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Biomedical subjects

A S Schwartz

Publications and source records attributed to A S Schwartz.

6 recordsLinked to original sources

The asymmetric lateralization of tactile extinction in patients with unilateral cerebral dysfunction.

Two hundred and thirty-four patients with unilateral cerebral pathology and 175 control subjects were examined with a sensitive test for tactile extinction. Damage to the right hemisphere was associated with extinction slightly (but not significantly) more often than damage to the left hemisphere; the asymmetry may be due to selective exclusion of aphasics with damage to the left hemisphere. Extinction of the left side of the body, however, was significantly more common than of the right side; this asymmetry could not be accounted for by exclusion of untestable aphasics, but was a consequence of frequent ipsilateral (left side) extinction among the group with damage to the left hemisphere while the group with damage to the right hemisphere extinguished the contralateral (left) side almost exclusively. Although the hemispheres as a whole did not differ in their association with extinction, lesions in the right parietal lobe were significantly more effective in producing extinction than lesions in the left; in both cases the contralateral side of the body was affected. By contrast, lesions in the left frontal lobe were moderately but not significantly more effective in producing extinction than right frontal damage; in almost all these cases the left side of the body was affected, regardless of which frontal lobe was damaged. A relationship between extinction and pathology in the vicinity of the anterior callosum, as determined from CT scan and angiography, was found among the frontal cases. We propose an anatomical model to explain tactile extinction and its asymetric characteristics in the human. During the extinction tests a response mechanism in the left (speech) hemisphere bases its perceptual output on the relative strengths of two simultaneous sensory inputs. Damage at any point in the channel from the periphery to the response mechanism weakens one signal in comparison to the other, resulting in a response bias favouring the stronger stimulus. Tactile information from the left hand, after reaching the somatosensory zone in the right hemisphere, is transmitted to the left hemisphere by a diffuse, widespread network including the frontal lobes and the anterior callosum. This anatomical arrangement renders left-hand information more vulnerable to chance lesions than right-hand information, which has direct access to the response mechanism via a more compact projection system.

Adolescent

Persistence of relapse of morphine-seeking behavior in rats: the relative role of certain biological variables.

The theory that narcotic-induced protracted biological changes are responsible for relapse of opiate-reinforced behavior was examined in the rat. Groups of rats were conditioned to prefer a distinctive environment by pairing it with morphine doses from 1-200 mg/kg, and were retested for persistence of this preference after a 3-week abstinence period. They were then observed for protracted signs such as sensitivity to naloxone, tolerance to morphine analgesia, hyperaggression, or changes in endocrine activity. Acquisition and relapse of the preference, as well as long-term tolerance, were dose related. None of the purported protracted signs showed any consistent relationship to the tendency to relapse. However, relapse correlated significantly with original acquisition scores in all relapsing groups. The results suggest that original conditioning factors, rather than protracted changes, are responsible for the observed relapse.

Aggression

The influence of early lead exposure on morphine reinforcement in the rat.

The effect of early lead burdens on morphine-seeking behavior was investigated in the albino rat. Several concentrations of lead acetate were administered to nursing mother starting at 0,7 or 14 days after birth, or provided directly to the pups in the drinking water after weaning, so that lead exposure was continous for 3 successive weeks in each group. The offspring were later tested for acquisition and maintenance of a goal-box preference based on morphine reinforcement. High lead burdens imposed before the second week of age resulted in a mild but significantly greater incidence of morphine-seeking responses, as well as retarded growth, compared with placebo-treated controls or animals treated at a later age. The data support the proposition that lead, introduced at a critical stage of development via the lactating mother, increases the potency of morphine reinforcement as a result of changes in cerebral dopaminergic activity. This effect may be mediated directly by the high lead burdens in the offspring, or indirectly by interfering with the mother's nursing capacity.

Age Factors