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Sökning: WFRF:(Bengtsson Samuel)

  • Resultat 1-10 av 22
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1.
  • 2019
  • Tidskriftsartikel (refereegranskat)
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2.
  • Bengtsson, Daniel, 1975-, et al. (författare)
  • Corticotroph Pituitary Carcinoma in a Patient With Lynch Syndrome (LS) and Pituitary Tumors in a Nationwide LS Cohort
  • 2017
  • Ingår i: Journal of Clinical Endocrinology and Metabolism. - : OXFORD UNIV PRESS INC. - 0021-972X .- 1945-7197. ; 102:11, s. 3928-3932
  • Tidskriftsartikel (refereegranskat)abstract
    • Context: Lynch syndrome (LS) is a cancer-predisposing syndrome caused by germline mutations in genes involved in DNA mismatch repair (MMR). Patients are at high risk for several types of cancer, but pituitary tumors have not previously been reported. Case: A 51-year-old man with LS (MSH2 mutation) and a history of colon carcinoma presented with severe Cushing disease and a locally aggressive pituitary tumor. The tumor harbored a mutation consistent with the patients germline mutation and displayed defect MMR function. Sixteen months later, the tumor had developed into a carcinoma with widespread liver metastases. The patient prompted us to perform a nationwide study in LS. Nationwide Study: A diagnosis consistent with a pituitary tumor was sought for in the Swedish National Patient Registry. In 910 patients with LS, representing all known cases in Sweden, another two clinically relevant pituitary tumors were found: an invasive nonsecreting macroadenoma and a microprolactinoma (i.e., in total three tumors vs. one expected). Conclusion: Germline mutations in MMR genes may contribute to the development and/or the clinical course of pituitary tumors. Because tumors with MMR mutations are susceptible to treatment with immune checkpoint inhibitors, we suggest to actively ask for a family history of LS in the workup of patients with aggressive pituitary tumors.
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3.
  • Bengtsson, Samuel, et al. (författare)
  • Design and evaluation of non-planar material extrusion on A3-axis printer
  • 2024
  • Ingår i: Proceedings of the Design Society. International Design Conference, DESIGN 2024 20-24 May 2024, Dubrovnik, Croatia. ; 4, s. 1727-1736
  • Konferensbidrag (refereegranskat)abstract
    • The use of material extrusion (MEX) has increased rapidly due to the affordability of 3D printers. This has led to a growing demand for improved print quality, high fidelity, strength, or fast print times. In this study, a non-planar approach for better surface quality is investigated. The hardware of a 3-axis MEX printer was developed together with testing new software for non-planar slicing. The aim was to identify the most influential parameter combinations using design of experiments. A novel method for measuring surface quality was presented together with future research work.
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4.
  • Bengtsson, Samuel N., et al. (författare)
  • Free induction decay in the extreme ultraviolet
  • 2015
  • Ingår i: Proceedings of Frontiers in Optics 2015, FIO 2015. - 9781943580033
  • Konferensbidrag (refereegranskat)abstract
    • We present an experimental study of controlled Free Induction Decay (FID) in the extreme ultraviolet regime excited by High-order Harmonics. The control is done by applying a delayed infrared pulse.
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5.
  • Bengtsson, Samuel, et al. (författare)
  • Ultrafast control and opto-optical modulation of extreme ultraviolet light
  • 2019
  • Ingår i: Journal of Physics B: Atomic, Molecular and Optical Physics. - : IOP Publishing. - 0953-4075 .- 1361-6455. ; 52:6
  • Tidskriftsartikel (refereegranskat)abstract
    • Ultrashort, coherent light pulses in the extreme ultraviolet (XUV) wavelength region are excellent tools for a wide range of experiments. These XUV pulses are in particular used to characterize electron dynamics. Additionally, the high photon energy enables quantum control of short-lived transitions in atoms. These transitions are of interest for ultrafast quantum control as the bandwidth of the control pulses needs to be less than the transition frequency. Coherent XUV pulses would be even more useful if the tools to control and manipulate them existed. Presently, however, no modulators exist for these frequencies, which significantly reduces the number of possible ultrafast optics experiments and applications in the XUV regime. This Ph.D. tutorial addresses this problem and focuses on the control of XUV light in time and space. To enable control of XUV light we have developed a method for opto-optical modulation (OOM), which modulates the phase of XUV light emitted from a gas of atoms. The atoms are resonantly excited with a coherent XUV pulse generated through high order harmonic generation and emit light after the excitation pulse passed. By shifting the resonance frequencies through the AC Stark shift with a non-resonant infrared control pulse, the phase of the emitted light, and therefore its wavefront, is controlled. With OOM the direction of XUV light emitted from noble gases has been controlled, and the temporal dynamics of the emission studied. By varying the delay between the excitation and the control pulse, the time of redirection was controlled, which enabled high signal to noise study of the temporal dynamics of the emission. Furthermore, a proof-of-principle experiment with two control pulses was performed, resulting in a shaped XUV pulse with controlled duration. The technique of OOM presented in this article is still at a very early stage and in order to obtain complete control of the amplitude and phase of the XUV pulses further development is necessary. Such development would present new opportunities for ultrafast XUV quantum control.
