A method for preventing osteopenia, promoting bone tissue growth, ingrowth, and healing of bone tissue includes the step of applying a mechanical load to the bone tissue at a relatively low level on the order of between about 50 and about 500 microstrain, peak-to-peak, and at a relatively high frequency in the range of about 10 and about 50 hertz. Mechanical loading at such strain levels and such frequencies has been found to prevent bone loss and enhance new bone formation.
A system for therapeutic treatment of bone includes a source of energy for stimulating a bone, a feedback loop for receiving response information from the bone generated by the stimulation and an adjustment device for adjusting the energy source according to predetermined criteria. A method of therapeutically treating bone includes the steps of providing a source of energy for stimulating a bone, feedback means for receiving response information from the bone generated by the stimulation and adjustment means for adjusting the energy source according to predetermined criteria, applying energy to cyclically stimulate the bone, collecting response information from the bone due to the stimulation, comparing the response information to the predetermined criteria and adjusting the energy source to obtain a response in accordance with the predetermined criteria. The system and method ensure, augment and accelerate the bone healing process.
Bone disorders may be treated by applying a compressive preload and repetitive impacts. The patient may be maintained in a static position and the preload be provided by gravity or compression. The impact load, impact rate, and a number of impacts determined by a physician prior to treatment are chosen to generate electrical signals in the patient's bone such that the majority of energy of the electrical signals lies between 0.1 Hz and 1 kHz, and the peak amplitude values of the electrical signals lie between 15 and 30 Hz.
An apparatus provides relief from osteoporosis, through either prevention of its development or reversal of its presence, by utilizing a light-weight portable low intensity, low frequency electrical field specifically targeted for osteoporotic of hips and spine, thereby reducing the growing numbers of hip and vertebral fractures in our aging population. The apparatus is simple to utilize, safe, of inexpensive construction, convenient to use, and may be incorporated permanently within a specific designer line of clothing made for this purpose, or the device may be portable and adaptable to a variety of clothing which the wearer may choose, as that person's fashion preferences may dictate. The hip areas of the official pants are padded to absorb energy if the wearer accidentally falls onto either hip, decreasing the likelihood of a hip fracture. Electrode placements are discussed, for proper positioning of the electromagnetic fields; also addressed are the design of the clothing incorporating this osteoporosis-relief system, and the design of the spine electrode "envelopes".
5752925 - Abstract - Owned by Board of Trustees of the Leland Stanford Junior University (Palo Alto, CA)
The invention presents a method and device for increasing the fracture resistance of a bone tissue to a traumatic force. The method includes the step of selecting a nonphysiological impulse force having a location and direction resembling that of the traumatic force, but having a magnitude significantly smaller than the magnitude of the traumatic force. The impulse force is then repeatedly applied to the bone tissue, thereby stimulating the bone tissue to grow bone mass in critical areas where stresses from the traumatic force are largest. A device for applying the method includes an impulse force applicator for repeatedly applying the impulse force and a positioner for positioning the impulse force relative to the bone tissue.
A system for therapeutic treatment of bone includes a source of energy for stimulating a bone, a feedback loop for receiving response information from the bone generated by the stimulation and an adjustment device for adjusting the energy source according to predetermined criteria. A method of therapeutically treating bone includes the steps of providing a source of energy for stimulating a bone, feedback means for receiving response information from the bone generated by the stimulation and adjustment means for adjusting the energy source according to predetermined criteria, applying energy to cyclically stimulate the bone, collecting response information from the bone due to the stimulation, comparing the response information to the predetermined criteria and adjusting the energy source to obtain a response in accordance with the predetermined criteria. The system and method ensure, augment and accelerate the bone healing process.