05366nam 2200649Ia 450 991083013700332120210527152529.01-280-74804-497866107480440-470-98851-71-4051-7144-8(CKB)1000000000341945(EBL)284284(OCoLC)437176159(SSID)ssj0000103100(PQKBManifestationID)11639301(PQKBTitleCode)TC0000103100(PQKBWorkID)10061431(PQKB)11013965(MiAaPQ)EBC284284(PPN)163504687(EXLCZ)99100000000034194520050822d2006 uy 0engur|n|---|||||txtccrAnalytical techniques for atmospheric measurement[electronic resource] /edited by Dwayne E. HeardAmes, Iowa Blackwell Pub.c20061 online resource (534 p.)Description based upon print version of record.1-4051-2357-5 Includes bibliographical references and index.Analytical Techniques for Atmospheric Measurement; Contents; Preface; Acknowledgements; Contributors; 1 Field Measurements of Atmospheric Composition; 1.1 The role of field measurements in atmospheric science; 1.1.1 Our changing atmosphere; 1.1.2 The importance of atmospheric chemistry; 1.1.3 Why field measurements of atmospheric composition are important; 1.1.4 The challenges of field measurements in the atmosphere; 1.1.5 Comparison with calculations from numerical models; 1.2 Scope, structure and content of this book; 1.2.1 Scope and structure of the book1.2.2 Previous texts describing methods for determining atmospheric composition1.2.3 Content of the book: Summary of individual chapters; 1.3 The measurement of atmospheric composition; 1.3.1 Units of concentration; 1.3.2 Selection criteria for instruments; 1.3.3 Instruments organised by classification of trace species; 1.3.4 Instruments organised by analytical technique; 1.4 Instrument platforms; 1.4.1 Ground-based platforms, including vehicle-based mobile laboratories; 1.4.2 Ship-borne platforms; 1.4.3 Balloon-borne platforms; 1.4.4 Aircraft-borne platforms1.4.5 Commercial passenger or freight aircraft platforms1.4.6 Uninhabited aerial vehicles; 1.4.7 Rocket platforms; 1.4.8 Satellites and other space-borne platforms; 1.5 Analytical methods not covered elsewhere in this book; 1.5.1 LIDAR methods; 1.5.2 Matrix isolation electron spin resonance (MIESR); 1.5.3 Solid-state and electrochemical sensors; 1.5.4 Far-infrared and microwave absorption and emission spectroscopy; 1.5.5 Measurement of fluxes of trace gases and aerosols; 1.6 Quality assurance and quality control; 1.6.1 Precision and accuracy; 1.6.2 Calibration of instruments1.6.3 Intercomparison of instruments1.7 Atmospheric chemistry and policy; 1.7.1 Health effects and environmental policy; 1.7.2 Monitoring networks; 1.8 Major field campaigns for measurement of atmospheric composition; 1.8.1 The design of field campaigns; 1.8.2 Case study of a field campaign: The 2002 NAMBLEX campaign; 1.9 Instrumented chambers for the study of simulated atmospheres; 1.10 Future directions; Acknowledgements; Further reading; References; 2 Infrared Absorption Spectroscopy; 2.1 Introduction; 2.2 Fundamentals of infrared absorption spectroscopy2.2.1 Electromagnetic radiation in the infrared2.2.2 Molecular interactions in the IR; 2.2.3 Vibrational bands and rotational lines in the IR; 2.2.4 Vibrational bands of atmospheric spectral features in the mid-IR; 2.2.5 Vibrational-rotational spectral line intensities; 2.3 Quantitative trace gas measurements employing IR absorption spectroscopy; 2.3.1 IR absorption lineshapes and linewidths; 2.3.2 Beer-Lambert absorption law and absorbance; 2.4 Trace gases in the atmosphere; 2.5 Measurement approaches employing IR absorption spectroscopy; 2.5.1 In situ measurements; 2.5.2 Remote measurements2.6 Advances in atmospheric studies employing IR absorption measurements and future directionsAlmost all of the breakthroughs in understanding the atmosphere have been initiated by field observations, using a range of instrumental techniques. Developing or deploying instruments to make further observations demands a thorough understanding of the chemical and spectroscopic