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Sökning: WFRF:(Van Westen Danielle) > (2000-2004)

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  • van Westen, Danielle, et al. (författare)
  • Biliary and total extrarenal clearance of inulin and iohexol in pigs. A source of error when determining gfr as body clearance.
  • 2002
  • Ingår i: Nephron. - : S. Karger AG. - 0028-2766 .- 1660-8151 .- 2235-3186. ; 91:2, s. 300-307
  • Tidskriftsartikel (refereegranskat)abstract
    • Biliary clearance, total extrarenal clearance, body and renal clearance of inulin and iohexol were determined in 11 normal and 11 nephrectomized pigs. The biliary clearance of inulin, calculated as biliary excretion divided by the plasma concentration, was 0.04 and 0.01 ml min<sup>–1</sup> 10 kg<sup>–1</sup> and of iohexol 0.21 and 0.1 ml min<sup>–1</sup> 10 kg<sup>–1</sup> , in normal, respectively, nephrectomized pigs (p < 0.05). The extrarenal clearance of inulin, calculated as body minus renal clearance, was 2.7 and 0.7 ml min<sup>–1</sup> 10 kg<sup>–1</sup> and of iohexol 3.7 and 0.7 ml min<sup>–1</sup> 10 kg<sup>–1</sup> in normal, respectively, nephrectomized pigs (p < 0.05). Some hours after injection of the markers their plasma concentrations were much higher in the nephrectomized pigs. This higher plasma concentration was not matched by an equally higher biliary excretion and therefore biliary clearance decreased. The smaller total extrarenal clearance in nephrectomized pigs, i.e. the overestimation of GFR when calculated as body clearance, indicates that this source of error decreases with decreasing renal function.
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  • van Westen, Danielle, et al. (författare)
  • Fingersomatotopy in area 3b: an fMRI-study
  • 2004
  • Ingår i: BMC Neuroscience. - : Springer Science and Business Media LLC. - 1471-2202. ; 5
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: The primary sensory cortex (S1) in the postcentral gyrus is comprised of four areas that each contain a body map, where the representation of the hand is located with the thumb most laterally, anteriorly and inferiorly and the little finger most medially, posteriorly and superiorly. Previous studies on somatotopy using functional MRI have either used low field strength, have included a small number of subjects or failed to attribute activations to any area within S1. In the present study we included twenty subjects, who were investigated at 3 Tesla (T). We focused specifically on Brodmann area 3b, which neurons have discrete receptive fields with a potentially more clearcut somatotopic organisation. The spatial distribution for all fingers' peak activation was determined and group as well as individual analysis was performed. Results: Activation maps from 18 subjects were of adequate quality; in 17 subjects activations were present for all fingers and these data were further analysed. In the group analysis the thumb was located most laterally, anteriorly and inferiorly with the other fingers sequentially positioned more medially, posteriorly and superiorly. At the individual level this somatotopic relationship was present for the thumb and little finger, with a higher variability for the fingers in between. The Euclidian distance between the first and fifth finger was 17.2 mm, between the first and second finger 10.6 mm and between the remaining fingers on average 6.3 mm. Conclusion: Results from the group analysis, that is both the location of the fingers and the Euclidian distances, are well comparable to results from previous studies using a wide range of modalities. On the subject level the spatial localisation of the fingers showed a less stringent somatotopic order so that the location of a finger in a single subject cannot be predicted from the group result.
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