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Biomedical subjects

P Valencia

Publications and source records attributed to P Valencia.

8 recordsLinked to original sources

Operative injuries during vaginal hysterectomy.

OBJECTIVE: To evaluate incidence, characteristics and consequences of urinary and intestinal tract injuries during vaginal hysterectomy for benign conditions. STUDY DESIGN: From January 1970 to December 1996, 3076 vaginal hysterectomies with or without additional procedures, were performed for benign conditions in our department. We retrospectively analyzed operative injury cases. RESULTS: Incidence of urinary and intestinal tract injuries were 1.7 and 0.5%, respectively. Concerning urinary tract injuries, we observed only one ureteral lesion, all others being bladder lacerations (54 cases). The bladder lacerations occured during the hysterectomy step of the surgery in 61% of cases and during the additional procedures in 39%. All bladder injuries were recognized and treated during the primary operation. We observed four cases of vesico-vaginal fistula as a consequence of these injuries; all fistulas occured after bladder laceration during the hysterectomy step of the surgical procedure. Intestinal tract injuries (16 cases) were rectal lacerations occuring during the hysterectomy step of the surgery (31% of cases) and during the additional procedures (69%). All rectal injuries were recognized and repaired during the primary operation and all healed without sequellae. CONCLUSION: Operative injuries during vaginal hysterectomy are relatively rare. They are easily recognized and treated during the primary operation without important sequellae.

Aged↗

The fatty acid composition of maternal diet affects the response to excitotoxic neural injury in neonatal rat pups.

Fatty acids and their derivatives play a role in the response to neural injury. The effects of prenatal and postnatal dietary fatty acid composition on excitotoxic neural injury were investigated in neonatal rat pups. Dams were fed during gestation and lactation a diet whose fat source was either corn oil or menhaden fish oil. On postnatal day 3, litters were culled to 10 per dam. On postnatal day 4, excitotoxic neural injury was induced by infusion of the glutamate analog N-methyl-DL-aspartate (NMA) into the left cerebral hemisphere. Three days later, pups were killed and brains were removed for histological and volume assessments. Levels of arachidonic acid were 2.3-fold higher in cerebrums of pups in the corn oil group than in the fish oil group. Left cerebral hemispheres among all pups were atrophic. Right cerebral hemispheres of pups in the corn oil group showed more histological evidence of edema, and had significantly higher volumes than pups in the fish oil group (66 vs. 42 mm2, p=0.007). These data suggest that the fatty acid composition of prenatal and/or postnatal diet can affect the neonatal response to excitotoxic neural injury.

Animals↗

[The Fanconi-Bickel syndrome].

This is a case of a 15-month-old child suffering from Fanconi-Bickel syndrome, characterized with Fanconi syndrome manifestations (glycosuria, amino aciduria and phosphaturia), and the build-up of glycogen in the liver in a similar manner as seen in cases of glycogenesis type Ia. Due to the presence of liver glycogenosis, the patient also has a tendency towards hypoglycemia, ketonuria, hypercholesterolemia and hypertriglyceridemia. The glycogenosis seen in the patients with the Fanconi-Bickel syndrome, does not depend on a defect in the activity of the glucose-6-phosphatase enzyme, but in fact is due to a defect in the transporter which mobilizes glucose and galactose in the liver and in the basolateral membrane of the proximal tubule of the kidney.

Biopsy, Needle↗

Spinal cord monitoring using evoked potentials recorded from feline vertebral bone.

A new recording method for continuous spinal cord monitoring has been developed at Rancho Los Amigo Hospital. Using peripheral nerve stimulation, spinal evoked potentials (SEPs) are recorded from cancellous bone of spinous processes. This neurologically noninvasive technique provides a highly reproducible and consistent signal, unaffected by biologic noise and surgical handling of the spinal column. Moreover, the evoked response is extremely sensitive to changes in functional integrity of the spinal cord. In experimental spinal cord injuries, produced by localized distraction of the spine, changes of the evoked responses were well correlated with the change in spinal cord function.

Animals↗

[Health advertising].

The purpose of this work is to make a brief review of the recent history of health advertising, of the legal basis of its control, of experience accumulated and of future perspectives in this field. Reference is made to the most frequent problems relating to the content of the advertising messages and the need is underlined for the Foral Community of Navarra to be able to legislate on the health advertising referring to the Health Centres, Services and Establishments, explicitly delimiting the criteria that will guarantee fulfillment of the principles of truthfulness, exactness, transparency, loyal competition and health protection.

English Abstract↗

[Generalized neonatal hypotonia].

Generalized neonatal hypotonia implies a pathologically decreased postural tone involving at least the extremities, trunk and neck occurring during the first month of life. The gestational age of the neonate, the behavioral state of the neonate at the time of the examination, and the possibility of pseudoparalysis (due to generalized pain) should be considered when evaluating a neonate for the possibility of generalized hypotonia. The evaluation of neonates with hypotonia should be guided by the characteristic of the muscular dynamic reflexes, primitive reflexes, the relation between the degree of hypotonia and weakness and findings during several maneuvers (traction, ventral and horizontal suspension, plantar response and response to forward displacement from a lying position). Possible sites of pathology in neonates with hypotonia include: (1) brain, (2) brain stem, (3) cervical spine, (4) cerebellum, (5) lower motor neurons in the brain stem and spine; (6) nerve, (7) myoneural junction, and (8) muscles.

Central Nervous System↗