principles on which such measurements depend.Written as an authoritative guide to the techniques of instrumental measurement for the atmospheric scientist, research student or undergraduate, Analytical Techniques for Atmospheric Measurement focuses on the instruments used to make real time measurements of atmoAtmosphereMeasurementMeteorological instrumentsWeather forecastingAtmosphereMeasurement.Meteorological instruments.Weather forecasting.551.511028551.5110287Heard Dwayne E905794MiAaPQMiAaPQMiAaPQBOOK9910830137003321Analytical techniques for atmospheric measurement2025994UNINA13219nam 2204297z- 450 991055767210332120210501(CKB)5400000000044784(oapen)https://directory.doabooks.org/handle/20.500.12854/68635(oapen)doab68635(oapen)68635(EXLCZ)99540000000004478420202105d2020 |y 0engurmn|---annantxtrdacontentcrdamediacrrdacarrierSensors for Gait, Posture, and Health Monitoring Volume 2Basel, SwitzerlandMDPI - Multidisciplinary Digital Publishing Institute20201 online resource (392 p.)3-03936-344-1 3-03936-345-X In recent years, many technologies for gait and posture assessments have emerged. Wearable sensors, active and passive in-house monitors, and many combinations thereof all promise to provide accurate measures of physical activity, gait, and posture parameters. Motivated by market projections for wearable technologies and driven by recent technological innovations in wearable sensors (MEMs, electronic textiles, wireless communications, etc.), wearable health/performance research is growing rapidly and has the potential to transform future healthcare from disease treatment to disease prevention. The objective of this Special Issue is to address and disseminate the latest gait, posture, and activity monitoring systems as well as various mathematical models/methods that characterize mobility functions. This Special Issue focuses on wearable monitoring systems and physical sensors, and its mathematical models can be utilized in varied environments under varied conditions to monitor health and performanceHumanitiesbicsscSocial interactionbicsscHistorybicsscSocial and ethical issuesbicssc3-axis force sensorabductionaccelerationacceleration signalaccelerometeraccelerometersaccelerometryaccidental fallsAchilles tendonActiGraphadaptabilityadolescentsadultsadverse post-operative outcomeagingAlzheimer's diseaseangular velocityankle reaching taskANOVA analysisanterior cruciate ligamentappropriate mother waveletarch indexartificial neural networkasymmetryat-home monitoringautocorrelationautoencodersautomated assessmentautomatic coachingbatteryless strain sensorbiaxial optical fiber sensorbiogeography-based optimizationbiomechanic measurement tasksbiomechanical gait featuresbiomechanical gait variable estimationbiomechanicsbiometricsbipedal locomotioncadencecalibrationcalluscenter of masscenter of pressure (COP)cerebral palsychair standchildrenclassical styleclassificationclinicalcognitive frailtycognitive-motor impairmentcomplementary filterconcussionconductive textileconvolutional neural networkcross-country skiingdeep learningdehydrationdiagnosticdistributed compressed sensingdomestic environmentdual task walkingdynamic time warpinge-Health applicationEcoflexeHealthelderly people monitoringelectromyographyelectrostatic field sensingensemble classifiersensemble methodequivalent speedESOQ-2exergamefall detectionfall detection systemfall preventionfall riskfall risk assessmentfalls in healthy elderlyfalls in the elderlyfast Fourier transform (FFT)feature extractionfeedback technologyfine-wire intramuscular EMG electrodeflat footflexible sensorfoot insolesfoot plantar center of pressureforce distributionforce sensitive resistorsforce sensorsforce-varying muscle contractionfrailtyfrailty predictionfree-livingfunctional activityfunctional declinefusion datafuzzy logicgaitgait analysisgait