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Ernst Schuster

Publications and source records attributed to Ernst Schuster.

20 records · Page 2Linked to original sources

Assessment of myocardial perfusion by dynamic N-13 ammonia PET imaging: comparison of 2 tracer kinetic models.

BACKGROUND: Measurement of myocardial blood flow (MBF) by dynamic nitrogen 13 ammonia (NH(3)) positron emission tomography (PET) uses tracer kinetic modeling to analyze time-activity curves. We compared 2 commonly used models with 2 compartments (2C) and 3 compartments (3C) for quantification of MBF and coronary flow reserve (CFR). METHODS AND RESULTS: Seventy-seven patients underwent NH(3) PET at rest and during hyperemia. Time-activity curves for blood pool and myocardial segments were obtained from short-axis images of dynamic sequences. Model fitting of the 2C and 3C models was performed to estimate regional MBF. MBF values calculated by 2C and 3C models were 0.98 +/- 0.31 mL.min(-1).g(-1) and 1.11 +/- 0.37 mL.min(-1).g(-1), respectively, at rest (P < .0001) and 2.79 +/- 1.18 mL.min(-1).g(-1) and 2.46 +/- 1.02 mL.min(-1).g(-1), respectively, during hyperemia (P < .01), resulting in a CFR of 3.02 +/- 1.31 and 2.39 +/- 1.15 (P < .0001), respectively. Significant correlation was observed between the 2 models for calculation of resting MBF (r = 0.78), hyperemic MBF (r = 0.68), and CFR (r = 0.68). CONCLUSION: Measurements of MBF and CFR by 2C and 3C models are significantly related. However, quantification of MBF and CFR significantly differs between the methods. This difference needs to be considered when normal values are established or when measurements obtained with different methods need to be compared.

Adolescent↗

Effects of 12 months of recombinant growth hormone therapy on parameters of bone metabolism and bone mineral density in patients on chronic hemodialysis.

BACKGROUND: Renal osteodystrophy is common in patients with chronic renal failure (CRF) on hemodialysis (HD), leading to reduced bone mineral density (BMD) and higher bone fracture incidences. Since growth hormone (GH) and insulin-like growth factor 1 (IGF-1) are known to enhance bone metabolism and BMD, and CRF patients exhibit GH and IGF-1 resistance, recombinant human GH (rhGH) therapy could be beneficial for these patients. METHODS: This study evaluated the effects of a 12-month rhGH therapy on bone metabolism parameters; alkaline phosphatase (AP), osteocalcin (OC), procollagen I carboxyterminal propeptide (PICP), telopeptide ICTP, serum crosslaps, n-terminal propeptide of type III procollagen (PIIINP) and intact parathyroid hormone (iPTH), as well as on BMD of the lumbar spine and the femoral neck in 19 malnourished HD patients (10 females, 9 males) with a mean age of 59.3 +/- 13.4 yrs. Fourteen patients completed the 12-month study. RhGH (0.25 IU/kg) was given subcutaneously 3x/week after each dialysis session. RESULTS: IGF-1 concentrations rose significantly from 169.2 +/- 95.6 to 262.9 +/- 144.4 ng/mL (p<0.01) after 3 months, followed by a slight decline over the next 9 months. PICP as a bone formation marker significantly increased after 3 months from 250.1 +/- 112.6 to 478.5 +/- 235.2 ug/L (p<0.01), as well as PIIINP, whereas OC and bone resorption parameters like ICTP showed only a slight increase (ICTP: 50.3 +/- 18.5 to 70.0 +/- 39.5 ug/L after 3 months (ns)). All bone metabolism parameters slightly declined in the following 9 months, but remained above baseline values after 12 months. PTH rose from 198.0 +/- 139.2 to 456.0 +/- 268.7 ng/ml, p<0.01 after 6 months. BMD of the lumbar spine showed a significant reduction after 3-month rhGH therapy (0.80 +/- 0.17 vs. 0.77 +/- 0.16 g/cm2, p<0.01), but returned to baseline values after 12 months. BMD of the femoral neck remained stable during the entire study. CONCLUSIONS: In summary, 12-month rhGH treatment in patients on chronic HD caused a significant increase in IGF-1, together with an increase in bone turnover. In addition, there was a temporary reduction in BMD of the lumbar spine seen, which returned to baseline values after 12 months.

Absorptiometry, Photon↗