Key result
Resection of the L4 radicular nerve in rats caused initial muscle force loss, recovery by 6 months, and subsequent secondary loss at 9 and 12 months, modeling postpolio syndrome.
Partial denervation in rat plantaris muscles shows an initial loss of force, recovery by 6 months, and subsequent late loss of function, modeling postpolio syndrome.
May model late denervation in postpolio syndrome; hypothesis-generating and requires human validation before clinical translation.
The isometric contractile characteristics of rat plantaris muscles were assessed 1, 3, 6, 9, and 12 months after resection of the L4 radicular nerve. After 1 month of partial denervation, twitch and tetanus were significantly lower (26.1 and 22.1%, respectively) than those of sham-operated rats. Plantaris muscle weight was reduced (22.5%), but twitch-to-tetanus ratio (TW/TT), time-to-peak, and one-half relaxation time were not changed significantly. At 3 months, average twitch force was normal but average tetanic force was significantly lower (27.1%) than control value. Muscle weight was reduced (28.9%), but TW/TT was increased by 31%. After 6 months, twitch, tetanus, and all other variables were similar to those of control rats. Normal twitch at 3 months indicates that all muscle fibers have been reinnervated by sprouting from L5 motor axons; however, the new synaptic contacts may not support the tetanic response. At 9 months, muscle force was again reduced and remained at about the same level at the 12-month interval. These results are consistent with the recovery and loss of function seen in poliomyelitis and the postpolio syndrome.
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Eberstein et al. (1992) studied Partial denervation. Resection of the L4 radicular nerve vs. Sham-operated rats was evaluated on Isometric contractile characteristics of rat plantaris muscles. Resection of the L4 radicular nerve in rats caused initial muscle force loss, recovery by 6 months, and subsequent secondary loss at 9 and 12 months, modeling postpolio syndrome.
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