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J E Quast

Publications and source records attributed to J E Quast.

3 recordsLinked to original sources

Postural effects on intra-abdominal pressure during Valsalva maneuver.

When lifting heavy loads, trunk muscle contraction converts the abdominal and thoracic cavities into a nearly rigid-walled cylinder that provides increased extrinsic stability and allows partial transfer of load away from the spine. Because twisting is a common mechanism of low-back injuries, this study was undertaken to determine if trunk rotation results in a decrease in the extrinsic stability of the spine. We studied the effects of changes in trunk posture on intra-abdominal pressure generated during a maximum effort Valsalva's maneuver (IAP max) in eight healthy volunteers. IAP max during standing combined with trunk rotation was found to be significantly lower than IAP max during standing straight (p < 0.05). IAP max during forward flexion combined with trunk rotation was significantly lower than during forward flexion (p < 0.01). The results of our study indicate that trunk rotation adversely effects the ability to perform a Valsalva's maneuver. We conclude that extrinsic stability of the spine is at a biomechanical disadvantage when the trunk is rotated and thus may be a contributing factor to twisting-type back injuries.

Abdomen↗

Peripheral neuropathy in myotonic dystrophy. Relation to glucose intolerance.

Motor nerve conduction velocity (MNCV) was measured in three peripheral nerves in each of 24 patients with myotonic dystrophy having various degress of associated glucose intolerance and was compared with results in a control group. Both groups had similar glucose tolerance and were matched for age and adiposity. The mean MNCV in the ulnar, median, and peroneal nerves in the myotonic dystrophy group were all significantly slowed (P less than .01). This peripheral nerve dysfunction, usually subclinical, is yet another manifestation of this multisystem disease and is unrelated to the associated glucose intolerance.

Adult↗

Biofeedback training to overcome poststroke foot-drop.

The technique has exciting potential for elderly hemiplegic patients, even those who are confined to a nursing home. There are limiting factors, of course; the method is time-consuming and the initial outlay for equipment is high. But the rewards can be well worth the time, effort, and cost involved. The recovery potential of some geriatric patients after a cerebrovascular accident may seem bleak because of multiple disabilities, e.g., paralysis, delayed reflexes, aphasia. Fortunately, these disorders do not necessarily decree failure of biofeedback training. Neither does advanced age. The strongest component in success is motivation. A case in point is the 82 year old woman described here who had been hemiparetic for seven years. With biofeedback training, she gained--and maintained--muscle strength.

Aged↗