Abstract
Using an animal model, we examined the use of pulsed electromagnetic fields, induced at a physiological frequency and intensity, to prevent the osteoporosis that is concomitant with disuse. By protecting the left ulnae of turkeys from functional loading, we noted a loss of bone of 13.0 per cent compared with the intact contralateral control ulnae over an eight-week experimental period. Using a treatment regimen of one hour per day of pulsed electromagnetic fields, we observed an osteogenic dose-response to induced electrical power, with a maximum osteogenic effect between 0.01 and 0.04 tesla2 per second. Pulse power levels of more or less than these levels were less effective. The maximum osteogenic response was obtained by a decrease in the level of intracortical remodeling, inhibition of endosteal resorption, and stimulation of both periosteal and endosteal new-bone formation. These data suggest that short daily periods of exposure to appropriate electromagnetic fields can beneficially influence the behavior of the cell populations that are responsible for bone-remodeling, and that there is an effective window of induced electrical power in which bone mass can be controlled in the absence of mechanical loading. Clinical relevance: Our data suggest a potential role for the use of pulsed electromagnetic fields in the prevention of loss of bone in immobilized patients; in the aging, postmenopausal population; and in astronauts who are subjected to prolonged exposure to the microgravitational milieu. Structurally deleterious loss of bone may be slowed or prevented by appropriate use of non-invasive electromagnetic stimulation.
| Original language | English |
|---|---|
| Pages (from-to) | 411-417 |
| Number of pages | 7 |
| Journal | Journal of Bone and Joint Surgery |
| Volume | 71 |
| Issue number | 3 |
| DOIs | |
| State | Published - 1989 |
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