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Kjell Jansson

Publications and source records attributed to Kjell Jansson.

5 recordsLinked to original sources

Mesomorphism in columnar phases studied by solid-state nuclear magnetic resonance.

In this paper, we present 13C and 1H NMR investigations of 2, 3, 6, 7, 10, 11-hexahexyl-thiotriphenylene (HHTT). The measurements were carried out under both static and magic-angle spinning conditions. The phase diagram of HHTT is K<-->H<-->D(hd)<-->I , where H is a helical phase and D(hd) is a columnar liquid crystal. The motivation was to characterize the molecular order and dynamics and to investigate differences at the molecular level between the two mesophases: H and D(hd). It is shown that D(hd) is a conventional columnar liquid crystal, where the molecular core undergoes fast rotation about the symmetry axis. The orientational order in this mesophase is lower and the temperature dependence of the order parameter is steeper than in other triphenylene-based compounds. On the other hand, in the helical phase the core, similarly to the solid phase, is essentially rigid. The difference between the solid and helical phases is mainly manifested in an increased mobility of the aliphatic chains observed in the latter phase. In addition, the sample exhibits thermal history effects, which are observed in the different behavior upon cooling and heating.

Journal Article↗

Nanowires for surface enlargement of narrow-bore fused-silica tubing.

A method for preparation of silica nanowires with dimensions of d = 10-100 nm, l = 5-500 nm, is described. The nanostructured material is an integral part of the inner surface of narrow bore fused-silica capillary tubing. The wire preparation method is based on a decomposition of 2-chloro-1,1,2-trifluoroethyl methyl ether at elevated temperature and pressure. The silica bulk material is rearranged via a sustained silica-hydrogen fluoride chemistry, and reaction mechanisms for this process are proposed. The method is suitable for preparing long lengths of tubing with the modified surface. It is our belief that the texture of the capillary wall with its increased surface area is useful for applications such as microreactions, catalysis, and high-resolution pressure and/or electrodriven open-tubular liquid chromatography.

Chromatography, Liquid↗

Intraperitoneal cytokine response after major surgery: higher postoperative intraperitoneal versus systemic cytokine levels suggest the gastrointestinal tract as the major source of the postoperative inflammatory reaction.

BACKGROUND: Cytokine response is an important factor in the development of shock and organ failure. The aim of this study was to investigate intraperitoneal (peritoneal) and venous (systemic) postoperative cytokine release after major surgery. METHODS: Major abdominal surgery was performed in 19 patients. Preoperative systemic measurements and postoperative systemic and peritoneal measurements of C-reactive protein (CRP) and the cytokines tumor necrosis factor-alpha (TNF-alpha), interleukin (IL-6), and IL-10 were performed. RESULTS: Significantly higher TNF-alpha, IL-6, and IL-10 peritoneal values were recorded compared with systemic values, whereas peritoneal CRP was significantly decreased. CRP increased significantly over time, whereas postoperative values of IL-6, IL-10, and peritoneal TNF-alpha decreased. Systemic TNF-alpha was constant over time, but values after emergent abdominal surgery showed a more extensive response. An additional effect of surgery and emergent abdominal disease was seen in increased TNF-alpha and IL-10 levels. CONCLUSIONS: Compared with systemic cytokines, peritoneal cytokines respond extensively after major surgery, indicating that measurement of peritoneal cytokines is a more sensible method to determine postoperative inflammatory reaction. A normal postoperative course is characterized by decreasing levels of peritoneal cytokines.

Adult↗

Long-term follow-up of patients treated with an implantable left ventricular assist device as an extended bridge to heart transplantation.

Four patients were given the TCI implantable left ventricular assist device as a bridge to heart transplantation. The median treatment time was 541 days (range 462 to 873 days), with a total of 2,417 treatment days. The patients were followed with exercise tests and echocardiography 3 to 18 months after implantation. An invasive method was used for quantification of inflow valve incompetence.

Echocardiography↗