29 resultados para mittaus


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Airway inflammation is a key feature of bronchial asthma. In asthma management, according to international guidelines, the gold standard is anti-inflammatory treatment. Currently, only conventional procedures (i.e., symptoms, use of rescue medication, PEF-variability, and lung function tests) were used to both diagnose and evaluate the results of treatment with anti-inflammatory drugs. New methods for evaluation of degree of airway inflammation are required. Nitric oxide (NO) is a gas which is produced in the airways of healthy subjects and especially produced in asthmatic airways. Measurement of NO from the airways is possible, and NO can be measured from exhaled air. Fractional exhaled NO (FENO) is increased in asthma, and the highest concentrations are measured in asthmatic patients not treated with inhaled corticosteroids (ICS). Steroid-treated patients with asthma had levels of FENO similar to those of healthy controls. Atopic asthmatics had higher levels of FENO than did nonatopic asthmatics, indicating that level of atopy affected FENO level. Associations between FENO and bronchial hyperresponsiveness (BHR) occur in asthma. The present study demonstrated that measurement of FENO had good reproducibility, and the FENO variability was reasonable both short- and long-term in both healthy subjects and patients with respiratory symptoms or asthma. We demonstrated the upper normal limit for healthy subjects, which was 12 ppb calculated from two different healthy study populations. We showed that patients with respiratory symptoms who did not fulfil the diagnostic criteria of asthma had FENO values significantly higher than in healthy subjects, but significantly lower than in asthma patients. These findings suggest that BHR to histamine is a sensitive indicator of the effect of ICS and a valuable tool for adjustment of corticosteroid treatment in mild asthma. The findings further suggest that intermittent treatment periods of a few weeks’ duration are insufficient to provide long-term control of BHR in patients with mild persistent asthma. Moreover, during the treatment with ICS changes in BHR and changes in FENO were associated. FENO level was associated with BHR measured by a direct (histamine challenge) or indirect method (exercise challenge) in steroid-naïve symptomatic, non-smoking asthmatics. Although these associations could be found only in atopics, FENO level in nonatopic asthma was also increased. It can thus be concluded that assessment of airway inflammation by measuring FENO can be useful for clinical purposes. The methodology of FENO measurements is now validated. Especially in those patients with respiratory symptoms who did not fulfil the diagnostic criteria of asthma, FENO measurement can aid in treatment decisions. Serial measurement of FENO during treatment with ICS can be a complementary or an alternative method for evaluation in patients with asthma.

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This thesis focuses on the issue of testing sleepiness quantitatively. The issue is relevant to policymakers concerned with traffic- and occupational safety; such testing provides a tool for safety legislation and -surveillance. The findings of this thesis provide guidelines for a posturographic sleepiness tester. Sleepiness ensuing from staying awake merely 17 h impairs our performance as much as the legally proscribed blood alcohol concentration 0.5 does. Hence, sleepiness is a major risk factor in transportation and occupational accidents. The lack of convenient, commercial sleepiness tests precludes testing impending sleepiness levels contrary to simply breath testing for alcohol intoxication. Posturography is a potential sleepiness test, since clinical diurnal balance testing suggests the hypothesis that time awake could be posturographically estimable. Relying on this hypothesis this thesis examines posturographic sleepiness testing for instrumentation purposes. Empirical results from 63 subjects for whom we tested balance with a force platform during wakefulness for maximum 36 h show that sustained wakefulness impairs balance. The results show that time awake is posturographically estimable with 88% accuracy and 97% precision which validates our hypothesis. Results also show that balance scores tested at 13:30 hours serve as a threshold to detect excessive sleepiness. Analytical results show that the test length has a marked effect on estimation accuracy: 18 s tests suffice to identify sleepiness related balance changes, but trades off some of the accuracy achieved with 30 s tests. The procedure to estimate time awake relies on equating the subject s test score to a reference table (comprising balance scores tested during sustained wakefulness, regressed against time awake). Empirical results showed that sustained wakefulness explains 60% of the diurnal balance variations, whereas the time of day explains 40% of the balance variations. The latter fact implies that time awake estimations also must rely on knowing the local times of both test and reference scores.

