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Sökning: WFRF:(Wiesemann U.)

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  • Bennecke, E, et al. (författare)
  • Early Genital Surgery in Disorders/Differences of Sex Development: Patients' Perspectives
  • 2021
  • Ingår i: Archives of sexual behavior. - : Springer Science and Business Media LLC. - 1573-2800 .- 0004-0002. ; 50:3, s. 913-923
  • Tidskriftsartikel (refereegranskat)abstract
    • Controversy continues over a proposed moratorium on elective genital surgery in childhood for disorders/differences of sex development (DSD). Empirical evidence on patient preference is needed to inform decision-making. We conducted a multicentre survey by cross-sectional questionnaire in 14 specialized clinics in six European countries. The sample comprised 459 individuals (≥ 16 years) with a DSD diagnosis, including individuals with congenital adrenal hyperplasia (CAH) (n = 192), XY DSD with prenatal androgen effect (A) (n = 150), and without (nA) (n = 117). Main outcome measures were level of agreement with given statements regarding genital surgery, including clitoris reduction, vaginoplasty, and hypospadias repair. A total of 66% of individuals with CAH and 60% of those with XY DSD-A thought that infancy or childhood were the appropriate age for genital surgery. Females with XY DSD were divided on this issue and tended to prefer vaginoplasty at a later age (XY DSD-A 39%, XY DSD-nA 32%). A total of 47% of males preferred early hypospadias surgery. Only 12% (CAH), 11% (XY DSD-A), and 21% (XY DSD-nA) thought they would have been better off without any surgery in childhood or adolescence. Individuals who had early genital surgery were more likely to approve of it. Outcome data failed to support a general moratorium on early elective genital surgery. Participant perspectives varied considerably by diagnostic category, gender, history of surgery, and contact with support groups. Case-by-case decision-making is better suited to grasping the ethical complexity of the issues at stake.Trial registration: German Clinical Trials Register DRKS00006072.
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  • Legall, H., et al. (författare)
  • A compact laboratory transmission X-ray microscope for the water window
  • 2013
  • Ingår i: Journal of Physics, Conference Series. - : IOP Publishing. - 1742-6588 .- 1742-6596. ; 463:1, s. 012013-
  • Tidskriftsartikel (refereegranskat)abstract
    • In the water window (2.2-4.4 nm) the attenuation of radiation in water is significantly smaller than in organic material. Therefore, intact biological specimen (e.g. cells) can be investigated in their natural environment. In order to make this technique accessible to users in a laboratory environment a Full-Field Laboratory Transmission X-ray Microscope (L-TXM) has been developed. The L-TXM is operated with a nitrogen laser plasma source employing an InnoSlab high power laser system for plasma generation. For microscopy the Ly α emission of highly ionized nitrogen at 2.48 nm is used. A laser plasma brightness of 5 × 1011 photons/(s × sr × μm2 in line at 2.48 nm) at a laser power of 70 W is demonstrated. In combination with a state-of-the-art Cr/V multilayer condenser mirror the sample is illuminated with 106 photons/(μm2 × s). Using objective zone plates 35-40 nm lines can be resolved with exposure times < 60 s. The exposure time can be further reduced to 20 s by the use of new multilayer condenser optics and operating the laser at its full power of 130 W. These exposure times enable cryo tomography in a laboratory environment.
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  • Legall, H., et al. (författare)
  • Compact X-ray microscope for the water window based on a high brightness laser plasma source
  • 2012
  • Ingår i: Optics Express. - 1094-4087. ; 20:16, s. 18362-18369
  • Tidskriftsartikel (refereegranskat)abstract
    • We present a laser plasma based x-ray microscope for the water window employing a high-average power laser system for plasma generation. At 90 W laser power a brightness of 7.4 x 10(11) photons/(s x sr x mu m(2)) was measured for the nitrogen Ly alpha line emission at 2.478 nm. Using a multilayer condenser mirror with 0.3 % reflectivity 10(6) photons/(mu m(2) x s) were obtained in the object plane. Microscopy performed at a laser power of 60 W resolves 40 nm lines with an exposure time of 60 s. The exposure time can be further reduced to 20 s by the use of new multilayer condenser optics and operating the laser at its full power of 130 W.
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  • Resultat 1-5 av 5

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