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Biomedical subjects

O C Lippold

Publications and source records attributed to O C Lippold.

35 records · Page 2Linked to original sources

Long-lasting increases in the tremor of human hand muscles following brief, strong effort.

1. Long-lasting (up to 4 h) increases in finger tremor were produced by intense brief effort to contract the muscle. 2. Similar increases resulted from intense effort which did not contract the muscle because the motor nerve was blocked. 3. Comparable contractions induced electrically failed to give rise to increased tremor. 4. Power spectral analysis (1-15 HZ) revealed that all frequencies of tremor were approximately equally increased. 5. It is concluded that these long-lasting increases in tremor are of central nervous origin.

Action Potentials↗

Oscillation in the stretch reflex arc and the origin of the rhythmical, 8-12 C-S component of physiological tremor.

1. A brief downward, stepwise displacement applied to the outstretched finger gives rise to a train of approximately sinusoidal movements of it, lasting often more than 1 sec. The frequency of these waves is the same, in any one subject, as that of physiological tremor.2. The oscillations are regular in form, and bear a constant phase relation to the applied displacement; they can be summated using an averaging computer (Biomac 1000) triggered by the mechanical stimulus.3. The oscillations are altered in the same way as is physiological tremor by a number of factors. Cooling the arm before recording lowers the frequency, warming raises it, while the application of an arterial cuff decreases the amplitude and tends to elevate the frequency. These factors have effects of similar magnitude on both the oscillations and the tremor. It thus appears highly likely that the waves produced by a mechanical input and physiological tremor waves are due to the same process, namely oscillation in an underdamped servo-system.4. The oscillation is not due simply to the mechanical, die-away resonance of the finger, because bursts of muscle action potentials can be recorded in phase with the finger movements both in the wave train evoked by the mechanical displacement and during normal tremor.5. It is concluded that physiological tremor in the 8-12 c/s band is due to oscillation in the stretch reflex servo-loop.

Action Potentials↗

The production of persistent changes in the level of neuronal activity by brief local cooling of the cerebral cortex of the rat.

1. Local cooling of the surface of the cerebral cortex of the rat gives rise to an increase in the spontaneous firing rate of cortical neurones.2. When this increase in firing is maintained, by continued cooling, for 5 min or more, a prolonged after-effect consisting of an increase in rate above the control level is produced lasting up to at least 3(1/2) hr following restoration of temperature.3. The potential gradient across the cortical surface during cooling is in the opposite direction to that required to produce an increase in firing during and after trans-cortical polarization.4. It is therefore likely that the important factor in producing after-effects is associated with the actual firing rate of the neurones during the cooling (or polarizing) procedure rather than the accompanying extracellular potential gradient.

Action Potentials↗