871 resultados para Pleasant Touch
Resumo:
In dieser Arbeit wurde ein zweidimensionales Kopplungssystem zur Bestimmung von leichtflüchtigen bromierten und iodierten Kohlenwasserstoffen (LHKW) in Wasser- und Luftproben entwickelt. Hierzu wurde ein Gaschromatograph mit einem Elektroneneinfangdetektor (ECD) on-line an ein elementselektives induktiv gekoppeltes Plasma-Massenspektrometer (ICPMS) gekoppelt. Dieses extrem nachweisstarke Analysensystem ermöglicht eine simultane Identifizierung unbekannter und koeluierender Peaks sowie eine vereinfachte Quantifizierung mittels ICPMS. Beim Vergleich des GC-ECD-ICPMS-Kopplungssystem mit den herkömmlichen Detektionsmethoden wie dem Massenspektrometer mit Elektronenstoss-Ionisation und dem Atomemissionsdetektor mit mikrowelleninduziertem Plasma schnitt das neu entwickelte Kopplungssystem ausgezeichnet ab. Für die Isolierung der LHKW aus Meerwasserproben wurde die Purge und Trap Technik verwendet, Luftproben wurden durch Besaugung auf Adsorptionsmaterial angereichert. Im Rahmen des BMBF-Teilprojektes ReHaTrop/AFOHAL wurden im August 2001 und im April/Mai 2002 an der Deutschen Nordseeküste Probenahmen durchgeführt. Die Konzentrationen der Wasserproben lagen im Bereich von 0,1-158 ng L-1, die der Luftproben im Bereich von 0,01-470 pptv. Die Messungen bestätigen die wichtige Rolle von Makroalgen im Zusammenhang mit der Produktion von halogenierten Kohlenwasserstoffen. Die Konzentration der iodierten und bromierten Kohlenwasserstoffe war immer höher in Proben, die direkten Kontakt mit Makroalgen hatten. Inkubationsexperimente zeigen für verschiedene braune und grüne Makroalgen individuelle Fingerprints der biogenen LHKW-Produktion. Bei den Messungen an der Nordseeküste wurden Abhängigkeiten zwischen den LHKW und meteorologischen Parametern gefunden.
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The dramatic impact that vascular diseases have on human life quality and expectancy nowadays is the reason why both medical and scientific communities put great effort in discovering new and effective ways to fight vascular pathologies. Among the many different treatments, endovascular surgery is a minimally-invasive technique that makes use of X-ray fluoroscopy to obtain real-time images of the patient during interventions. In this context radiopaque biomaterials, i.e. materials able to absorb X-ray radiation, play a fundamental role as they are employed both to enhance visibility of devices during interventions and to protect medical staff and patients from X-ray radiations. Organic-inorganic hybrids are materials that combine characteristics of organic polymers with those of inorganic metal oxides. These materials can be synthesized via the sol-gel process and can be easily applied as thin coatings on different kinds of substrates. Good radiopacity of organic-inorganic hybrids has been recently reported suggesting that these materials might find applications in medical fields where X-ray absorption and visibility is required. The present PhD thesis aimed at developing and characterizing new radiopaque organic-inorganic hybrid materials that can find application in the vascular surgery field as coatings for the improvement of medical devices traceability as well as for the production of X-ray shielding objects and garments. Novel organic-inorganic hybrids based on different polyesters (poly-lactic acid and poly-ε-caprolactone) and polycarbonate (poly-trimethylene carbonate) as the polymeric phase and on titanium oxide as the inorganic phase were synthesized. Study of the phase interactions in these materials allowed to demonstrate that Class II hybrids (where covalent bonds exists between the two phases) can be obtained starting from any kind of polyester or polycarbonate, without the need of polymer pre-functionalization, thanks to the occurrence of transesterification reactions operated by inorganic molecules on ester and carbonate moieties. Polyester based hybrids were successfully coated via dip coating on different kinds of textiles. Coated textiles showed improved radiopacity with respect to the