PubMed Health⌕ Search

PubMed · 12742222

"Component separation" method for abdominal wall reconstruction.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Julian E Losanoff, Bruce W Richman, Edward R Sauter, James W Jones. 2003. "Component separation" method for abdominal wall reconstruction.. https://doi.org/10.1016/s1072-7515(03)00123-6

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

GABAA and glycine receptors in regulation of intercostal and abdominal expiratory activity in vitro in neonatal rat.

The roles played by GABAA and glycine receptors in inspiratory-expiratory motor co-ordination and in tonic inhibitory regulation of expiratory motor activity were studied using brainstem-spinal cord (-rib) preparations from neonatal rats. Inspiratory activity was recorded from the C4 ventral root. Expiratory activity in internal intercostal muscle, internal oblique muscle or T13 ventral root was evoked by a decrease in perfusate pH from 7.4 to 7.1 (i.e. from normal to low pH conditions) and was limited to the first part of the expiratory phase. Under low pH conditions, bath application of 10 microM bicuculline, a GABAA receptor antagonist, caused the inspiratory burst to overlap the expiratory burst in 2/7 preparations. Overlapping of the expiratory burst with the inspiratory burst was observed in 7/7 preparations made under 10 microM bicuculline. Furthermore, such preparations exhibited expiratory bursts under bicuculline-containing normal pH conditions. Local application of 10 microM bicuculline to the brainstem under normal pH conditions evoked expiratory bursts, some of which overlapped the inspiratory bursts. Picrotoxin, another antagonist of the GABAA receptor, had similar effects. Under normal pH conditions, application of strychnine (0.2- 2.0 microM; a glycine receptor antagonist) to the brainstem did not evoke expiratory bursts. On subsequent application of strychnine-containing low pH solution, expiratory bursts were evoked and some (0.5 microM) or all (2.0 microM) of these overlapped the inspiratory burst. Simultaneous application of picrotoxin and strychnine to the brainstem evoked expiratory bursts that overlapped the inspiratory bursts and a subsequent decrease in perfusate pH to 7.1 increased the frequency of the respiratory rhythm. It was a characteristic finding that the duration of the expiratory burst exceeded that of the inspiratory burst under control low pH conditions. This remained true during concurrent blockade of GABAA and glycine receptors. The results suggest that in the in vitro preparation from neonatal rats: (1) GABAA and glycine receptors within the brainstem play important roles in the co-ordination between inspiratory and expiratory motor activity, (2) tonic inhibition via GABAA receptors, but not glycine receptors, plays a role in the regulation of expiratory motor activity and (3) inspiratory and expiratory burst termination is independent of both GABAA and glycine receptors.

Abdominal Wall↗

Applications of environmental scanning electron microscopy (ESEM) in biomaterials field.

Various tasks were undertaken in our laboratory where environmental scanning electron microscopy (ESEM) has been of particular interest within the biomaterials field. The possibility of observing wet samples, as well as the fact that sample preparation is minimal, has improved shorter time scales and lower costs in microscopy. Minimal preparation has also reduced the possibility of introducing artifacts. Examples like cell cultures used for pit resorption assays, calcium phosphate deposition processes, and dissolution of phosphate glasses used as biomaterials are presented. Finally, a servohydraulic testing machine designed for mechanical testing in situ in ESEM has allowed the study of shape memory alloys for orthodontic applications or the behavior of different adhesives used in odontology.

Abdominal Wall↗

Transplantation of the abdominal wall.

BACKGROUND: Closure of the abdomen in patients undergoing intestinal transplantation can be extremely difficult, if not impossible. We describe our initial experience with abdominal wall allotransplantation to facilitate abdominal closure. METHODS: We undertook nine cadaveric abdominal wall composite allograft transplants in eight patients. The graft's blood supply was based on the inferior epigastric vessels left in continuity with the donor femoral and iliac vessels. Skin biopsies were undertaken randomly and when rejection was suspected. Vessel patency was monitored by doppler ultrasound. FINDINGS: Six patients have survived, five of whom have intact, viable abdominal wall grafts. Two patients have had a clinically mild episode of acute rejection of the skin of the abdominal wall that resolved with corticosteroid therapy. No clinically apparent graft-versus-host disease has been noted. INTERPRETATION: Transplantation of an abdominal wall composite allograft can facilitate reconstruction and closure of the abdominal compartment in intestinal transplant recipients with complex abdominal wall defects.

Abdominal Wall↗