914 resultados para in-situ testing


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Aortic access problems due to diseased or small peripheral vessels are a major issue in endovascular aneurysm repair (EVAR). In the emergency setting, like aortic rupture after blunt trauma, or in patients with a hostile abdomen, a more proximal access to the aorta is not a pleasant perspective. We developed in situ introducer sheath dilatation as a bail-out technique for patients with difficult aortic access under various circumstances including EVAR, intra-aortic balloon pump insertion and cannulation for perfusion. The method described allows to increase the access vessel diameter by 50% (from 6 to 9 mm) or the luminal circumference from 18 to 27 F. We have used this technique in five patients without complication, very much in contrast to the traditionally practiced 'forced device insertion'.

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Se han utilizado los resultados de 144 lances ejecutados en el transcurso del Crucero 9803-05. Se compararon los histogramas de TS y los de tallas en búsqueda de correlación entre ambas a fin de determinar el factor b20 de la Ecuación de Fuerza de Blanco (20 log (LT,cm) + b20). Se han determinado nuevas ecuaciones de TS para anchoveta (38 y 120 kHz), sardina (120 kHz), jurel (38 kHz) y caballa (38 y 120 kHz). Se deberá continuar con estas mediciones puesto que un cambio en las propuestas reflectivas de los peces puede afectar la correcta obtención de los estimados de biomasa.

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Background: Bacteria form biofilms on the surface of orthopaedic devices, causing persistent infections. Monitoring biofilm formation on bone grafts and bone substitutes is challenging due to heterogeneous surface characteristics. We analyzed various bone grafts and bone substitutes regarding their propensity for in-vitro biofilm formation caused by S. aureus and S. epidermidis. Methods: Beta-tricalciumphosphate (b-TCP, ChronOsTM), processed human spongiosa (TutoplastTM) and PMMA (PalacosTM) were investigated. PE was added as a growth control. As test strains S. aureus (ATCC 29213) and S. epidermidis RP62A (ATCC 35984) were used. Test materials were incubated with 105 cfu/ml. After 24 h, test materials were removed and washed, followed by a standardised sonication protocol. The resulting sonication fluid was plated and bacterial counts were enumerated and expressed as cfu/sample. Sonicated samples were transferred to a microcalorimeter (TA Instrument) and heat flow monitored over a 24 h period with a precision of 0.0001°C and a sensitiviy of 200 μW. Experiments were performed in triplicates to calculate the mean ± SD. One-way ANOVA analysis was used for statistical analysis. Results: Bacterial counts (log10 cfu/sample) were highest on b-TCP (S. aureus 7.67 ± 0.17; S. epidermidis 8.14 ± 0.05) while bacterial density (log10 cfu/surface) was highest on PMMA (S. aureus 6.12 ± 0.2, S. epidermidis 7.65 ± 0.13). Detection time for S. aureus biofilms was shorter for the porous materials (b-TCP and Tutoplast, p <0.001) compared to the smooth materials (PMMA and PE) with no differences between b-TCP and TutoplastTM (p >0.05) or PMMA and PE (p >0.05). In contrast, for S. epidermidis biofilms the detection time was different (p <0.001) between all materials except between Tutoplast and PE (p >0.05). Conclusion: Our results demonstrate biofilm formation with both strains on all tested materials. Microcalorimetry was able to detect quantitatively the amount of biofilm. Further studies are needed to see whether calorimetry is a suitable tool also to monitor approaches to prevent and treat infections associated with bone grafts and bone substitutes.

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Se efectuaron mediciones de TS (Fuerza de Blanco, Target Strenght) durante los 108 lances de comprobación de ecotrazos realizados por el BIC Humboldt en el marco del Crucero 9808-09 de Evaluación Hidroacústica de Recursos Pelágicos. Se consideran para el análisis únicamente aquellos lances donde más del 90% de la captura perteneció a una sola especie. Los factores b20 de la ecuación de TS (TS=20 log L - b20) que han sido determinados, las cuales deberán ser considerados como provisionales, son las siguientes: Pez cinta (Trichiurus lepturus) = 70,95 (120 kHz); Vinciguerria o pez linterna (Vinciguerria lucetia pacifici) = 83,29 (120 kHz); Samasa (Anchoa nasus) = 86,57 (120 kHz); Caballa (Scomber japonicus) = 83,09 (120 kHz); Pez cinta (Trichiurus lepturus) = 71,41 (38 kHz); y Vinciguerria o pez linterna (Vinciguerria lucetia pacifici)= 82,04 (38kHz).

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Se realizaron mediciones de la Fuerza de Blanco (TS) del krill (Euphausia superba) durante los 29 lances efectuados en el Crucero de Evaluación Hidroacústica utilizando la ecosonda SIMRAD EK 500 a bordo del BIC Humboldt entre los días 12 y 24 de enero de 1998 a lo largo del Estrecho de Bransfield y alrededores de la Isla Elefante. Se derivaron los valores de b20 a partir de le ecuación de TS de FOOTE (1990), de las longitudes promedios de los individuos capturados durante cada uno de los lances y de las tablas de TS generadas por la ecosonda, determinándose una ecuación de TS para el krill en un rango de longitud comprendido entre 2,1 y 5,3 cm de la siguiente forma: TS = 20 log L - 89,26. Se discute el posible sesgo de la ecuación debido, entre otros aspectos a que no se consideraron los estadíos sexuales del krill.