plain fabric while remaining soft to the touch. The hybrid was able to coat single fibers of the yarn rather than coating the yarn as a whole. Openings between yarns were maintained and therefore fabric breathability was preserved. Such coatings are promising for the production of light-weight garments for X-ray protection of medical staff during interventional fluoroscopy, which will help preventing pathologies that stem from chronic X-ray exposure. A means to increase the protection capacity of hybrid-coated fabrics was also investigated and implemented in this thesis. By synthesizing the hybrid in the presence of a suspension of radiopaque tantalum nanoparticles, PDMS-titania hybrid materials with tunable radiopacity were developed and were successfully applied as coatings. A solution for enhancing medical device radiopacity was also successfully investigated. High metal radiopacity was associated with good mechanical and protective properties of organic-inorganic hybrids in the form of a double-layer coating. Tantalum was employed as the constituent of the first layer deposited on sample substrates by means of a sputtering technique. The second layer was composed of a hybrid whose constituents are well-known biocompatible organic and inorganic components, such as the two polymers PCL and PDMS, and titanium oxide, respectively. The metallic layer conferred to the substrate good X-ray visibility. A correlation between radiopacity and coating thickness derived during this study allows to tailor radiopacity simply by controlling the metal layer sputtering deposition time. The applied metal deposition technique also permits easy shaping of the radiopaque layer, allowing production of radiopaque markers for medical devices that can be unambiguously identified by surgeons during implantation and in subsequent radiological investigations. Synthesized PCL-titania and PDMS-titania hybrids strongly adhered to substrates and show good biocompatibility as highlighted by cytotoxicity tests. The PDMS-titania hybrid coating was also characterized by high flexibility that allows it to stand large substrate deformations without detaching nor cracking, thus being suitable for application on flexible medical devices.
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2-Phenoxyethanol (ethylene glycol monophenyl ether) is used as solvent for cellulose acetate, dyes, inks, and resins; it is a synthetic intermediate in the production of plasticizers, pharmaceuticals, and fragrances. Phenoxyethanol is obtained industrially by reaction of phenol with ethylene oxide, in the presence of an homogeneous alkaline catalyst, typically sodium hydroxide. The yield is not higher than 95-96%, because of the formation of polyethoxylated compounds. However, the product obtained may not be acceptable for use in cosmetic preparations and fragrance formulations, due to presence of a pungent “metallic” odor which masks the pleasant odor of the ether, deriving from residual traces of the metallic catalyst. Here we report a study aimed at using ethylene carbonate in place of ethylene oxide as the reactant for phenoxyethanol synthesis; the use of carbonates as green nucleophilic reactants is an important issue in the context of a modern and sustainable chemical industry. Moreover, in the aim of developing a process which might adhere the principles of Green Chemistry, we avoided the use of solvents, and used heterogeneous basic catalysts. We carried out the reaction by using various molar ratios between phenol and ethylene carbonate, at temperatures ranging between 180 and 240°C, with a Na-mordenite catalyst. Under specific conditions, it was possible to obtain total phenol conversion with >99% yield to phenoxyethanol in few hours reaction time, using a moderate excess of ethylene carbonate. Similar results, but with longer reaction times, were obtained using a stoichiometric feed ratio of reactants. One important issue of the research was finding conditions under which the leaching of Na was avoided, and the catalyst could be separated and reused for several reaction batches.
