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Biomedical subjects

S Volz

Publications and source records attributed to S Volz.

7 recordsLinked to original sources

Interventional magnetic resonance imaging: an alternative to image guidance with ionising radiation.

At present, interventional procedures, such as stent placement, are performed under X-ray image guidance. Unfortunately with X-ray imaging, both patient and interventionalist are exposed to ionising radiation. Furthermore, X-ray imaging is lacking soft tissue contrast and is not capable of true 3-D displays of either interventional device or tissue morphology. Magnetic resonance imaging (MRI) offers excellent soft tissue contrast, 3-D acquisition techniques, as well as rapid image acquisition and reconstruction. Despite these advantages, MR-guided interventions are challenging owing to the limited access to the patient, strong magnetic and radio-frequency fields that require special interventional devices, inferior image frame rates and spatial resolution, and high MRI scanner noise. For MR-guided intravascular interventions, where access to the target organ is achieved through catheters, dedicated hardware and automated image slice positioning techniques have been developed. We illustrate that MR-guided renal embolisations can be performed in closed-bore high-field MR scanners.

Animals↗

Microscopic nature of the pygmy dipole resonance: the stable Ca isotopes.

The electric dipole strength distribution in 44Ca has been measured up to 10 MeV in high resolution photon scattering experiments for the first time. The data obtained have been compared to earlier measurements on (40,48)Ca in order to view the evolution of the electric pygmy dipole resonance (PDR). Calculations that were performed within the framework of the microscopic extended theory of finite Fermi systems, which adds contributions of the quasiparticle-phonon coupling to random phase approximation calculations, give a qualitative agreement with the experimental data for all three isotopes. We have shown that it is necessary to include this coupling to describe the PDR.

Journal Article↗

Nature of low-energy dipole strength in nuclei: the case of a resonance at particle threshold in 208Pb.

A high-resolution (gamma,gamma') study of the electric dipole response in 208Pb at the S-DALINAC reveals a resonance structure centered around the neutron emission threshold. Microscopic quasiparticle phonon model calculations in realistic model spaces including the coupling to complex configurations are able to describe the data in great detail. The resonance is shown to result from surface density oscillations of the neutron skin relative to an approximately isospin-saturated core. It also forms an integral part of a toroidal E1 mode representing an example of vortex collective motion in nuclei.

Journal Article↗

Measurement of the dipole and electric quadrupole strength distributions up to 10 MeV in the doubly magic nuclei 40Ca and 48Ca

The doubly magic nuclei 40Ca and 48Ca have been studied in high resolution photon scattering experiments. We have derived absolute dipole and quadrupole excitation strengths up to 10 MeV. Evidence was found for a two-phonon quadrupole-octupole state in 48Ca. At higher energies in contrast to 40Ca, a concentration of dipole strength is observed in 48Ca which is discussed in terms of a pygmy resonance originating from the large neutron excess.

Journal Article↗

[Low molecular heparin for treatment of venous thrombosis in two very low-birth-weight pre-term infants with genetic risk factors].

We describe the use of low molecular weight heparin to treat venous thrombosis in two very low-birth-weight pre-term infants (GA: 30 and 27 weeks) both with genetic and acquired prothrombotic risk factors. Initially both infants were treated with unfractionated heparin. Since in one infant no effect on the thrombus size was observed and in the other infant there was an increase in size, the anticoagulation therapy was switched to subcutaneously injected low molecular heparin (Enoxaparin). During enoxaparin therapy the anti-Xa-level was carefully monitored and dosages were adjusted accordingly. Partial resolution of the thrombosis was achieved in both infants during enoxaparin therapy. No clot extension or recurrence of thrombosis occurred. An accidental overdose of Enoxaparin (100 times the required dosage) was administered to one infant without any consequences. Our data suggest that the use of low molecular weight heparin (Enoxaparin) for treatment of venous thrombosis in our two preterm infants was practical, safe and effective.

Dose-Response Relationship, Drug↗