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The Earth's ecosystems are protected from the dangerous part of the solar ultraviolet (UV) radiation by stratospheric ozone, which absorbs most of the harmful UV wavelengths. Severe depletion of stratospheric ozone has been observed in the Antarctic region, and to a lesser extent in the Arctic and midlatitudes. Concern about the effects of increasing UV radiation on human beings and the natural environment has led to ground based monitoring of UV radiation. In order to achieve high-quality UV time series for scientific analyses, proper quality control (QC) and quality assurance (QA) procedures have to be followed. In this work, practices of QC and QA are developed for Brewer spectroradiometers and NILU-UV multifilter radiometers, which measure in the Arctic and Antarctic regions, respectively. These practices are applicable to other UV instruments as well. The spectral features and the effect of different factors affecting UV radiation were studied for the spectral UV time series at Sodankylä. The QA of the Finnish Meteorological Institute's (FMI) two Brewer spectroradiometers included daily maintenance, laboratory characterizations, the calculation of long-term spectral responsivity, data processing and quality assessment. New methods for the cosine correction, the temperature correction and the calculation of long-term changes of spectral responsivity were developed. Reconstructed UV irradiances were used as a QA tool for spectroradiometer data. The actual cosine correction factor was found to vary between 1.08-1.12 and 1.08-1.13. The temperature characterization showed a linear temperature dependence between the instrument's internal temperature and the photon counts per cycle. Both Brewers have participated in international spectroradiometer comparisons and have shown good stability. The differences between the Brewers and the portable reference spectroradiometer QASUME have been within 5% during 2002-2010. The features of the spectral UV radiation time series at Sodankylä were analysed for the time period 1990-2001. No statistically significant long-term changes in UV irradiances were found, and the results were strongly dependent on the time period studied. Ozone was the dominant factor affecting UV radiation during the springtime, whereas clouds played a more important role during the summertime. During this work, the Antarctic NILU-UV multifilter radiometer network was established by the Instituto Nacional de Meteorogía (INM) as a joint Spanish-Argentinian-Finnish cooperation project. As part of this work, the QC/QA practices of the network were developed. They included training of the operators, daily maintenance, regular lamp tests and solar comparisons with the travelling reference instrument. Drifts of up to 35% in the sensitivity of the channels of the NILU-UV multifilter radiometers were found during the first four years of operation. This work emphasized the importance of proper QC/QA, including regular lamp tests, for the multifilter radiometers also. The effect of the drifts were corrected by a method scaling the site NILU-UV channels to those of the travelling reference NILU-UV. After correction, the mean ratios of erythemally-weighted UV dose rates measured during solar comparisons between the reference NILU-UV and the site NILU-UVs were 1.007±0.011 and 1.012±0.012 for Ushuaia and Marambio, respectively, when the solar zenith angle varied up to 80°. Solar comparisons between the NILU-UVs and spectroradiometers showed a ±5% difference near local noon time, which can be seen as proof of successful QC/QA procedures and transfer of irradiance scales. This work also showed that UV measurements made in the Arctic and Antarctic can be comparable with each other.

