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Biomedical subjects

D M Oakley

Publications and source records attributed to D M Oakley.

5 recordsLinked to original sources

Relationship between duration of spinal cord ischemia and postoperative neurologic deficits in animals.

Twenty hogs were administered the following procedures before, during, and after overdistraction of the spinal column at T5-T6: somatosensory (SEP) and neurogenic-motor evoked potentials (NMEPs), hydrogen clearance procedures, Stagnara wake-up tests, and aortic-injection of silastic plastic. To ensure that overdistraction was possible, a nonosseous, circumferential osteotomy was made at T5-T6 and distraction applied in one-ratchet increments using Harrington instrumentation. Overdistraction was maintained for 3, 5, 6, 10, 15, 20, 25, or 30 minutes. Results indicated that the duration of overdistraction, as represented by lost NMEPs, was always correlated with the animal's clinical status on wake-up test. If overdistraction was maintained more than 6 minutes, 100% of the animals demonstrated positive wake-up results; if maintained between 5 and 6 minutes, 75% demonstrated positive wake-up results; and if maintained less than 5 minutes, only 25% demonstrated positive wake-up results. Time-to-loss of the NMEPs and SEPs, after onset of overdistraction, fell within two groups: slow and fast. In the slow group, it required slightly more than 20 minutes (mean = 20.6) for the potentials to be lost, while in the fast-loss group data were lost in slightly less than 4 minutes (mean = 3.6). Blood flow studies and inspection of the spinal cord revealed that the mechanism of action for the slow group appeared to be ischemia of the spinal cord that extended several centimeters above and below the site of maximum distraction. In the fast-loss group, it appeared that gross structural damage, with some very localized ischemia, were the mechanisms of actions influencing the integrity of the spinal cord.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Relationship between duration of spinal cord ischemia and postoperative neurologic deficits in animals.

Stagnara wake-up tests, blood flow measures, somatosensory evoked potentials (SEPs), and neurogenic-motor evoked potentials (NMEPs) were elicited from 20 hogs before and after spinal cord overdistraction at L3-L4. Overdistraction was maintained from 5 to 30 minutes after loss of NMEPs. Results suggest that the longer the duration of overdistraction the greater the likelihood of paraplegia. Blood flow measures indicated that reduced perfusion was greatest at the distraction site but extended proximally and distally. Finally, NMEPs were more sensitive to onset of overdistraction and a more valid indicator of paraplegia than SEPs. NMEPs should provide the surgeon with more time for initiation of intervention techniques than SEPs. Because NMEPs and SEPs provide information regarding different spinal cord tracts, the authors continue to use both methods for monitoring the functional integrity of the human spinal cord during corrective spine surgery.

Animals

Blood flow direction in the lumbar nerve root.

The effect of clipping on lumbar nerve root blood flow rates in the region of the nerve root canal was studied experimentally in the hog. Blood flow rate was measured using the hydrogen washout technique. When the entrance zone was clipped with a microvascular clip, blood flow rate of the nerve root was decreased by 37% in comparison with the initial control rate; clipping at the exit zone reduced blood flow rate by 69%. Blood flow direction in the lumbar nerve root within the nerve root canal was found to be predominantly proximal. The current data indicate that the more lateral the impingement of the nerve root occurs, the more ischemic changes are induced.

Animals

Effects of ionization on the percutaneous absorption of drugs: partitioning of nicotine into organic liquids and hydrated stratum corneum.

To gain further insight into the disposition of ionizable drugs in the stratum corneum, the partitioning of nicotine as a function of pH was studied in excised, hydrated, human stratum corneum (SC) and the organic liquids n-butanol, n-octanol, isopropyl myristate, and Miglyol 812. Partitioning in n-octanol, isopropyl myristate, and Miglyol 812 was consistent with the pH-partition hypothesis, while partitioning in n-butanol agreed with agreed with a model for the partitioning of the free base and an ion pair which dissociates in the organic phase. The results in SC also suggested the partitioning of ion pairs. Binding studies indicated that neither the un-ionized nor the ionized species is bound significantly in the stratum corneum. Trichloroacetate (TCA) anion increased partitioning of ionized nicotine in n-butanol, but had no effect in stratum corneum. Delipidization of the stratum corneum decreased the partition coefficient for the free base, but had no effect on the ionized species. Thermodynamic parameters determined from van't Hoff plots were consistent with the entry of un-ionized nicotine into ordered lipids. These results suggest that the un-ionized form is found within the lipid regions of the stratum corneum, while the ionized form is located in aqueous regions.

Chemical Phenomena