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Sökning: WFRF:(Högberg Peter)

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  • Blasko, Robert, et al. (författare)
  • Shifts in soil microbial community structure, nitrogen cycling and the concomitant declining N availability in ageing primary boreal forest ecosystems
  • 2015
  • Ingår i: Soil Biology and Biochemistry. - : Elsevier BV. - 0038-0717 .- 1879-3428. ; 91, s. 200-211
  • Tidskriftsartikel (refereegranskat)abstract
    • Plant growth in boreal forests is commonly limited by a low supply of nitrogen, a condition that may be aggravated by high tree below-ground allocation of carbon to ectomycorrhizal (ECM) fungi and associated microorganisms. These in turn immobilise N and reduce its availability to plants as boreal ecosystems develop. Here, we studied a boreal forest ecosystem chronosequence created by new land rising out of the sea due to iso-static rebound along the coast of northern Sweden. We used height over the ocean to estimate ecosystem age and examined its relationship to soil microbial community structure and the gross turnover of N. The youngest soils develop with meadows by the coast, followed by a zone of N2-fixing alder trees, and primary boreal conifer forest on ground up to 560 years old. The young soils in meadows contained little organic matter and microbial biomass per unit area. Nitrogen was turned over at low rates when expressed per area (m(-2)), but specific rates (per gram soil carbon (C)) were the highest found along the transect. In the zone with alder, the amounts of soil C and microbial biomass were much higher (bacterial biomass had doubled and fungal biomass quadrupled). Rates of gross N mineralisation (expressed on an area basis) were highest, but the retention of added labelled NH4+ was lowest in this soil as compared to other ages. The alder zone also had the largest extractable pools of inorganic N in soil and highest N % in plant foliage. In the older conifer forest ecosystems the amounts of soil C and N, as well as biomass of both bacteria and fungi increased. Data on organic matter C-14 suggested that the largest input of recently fixed plant C occurred in the younger coniferous forest ecosystems. With increasing ecosystem age, the ratio of microbial C to total soil C was constant, whereas the ratio of microbial N to total soil N increased and gross N mineralization declined. Simultaneously, plant foliar N % decreased and the natural abundance of N-15 in the soil increased. More specifically, the difference in delta N-15 between plant foliage and soil increased, which is related to relatively greater retention of N-15 relative to N-14 by ECM fungi as N is taken up from the soil and some N is transferred to the plant host. In the conifer forest, where these changes were greatest, we found increased fungal biomass in the F- and H-horizons of the mor-layer, in which ECM fungi are known to dominate (the uppermost horizon with litter and moss is dominated by saprotrophic fungi). Hence, we propose that the decreasing availability of N to the plants and the subsequent decline in plant production in ageing boreal forests is linked to high tree belowground C allocation to ECM fungi, a strong microbial sink for available soil N. (C) 2015 The Authors. Published by Elsevier Ltd.
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  • Hemmingsson, Jens, 1986, et al. (författare)
  • Autoradiography and biopsy measurements of a resected hepatocellular carcinoma treated with 90 yttrium radioembolization demonstrate large absorbed dose heterogeneities
  • 2018
  • Ingår i: Advances in Radiation Oncology. - : Elsevier BV. - 2452-1094. ; 3:3, s. 439-446
  • Tidskriftsartikel (refereegranskat)abstract
    • © 2018 The Authors Purpose: Radioembolization is an alternative palliative treatment for hepatocellular carcinoma. Here, we examine the uptake differences between tumor tissue phenotypes and present a cross-section of the absorbed dose throughout a liver tissue specimen. Methods and materials: A patient with hepatocellular carcinoma was treated with90Y radioembolization followed by liver tissue resection. Gamma camera images and autoradiographs were collected and biopsy tissue samples were analyzed using a gamma well counter and light microscopy. Results: An analysis of 25 punched biopsy tissue samples identified 4 tissue regions: Normal tissue, viable tumor tissue with and without infarcted areas, and tumor areas with postnecrotic scar tissue. Autoradiography and biopsy tissue sample measurements showed large dose differences between viable and postnecrotic tumor tissue (159 Gy vs 23 Gy). Conclusions: Radioembolization of 90 yttrium with resin microspheres produces heterogeneous-absorbed dose distributions in the treatment of unifocal hepatic malignancies that could not be accurately determined with current gamma camera imaging techniques.