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Boron neutron capture therapy (BNCT) is a radiotherapy that has mainly been used to treat malignant brain tumours, melanomas, and head and neck cancer. In BNCT, the patient receives an intravenous infusion of a 10B-carrier, which accumulates in the tumour area. The tumour is irradiated with epithermal or thermal neutrons, which result in a boron neutron capture reaction that generates heavy particles to damage tumour cells. In Finland, boronophenylalanine fructose (BPA-F) is used as the 10B-carrier. Currently, the drifting of boron from blood to tumour as well as the spatial and temporal accumulation of boron in the brain, are not precisely known. Proton magnetic resonance spectroscopy (1H MRS) could be used for selective BPA-F detection and quantification as aromatic protons of BPA resonate in the spectrum region, which is clear of brain metabolite signals. This study, which included both phantom and in vivo studies, examined the validity of 1H MRS as a tool for BPA detection. In the phantom study, BPA quantification was studied at 1.5 and 3.0 T with single voxel 1H MRS, and at 1.5 T with magnetic resonance imaging (MRSI). The detection limit of BPA was determined in phantom conditions at 1.5 T and 3.0 T using single voxel 1H MRS, and at 1.5 T using MRSI. In phantom conditions, BPA quantification accuracy of ± 5% and ± 15% were achieved with single voxel MRS using external or internal (internal water signal) concentration references, respectively. For MRSI, a quantification accuracy of <5% was obtained using an internal concentration reference (creatine). The detection limits of BPA in phantom conditions for the PRESS sequence were 0.7 (3.0 T) and 1.4 mM (1.5 T) mM with 20 × 20 × 20 mm3 single voxel MRS, and 1.0 mM with acquisition-weighted MRSI (nominal voxel volume 10(RL) × 10(AP) × 7.5(SI) mm3), respectively. In the in vivo study, an MRSI or single voxel MRS or both was performed for ten patients (patients 1-10) on the day of BNCT. Three patients had glioblastoma multiforme (GBM), and five patients had a recurrent or progressing GBM or anaplastic astrocytoma gradus III, and two patients had head and neck cancer. For nine patients (patients 1-9), MRS/MRSI was performed 70-140 min after the second irradiation field, and for one patient (patient 10), the MRSI study began 11 min before the end of the BPA-F infusion and ended 6 min after the end of the infusion. In comparison, single voxel MRS was performed before BNCT, for two patients (patients 3 and 9), and for one patient (patient 9), MRSI was performed one month after treatment. For one patient (patient 10), MRSI was performed four days before infusion. Signals from the tumour spectrum aromatic region were detected on the day of BNCT in three patients, indicating that in favourable cases, it is possible to detect BPA in vivo in the patient’s brain after BNCT treatment or at the end of BPA-F infusion. However, because the shape and position of the detected signals did not exactly match the BPA spectrum detected in the in vitro conditions, assignment of BPA is difficult. The opportunity to perform MRS immediately after the end of BPA-F infusion for more patients is necessary to evaluate the suitability of 1H MRS for BPA detection or quantification for treatment planning purposes. However, it could be possible to use MRSI as criteria in selecting patients for BNCT.

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The need for mutual recognition of accurate measurement results made by competent laboratories has been very widely accepted at the international level e.g., at the World Trade Organization. A partial solution to the problem was made by the International Committee for Weights and Measures (CIPM) in setting up the Mutual Recognition Arrangement (CIPM MRA), which was signed by National Metrology Institutes (NMI) around the world. The core idea of the CIPM MRA is to have global arrangements for the mutual acceptance of the calibration certificates of National Metrology Institutes. The CIPM MRA covers all the fields of science and technology for which NMIs have their national standards. The infrastructure for the metrology of the gaseous compounds carbon monoxide (CO), nitrogen monoxide (NO), nitrogen dioxide (NO2), sulphur dioxide (SO2) and ozone (O3) has been constructed at the national level at the Finnish Meteorological Institute (FMI). The calibration laboratory at the FMI was constructed for providing calibration services for air quality measurements and to fulfil the requirements of a metrology laboratory. The laboratory successfully participated, with good results, in the first comparison project, which was aimed at defining the state of the art in the preparation and analysis of the gas standards used by European metrology institutes and calibration laboratories in the field of air quality. To confirm the competence of the laboratory, the international external surveillance study was conducted at the laboratory. Based on the evidence, the Centre for Metrology and Accreditation (MIKES) designated the calibration laboratory at the Finnish Meteorological Institute (FMI) as a National Standard Laboratory in the field of air quality. With this designation, the MIKES-FMI Standards Laboratory became a member of CIPM MRA, and Finland was brought into the internationally-accepted forum in the field of gas metrology. The concept of ‘once measured - everywhere accepted’ is the leading theme of the CIPM MRA. The calibration service of the MIKES-FMI Standards Laboratory realizes the SI traceability system for the gas components, and is constructed to enable it to meet the requirements of the European air quality directives. In addition, all the relevant uncertainty sources that influence the measurement results have been evaluated, and the uncertainty budgets for the measurement results have been created.

