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Biomedical subjects

M Thompson

Publications and source records attributed to M Thompson.

At least 433 records · Page 24Linked to original sources

Influence of preoperative intravenous nutrition upon hepatic protein synthesis and plasma proteins and amino acids.

The influence of 3 and 7 days of preoperative intravenous nutrition (IVN) on the capacity for protein synthesis in liver and on concentrations of plasma proteins and amino acids were investigated in patients with gastrointestinal malignancy. Thirty patients with gastrointestinal neoplasms who had lost more than 5 kg of weight over 3 months were randomized into three groups to receive preoperatively: (a) no IVN, (b) IVN for 3 days (0.18 gN/kg/day as amino acid; 30 kcal/kg/day as glucose), or (c) IVN for 7 days. Free access to a hospital diet was available to all patients including 10 patients who had not lost weight who served as controls. In the three groups of patients who had lost weight, median transferrin and fibronectin were lower than for controls, whereas other proteins and amino acids were comparable. After feeding, samples of liver were obtained peroperatively and the potential rates of protein synthesis were calculated from the in vitro incorporation of (14C)-leucine, into protein. Preoperative IVN significantly increased the potential rate of protein synthesis in liver after 3 days. Plasma amino acids were comparable with controls whereas in the unfed-group concentrations suggested utilization of alanine and breakdown of muscle. Three days of IVN also increased plasma fibronectin and IgA but increases of prealbumin, IgM, and complement C3 were only significant in the group fed for 7 days. On the 7th postoperative day plasma proteins were decreased similarly in each group. This study shows that concentrations of several plasma proteins, in preoperative patients reflect net rates of hepatic protein synthesis and are susceptible to depletion during starvation and repletion by 3 or 7 days of IVN.

Aged↗

Writing man-machine dialogues for a MUMPS system using the Application Controller Language (ACL).

The Application Controller Language (ACL) was designed to facilitate the development of man-machine dialogues. An exact specification of such a dialogue before programming begins is unlikely to be implemented without many changes. Immediately a dialogue is used, the 'hands-on' experience suggests many improvements. ACL was designed to serve as a flexible tool to enable easy re-shaping of this dialogue. For this reason, ACL is structured, allows documentary comments, and may be easily edited. ACL complements MUMPS and encourages the writing of small modular MUMPS programs to carry out well-defined tasks. For this purpose, ACL serves as the 'top' of a top-down written structure, with calls to MUMPS programs being made from ACL statements. A smooth dialogue is made easier to achieve by having all ACL statements use a single I/O processor giving a uniform terminal behaviour and appearance to the display. The programmer is encouraged to call this same I/O processor from his MUMPS application programs. ACL was used extensively for the development of a data management systems for hospital critical care.

Computers↗

HIV/AIDS. Behind the wire.

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Acquired Immunodeficiency Syndrome↗

Care of the child with sickle cell disease: acute complications.

Sickle cell disease (SCD) is a term used to describe a group of genetic disorders of hemoglobin production characterized by a predominance of the abnormal hemoglobin known as hemoglobin S. Common acute complications of SCD in children requiring hospitalization include painful episodes, febrile illness, and splenic sequestration. The staff nurse has an important role in providing prompt treatment and instituting preventative measures to avoid the adverse clinical outcomes of SCD such as acute chest syndrome, severe anemia, cardiovascular instability, and bacterial sepsis. A basic understanding of the pathophysiology of vaso-occlusion, the immune system, hemolysis, and the spleen is essential in the care of a child during an acute complication of SCD. Additionally important are a knowledge of the genetics, pathophysiology, medical and nursing management, and a familiarity with patient and family education material relating to sickle cell disease.

Anemia, Sickle Cell↗

Thermal laser arterial injury and prostacyclin administration in dogs: thrombotic and hyperplastic consequences.

Angioplasty is considered as an alternative to surgical reconstruction of arteriosclerotic vessels especially since lasers and atherectomy devices have become clinically available. However, the resulting arterial injury may lead to acute thrombotic occlusion and chronic restenosis because of hyperplastic vascular repair. The purpose of this experimental study was to evaluate the consequences of thermal laser arterial injury on platelet deposition and myointimal hyperplasia in dog femoral arteries. An intraarterial, short-term prostacyclin (PGI2) infusion was given to evaluate the antithrombotic and antiproliferative effects of this drug. Severe arterial necrosis, partly carbonized and vacuolized, extending to the adventitia was induced by a transluminal heated laser probe motion. The platelet deposition after one hour was 33.62 +/- 6.56 (x 10(6)/cm2.) (mean +/- SEM) without prostacyclin, after 40 ng/kg/min prostacyclin (PGI2) 24.70 +/- 5.45 and after 400 ng/kg/min 9.3 +/- 2.26 (p less than 0.005 no PGI2 vs 400 ng/kg/min PGI2). Myointimal hyperplasia was present eight weeks after thermal laser vascular injury independent of the initially administered prostacyclin. In conclusion, acutely thrombotic and chronically hyperplastic femoral arteries were found following transluminal thermal arterial injury in dogs. Prostacyclin administration could be clinically beneficial in reducing acute vascular thrombosis following thermal angioplasty. Short-term use of this substance, however, may not prevent a hyperplastic response to angioplasty.

Angioplasty, Laser↗

Facilitation of endothelial cell growth on hydroxylated ePTFE vascular grafts.

The authors have modified ePTFE by hydroxylating the surface using aluminum deposition and removal with sodium hydroxide. This process has no effect on the microfibrillar structure, but reduces the hydrophobicity of ePTFE. There were significantly greater numbers of rat aortic endothelial cells on the surface of modified as compared to control ePTFE after 14 days (469 +/- 44 vs. 4 +/- 3 cells/mm2, p less than 0.01, paired t-test). This simple chemical modification facilitates endothelialization, without using thrombogenic cell adhesives.

Animals↗

Human milk fortifiers.

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Food, Fortified↗