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Marshall Devor

Publications and source records attributed to Marshall Devor.

39 records · Page 3Linked to original sources

Axoplasmic transport block reduces ectopic impulse generation in injured peripheral nerves.

Afferent fibers ending in nerve end neuromas in rats generate a substantial ectopic discharge and are sensitive to light pressure and to circulating adrenaline. Treatment of the nerve with colchicine or vinblastine at the time of the nerve section resulted in a dose-dependent reduction in the extent of this discharge. Such treatment also reduced neuroma discharge that had already gotten underway.

Animals↗

Autotomy following nerve injury: genetic factors in the development of chronic pain.

Several weeks following transection and ligation of the hind limb nerves in rats, the animals often attack their anaesthetic foot ("autotomy"). This behaviour is thought to reflect a sensory pathology analogous to anaesthesia dolorosa. We report here that the extent of autotomy varies greatly in genetically different populations of rats. Rats of one population, LC2, showed high autotomy levels; rats of another, LC1, showed very low autotomy levels. The main genetic difference between these two populations is the presence of inbred Lewis rat stock in the LC1 population. Pure Lewis strain rats proved to have very low autotomy levels. Thus, constitutional differences between different rat populations effect the extent of autotomy. These data may bear on the fact that after seemingly identical nerve injuries, some humans develop chronic pain syndromes and others do not. Our rat strains may provide a model for investigating the physiological basis of constitutional susceptibility to chronic pain.

Age Factors↗

Pathophysiology of trigeminal neuralgia: the ignition hypothesis.

There are no satisfactory animal models of trigeminal neuralgia, and it is difficult to obtain essential data from patients. However, trigeminal neuralgia presents with such idiosyncratic signs and symptoms, and responds to so distinctive a set of therapeutic modalities, that scientific deduction can be used to generate likely hypotheses. The ignition hypothesis of trigeminal neuralgia is based on recent advances in the understanding of abnormal electrical behavior in injured sensory neurons, and new histopathologic observations of biopsy specimens from patients with trigeminal neuralgia who are undergoing microvascular decompression surgery. According to the hypothesis, trigeminal neuralgia results from specific abnormalities of trigeminal afferent neurons in the trigeminal root or ganglion. Injury renders axons and axotomized somata hyperexcitable. The hyperexcitable afferents, in turn, give rise to pain paroxysms as a result of synchronized afterdischarge activity. The ignition hypothesis accounts for the major positive and negative signs and symptoms of trigeminal neuralgia, for its pathogenesis, and for the efficacy of treatment modalities. Proof, however, awaits the availability of key experimental data that can only be obtained from patients with trigeminal neuralgia.

Animals↗