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Volatile organic compounds (VOCs) are emitted into the atmosphere from natural and anthropogenic sources, vegetation being the dominant source on a global scale. Some of these reactive compounds are deemed major contributors or inhibitors to aerosol particle formation and growth, thus making VOC measurements essential for current climate change research. This thesis discusses ecosystem scale VOC fluxes measured above a boreal Scots pine dominated forest in southern Finland. The flux measurements were performed using the micrometeorological disjunct eddy covariance (DEC) method combined with proton transfer reaction mass spectrometry (PTR-MS), which is an online technique for measuring VOC concentrations. The measurement, calibration, and calculation procedures developed in this work proved to be well suited to long-term VOC concentration and flux measurements with PTR-MS. A new averaging approach based on running averaged covariance functions improved the determination of the lag time between wind and concentration measurements, which is a common challenge in DEC when measuring fluxes near the detection limit. The ecosystem scale emissions of methanol, acetaldehyde, and acetone were substantial. These three oxygenated VOCs made up about half of the total emissions, with the rest comprised of monoterpenes. Contrary to the traditional assumption that monoterpene emissions from Scots pine originate mainly as evaporation from specialized storage pools, the DEC measurements indicated a significant contribution from de novo biosynthesis to the ecosystem scale monoterpene emissions. This thesis offers practical guidelines for long-term DEC measurements with PTR-MS. In particular, the new averaging approach to the lag time determination seems useful in the automation of DEC flux calculations. Seasonal variation in the monoterpene biosynthesis and the detailed structure of a revised hybrid algorithm, describing both de novo and pool emissions, should be determined in further studies to improve biological realism in the modelling of monoterpene emissions from Scots pine forests. The increasing number of DEC measurements of oxygenated VOCs will probably enable better estimates of the role of these compounds in plant physiology and tropospheric chemistry. Keywords: disjunct eddy covariance, lag time determination, long-term flux measurements, proton transfer reaction mass spectrometry, Scots pine forests, volatile organic compounds

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Lakes serve as sites for terrestrially fixed carbon to be remineralized and transferred back to the atmosphere. Their role in regional carbon cycling is especially important in the Boreal Zone, where lakes can cover up to 20% of the land area. Boreal lakes are often characterized by the presence of a brown water colour, which implies high levels of dissolved organic carbon from the surrounding terrestrial ecosystem, but the load of inorganic carbon from the catchment is largely unknown. Organic carbon is transformed to methane (CH4) and carbon dioxide (CO2) in biological processes that result in lake water gas concentrations that increase above atmospheric equilibrium, thus making boreal lakes as sources of these important greenhouse gases. However, flux estimates are often based on sporadic sampling and modelling and actual flux measurements are scarce. Thus, the detailed temporal flux dynamics of greenhouse gases are still largely unknown. ----- One aim here was to reveal the natural dynamics of CH4 and CO2 concentrations and fluxes in a small boreal lake. The other aim was to test the applicability of a measuring technique for CO2 flux, i.e. the eddy covariance (EC) technique, and a computational method for estimation of primary production and community respiration, both commonly used in terrestrial research, in this lake. Continuous surface water CO2 concentration measurements, also needed in free-water applications to estimate primary production and community respiration, were used over two open water periods in a study of CO2 concentration dynamics. Traditional methods were also used to measure gas concentration and fluxes. The study lake, Valkea-Kotinen, is a small, humic, headwater