986 resultados para 131-808F


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Pós-graduação em Pesquisa e Desenvolvimento (Biotecnologia Médica) - FMB

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O trabalho aqui representado retrata de modo comparativo as características mecânicas e microestruturais de metais de solda empregando duas técnicas de soldagem uma já disseminada, FCAW (Soldagem a Arco Voltaico com Arame Tubular) e a outra é inovadora, FCAW-AF (Soldagem a Arco Voltaico com Arame Tubular com Adição de um Arame Frio não energizado) em três níveis de velocidades 6, 8 e 10 m/min. Sendo que este processo variou os diâmetros dos arames frio adicionados, entre 0.8 e 1.0 mm. O metal de base utilizado foi o aço naval ASTM 131 grau A (baixo carbono) em geometria de chapas de 150 mm x 300 mm x 9,5 mm, aplicadas em chanfro em V (Bisel de 22,5º) com ângulo somado de 45º, com leve abertura de raiz de 2,4 mm. A solda usada foi do tipo topo com a aplicação de dois passes, um passe de raiz e o passe de acabamento (ou enchimento). A fim averiguar as condições desses cordões de solda foram realizados 05 tipos de ensaios destrutivos, são eles: dobramento transversal de face, tração, tenacidade ao impacto (tipo Charpy com entalhe em V), microdureza e o ensaio metalográficos. Além das análises não destrutivas como o ensaio visual e o líquido penetrante. De maneira geral, os resultados para o processo FCAW-AF, mostraram-se compatíveis, em relação ao processo FCAW convencional, porém alguns resultados apresentaram valores de propriedades mecânicas menores. Este fato pode, muito provavelmente ter ocorrido pela presença de descontinuidade na junta pelo FCAW-AF. Quanto às caracterizações microestruturais, os resultados da junta FCAW-AF foram semelhantes os da FCAW convencional para todos os níveis estudados.

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The 131I (radioactive iodine) is one of the most used radionuclides in nuclear medicine for diagnosis and treatment. The present study evaluates the dosimetric aspects related to radioiodine therapy after thyroidectomy in patients with thyroid cancer. The samples were studied with 50 patients undergoing treatment, by assessing the exposures of workers (nursing assistants, staff hygiene, medical and physical), the general public (accompanying and family members) and on the environment. To evaluate the workers, was made a survey of the environmental conditions of the room radioiodine and routines adopted by them during the treatment period. Estimating the dose equivalent per month for each employee, we observed that the maximum levels obtained for nursing assistants, the team of hygiene, medical and physicians were considered low in relation to the extent permitted by law. In order to assess the public, some situations have been suggested for the calculation of equivalent doses in which it was possible to verify the fundamental importance of isolating the patient in the 2 days first. Regarding the environment, the radioactive waste generated by patient had volume of 1.0 m3 and activity estimated at 0.91 mCi, taking a decay time for eliminating them about 75 days to reach the allowable value of 2 μCi / kg system of collecting garbage. Therefore, all radioactive waste removed from the patient's room should be sent to the warehouse for temporary storage of radioactive waste, located away from normal work areas

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To evaluate the impact of iodine-131 therapy received during childhood and adolescence and correlate it with the quality of life in these patients. Methods: We studied 19 patients diagnosed with cancer in childhood or adolescence who underwent thyroidectomy and supplemental therapy with I-131. We also recruited a control group of healthy subjects with the same demographic parameters. All patients were subjected to a scintigraphy examination of the salivary glands, and were also asked to complete a questionnaire in order to assess their overall quality of life. In addition, a more specific questionnaire for patients with head and neck cancer was also given to all study participants. Results: The quantitative and qualitative analyses of the salivary glands showed functional deficits with greater involvement of the parotid gland for volume, concentration and excretion. The right submandibular gland showed significant changes for volume in the patient group. The questionnaires made it possible to observe significant differences between the patient and control groups for symptoms such as thick saliva, dry mouth and speech problems. Conclusion: In spite of being very effective and widely used, iodine radionuclide therapy is correlated with a lower quality of life in young people.