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6.
  • Bengtsson, Samuel (författare)
  • Ultrafast opto-optical control of extreme ultraviolet light pulses
  • 2017
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)abstract
    • Extreme ultraviolet (XUV) light is a valuable frequency range for ultrafast optics experiments. The short wavelength is a requirement for ultrashort pulses, which are widely used to characterize fast dynamics. Additionally, the high photon energy enables quantum control of high frequency transitions in atoms. These transitions are of interest for ultrafast quantum control as the bandwidth of the control pulses needs to be less than the transition frequency. Presently, however, no good modulators exist for these frequencies, which significantly reduces the possible ultrafast optics experiments or applications in the XUV regime. This thesis addresses this problem and focuses on the control of XUV light in time and space. To enable control of XUV light a method is described which modulates the phase of XUV light emitted from a gas of noble atoms. The atoms are resonantly excited with a coherent XUV pulse generated through high order harmonic generation. After the excitation pulse has passed through the gas, the atoms will emit light in the absence of an external field, known as free induction. The phase of the emitted light is changed by shifting the resonance frequencies through the AC Stark shift with a non-resonant infrared control pulse. This phase-control of the emitting atoms also translates into a control of the phase of the emitted XUV field.With the method described in the previous paragraph, the direction of XUV light emitted from noble gases was controlled, and the temporal dynamics of the emission was studied. The redirection of the XUV emission, through the use of a spatially offset IR pulse, was found to change both with intensity of the control pulse and by changing the spatial offset between the pulses. By varying the delay between the excitation and the control pulse the time of redirection was controlled, which enabled high signal to noise study of the temporal dynamics of the emission. Furthermore, with two control pulses the emission was redirected twice, resulting in an XUV pulse shape with controlled duration emitted with a certain angle. Hopefully the presented work will result in more research into the development of this technique, to fully realize the possibility to shape the amplitude and phase of XUV pulses. Such a development would open the door for ultrafast XUV quantum control.
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7.
  • Chernogubova, Ekaterina, 1967- (författare)
  • Adrenergic stimulation of glucose uptake in brown adipocytes
  • 2005
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)abstract
    • The aim of this study was to investigate adrenergically stimulated glucose uptake in brown adipose tissue (BAT) with the focus on receptor subtypes and intracellular signalling pathways. As a model system, we used primary cultured brown adipocytes.Adrenergic stimulation of glucose uptake occurs via β3-AR in wild type cells and β1-/α1-ARs in β3-KO cells, includes activation of adenylyl cyclase and cAMP formation, activation of PKA, PI3K, PKC and AMPK (Paper I, II, III). Interestingly, UCP1 activity is not required for the AMPK function in brown adipocytes (Paper III). Long-term adrenergic stimulation of glucose uptake induces an increase in GLUT1 mRNA and protein levels stimulating GLUT1 translocation to the plasma membrane (Paper IV).
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8.
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9.
  • Heyl, Christoph, et al. (författare)
  • Macroscopic effects in noncollinear high-order harmonic generation.
  • 2014
  • Ingår i: Physical Review Letters. - 1079-7114. ; 112:14
  • Tidskriftsartikel (refereegranskat)abstract
    • We study two-color high-order harmonic generation using an intense driving field and its weak second harmonic, crossed under a small angle in the focus. Employing sum- and difference-frequency generation processes, such a noncollinear scheme can be used to measure and control macroscopic phase matching effects by utilizing a geometrical phase mismatch component, which depends on the noncollinear angle. We further show how spatial phase effects in the generation volume are mapped out into the far field allowing a direct analogy with temporal carrier envelope effects in attosecond pulse generation.
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10.
  • Heyl, Christoph, et al. (författare)
  • Noncollinear optical gating
  • 2014
  • Ingår i: New Journal of Physics. - : IOP Publishing. - 1367-2630. ; 16
  • Tidskriftsartikel (refereegranskat)abstract
    • We present a novel scheme for high-order harmonic generation, enabling the production of spatially separated isolated attosecond pulses. This can be achieved by driving the generation process with two identical, but temporally delayed laser pulses, which are noncollinearly overlapping in the generation medium. Our approach provides intense attosecond pulses directly separated from the fundamental field, which is left undistorted. The method is therefore ideally suited for pump-probe studies in the extreme ultraviolet regime and promises new advances for intra-cavity attosecond pulse generation. We present a theoretical description of noncollinear optical gating, with an analytical derivation and simulations using the strong field approximation.
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