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Se efectuaron mediciones de TS (Fuerza de Blanco: Target Strength) durante los 100 lances de comprobación de ecotrazos realizados por el BIC José Olaya Balandra durante el Crucero 9811-12 de Evaluación Hidroacústica de Recursos Pelágicos. Se consideraron para el análisis únicamente aquellos lances donde más del 90% de la captura perteneció a una determinada especie y que, además, se haya observado en ellos una adecuada correlación entre los histogramas de tallas y de TS. Los factores b20 de la ecuación de TS (TS = 20 log L - b20) que han sido determinados, las cuales serán consideradas como provisionales, corresponden a anchoveta (2) y a bregmaceros (1). Estas son las siguientes: anchoveta, b20 = 81, 8 (para ejemplares entre 6 y 8,5 cm); anchoveta, b20 = 78,5 (para ejemplares entre 11,5 y 14,5 cm); bregmaceros, b20 = 80,25 (para ejemplares entre 5,5 y 8 cm).

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Se efectuaron mediciones de TS (Fuerza de Blanco: Target Strength) durante los 136 lances de comprobación de ecotrazos realizados por el BIC José Olaya Balandra durante el Crucero 9902-03 de Evaluación Hidroacústica de Recursos Pelágicos. Se consideraron para el análisis únicamente aquellos lances donde más del 90% de la captura perteneció a una especie y que, además, se haya observado en ellos una adecuada correlación entre los histogramas de tallas y de TS. Los factores b20 de la ecuación de TS (TS=20 log L - b20) que han sido determinados, las cuales serán consideradas como provisionales, corresponden a anchoveta (2) y a pota (1). Estas son las siguientes: anchoveta a 120 kHz, b20=82,2 (para ejemplares entre 5,5 y 9,5 cm); anchoveta 38 kHz, b20=81,2 (para ejemplares entre 5,5 y 10,5 cm); pota a 38 kHz, b20=87,2 (para ejemplares entre 12 y 24 cm de longitud de manto).

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Selostus: Perunan somaattisten hybridien ja niiden somatohaploidien fluoresenssi in situ -hybridisaatio Solanum brevidens -lajin spesifisten sekvenssien avulla

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Integrated approaches using different in vitro methods in combination with bioinformatics can (i) increase the success rate and speed of drug development; (ii) improve the accuracy of toxicological risk assessment; and (iii) increase our understanding of disease. Three-dimensional (3D) cell culture models are important building blocks of this strategy which has emerged during the last years. The majority of these models are organotypic, i.e., they aim to reproduce major functions of an organ or organ system. This implies in many cases that more than one cell type forms the 3D structure, and often matrix elements play an important role. This review summarizes the state of the art concerning commonalities of the different models. For instance, the theory of mass transport/metabolite exchange in 3D systems and the special analytical requirements for test endpoints in organotypic cultures are discussed in detail. In the next part, 3D model systems for selected organs--liver, lung, skin, brain--are presented and characterized in dedicated chapters. Also, 3D approaches to the modeling of tumors are presented and discussed. All chapters give a historical background, illustrate the large variety of approaches, and highlight up- and downsides as well as specific requirements. Moreover, they refer to the application in disease modeling, drug discovery and safety assessment. Finally, consensus recommendations indicate a roadmap for the successful implementation of 3D models in routine screening. It is expected that the use of such models will accelerate progress by reducing error rates and wrong predictions from compound testing.

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To determine self‐consistently the time evolution of particle size and their number density in situ multi‐angle polarization‐sensitive laser light scattering was used. Cross‐polarization intensities (incident and scattered light intensities with opposite polarization) measured at 135° and ex situ transmission electronic microscopy analysis demonstrate the existence of nonspherical agglomerates during the early phase of agglomeration. Later in the particle time development both techniques reveal spherical particles again. The presence of strong cross‐polarization intensities is accompanied by low‐frequency instabilities detected on the scattered light intensities and plasma emission. It is found that the particle radius and particle number density during the agglomeration phase can be well described by the Brownian free molecule coagulation model. Application of this neutral particle coagulation model is justified by calculation of the particle charge whereby it is shown that particles of a few tens of nanometer can be considered as neutral under our experimental conditions. The measured particle dispersion can be well described by a Brownian free molecule coagulation model including a log‐normal particle size distribution.

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We present an ellipsometric technique and ellipsometric analysis of repetitive phenomena, based on the experimental arrangement of conventional phase modulated ellipsometers (PME) c onceived to study fast surface phenomena in repetitive processes such as periodic and triggered experiments. Phase modulated ellipsometry is a highly sensitive surface characterization technique that is widely used in the real-time study of several processes such as thin film deposition and etching. However, fast transient phenomena cannot be analyzed with this technique because precision requirements limit the data acquisition rate to about 25 Hz. The presented new ellipsometric method allows the study of fast transient phenomena in repetitive processes with a time resolution that is mainly limited by the data acquisition system. As an example, we apply this new method to the study of surface changes during plasma enhanced chemical vapor deposition of amorphous silicon in a modulated radio frequency discharge of SiH4. This study has revealed the evolution of the optical parameters of the film on the millisecond scale during the plasma on and off periods. The presented ellipsometric method extends the capabilities of PME arrangements and permits the analysis of fast surface phenomena that conventional PME cannot achieve.