816 resultados para Analgesia, obstetrical


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Dr. Silas F. Starley deplores what he considered errors generally taught and accepted in the late 19th century in Two Obstetrical Heresies . “The first is the part that membranes containing the amniotic fluid and the foetus play in effecting dilation of the os uteri in the first stage of labor.The second is the supposed necessity for waiting for their rupture and the escape of the waters before applying the forceps, in every case, without exception.” Silas F. Starley (1823-1887) was born in Alabama and moved to Texas with his family in 1837. He graduated from the University of Louisville School of Medicine in 1854 and spent his professional career in Texas, ending his career in Corsicana. He was President of the State Medical Association of Texas (Texas Medical Association) in 1883 and wrote articles in Texas medical journals on various topics including obstetrics, vascular tumor, and pneumonia. Texas State Historical Association, http://www.tshaonline.org/handbook/online/articles/sat05 , accessed 10/16/2012. Texas Physicians Historical Biographical Database, http://www4.utsouthwestern.edu/library/doctors/doctors.cfm?DoctorID=16809 , accessed 10/16/12.

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Immune cell-derived opioid peptides can activate opioid receptors on peripheral sensory nerves to inhibit inflammatory pain. The intrinsic mechanisms triggering this neuroimmune interaction are unknown. This study investigates the involvement of endogenous corticotropin-releasing factor (CRF) and interleukin-1beta (IL-1). A specific stress paradigm, cold water swim (CWS), produces potent opioid receptor-specific antinociception in inflamed paws of rats. This effect is dose-dependently attenuated by intraplantar but not by intravenous alpha-helical CRF. IL-1 receptor antagonist is ineffective. Similarly, local injection of antiserum against CRF, but not to IL-1, dose-dependently reverses this effect. Intravenous anti-CRF is only inhibitory at 10(4)-fold higher concentrations and intravenous CRF does not produce analgesia. Pretreatment of inflamed paws with an 18-mer 3'-3'-end inverted CRF-antisense oligodeoxynucleotide abolishes CWS-induced antinociception. The same treatment significantly reduces the amount of CRF extracted from inflamed paws and the number of CRF-immunostained cells without affecting gross inflammatory signs. A mismatch oligodeoxynucleotide alters neither the CWS effect nor CRF immunoreactivity. These findings identify locally expressed CRF as the predominant agent to trigger opioid release within inflamed tissue. Endogenous IL-1, circulating CRF or antiinflammatory effects, are not involved. Thus, an intact immune system plays an essential role in pain control, which is important for the understanding of pain in immunosuppressed patients with cancer or AIDS.

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A physiological role for beta-endorphin in endogenous pain inhibition was investigated by targeted mutagenesis of the proopiomelanocortin gene in mouse embryonic stem cells. The tyrosine codon at position 179 of the proopiomelanocortin gene was converted to a premature translational stop codon. The resulting transgenic mice display no overt developmental or behavioral alterations and have a normally functioning hypothalamic-pituitary-adrenal axis. Homozygous transgenic mice with a selective deficiency of beta-endorphin exhibit normal analgesia in response to morphine, indicating the presence of functional mu-opiate receptors. However, these mice lack the opioid (naloxone reversible) analgesia induced by mild swim stress. Mutant mice also display significantly greater nonopioid analgesia in response to cold water swim stress compared with controls and display paradoxical naloxone-induced analgesia. These changes may reflect compensatory upregulation of alternative pain inhibitory mechanisms.

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Trabalho Final do Curso de Mestrado Integrado em Medicina, Faculdade de Medicina, Universidade de Lisboa, 2014

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Mode of access: Internet.

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Mode of access: Internet.

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"The material presented is the outgrowth of a short elective course of lectures, offered each year by the Obstetrical department to the senior class of the Johns Hopkins medical school." - Pref.

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"Originally published as distinct works." - Advertisement, by the American publishers.

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Mode of access: Internet.

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v. 1-4 have title The New York journal of gyna͡ecology & obstetrics.

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Mode of access: Internet.

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Mode of access: Internet.