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Negli ultimi anni si è assistito ad una radicale rivoluzione nell’ambito dei dispositivi di interazione uomo-macchina. Da dispositivi tradizionali come il mouse o la tastiera si è passati allo sviluppo di nuovi sistemi capaci di riconoscere i movimenti compiuti dall’utente (interfacce basate sulla visione o sull’uso di accelerometri) o rilevare il contatto (interfacce di tipo touch). Questi sistemi sono nati con lo scopo di fornire maggiore naturalezza alla comunicazione uomo-macchina. Le nuove interfacce sono molto più espressive di quelle tradizionali poiché sfruttano le capacità di comunicazione naturali degli utenti, su tutte il linguaggio gestuale. Essere in grado di riconoscere gli esseri umani, in termini delle azioni che stanno svolgendo o delle posture che stanno assumendo, apre le porte a una serie vastissima di interessanti applicazioni. Ad oggi sistemi di riconoscimento delle parti del corpo umano e dei gesti sono ampiamente utilizzati in diversi ambiti, come l’interpretazione del linguaggio dei segni, in robotica per l’assistenza sociale, per indica- re direzioni attraverso il puntamento, nel riconoscimento di gesti facciali [1], interfacce naturali per computer (valida alternativa a mouse e tastiera), ampliare e rendere unica l’esperienza dei videogiochi (ad esempio Microsoft 1 Introduzione Kinect© e Nintendo Wii©), nell’affective computing1 . Mostre pubbliche e musei non fanno eccezione, assumendo un ruolo cen- trale nel coadiuvare una tecnologia prettamente volta all’intrattenimento con la cultura (e l’istruzione). In questo scenario, un sistema HCI deve cercare di coinvolgere un pubblico molto eterogeneo, composto, anche, da chi non ha a che fare ogni giorno con interfacce di questo tipo (o semplicemente con un computer), ma curioso e desideroso di beneficiare del sistema. Inoltre, si deve tenere conto che un ambiente museale presenta dei requisiti e alcune caratteristiche distintive che non possono essere ignorati. La tecnologia immersa in un contesto tale deve rispettare determinati vincoli, come: - non può essere invasiva; - deve essere coinvolgente, senza mettere in secondo piano gli artefatti; - deve essere flessibile; - richiedere il minor uso (o meglio, la totale assenza) di dispositivi hardware. In questa tesi, considerando le premesse sopracitate, si presenta una sistema che può essere utilizzato efficacemente in un contesto museale, o in un ambiente che richieda soluzioni non invasive. Il metodo proposto, utilizzando solo una webcam e nessun altro dispositivo personalizzato o specifico, permette di implementare i servizi di: (a) rilevamento e (b) monitoraggio dei visitatori, (c) riconoscimento delle azioni.
Resumo:
Recognizing one’s body as separate from the external world plays a crucial role in detecting external events, and thus in planning adequate reactions to them. In addition, recognizing one’s body as distinct from others’ bodies allows remapping the experiences of others onto one’s sensory system, providing improved social understanding. In line with these assumptions, two well-known multisensory mechanisms demonstrated modulations of somatosensation when viewing both one’s own and someone else’s body: the Visual Enhancement of Touch (VET) and the Visual Remapping of Touch (VRT) effects. Vision of the body, in the former, and vision of the body being touched, in the latter, enhance tactile processing. The present dissertation investigated the multisensory nature of these mechanisms and their neural bases. Further experiments compared these effects for viewing one’s own body or viewing another person’s body. These experiments showed important differences in multisensory processing for one’s own body, and for other bodies, and also highlighted interactions between VET and VRT effects. The present experimental evidence demonstrated that a multisensory representation of one’s body – underlie by a high order fronto-parietal network - sends rapid modulatory feedback to primary somatosensory cortex, thus functionally enhancing tactile processing. These effects were highly spatially-specific, and depended on current body position. In contrast, vision of another person’s body can drive mental representations able to modulate tactile perception without any spatial constraint. Finally, these modulatory effects seem sometimes to interact with high order information, such as emotional content of a face. This allows one’s somatosensory system to adequately modulate perception of external events on the body surface, as a function of its interaction with the emotional state expressed by another individual.
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Contemporary French poet Yves Bonnefoy has always been attracted by English poetry, especially by Shakespeare’s work. Translating Shakespeare’s plays and sonnets has been a fundamental experience for him. The contact with a different culture, a different language and a different sort of poetry has been an important moment in his poetic experience. The dialogue between the French and the Elizabethan poet, which started in the 1950s, hasn't stopped yet and it offers some interesting perspectives to study Bonnefoy's work from a new point of view. Translation – which is first of all a poetic experience to him – is in fact the chance to get in touch with somebody else's poetry and to establish a dialogue with his poetic universe. Such a dialogue requires on the one hand an ‘ethic’ attitude on the translator's part, that is an attentive listening and a deep understanding of the original text. However, Bonnefoy has to create a new ‘poetic’ text in his own language. This is why the ‘seeds’ of his own poetry are also present in his translated texts, in which it is possible to clearly distinguish both the presence of the French poet’s own voice and his attempt to open his ‘speech’ to the specific quality of the Shakespearean poetry. On the other hand, such a deep contact with Shakespeare's work has changed the French poet, contributing to the development and maturity of his own poetry. Indeed, the Elizabethan poet is present in his work in different ways, in his critical essays as well as in his poems. Against this background, the aim of the present study is to define the complex dialogic forms and the osmotic relationships between the poetic experience and the experience of translation, which are considered two different moments of the same ontological research by the French poet.