lake within an old-growth forest catchment with no local anthropogenic disturbance and thus possible changes in gas dynamics reflect the natural variability in lake ecosystems. CH4 accumulated under the ice and in the hypolimnion during summer stratification. The surface water CH4 concentration was always above atmospheric equilibrium and thus the lake was a continuous source of CH4 to the atmosphere. However, the annual CH4 fluxes were small, i.e. 0.11 mol m-2 yr-1, and the timing of fluxes differed from that of other published estimates. The highest fluxes are usually measured in spring after ice melt but in Lake Valkea-Kotinen CH4 was effectively oxidised in spring and highest effluxes occurred in autumn after summer stratification period. CO2 also accumulated under the ice and the hypolimnetic CO2 concentration increased steadily during stratification period. The surface water CO2 concentration was highest in spring and in autumn, whereas during the stable stratification it was sometimes under atmospheric equilibrium. It showed diel, daily and seasonal variation; the diel cycle was clearly driven by light and thus reflected the metabolism of the lacustrine ecosystem. However, the diel cycle was sometimes blurred by injection of hypolimnetic water rich in CO2 and the surface water CO2 concentration was thus controlled by stratification dynamics. The highest CO2 fluxes were measured in spring, autumn and during those hypolimnetic injections causing bursts of CO2 comparable with the spring and autumn fluxes. The annual fluxes averaged 77 (±11 SD) g C m-2 yr-1. In estimating the importance of the lake in recycling terrestrial carbon, the flux was normalized to the catchment area and this normalized flux was compared with net ecosystem production estimates of -50 to 200 g C m-2 yr-1 from unmanaged forests in corresponding temperature and precipitation regimes in the literature. Within this range the flux of Lake Valkea-Kotinen yielded from the increase in source of the surrounding forest by 20% to decrease in sink by 5%. The free water approach gave primary production and community respiration estimates of 5- and 16-fold, respectively, compared with traditional bottle incubations during a 5-day testing period in autumn. The results are in parallel with findings in the literature. Both methods adopted from the terrestrial community also proved useful in lake studies. A large percentage of the EC data was rejected, due to the unfulfilled prerequisites of the method. However, the amount of data accepted remained large compared with what would be feasible with traditional methods. Use of the EC method revealed underestimation of the widely used gas exchange model and suggests simultaneous measurements of actual turbulence at the water surface with comparison of the different gas flux methods to revise the parameterization of the gas transfer velocity used in the models.

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Tutkimuksessa tarkasteltiin inkerinsuomalaisten muuttoa edeltävien odotusten toteutumisen yhteyttä psykologiseen sopeutumiseen. Psykologisen sopeutumisen indikaattorina käytettiin elämään tyytyväisyyttä. Tutkimuksen tavoitteena oli tuoda esille sopeutumista prosessina, joka alkaa jo ennen muuttoa (pre-akkulturaatio) sekä luoda uutta tietoa paluumuuttajien odotusten toteutumisen vaikutuksesta sopeutumiseen. Toteutuneiden odotusten tutkimuskenttä muodostaa oman tutkimusperinteensä, jonka piirissä on pyritty selvittämään odotusten ja kokemusten välisen suhteen yhteyttä tyytyväisyyteen eri konteksteissa. Akkulturaatiotutkimuksissa korostetaan, että maahanmuuttajien epärealistiset odotukset muuton jälkeisestä elämästä vaikeuttavat sopeutumisprosessia. Tässä pitkittäistutkimuksessa toteutuneiden odotusten yhteyttä elämään tyytyväisyyteen tarkasteltiin paluumuuttokontekstissa kolmen vaihtoehtoisen mallin avulla. Ideaalitaso-mallin mukaan odotusten toteutuminen nostaa elämään tyytyväisyyttä ja toteutumatta jääminen laskee sitä. Ei vahvistusta –mallissa elämään tyytyväisyyden oletetaan olevan korkeimmillaan silloin, kun kokemukset ylittävät odotukset. Vain kokemus –mallin mukaan hyvät kokemukset muuton jälkeen nostavat elämään tyytyväisyyttä odotusten tasosta riippumatta. Malleja testattiin erikseen