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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

Utveckling av en teoretisk elektrokemisk apparatur för vattentransport i hjärnvävnad / Development of an theoretical electrochemical device for the transfer of excessive water in human brain tissue

Ahlberg, Johan, Wang, Jie Yu January 2013 (has links)
Varje år i Sverige sker ca 24 000 skallskador på grund av yttre trauma och 30 000 strokeskador. Ett betydande antal får sekundära skador på grund av den ökade vattenhalten kring den skadade hjärnvävnaden. Föreslagen metod är att inducera vattenflöde från skadad till frisk vävnad baserat på teorin om elektroosmotiskt flöde. Teorin bakom elektroosmotiskt flöde är att ett flöde induceras då en spänning läggs över ett medium. Elektroosmotiskt flöde tillämpas i industrin och kallas då electro-osmotic dewatering (EOD). Tekniken används för avvattning av biomaterial, leror, tofu ark samt inom tumörbehandling. I arbetet har utförts flera experiment på hjärnfantomer av agarosgel för att undersöka om metoden kan användas för att leda bort vatten. Första experimentet gjordes för att bevisa att ett flöde induceras vid pålagd spänning över fantom. Andra experimentet undersöker förhållandet mellan flödet, spänningen och strömmen. Resultatet blev linjära förhållanden mellan flödet och spänningen, flödet och strömmen samt mellan spänningen och strömmen. Med litteraturkällor och experimentella resultat härleddes ett samband för att kunna bestämma flödet vid pålagt elektriskt fält. Arbetet avslutades med litteraturstudie i elektrodens material, utformning och placering. Rekommendationerna blev att använda platta elektroder med en strömtäthet under 25 mA/m2. Placeringen optimeras genom förbestämda Finite Element (FE) simuleringar av typskador. / Every year in Sweden there is about 24,000 head injuries due to external trauma and 30,000 strokes. A significant number may develop secondary damage because of the increased water content around the damaged brain tissue. The proposed method is to induce water flow from damaged to healthy tissue based on the theory of electroosmosis. The theory behind the electroosmosis is that a flow is induced when a voltage is applied across a medium. The theory of electroosmosis is applied in industry and called electro-osmotic dewatering (EOD) which is used as a drying technique for the dewatering of bio-materials, clays, tofu sheets and electroosmosis is also applied in clinical treatment of tumors. Several experiments were performed on brain phantoms consisting of agarose gel to examine whether the method can be used to divert water. The first experiment was done prove that a flow can be induced when a voltage is applied over the phantom. The second experiment was to investigate the relationship between the flow rate, voltage and current. The result showed linear correlation between flow rate and voltage, flow rate and current, and between the voltage and current. The literature sources and experimental results were referred to a relationship which is developed to determine the flow induced by electrical field. The work was completed with recommendations in electrode material, design and placement. The recommendations are to use plate electrodes at a current density under 25 mA/m2. Electrode placement is predetermined by Finite Element (FE) simulations of different types of injuries.
12

Traitement des tumeurs cérébrales par ultrasons focalisés de haute intensité - sur un modèle tumoral greffé chez le rat / High intensity focused ultrasound therapy for brain tumors - in a rat brain tumor model.

Dervishi, Elvis 24 September 2014 (has links)
La thérapie par faisceaux ultrasonores focalisés de forte intensité (HIFU / High Intensity Focused Ultrasound) est une nouvelle technique d’ablation tissulaire, fondée sur la focalisation de faisceaux ultrasonores de forte intensité pour réaliser une élévation de température capable de créer une nécrose thermique. Le cerveau a été jusqu’à présent peu accessible aux ultrasons car il est protégé par la boîte crânienne. Mais de nouvelles techniques de focalisation par correction des aberrations des faisceaux ultrasonores laissent espérer des applications prochaines en intracrânien, où l’HIFU pourrait constituer une intéressante alternative à la chirurgie et à la radiothérapie stéréotaxique. Le but général de ce travail a été de tester la thérapie HIFU contrôlée par Imagerie de Résonance Magnétique (IRM) pour le traitement des tumeurs cérébrales dans un modèle petit animal in vivo de tumeur cérébrale. Nous espérons ainsi fournir des apports sur la thérapie HIFU et ses effets biologiques sur le cerveau et les tumeurs cérébrales, connaissances nécessaires avant de passer à des études cliniques chez l’homme. Le plan de ce travail est le suivant : 1) développement d’un protocole de thérapie HIFU contrôlé par IRM sur le cerveau sain et sur un modèle de tumeur RG2 greffée en intracérébral chez le rat ; 2) étude des effets biologiques de l’HIFU par l’IRM et l’examen anatomo-pathologique sur le tissu cérébral sain et la tumeur RG2 en intracérébral, montrant une sensibilité variable des tissus à l’hyperthermie ; 3) étude de sécurité (tolérance et effets indésirables), démonstration d’efficacité sur la tumeur RG2 (ralentissement de l’évolution tumorale et augmentation de la survie des animaux traités). En conclusion, l’HIFU a montré sa précision et son efficacité dans le traitement de la tumeur RG2 greffée en intracérébral chez le rat. Cette technique n’est cependant pas exempte de complications, notamment un œdème périlésionnel et des hémorragies intratumorales. / High Intensity Focused Ultrasound (HIFU) therapy is an innovative approach for tissue ablation, based on high intensity focused ultrasound beams. At focus, HIFU induces a temperature elevation and the tissue can be thermally destroyed. For transcranial brain therapy, the skull bone is a major limitation but new adaptive techniques for focusing ultrasound through the skull are underway and in the near future HIFU therapy could be an interesting alternative to brain surgery and radiotherapy.The overall aim of this work is to test HIFU therapy guided by Magnetic Resonance Imaging (MRgHIFU) for the treatment of brain tumors in an in vivo brain tumor model in rodent in order to provide inputs for future regulatory approval for clinical trial with a clinical prototype. In this work: 1) a dedicated system for transcranial MRgHIFU in an in vivo rat brain tumor model was developed, and a full protocol was applied in healthy brain tissue of rats and in transplanted tumors; 2) the biological effects of HIFU therapy was evaluated using MRI and histology in healthy brain tissue and in RG2 brain tumor, showing a different tissue sensibility for hyperthermia; 3) tolerance and side effects were investigated and the treatment was shown to improve the animal survival time by 50%. In conclusion, HIFU therapy has proved its accuracy and efficacy in the treatment of the RG2 brain tumor transplanted intracerebral in rats. However this technique is not free of complications, in particular edema and hemorrhages.

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