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Biomedical subjects

H Ashida

Publications and source records attributed to H Ashida.

165 records · Page 10Linked to original sources

Local thrombolytic therapy for superior mesenteric artery embolism: complications and long-term clinical follow-up.

PURPOSE: To evaluate the effectiveness and complications of local intraarterial fibrinolysis in selected patients with superior mesenteric artery (SMA) embolism. MATERIALS AND METHODS: Intraarterial thrombolytic therapy was performed for acute SMA embolism in eight patients. Patients were selected for thrombolytic therapy on the basis of absence of peritoneal signs of intestinal necrosis at physical examination and absent findings of bowel infarction by CT. RESULTS: Clinical success was achieved in five patients and technical success in six. Complications included death due to massive shower emboli from the left ventricle in one patient and extravasation in one patient, who required surgery on the following day. Within one month after thrombolytic therapy, one patient each died of myocardial infarction and cerebral infarction due to emboli, and one patient underwent aorto-SMA bypass surgery due to residual stenosis. In the long-term follow-up period (2-7 years), four patients were still alive, with another embolic episode of a lower limb in one patient. One patient died of an unrelated cause without experiencing another embolic episode. CONCLUSION: Intraarterial fibrinolysis may be a therapeutic alternative in the management of SMA embolism in selected patients in whom an early diagnosis can be made. The long-term results depend on the occurrence of another embolic event.

Embolism↗

Analysis of postoperative pancreatitis in DSRS with SPD.

BACKGROUND/AIMS: Distal splenorenal shunt with splenopancreatic disconnection (DSRS + SPD) evolved to prevent the development of a pancreatic siphon, to improve maintenance as well as quality of portal perfusion and to achieve better long-term survival. We report several cases of postoperative pancreatitis in DSRS + SPD. Recently, oxygen-derived free radicals have been reported to play an important role in pathogenesis of acute pancreatitis. METHODOLOGY: In this study, ten cases of DSRS + SPD were examined intraoperatively. The local changes in oxygen-derived free radicals were obtained by measuring lipid peroxide and an endogenous scavenger (SOD) in the development of DSRS + SPD-induced pancreatitis. RESULTS: Lipid peroxide activity as the offense system was not changed before or after SPD. However, SOD activity as a defense system was significantly lowered after SPD compared to before SPD. CONCLUSIONS: These results indicate that an imbalance of both systems might be the cause of postoperative pancreatitis.

Acute Disease↗

Relationship between two different functions derived from diffusion-based decompression theory.

Hempleman's diffusion-based decompression theory yields two different functions; one is expressed by a simple root function and the other by a complex series function. Although both functions predict the same rate of gas uptake for relatively short exposure times, no clear mathematical explanation has been published that describes the relationship between the two functions. We clarified that (1) the root function is the solution of the one-dimensional diffusion equation for a semi-infinite slab, (2) the series function is an applicable solution for a finite slab thickness, (3) the parameter values of the root function can be used to determine the parameter values of the series function, and (4) the predictions of gas kinetics from both functions agree until an adequate amount of diffusing inert gas reaches the boundary at the opposite end of the finite slab. The last point allows the use of the simpler root function for predicting short no-stop decompression limits. Experience dictates that the inert gas accumulation for a 22 min at 100 feet of seawater (fsw) dive is considered safe for no-stop decompression. Although the constraint, Depth square root of Bottom Time = 100 square root of 22, has been applied as an index to determine either the safe depth or bottom time (given the other) for no-stop decompression, it should not be applied more broadly to dives requiring decompression stops.

Atmospheric Pressure↗