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PURPOSE. Portal pressure is measured invasively as Hepatic Venous Pressure Gradient (HVPG) in the angiography room. Liver stiffness measured by Fibroscan was shown to correlate with HVPG values below 12 mmHg. This is not surprising, since in cirrhosis the increase of portal pressure is not directly linked with liver fibrosis and consequently to liver stiffness. We hypothesized that, given the spleen’s privileged location upstream to the whole portal system, splenic stiffness could provide relevant information about portal pressure. Aim of the study was to assess the relationship between liver and spleen stiffness measured by Virtual Touch™ (ARFI) and HVPG in cirrhotic patients. METHODS. 40 consecutive patients (30 males, mean age 62y, mean BMI=26, mean Child-Pugh A6, mean platelet count=92.000/mmc, 19 HCV+, 7 with ascites) underwent to ARFI stiffness measurement (10 valid measurements in right liver lobe both surface and centre, left lobe and 20 in the spleen) and HPVG, blindly to each other. Median ARFI values of 10 samplings on every liver area and of 20 samplings on spleen were calculated. RESULTS. Stiffness could be easily measured in all patients with ARFI, resulting a mean of 2,61±0,76, 2,5±0,62 and 2,55±0,66 m/sec in the liver areas and 3.3±0,5 m/s in the spleen. Median HPVG was 14 mmHg (range 5-27); 28 patients showed values ≥10 mmHg. A positive significant correlation was found between spleen stiffness and HPVG values (r=0.744, p<0.001). No significant correlation was found between all liver stiffness and HVPG (p>0,05). AUROC was calculated to test spleen stiffness ability in discriminating patients with HVPG ≥10. AUROC = 0.911 was obtained, with sensitivity of 69% and specificity of 91% at a cut-off of 3.26 m/s. CONCLUSION. Spleen stiffness measurement with ARFI correlates with HVPG in patients with cirrhosis, with a potential of identifying patients with clinically significant portal hypertension.
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Negli ultimi anni il mondo del mobile computing ha avuto una vera e propria crescita esponenziale grazie soprattutto all'entrata in scena dello smartphone. In realtà, per essere più precisi, è bene bene sottolineare che gli smartphone esistevano già da tempo ma il loro utilizzo era in particolar modo indirizzato ai professionisti per il quale era, ma continua ad essere tutt'oggi, un valido supporto in campo lavorativo, basti pensare all'importanza della comunicazione via e-mail e non solo. Seppur comunque fossero già presenti da tempo, i primi smartphone non godevano di certo di un touch-screen sofisticato come quello odierno nè in essi erano presenti funzionalità tipiche dei dispositivi che troviamo ad oggi sul mercato. Una svolta decisiva è stata segnata dall'introduzione dell'iPhone e successivamente dell'AppStore, grazie a questi la programmazione per i dispositivi mobile ha preso sempre più piede diventando un vero e proprio business. In un secondo momento alla programmazione nativa si affiancarono le tecnologie web. Questo mio lavoro di tesi si pone l'obiettivo di studiare in primis la struttura, caratteristiche e peculiarità del sistema operativo iOS e analizzare il framework PhoneGap al fine di riuscire a confrontarne i vari aspetti fondamentali anche attraverso lo sviluppo di piccole applicazioni. Così facendo, quindi scendendo nei dettagli di quelle che possono essere le differenze rilevanti, mi pongo l'obiettivo di valutarne relativi pro e contro al fine di fare una scelta del tutto personale tra iOS e PhoneGap.