classificationgait event detectiongait eventsgait measurementgait patterngait recognitiongait rehabilitationgeriatric assessmentground reaction force (GRF)ground reaction forcesgyroscopegyroscopeshallux abductus valgushand trackinghandgrip forcehaptic cuehealth and well-beinghealth monitoringhemiparetichemiplegic gaithigh heelhigh heelshumanhuman activity recognitionhuman computer interfacehuman daily activityhuman fall detectionhuman gait recognitionhuman kinematicshuman motion measurementimagingimpaired gait classificationIMUIMU sensorsinertial and magnetic sensorsinertial gait variableinertial measurement unitinertial measurement unitsinertial motion units (IMUs)inertial sensorinertial sensorsinjury preventioninsoleinsolesinstrumented trail-making taskintelligent surveillance systemsIoTjoint instabilityjoint momentjoint sparse representation classificationKinectkinematicskineticskneeknee damping controllinear mixed modellocomotionlong short-term memorylow-cost instrumented insoleslower limb locomotion activitylower limb prosthesislower limb prostheticsmachine learningmachine learning algorithmsMETmicro electro mechanical systems (MEMS)Microsoft Kinectmoderate-to-vigorous activitymotionmotion analysismotion capturemotion parametersmotor controlmotor planning errormotorcyclingmotorized walkermovement controlmovement disordersMR dampermulti-objective optimizationmulti-sensor gait classificationmultiplexed fiber Bragg gratingsmuscle contractionsmuscle contributionsn/aneural networksneurological disordersneurorehabilitationnon-human primate modelnondestructivenonlinearnonlinear analysisobesityolder adultson-line EM algorithmoperating rangeosteoarthritisoutlier detectionParkinson's diseaseParkinson's disease (PD)Parkinson's Diseasespartial weight loadingpattern recognitionPDMSpeak tibial accelerationPedometerphase difference anglephysical activityphysical functionphysical performance testphysical rehabilitationpiezoelectric materialplantar pressurepostural controlpostural instability and gait difficulty (PIGD)postural stabilityposturepowerpre-frailpropulsionproximal phalanx of the halluxquantifying socket fitreal-time feedbackreal-time monitoringregularityrehabilitationrehabilitation exerciserelative movementrelative powerreliabilityrepeatabilityresonant frequency modulationRGB-depthRGB-Depthrunningrunning velocitysafety and securityscanning laser rangefinders (SLR), GAITRitesedentary behaviorself-adaptationself-assessmentself-tuning triple threshold algorithmsemi-Markov modelsemi-unsupervisedsensor fusionsensorsshear and plantar pressure sensorshear stressshoesignal processingsit to stand transfersit-to-stand trainingskating stylesmart canesmart footwearsmart shoesmartphonesmartphone based assessmentssmartphonesspatiotemporal parametersspeedsports analyticsstatistics studystep countingstep detectionstep lengthStep-detectionstepsstride lengthstrokestroke patientssupervised learningsurface electromyographysweat ratesweat sensorsymmetrytelemedicinetelemonitoring of gaittelerehabilitationtemporal parameterstendinopathytotal knee arthroplastytrans-femoral amputeetransfemoral prosthesistransition matricestraumatic spinal cord injurytremor dominant (TD)triplet Markov modeltrunk movementTUGultrasonographyUPDRSUPDRS tasksuser intent recognitionvalgusvalidationvalidityvariabilityvelocityvelocity and stride-lengthvestibular exercisesvirtual therapyVO2VO2netwalkwalk detectionwalkingwavelet scale selectionwavelet transformwavelet transform (WT)wavelet-selection criteriawearablewearable devicewearable electronic deviceswearable sensorwearable sensorswearable/inertial sensorswearablesweight-bearingwireless strain sensorwomanHumanitiesSocial interactionHistorySocial and ethical issuesLockhart Thurmonedt1287876Lockhart ThurmonothBOOK9910557672103321Sensors for Gait, Posture, and Health Monitoring Volume 23020511UNINA