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Biomedical subjects

D Yashon

Publications and source records attributed to D Yashon.

At least 37 records · Page 2Linked to original sources

Systemic hypotension in neurosurgery.

The authors review the intraoperative use of elective hypotension to reduce the probability of hemorrhage, to increase pliability of the aneurysmal sac for ease of clip application, and to control hemorrhage. The optimum agent and techniques for lowering systemic blood pressure remain controversial, but trimethaphan, sodium nitroprusside, and halothane have been found most useful. When cerebral blood flow falls below the brain's capacity to autoregulate, distinct time-related alterations occur biochemically and histologically. The profile of prolonged reduced adenosine triphosphate (ATP), low phosphocreatine, low glucose, and elevated lactate and lactate/pyruvate ratio is associated with swelling of perivascular astrocytes and "blebbing" of vascular endothelial cells with subsequent cerebral damage. To prevent permanent alteration it is desirable to observe time constraints and to employ other means of protection such as hypothermia, although the authors believe the latter unnecessary for short hypotensive periods. It has been proposed, but not substantiated, that anesthetics which depress rate of cerebral oxygen consumption but do not affect cerebral ATP level protect the brain from hypotension. Several investigations suggest that halothane, a vasodiltor, satisfies the safety requirement. The most prominent contraindication to halothane, however, is elevation of intracranial pressure. At present hypotensive surgery for aneurysmorrhapy is usually performed when intracranial pressure has returned to normal. Experimentally the electroencephalogram has been observed to show alterations prior to biochemical parameters for following brain vulnerability, so that it conceivably could be an effective monitoring technique during prolonged profound hypotension.

Adenosine Triphosphate↗

Quantitative in vitro vasoactivity of 5-hydroxytryptamine on the human basilar artery.

The importance of autacoidal substances in the genesis of cerebral vascular constriction and spasm is an unresolved issue. Comparative vasoactivity of 5-hydroxytryptamine (5HT) and norepinephrine (NE) on the human basilar artery was quantitatively assessed in vitro. 5HT was decidedly more vasoactive in this preparation. Three patterns of vasoactivity were noted with 5HT. Type I was an immediate sustained increase in tension lasting more than 30 minutes. Average increase in tension was 2988 mg (range 120-8600). Type II consisted of a sharp immediate increase in tension to average 1555 mg (range 240-4500) followed by gradual dissipation to base-line levels within 15 minutes. Type III pattern was a lesser immediate increase (372 mg; range 100-850) and more rapid dissipation over ten minutes. NE-induced Type I and Type III activity was present in only six of 20 segments. This study demonstrates that 5HT is vasoactive in human cerebral arteries. Type I sustained contractions may possibly be implicated in spasm. It is hypothesized that such autacoid-induced contraction may contribute to vascular wall ischemia, necrosis, and irreversible constriction as seen in human vasospasm.

Adult↗

Rapid closed reduction of cervical fracture dislocations.

Indications and a procedure for rapid closed reduction and decompression of cervical fracture dislocations in less than two hours by tong traction are described. Large amounts of weight are utilized. Neurologic damage due either to the large amount of weight or to rapidity of reduction has not been observed. The procedure is advocated in appropriate patients, provided that both sequential neurologic and radiographic monitoring are carried out.

Cervical Vertebrae↗

Intracellular enzyme liberation in primate spinal cord injury.

Intracellular lysosomal and nonlysosomal enzymes, as well as tissue edema, were measured in spinal cords of monkeys up to 20 days following a 300 gm-cm open injury. Although edema was maximal between six hours and 11 days, enzyme elevation was delayed. Lysosomal enzyme acid cathepsin increased beginning at five days and the beta-glucuronidase and beta-glycerophosphatase increase began at 11 days. Nonlysosomal enzymes were either not elevated or showed a slight rise. These data suggest that edema, one of the secondary damaging factors in spinal injury, is not a result of release of these intracellular enzymes. Also it appears that intracellular enzymes do not participate in early secondary damaging processes in severe spinal injury.

Acid Phosphatase↗