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Lo studio si pone l'obiettivo di approfondire il tema della valutazione affettiva del setting odontoiatrico in età evolutiva indagando se possa essere modulata da fattori quali: differenze di genere, specifici quadri patologici (Displasia Ectodermica e Patologie Sistemiche Croniche) responsabili di pregresse esperienze odontoiatriche e/o ospedalizzazioni; stato affettivo del bambino, stato affettivo del genitore. Materiali e metodi Studio 1. 85 soggetti [39 (19 maschi e 20 femmine) affetti da PSC e 46 (26 maschi e 20 femmine) soggetti sani] (range di età: 5-14 anni). Sono stati somministrati: un compito di valutazione immagini con 36 immagini (12 a contenuto piacevole, 12 neutro e 12 spiacevole) dallo IAPS e 12 immagini a contenuto odontoiatrico e dei questionari (MCDASf, CFSS-DS, TAD). Studio 2. 45 soggetti (19 maschi affetti da EDs e 26 maschi sani) (range di età: 5-14 anni). Sono stati somministrati: il compito di valutazione immagini precedentemente descritto e i questionari (MCDASf, CFSS-DS, TAD). Studio 3. 104 bambini (64 maschi and 40 femmine) (range di età: 5-14 anni) e uno dei genitori (19 padri and 69 madri). Sono stati somministrati i questionari MCDASf, CFSS-DS, TAD ai bambini e FDPQ, STAI-Y1, Y2-BDI-II ai genitori. Risultati: il contesto odontoiatrico ha una caratterizzazione affettiva distinta rispetto a contesti piacevoli, spiacevoli o neutri; specifici quadri patologici (EDs e PSC) non sembrano modulare il tipo di valutazione affettiva del contesto odontoiatrico; le femmine, attribuiscono al contesto odontoiatrico una valenza significativamente più spiacevole e una maggiore attivazione emotiva rispetto ai maschi; la paura del dolore odontoiatrico del genitore ha una correlazione con l’ansia dei bambini. Conclusione: è importante che l’odontoiatra consideri che la risposta emotiva delle bambine può essere caratterizzata da vissuti di paura con tendenza a comportamenti di allontanamento e valuti se la figura genitoriale rappresenta una risorsa o un elemento disturbante nella corso della seduta stessa.
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n the last few years, the vision of our connected and intelligent information society has evolved to embrace novel technological and research trends. The diffusion of ubiquitous mobile connectivity and advanced handheld portable devices, amplified the importance of the Internet as the communication backbone for the fruition of services and data. The diffusion of mobile and pervasive computing devices, featuring advanced sensing technologies and processing capabilities, triggered the adoption of innovative interaction paradigms: touch responsive surfaces, tangible interfaces and gesture or voice recognition are finally entering our homes and workplaces. We are experiencing the proliferation of smart objects and sensor networks, embedded in our daily living and interconnected through the Internet. This ubiquitous network of always available interconnected devices is enabling new applications and services, ranging from enhancements to home and office environments, to remote healthcare assistance and the birth of a smart environment. This work will present some evolutions in the hardware and software development of embedded systems and sensor networks. Different hardware solutions will be introduced, ranging from smart objects for interaction to advanced inertial sensor nodes for motion tracking, focusing on system-level design. They will be accompanied by the study of innovative data processing algorithms developed and optimized to run on-board of the embedded devices. Gesture recognition, orientation estimation and data reconstruction techniques for sensor networks will be introduced and implemented, with the goal to maximize the tradeoff between performance and energy efficiency. Experimental results will provide an evaluation of the accuracy of the presented methods and validate the efficiency of the proposed embedded systems.
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In the last years, new materials have been developed in the broad area of nanoscience. Among them, an emergent class characterized by excellent electrical conductivity properties as well as high optical transmittance in the visible region are TCOs (Transparent Conducting Oxides). Due to their versatile properties, they have found many applications in a lot of optoelectronic devices, such as solar cells, liquid crystal displays, touch-panel displays, gas sensors, to cite a few examples. Different research groups have studied and characterized the TCOs. In this context, a new synthetic method has been developed to produce FTO nanocrystals (Fluorine-doped Tin Oxide NCs) in Prof. Pinna’s lab at the Humboldt University in Berlin. FTO belongs to the TCO category, and they have been studied as a promising alternative to ITO NCs (Indium Tin Oxide) which represent the standard TCO material in terms of properties and performances. In this work, FTO NCs have been synthesized using the “benzyl alcohol route” (a non-aqueous sol-gel method) via microwave, which permits to produce FTO particles with good properties as revealed by the characterizations performed, employing a cheap, fast and clean method.