sosio-psyykkiseen hyvinvointiin ja ammatillis-taloudelliseen hyvinvointiin liittyvien odotusten suhteen. Perhe- ja ystäväsuhteiden laadun sekä ammatillisten mahdollisuuksien ja taloudellisen tilanteen tason on osoitettu olevan yhteydessä elämään tyytyväisyyteen. Maahanmuuttajien odotuksien on niin ikään todettu koskevan näitä elämänlaatua indikoivia osa-alueita. Tutkimuksen aineisto koostui etniseltä taustaltaan inkerinsuomalaisista (N=141) paluumuuttajista. Lähtökohta-aineisto kerättiin Venäjällä ennen muuttoa ja seurantavaihe toteutettiin noin vuosi muuton jälkeen. Aineiston analysoinnissa huomioitiin ajankohtainen metodologiakeskustelu ja kahden muuttujan välisen suhteen vaikutusta riippuvaan muuttujaan tarkasteltiin polynomisen regressioanalyysin ja vastepintamallinnuksen avulla. Näin tehden voitiin välttää toteutuneiden odotusten tutkimuksille tyypilliset mittaus- ja metodologiaongelmat: retrospektiivisyys, erotuspistemäärien käyttö ja lineaaristen mallien käyttö. Tutkimuksen aineisto tuki ei vahvistusta –mallin mukaista yhteyttä odotusten toteutumisen ja elämään tyytyväisyyden välillä. Yhteyttä voitiin tarkastella vain sosio-psyykkiseen hyvinvointiin liittyvien odotusten ja kokemusten suhteen, koska ammatillis-taloudelliseen hyvinvointiin liittyvät odotukset, kokemukset tai niistä muodostetut interaktiotermit eivät polynomisen regressioanalyysin tulosten mukaan olleet yhteydessä elämään tyytyväisyyteen tilastollisesti merkitsevästi. Paluumuuttajien elämään tyytyväisyys oli korkeimmillaan silloin, kun sosio-psyykkiseen hyvinvointiin liittyvät kokemukset ylittivät odotukset. Odotusten ja kokemusten välisen eroavuuden suunnalla siis on tämän tutkimuksen tulosten perusteella merkitystä psykologisen sopeutumisen kannalta. Tutkimuksen tulos tukee näkemystä, jonka mukaan maahanmuuttajien sopeutumisprosessia tulisi tarkastella pitkittäisasetelmassa muuttoa edeltävä vaihe huomioiden. Lisäksi tutkimus avaa yhden näkökulman siihen, minkä elämän osa-alueiden laatu on paluumuuttajien sopeutumisen kannalta merkityksellistä.

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Modern elementary particle physics is based on quantum field theories. Currently, our understanding is that, on the one hand, the smallest structures of matter and, on the other hand, the composition of the universe are based on quantum field theories which present the observable phenomena by describing particles as vibrations of the fields. The Standard Model of particle physics is a quantum field theory describing the electromagnetic, weak, and strong interactions in terms of a gauge field theory. However, it is believed that the Standard Model describes physics properly only up to a certain energy scale. This scale cannot be much larger than the so-called electroweak scale, i.e., the masses of the gauge fields W^+- and Z^0. Beyond this scale, the Standard Model has to be modified. In this dissertation, supersymmetric theories are used to tackle the problems of the Standard Model. For example, the quadratic divergences, which plague the Higgs boson mass in the Standard model, cancel in supersymmetric theories. Experimental facts concerning the neutrino sector indicate that the lepton number is violated in Nature. On the other hand, the lepton number violating Majorana neutrino masses can induce sneutrino-antisneutrino oscillations in any supersymmetric model. In this dissertation, I present some viable signals for detecting the sneutrino-antisneutrino oscillation at colliders. At the e-gamma collider (at the International Linear Collider), the numbers of the electron-sneutrino-antisneutrino oscillation signal events are quite high, and the backgrounds are quite small. A similar study for the LHC shows that, even though there are several backrounds, the sneutrino-antisneutrino oscillations can be detected. A useful asymmetry observable is introduced and studied. Usually, the oscillation probability formula where the sneutrinos are produced at rest is used. However, here, we study a general oscillation probability. The Lorentz factor and the distance at which the measurement is made inside the detector can have effects, especially when the sneutrino decay width is very small. These effects are demonstrated for a certain scenario at the LHC.

