Publications by authors named "V Fritz"

Peripheral nerve injury has become an increasingly prevalent clinical concern, causing great morbidity in the community. Although there have been significant advancements in the treatment of peripheral nerve damage in recent years, the issue of long-term nerve regeneration remains. Furthermore, Wallerian degeneration has created an obstacle to long-term nerve regeneration.

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Purpose: To investigate the effect of pre-biopsy rectal swab and urine screening combined with a risk-adapted antibiotic treatment strategy on reducing post-biopsy infections (PBIs) following multiparametric magnetic resonance imaging (mpMRI)/ transrectal ultrasound (TRUS) fusion-targeted transrectal prostate biopsy (TRPBx).

Methods: 1119 Patients undergoing mpMRI-TRUS fusion TRPBx between June 2017 and February 2024 were included. Patients were screened for rectal extended-spectrum beta-lactamase (ESBL)/multi-resistant gram-negative (MRGN) and urinary pathogens.

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In the brewing process, methionine is a decisive amino acid for (off-)flavor formation. A significant part of methionine is oxidized to methionine sulfoxide (MetSO) in malt. We hypothesized that MetSO and MetSO are metabolized to volatile compounds during yeast fermentation and examined whether the yeast is able to catabolize l-MetSO and l-MetSO in free and dipeptide-bound forms.

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Rationale And Objectives: To compare a conventional T1 volumetric interpolated breath-hold examination (VIBE) with SPectral Attenuated Inversion Recovery (SPAIR) fat saturation and a deep learning (DL)-reconstructed accelerated VIBE sequence with SPAIR fat saturation achieving a 50 % reduction in breath-hold duration (hereafter, VIBE-SPAIR) in terms of image quality and diagnostic confidence.

Materials And Methods: This prospective study enrolled consecutive patients referred for upper abdominal MRI from November 2023 to December 2023 at a single tertiary center. Patients underwent upper abdominal MRI with acquisition of non-contrast and gadobutrol-enhanced conventional VIBE-SPAIR (fourfold acceleration, acquisition time 16 s) and VIBE-SPAIR (sixfold acceleration, acquisition time 8 s) on a 1.

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Objective: To prepare and analyze soy-lecithin-agar gels for non-toxic relaxometry phantoms with tissue-like relaxation times at 3T.

Methods: Phantoms mimicking the relaxation times of various tissues (gray and white matter, kidney cortex and medulla, spleen, muscle, liver) were built and tested with a clinical 3T whole-body MR scanner. Simple equations were derived to calculate the appropriate concentrations of soy lecithin and agar in aqueous solutions to achieve the desired relaxation times.

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