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The present thesis addresses several experimental questions regarding the nature of the processes underlying the larger centro-parietal Late Positive Potential (LPP) measured during the viewing of emotional(both pleasant and unpleasant) compared to neutral pictures. During a passive viewing condition, this modulatory difference is significantly reduced with picture repetition, but it does not completely habituate even after a massive repetition of the same picture exemplar. In order to investigate the obligatory nature of the affective modulation of the LPP, in Study 1 we introduced a competing task during repetitive exposure of affective pictures. Picture repetition occurred in a passive viewing context or during a categorization task, in which pictures depicting any mean of transportation were presented as targets, and repeated pictures (affectively engaging images) served as distractor stimuli. Results indicated that the impact of repetition on the LPP affective modulation was very similar between the passive and the task contexts, indicating that the affective processing of visual stimuli reflects an obligatory process that occurs despite participants were engaged in a categorization task. In study 2 we assessed whether the decrease of the LPP affective modulation persists over time, by presenting in day 2 the same set of pictures that were massively repeated in day 1. Results indicated that the reduction of the emotional modulation of the LPP to repeated pictures persisted even after 1-day interval, suggesting a contribution of long-term memory processes on the affective habituation of the LPP. Taken together, the data provide new information regarding the processes underlying the affective modulation of the late positive potential.
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In der vorliegenden Arbeit wurde die Fähigkeit von Hunden zur Erkennung und Unterscheidung menschlicher Gesichter untersucht. Zu diesem Zweck wurden verschiedene Verhaltensexperimente mit fünf Hunden durchgeführt. Zunächst wurden die Hunde darauf dressiert, ein einlaminiertes DIN A4 Blatt mit einem Gesicht im Zentrum in der dafür vorgesehenen Apparatur mit der Schnauze zu berühren. Bei der Dressur wurden immer zwei Folien präsentiert, wobei nur eine Wahl, nämlich die des Dressurgesichts, durch Futtergabe belohnt wurde. Nach Abschluss der Dressurphase wurden die Hunde in Generalisationstests mit neuen Gesichtern konfrontiert, die für uns Menschen wenig bis keine direkte Ähnlichkeit mit dem Dressurgesicht aufwiesen. Um herauszufinden ob Hunde sich an der Größe orientieren, wurden einige der zuvor getesteten Gesichter um die Hälfte und mehr verkleinert. All diese Veränderungen beeinträchtigten die Fähigkeit der Hunde nicht, das Dressurgesicht bevorzugt zu wählen. Diese Ergebnisse veranlassten die Versuchsleiterin zu testen, ob Hunde sich an verschiedenen Bereichen im menschlichen Gesicht orientieren oder das Gesicht als Ganzes wahrnehmen. Zur Beurteilung wurden den Hunden abgeänderte Gesichter zum Einen ohne Haare und Ohren und zum Anderen nur Haare und Ohren ohne das Gesicht (homogen graue Fläche) präsentiert. Hier hatten die Hunde deutliche Schwierigkeiten, wenn die äußeren Konturen nicht mehr vorhanden waren. Bei diesen Versuchen blieben die Wahlen der Hunde nahe dem Zufallsniveau von 50%. Das Fehlen des Gesichts als solches erwies sich als unproblematisch, da allen Hunden die äußeren Konturen, in diesem Fall Haare und Ohren ausreichten, um das Dressurgesicht mit einer Wahlhäufigkeit signifikant über 70% wiederzuerkennen. Abschließend wurde untersucht, ob sich die Hunde durch das Zusammensetzen von zwei bzw. drei unterschiedlichen Gesichtern in ihrem Wahlverhalten beeinflussen lassen. Dazu wurden zwei unterschiedlichen Haarpartien verschiedene Gesichter zugeordnet. Ähnelten sich die äußeren Konturen fiel es den Hunden in dieser Versuchsreihe schwer die Dressurhaare wieder zu erkennen. Unterschieden sich die äußeren Konturen für unser menschliches Auge deutlich, so wählten alle Hunde die Haare und Ohren des Dressurgesichts mit einer Wahlhäufigkeit signifikant über dem Schwellenwert von 70%. Somit ist zu vermuten, dass sich im Laufe der Domestikation beim Hund keine Hirnregion ausgebildet hat, die speziell für die Gesichtserkennung von Menschen verantwortlich ist. Aus den Ergebnissen dieser Arbeit zur Gesichtserkennung beim Hund wird deutlich, dass es dem Hund möglich ist, Gesichter voneinander zu unterscheiden. Allerdings orientiert sich der Hund nicht an bestimmten Gesichtsregionen, sondern nutzt die äußeren Konturen als Wiedererkennungsmerkmal. Aus diesem Grund finden sich häufig Unsicherheiten bei Hunden, wenn ihnen bekannte Menschen