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  • Högberg, Jonas, 1976, et al. (författare)
  • Bremsstrahlung imaging of 90Y microspheres shows poor resemblance with distributions of 99mTc-MAA in liver
  • 2010
  • Ingår i: Journal of the European Society of Therapeutic Radiology and Oncology. - 0167-8140. ; 94:1, s. 25-26
  • Konferensbidrag (övrigt vetenskapligt/konstnärligt)abstract
    • PURPOSE To study the resemblance between the distributions of pre- therapeutic 99mTc-MAA and therapeutic 90Y-microspheres, used for ra- dioembolization of liver tumours, making use of gamma- and bremsstrahlung imaging. Furthermore, to establish the accuracy of this method by compar- isons of spatial resolution and radioactivity, performed on line source in water phantom and on resected tumour and normal liver from patients previously treated with 90Y-microspheres. MATERIALS 3 patients diagnosed with liver tumours and planned for surgery; 1 with hepatocellular carcinoma and 2 with cholangiocarcinoma, were treated with SIRTEX R © 90Y-microspheres after standard diagnostic SPECT/CT imag- ing with 99mTc-MAA. The images acquired with gamma camera were com- pared regarding distributions of radioactivity; gamma radiation from the 99mTc-MAA distributions and bremsstrahlung from the distributions of 90Y- microspheres (the latter with a wide bremsstrahlung energy window). Resec- tions of tumour- and some normal liver tissues were performed on all three patients; the resected tissues were sliced, smaller samples were punched out and the radioactivity was measured with a NaI-detector. Furthermore, autoradiography was performed on some slices. A line source with the in- ner diameter 1 mm was positioned in a cylindrical water phantom with the diameter 20 cm; first the line source was filled with 99mTc, then emptied and filled with 90Y. SPECT/CT imaging was performed on both line source se- tups. The spatial resolutions for both radionuclides were then compared. The results from the imaging comparisons performed on the patients were then evaluated with the complementary radiological methods described above. RESULTS The comparison of images from 99mTc-MAA and 90Y showed a considerable deviance in activity distribution for two of the patients. One ex- ample is shown in the figure, the upper image showing 99mTc-MAA and the lower showing 90Y-microspheres. The moderate difference in spatial resolu- tions for 99mTc and 90Y, (15 vs 18 mm FWHM) confirmed the accuracy of these findings. The other radiological methods did also confirm the macro- scopic activity distribution as shown with bremsstrahlung imaging. CONCLUSIONS Bremsstrahlung imaging is a satisfying and reliable method in showing the actual macroscopic distribution of therapeutic 90Y-microspheres used for radioembolization of liver tumours. The results further demonstrate the need for a better diagnostic method than the one currently used, with 99mTc-MAA, thereby providing a better pre-dosimetry; hopefully with a better selection of patients, regarding tumour regression and a lower risk of liver failure.
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  • Högberg, Jonas, 1976, et al. (författare)
  • Heterogeneity of microsphere distribution in resected liver and tumour tissue following selective intrahepatic radiotherapy
  • 2014
  • Ingår i: EJNMMI Research. - : Springer Science and Business Media LLC. - 2191-219X. ; 4:48
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND Selective arterial radioembolisation of liver tumours has increased, because of encouraging efficacy reports; however, therapeutic parameters used in external beam therapy are not applicable for understanding and predicting potential toxicity and efficacy, necessitating further studies of the physical and biological characteristics of radioembolisation. The aim was to characterise heterogeneity in the distribution of microspheres on a therapeutically relevant geometric scale considering the range of yttrium-90 (90Y) β-particles. METHODS Two patients with intrahepatic cholangiocarcinoma, marginally resectable, were treated by selective arterial embolisation with 90Y resin microspheres (SIRTEX®), followed 9 days post-infusion by resection, including macroscopic tumour tissue and surrounding normal liver parenchyma. Formalin-fixed, sectioned resected tissues were exposed to autoradiographic films, or tissue biopsies of various dimensions were punched out for activity measurements and microscopy. RESULTS Autoradiography and activity measurements revealed a higher activity in tumour tissue compared to normal liver parenchyma. Heterogeneity in activity distribution was evident in both normal liver and tumour tissue. Activity measurements were analysed in relation to the sample mass (5 to 422 mg), and heterogeneities were detected by statistical means; the larger the tissue biopsies, the smaller was the coefficient of variation. The skewness of the activity distributions increased with decreasing biopsy mass. CONCLUSIONS The tissue activity distributions in normal tissue were heterogeneous on a relevant geometric scale considering the range of the ionising electrons. Given the similar and repetitive structure of the liver parenchyma, this finding could partly explain the tolerance of a relatively high mean absorbed dose to the liver parenchyma from β-particles. Keywords: Radioembolisation; Y-90; SIR; Surgery; Activity heterogeneity
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  • Högberg, Jonas, 1976, et al. (författare)
  • Increased absorbed liver dose in Selective Internal Radiation Therapy (SIRT) correlates with increased sphere-cluster frequency and absorbed dose inhomogeneity
  • 2015
  • Ingår i: EJNMMI Physics. - : Springer Science and Business Media LLC. - 2197-7364. ; 2:1
  • Tidskriftsartikel (refereegranskat)abstract
    • Background The higher tolerated mean absorbed dose for selective internal radiation therapy (SIRT) with intra-arterially infused 90Y microspheres compared to external beam therapy is speculated to be caused by absorbed dose inhomogeneity, which allows for liver regeneration. However, the complex liver microanatomy and rheology makes modelling less valuable if the tolerance doses are not based on the actual microsphere distribution. The present study demonstrates the sphere distribution and small-scale absorbed dose inhomogeneity and its correlation with the mean absorbed dose in liver tissue resected after SIRT. Methods A patient with marginally resectable cholangiocarcinoma underwent SIRT 9 days prior to resection including adjacent normal liver tissue. The resected specimen was formalin-fixed and sliced into 1 to 2-mm sections. Forty-one normal liver biopsies 6-8 mm in diameter were punched from these sections and the radioactivity measured. Sixteen biopsies were further processed for detailed analyses by consecutive serial sectioning of 15 30-μm sections per biopsy, mounted and stained with haematoxylin-eosin. All sections were scrutinised for isolated or conglomerate spheres. Small-scale dose distributions were obtained by applying a 90Y-dose point kernel to the microsphere distributions. Results A total of 3888 spheres were found in the 240 sections. Clusters were frequently found as strings in the arterioles and as conglomerates in small arteries, with the largest cluster comprising 453 spheres. An increased mean absorbed dose in the punch biopsies correlated with large clusters and a greater coefficient of variation. In simulations the absorbed dose was 5–1240 Gy; 90% were 10-97 Gy and 45% were <30 Gy, the assumed tolerance in external beam therapy. Conclusions Sphere clusters were located in both arterioles and small arteries and increased in size with increasing sphere concentration, resulting in increased absorbed dose inhomogeneity, which contradicts earlier modelling studies.
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