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The Rock Hill Fire Department Records consist correspondence from W.H. Wylie, for whom Lake Wylie is named, to prominent Rock Hillian Mr. W.T. Roddey and to the Rock Hill Fire Department. Also included is a program book for the 33rd Annual Convention of South Carolina State Firemen’s Association held in Rock Hill in 1928. The program book lists officers of the Association, committee appointments, fire chiefs, in SC, Rock Hill city officials with brief biographical sketches and sketches of the history of SC State Firemen’s Association, city of Rock Hill and Winthrop College.

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Nuclear medicine imaging techniques such as PET are of increasing relevance in pharmaceutical research being valuable (pre)clinical tools to non-invasively assess drug performance in vivo. Therapeutic drugs, e.g. chemotherapeutics, often suffer from a poor balance between their efficacy and toxicity. Here, polymer based drug delivery systems can modulate the pharmacokinetics of low Mw therapeutics (prolonging blood circulation time, reducing toxic side effects, increasing target site accumulation) and therefore leading to a more efficient therapy. In this regard, poly-N-(2-hydroxypropyl)-methacrylamide (HPMA) constitutes a promising biocompatible polymer. Towards the further development of these structures, non-invasive PET imaging allows insight into structure-property relationships in vivo. This performant tool can guide design optimization towards more effective drug delivery. Hence, versatile radiolabeling strategies need to be developed and establishing 18F- as well as 131I-labeling of diverse HPMA architectures forms the basis for short- as well as long-term in vivo evaluations. By means of the prosthetic group [18F]FETos, 18F-labeling of distinct HPMA polymer architectures (homopolymers, amphiphilic copolymers as well as block copolymers) was successfully accomplished enabling their systematic evaluation in tumor bearing rats. These investigations revealed pronounced differences depending on individual polymer characteristics (molecular weight, amphiphilicity due to incorporated hydrophobic laurylmethacrylate (LMA) segments, architecture) as well as on the studied tumor model. Polymers showed higher uptake for up to 4 h p.i. into Walker 256 tumors vs. AT1 tumors (correlating to a higher cellular uptake in vitro). Highest tumor concentrations were found for amphiphilic HPMA-ran-LMA copolymers in comparison to homopolymers and block copolymers. Notably, the random LMA copolymer P4* (Mw=55 kDa, 25% LMA) exhibited most promising in vivo behavior such as highest blood retention as well as tumor uptake. Further studies concentrated on the influence of PEGylation (‘stealth effect’) in terms of improving drug delivery properties of defined polymeric micelles. Here, [18F]fluoroethylation of distinct PEGylated block copolymers (0%, 1%, 5%, 7%, 11% of incorporated PEG2kDa) enabled to systematically study the impact of PEG incorporation ratio and respective architecture on the in vivo performance. Most strikingly, higher PEG content caused prolonged blood circulation as well as a linear increase in tumor uptake (Walker 256 carcinoma). Due to the structural diversity of potential polymeric carrier systems, further versatile 18F-labeling strategies are needed. Therefore, a prosthetic 18F-labeling approach based on the Cu(I)-catalyzed click reaction was established for HPMA-based polymers, providing incorporation of fluorine-18 under mild conditions and in high yields. On this basis, a preliminary µPET study of a HPMA-based polymer – radiolabeled via the prosthetic group [18F]F-PEG3-N3 – was successfully accomplished. By revealing early pharmacokinetics, 18F-labeling enables to time-efficiently assess the potential of HPMA polymers for efficient drug delivery. Yet, investigating the long-term fate is essential, especially regarding prolonged circulation properties and passive tumor accumulation (EPR effect). Therefore, radiolabeling of diverse HPMA copolymers with the longer-lived isotope iodine-131 was accomplished enabling in vivo evaluation of copolymer P4* over several days. In this study, tumor retention of 131I-P4* could be demonstrated at least over 48h with concurrent blood clearance thereby confirming promising tumor targeting properties of amphiphilic HPMA copolymer systems based on the EPR effect.

