Search PubMed⌕ Search

Biomedical subjects

B Holtmann

Publications and source records attributed to B Holtmann.

41 records · Page 3Linked to original sources

Intrathecal sufentanil (5 vs. 10 microg) for labor analgesia: efficacy and side effects.

BACKGROUND AND OBJECTIVES: Despite growing popularity, there are few studies examining the relative efficacy of different doses of intrathecal sufentanil for labor analgesia. This prospective, randomized, double-blind study compared the efficacy and side effects of 5 and 10 microg intrathecal sufentanil. METHODS: Sixty-three healthy, laboring, term parturients < or =5 cm cervical dilation participated in this study. In a randomized, double-blind fashion, patients received 5 or 10 microg intrathecal sufentanil as part of a combined spinal epidural technique. Patients rated pain, itching, nausea, and sedation on verbal analog scales before and every 10 minutes after drug injection. We also recorded maternal blood pressure and peripheral oxygen saturation before and every 10 minutes after drug injection. Before and 30 and 60 minutes after drug injection, we measured maternal end-tidal CO2. RESULTS: Both doses of sufentanil provided adequate analgesia. Although 10 microg sufentanil produced slightly more profound analgesia, the duration of pain relief did not differ between the two groups. Both drug doses were associated with significant increases in itching and end-tidal CO2. The 10-microg dose was associated with more sedation and a greater decrease in SaO2. CONCLUSIONS: Both 5 and 10 microg intrathecal sufentanil provided adequate labor analgesia. Both doses were associated with measurable spinal (itching) and supraspinal (sedation, respiratory depression) side effects.

Adult↗

Brain-derived neurotrophic factor prevents the death of motoneurons in newborn rats after nerve section.

Motoneurons innervating the skeletal musculature were among the first neurons shown to require the presence of their target cells to develop appropriately. But the characterization of molecules allowing motoneuron survival has been difficult. Ciliary neurotrophic factor prevents the death of motoneurons, but its gene is not expressed during development. Although the presence of a neurotrophin receptor on developing motoneurons has suggested a role for neurotrophins, none could be shown to promote motoneuron survival in vitro. We report here that brain-derived neurotrophic factor can prevent the death of axotomized motoneurons in newborn rats, suggesting a role for this neurotrophin for motoneuron survival in vivo.

Animals↗