plötzlich mit Hut oder Mütze begegnen und eine Erkennung über den Geruchssinn und die Stimme noch nicht stattgefunden hat. Bei der Beurteilung der Ergebnisse muss beachtet werden, dass den Hunden das menschliche Gesicht in Form von Bildern präsentiert wurde und somit keine Beeinflussung durch Bewegung im Gesicht gegeben war. Da das Bewegungssehen beim Hund sehr gut ausgebildet ist, achtet er im Alltag des Menschen sehr wahrscheinlich außerordentlich gut auf Augenbewegungen und Gesichtsmuskelbewegungen, um mit dem Sozialpartner Mensch zu kommunizieren. Weiterhin wäre es interessant herauszufinden, ob die Orientierung an den äußeren Konturen eine Folge der Domestikation und somit eine Adaptation an den Menschen und sein Ökosystem ist, oder ob Wölfe auch dazu in der Lage wären.
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This work seeks to understand what kind of impact educational policies have had on the secondary school students among internally displaced persons (IDPs) and their identity reconstruction in Georgia. The study offers a snapshot of the current situation based on desk study and interviews conducted among a sample of secondary school IDP pupils. In the final chapter, the findings will be reflected against the broader political context in Georgia and beyond. The study is interdisciplinary and its methodology is based on social identity theory. I shall compare two groups of IDPs who were displaced as a result of two separate conflicts. The IDPs displaced as a result of conflict in Abkhazia in 1992–1994 are named as old caseload IDPs. The second group of IDPs were displaced after a conflict in South Ossetia in 2008. Additionally, I shall touch upon the situation of the pupils among the returnees, a group of Georgian old caseload IDPs, who have spontaneously returned to de facto Abkhazia. According to the interviews, the secondary school student IDPs identify themselves strongly with the Georgian state, but their group identities are less prevailing. Particularly the old case load IDP students are fully integrated in local communities. Moreover, there seems not to be any tangible bond between the old and new caseload IDP students. The schools have neither tried nor managed to preserve IDP identities which would, for instance, make political mobilisation likely along these lines. Right to education is a human right enshrined in a number of international conventions to which the IDPs are also entitled. Access to education or its denial has a deep impact on individual and societal development. Furthermore, education has a major role in (re)constructing personal as well as national identity.
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The body is represented in the brain at levels that incorporate multisensory information. This thesis focused on interactions between vision and cutaneous sensations (i.e., touch and pain). Experiment 1 revealed that there are partially dissociable pathways for visual enhancement of touch (VET) depending upon whether one sees one’s own body or the body of another person. This indicates that VET, a seeming low-level effect on spatial tactile acuity, is actually sensitive to body identity. Experiments 2-4 explored the effect of viewing one’s own body on pain perception. They demonstrated that viewing the body biases pain intensity judgments irrespective of actual stimulus intensity, and, more importantly, reduces the discriminative capacities of the nociceptive pathway encoding noxious stimulus intensity. The latter effect only occurs if the pain-inducing event itself is not visible, suggesting that viewing the body alone and viewing a stimulus event on the body have distinct effects on cutaneous sensations. Experiment 5 replicated an enhancement of visual remapping of touch (VRT) when viewing fearful human faces being touched, and further demonstrated that VRT does not occur for observed touch on non-human faces, even fearful ones. This suggests that the facial expressions of non-human animals may not be simulated within the somatosensory system of the human observer in the same way that the facial expressions of other humans are. Finally, Experiment 6 examined the enfacement illusion, in which synchronous visuo-tactile inputs cause another’s face to be assimilated into the mental self-face representation. The strength of enfacement was not affected by the other’s facial expression, supporting an asymmetric relationship between processing of facial identity and facial expressions. Together, these studies indicate that multisensory representations of the body in the brain link low-level perceptual processes with the perception of emotional cues and body/face identity, and interact in complex ways depending upon contextual factors.