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Suoritusmittaus on yleisesti käytetty johdon ohjauskeino, jonka avulla yrityksen strategian ja tärkeimpien tavoitteiden toteutumista voidaan seurata. Pelkkä toteutuneen tulostason seuranta ei kuitenkaan riitä kehittämään yrityksen liiketoimintaa, vaan suoritusmittauksen tulosten tulisi heijastua myös yrityksen päivittäiseen toimintaan. Monesti suoritusmittausinformaatio on vain yrityksen ylemmän johdon käytettävissä, vaikka aiemmassa tutkimuksessa suoritusmittauksen hyödyt on havaittu selkeimmin niissä organisaatioissa, jotka ovat jalkauttaneet suoritusmittauksensa organisaation lattiatasolle asti. Mikäli lattiatason työntekijät kokevat suoritusmittauksen mahdollistavan paremman suoritustason, auttaa se koko organisaation suoritustason kehittämisessä. Tietotekniikassa tapahtuneet kehitysaskeleet, kuten BI-järjestelmien kehittyminen, ovat mahdollistaneet myös suoritusmittausjärjestelmien kehittymisen. Tässä tutkielmassa tarkastellaan BI-järjestelmän avulla toteutettua suoritusmittausta ja sen mahdollistavia vaikutuksia organisaation lattiatasolla. Tutkimus on luonteeltaan laadullinen, ja se toteutettiin toiminta-analyyttisena tapaustutkimuksena suomalaisessa vähittäiskauppaketjussa. Aineisto kerättiin puolistrukturoitujen teemahaastatteluiden ja täydellisesti osallistuvan havainnoinnin avulla. Case-yrityksen johto oli kehittänyt suoritusmittausjärjestelmän Qlikview BI-järjestelmän avulla ja jalkauttanut mittauksen organisaation alimmalle tasolle, eli yksittäisiin myymälöihin, päivittäisten suoritusmittausraporttien muodossa. Tutkimuksessa analysointiin aiemman kirjallisuuden pohjalta suoritusmittauksen suunnittelu-, kehitys- ja jalkautusprosessia sekä sitä, miten suoritusmittausta käytetään ja miten se koetaan yrityksen lattiatasolla. Tutkimuksessa havaittiin, että case-yrityksen tapauksessa suoritusmittaukseen käytettävän järjestelmän rooli oli suoritusmittauksen kehittämisvaiheessa tärkeämpi kuin aihealueen aiemmassa tutkimuksessa on esitetty. Suoritusmittauksen jalkauttamisvaiheessa BI-järjestelmän rooli oli kriittinen, sillä yhtä laajamittaisen suoritusmittauksen toteuttaminen ja raportoinnin automatisoiminen ei olisi ollut mahdollista ilman järjestelmän tukea. Aiemmin on esitetty, että lattiatason työntekijöiden tulisi osallistua suoritusmittareiden kehittämiseen, jotta niiden mahdollistavien ominaisuuksien esiintuominen helpottuisi, mutta case-yrityksessä suoritusmittaus koettiin pääosin mahdollistavaksi, vaikka mittaristo oli yrityksen johdon suunnittelema, ja käytetty järjestelmä diagnostinen. Mittaus koettiin mahdollistavana, sillä se oli helposti saatavilla ja työntekijät kokivat, että oma toiminta heijastuu suoraan suoritusmittareiden tuloksiin

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Kandidaatintyön tarkoituksena oli selvittää pienahitsin juuren kriittisyyttä. Työ oli saanut aiheen rakenneputki kokeiden yhteydessä tehdyistä havainnoista. Työssä tutustuttiin millaiset ovat pienahitsin mitoitus menetelmät ja tausta tutkimusta kuinka sitä sovelletaan käytäntöön suurlujuusteräksille. Työssä esitellään käytetyt tutkimusmenetelmät kuinka menetelmätriangulaatio saavutettiin. Tutkimuskysymyksenä oli hitsien kestävyyden mitoituksen riittävyys. Tutkimukset suoritettiin tarkastellen staattisesti kuormitettuja pienahitsejä. Pienahitsi kappaleista tehtiin laboratoriokoekappale ja FEM-laskentamalli joista vertailtiin tuloksia. Laboratoriokokeessa mittaus menetelmänä käytettiin DIC-mittausta, jolle voitiin tehdä jälkikäsittelyjä ja sieltä määrittää haluttuja datapisteitä. Laskennassa suurimmat jännityskeskittymät syntyivät hitsin kohdalle mutta vetokokeessa koekappaleeseen syntyi vauriot sularajalle ja vetokorvakkeen kiinnityshitsin rajaviivalle. Tällä kohtaa todettiin materiaalimalli riittämättömäksi, koska siihen ei ollut määritelty muutosvyöhykkeen parametreja.

