationlcsh:MedicineNeurophysiologyKinematicsRotationNeurological SystemMotor Neuron DiseasesBehavioral NeuroscienceAccelerationGRAVITYHumanslcsh:ScienceBiologyMotor SystemsDIRECTIONAL ISOMETRIC FORCESENSORIMOTORPhysicsMultidisciplinaryMovement (music)lcsh:RMOTOR CORTICAL REPRESENTATIONBiomechanicsVertical planePOINTING MOVEMENTSGeodesyBiomechanical PhenomenaMODELSIGNAL-DEPENDENT NOISEAmplitudeNeurologySAGITTAL PLANEDuration (music)[ SCCO.NEUR ] Cognitive science/NeuroscienceArmMedicinelcsh:QINTEGRATIONResearch ArticleNeurosciencePLoS ONE
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''Alterations with Movement Duration in the Kinematics of a Whole Body Pointing Movement''

2013

Casteran, Matthieu | Manckoundia, Patrick | Pozzo, Thierry | Thomas, Elizabeth; International audience; ''Our aim was to investigate how the organization of a whole body movement is altered when movement duration (MD) is varied. Subjects performed the same whole body pointing movement over long, normal and short MDs. The kinematic trajectories were then analyzed on a normalized time base. A principal components analysis (PCA) revealed that the degree of coordination between the elevation angles of the body did not change with MD. This lack of significant differences in the coordination was interesting given that small spatial and temporal differences were observed in the individual kinemati…

AdultMaleDYNAMICSAnatomy and PhysiologyTime FactorsCOMPUTATIONAL MODELMovementBiophysicsNeurophysiologylcsh:MedicineAngular velocityKinematicsNeurological SystemARM MOVEMENTHumansBiomechanicsSPEEDlcsh:ScienceBiologyMusculoskeletal SystemJoint (geology)Motor SystemsPrincipal Component AnalysisCOORDINATIONMultidisciplinaryNormalized TimeMovement (music)Physicslcsh:RElevationAMPLITUDESEGMENTS''MUSCLE ACTIVATIONGeodesyBiomechanical PhenomenaSEGMENTSCOMMUNITYEQUILIBRIUMDuration (music)Principal component analysis''ARM MOVEMENT[ SCCO.NEUR ] Cognitive science/NeuroscienceMedicineFemaleJointslcsh:QGeologyResearch ArticleNeuroscience
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Vestibular Stimulation Interferes with the Dynamics of An Internal Representation of Gravity

2016

The remembered vanishing location of a moving target has been found to be displaced downward in the direction of gravity ( representational gravity) and more so with increasing retention intervals, suggesting that the visual spatial updating recruits an internal model of gravity. Despite being consistently linked with gravity, few inquiries have been made about the role of vestibular information in these trends. Previous experiments with static tilting of observers’ bodies suggest that under conflicting cues between the idiotropic vector and vestibular signals, the dynamic drift in memory is reduced to a constant displacement along the body's main axis. The present experiment aims to replic…

AdultMaleGravity (chemistry)PhysiologyAccelerationMotion PerceptionExperimental and Cognitive Psychology050105 experimental psychologyDisplacement (vector)GravitationYoung Adult03 medical and health sciencesAcceleration0302 clinical medicinePhysiology (medical)Orientation (geometry)AnimalsHumansAttention0501 psychology and cognitive sciencesMotion perceptionGeneral PsychologyVestibular systemPhysicsAnalysis of VarianceCommunicationCentrifugebusiness.industry05 social sciencesReflex Vestibulo-OcularGeneral MedicineGeodesyNeuropsychology and Physiological PsychologySpace PerceptionFemaleCuesbusinessPhotic Stimulation030217 neurology & neurosurgeryGravitationQuarterly Journal of Experimental Psychology
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Effects of movement direction upon kinematic characteristics of vertical arm pointing movements in man

1998

Vertical arm pointing movements in two directions (upwards and downwards), imposing two different loads (unload and 0.5 kg) and speeds (normal and fast) have been studied in six subjects. Movements were recorded using an optoelectronic system. Data analysis concentrated upon finger-tip kinematics. Significant effects of movement direction were recorded upon velocity profiles. The acceleration time, computed relative to total movement time, was greater for downward movements than for upward movements. In contrast however, no effects of load or speed were observed. Movement time was not affected by movement direction or load, for both speeds tested. These results suggest different planning pr…

AdultMaleGravity (chemistry)Time FactorsWeight LiftingDecelerationMovementmedia_common.quotation_subjectAccelerationAcceleration timeKinematicsFunctional LateralityFingersHumansContrast (vision)Gravitational forcemedia_commonMovement (music)General NeuroscienceGeodesyBiomechanical PhenomenaTorqueAerospace MedicineArmGeologyGravitationNeuroscience Letters
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