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komponiert von H. Fabisch

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Vorbesitzer: Franz Brauner, Geherrich; Abraham Merzbacher

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Vorbesitzer: Bartholomaeusstift Frankfurt am Main

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Vorbesitzer: Dominikanerkloster Frankfurt am Main;

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24 Briefe zwischen Richard Bach und Max Horkheimer, 1938-1940; 2 Briefe zwischen Alfred Chalk und Max Horkheimer, 17.10.1939, 14.11.1939; 3 Briefe von Morduch Lexandrowitsch und der American Consulate General, 1939; 4 Briefe von der American Consulate General und Max Horkheimer, 1938-1939; 1 Brief von Max Horkheimer an das Amtstgericht Berlin, 15.03.1939; 1 Brief von Max Horkheimer an Stiedry, 05.12.1938; 1 Brief von Max Horkheimer an den Collector of Custom, 26.10.1938; 2 Briefe zwischen Josef Maier und Carson Alexandrowitsch, 28.06.1938, 29.06.1938; 1 Brief von Margarete Baruch an Alice Maier, 11.04.1938; 1 Brief von Emanuel List an Carson Alexandrowitsch, 23.02.1938; 1 Abschrift des Briefes von der Metropolitan Opera Association New York an Morduch Lexandrowitsch, 22.02.1938; 1 Brief von Jacques Barzun an Max Horkheimer, 09.07.1947; 4 Briefe zwischen K. Baschwitz und Max Horkheimer, 1938-1946; 2 Briefe zwischen E. Bauer und Max Horkheimer, 08.04.1935, 27.05.1935; 4 Briefe zwischen Fritz Bauer und Max Horkheimer, 1937-1938; 2 Briefe zwischen Lina Bauer und Max Horkheimer, 20.07.1942, 16,08,1942; 4 Briefe zwsichen Rudolf Bauer und Max Horkheimer, 1937; 15 Briefe zwischen Gertrud Bauer und Max Horkheimer, 1938-1941; 1 Brief von Max Horkheimer an den Collector of Customs, 15.03.1940; 2 Briefe zwischen I. Hannah Davidson vom Jewish Community Center San Francisco und Max Horkheimer, 19.09.1938, 29.09.1938; 2 Briefe zwsichen I. Bauer und Max Horkheimer, 25.09.1938, 29.09.1938; 1 Brief von Max Horkheimer an Klopfer, 27.09.1938; 3 Briefe zwischen Y.M.H.A. - Y.W.H.A The Jewish Center of Saint Louis und Max Horkheimer, 19.09.1938, 1938; 1 Brief von Max Horkheimer an Julius Rosenberg, 17.09.1938; 1 Brief von Max Horkheimer an das Jwish Center Salt Lake City, Utah, 07.09.1938; 1 Brief von Max Horkheimer an das Jewish Community Center San Fransisco, 07.09.1938; 3 Briefe zwischen dem New York Section of the National Council of Jewish Women und Max Horkheimer, 07.04.1938, 1938; 2 Briefe zwischen Baum und Max Horkheimer, 12.03.1946, 25.05.1946; 1 Brief von Max Horkheimer an Charles A. Beard , 12.12.1934; 1 Brief von Charles A. Beard an C. A. Beard; 5 Briefe von Friedrich Pollock an Charles A. Beard, 1940-1941; 5 Briefe zwischen Lilo Beck und Max Horkheimer, 1940-1941; 7 Briefe zwischen Maximilian Beck und Max Horkheimer, 1939-1940; 1 Brief von Paul Tillich an Max Horkheimer , 01.10.1940; 1 Brief von dem Emergency Committee in Aid of Displaced Foreign Scholars New York an Max Horkheimer, 19.04.1940; 5 Briefe zwischen Konrad Bekker und Max Horkheimer, 1936-1939; 2 Briefe von Max Horkheimer an Ludwig Bendix, 1921, 1937; 1 Brief von Peter Bendmann an Max Horkheimer; 1 Brief von Max Horkheimer an Ruth Benedict, 30.07.1937; 1 Brief von Eric Russel Bentley an Max Horkheimer, 30.01.1945; 1 Brief von George Berg an Max Horkheimer, 12.07.1945; 2 Briefe zwischen Egon Bergel und Max Horkheimer, 18.08.1938, 22.08.1938; 1 Brief von Marie Jahoda an Max Horkheimer, 14.07.1928; 1 Brief von Theodor W. Adorno an Kurt Bergel, 09.09.1939; 15 Briefe zwischen Klaus Berger und Max Horkheimer, 1936-1943; 1 Brief von Frederick Pollock an Philip M. Hayden von der Columbia University New York, 05.03.1942; 1 Brief von Hans Venedey an Max Horkheimer, 05.03.1938; 1 Brief von Max Horkheimer an Ida Berger-Chevant, 18.02.1939;