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Opetushallituksen toteuttama laajasta raportista käy ilmi, että opetustyö koetaan henkisesti raskaana ja koettu stressi on yleisempää kuin muilla aloilla keskimäärin. Työssä viihtymistä heikentävät muun muassa fyysisen työympäristön puutteet, työtahti sekä työhön liittyvän stressin ja emotionaalisten paineiden kasvu. (Onnismaa 2010) Yhteiskunnassa vallitsevat nykyarvot tehokkuus, mittaus ja tuottavuus heijastuvat koulujen toimintaan väistämättä. Yhteiskunnalliset ilmiöt kuten oppilasaineksen muuttuminen muun muassa maahanmuuton ja kasvavien tuloerojen myötä kuormittavat nykypäivän opettajia uudella tavalla. Näiden ilmiöiden vaikutukset näkyvät kouluissa muun muassa käytöshäiriöinä, levottomuutena ja ahdistuneisuutena. (Syrjäläinen 2002) Tämän tutkimuksen tarkoituksena oli selvittää, millainen on turkulaisten luokan- ja erityisopettajien kokema psyykkisen työhyvinvoinnin taso. Tutkimuksen tarkoituksena oli kartoittaa opettajan työn stressitekijöitä, voimavaratekijöitä, työuupumuksen ja työn imun kokemista sekä keinoja stressin hallintaan ja sen vähentämiseksi. Tutkimuksen ulkopuolelle rajattiin työhyvinvointiin liittyvät tekijät kuten työturvallisuus ja koulu työyhteisönä. Tutkimus suoritettiin monimetodisesti. Määrällisinä mittareina käytettiin Maslach Burnout Inventorya, Työn imu –mittaria, Coping strategies for white collar workers -mittaria ja opettajan työn stressitekijät- mittaria. MBI:n ja Työn imun tulokset yhdistämällä luotiin työhyvinvointiprofiileja. Määrällisten mittareiden lisäksi käytettiin avoimia kysymyksiä muun muassa opettajien asenteiden ja kehitysehdotusten selvittämiseksi. Tämän tutkimuksen mukaan turkulaiset luokan- ja erityisopettajat voivat työssään suhteellisen hyvin. Aineistosta 78 % kuuluvat työssään hyvinvoivien klustereihin. Vakavasti uupuneita opettajia oli 4 % aineistosta. Eniten opettajan työssä stressaavaksi koettiin muun muassa kiire, melu, tietotekniikka, puutteelliset resurssit ja työn lisääntyneet vaatimukset. Stressiä opettajat vähentäisivät esimerkiksi lisäämällä oppilaiden tukemiseen käytettäviä resursseja sekä luokkakokoja pienentämällä. Stressinhallintaan opettajat käyttivät eniten ongelmanratkaisutyyppisiä keinoja, kuten laitan asiat tärkeysjärjestykseen ja yritän rauhoittua ja selvittää ongelmat. Voimavaroina tutkimukseen osallistuneet opettajat kokivat työyhteisön, toimivan kodin ja koulun välisen yhteistyön sekä oppilaat. Erityisesti tilanteet, joissa opettaja näki oppilaan kehittyvän ja koki auttavansa lasta kohti parempaa tulevaisuutta, antoivat voimaa.