Search PubMedSearch

Biomedical subjects

T Radil

Publications and source records attributed to T Radil.

At least 19 recordsLinked to original sources

Two-dimensional manual tracking of periodic movements: event and time interval analyses.

Human visuo-motor functions were analysed by means of two-dimensional manual tracking tasks. A computer-based system for visual target generation, its movement control and real-time evaluation of the subjects' performance was developed. Various types of two-dimensional periodic target movements (over circular and square trajectories with different velocities) and various settings of tracking spot-joystick relation (normal and reversed direction) were used. Tracking success was expressed in terms of: (a) incidence of tracking errors; and (b) time spent within target. Results from the experiments performed with healthy non-trained subjects have demonstrated that tracking success is lower for a square target trajectory than for the circular one, and for higher target velocity than for the lower one. Reversed two-dimensional tracking was found to be very difficult. The results based upon the two criteria of tracking success (a,b) were different for the majority of tracking variants adopted. Quantitative and qualitative differences among subjects in tracking success were found. Two-dimensional target movements were substantially more difficult than one-dimensional ones with comparable parameters (analyzed in a previous paper).

Adult

Hippocampal auditory evoked response threshold in the rat: behavioral modulation.

Summed auditory evoked responses (AERs) were recorded bipolarly from CA1 field and inner molecular layer of the dentate gyrus of the hippocampus (Hipp) and compared to AERs simultaneously recorded from other extralemniscal (EL) nuclei and the inferior colliculus (IC) in the rat. There were no significant threshold differences for early Hipp AER (EHAER) and other EL AERs. The threshold for EHAERs and other EL AER was by several tens of decibels above that for IC, but usually lower than that for eliciting muscular reflexes. Actual behaviour (still waking, drowsiness, exploration, attention to stimuli) modified the thresholds for EHAER and other EL AERs equally. There was only little effect of actual behavior upon nonthreshold modulation of amplitudes of EHAERs. It is assumed that setting the threshold of the hypothetical common source of EH and other EL AERs plays main role in their behavioral modulation. As supposedly EHAERs are mediated through the perforant path, our results suggest that this pathway might transmit information related to high-threshold diffuse activation of the brain during the early stage of auditory processing.

Acoustic Stimulation

Perception of timing of movement-onset in a simple reaction time task.

Subjects judged verbally on temporal order between pressing a switch and a marking sound (MS) in a simple reaction time paradigm. They were uncertain when sound preceded movement by less than about 60 ms or followed it by less than 130 ms (transient zone--TZ). The point of subjective equality (defined by 0.5 probability of correct judgements of temporal order of sound and switching onsets) and the median of TZ were shifted about 60 and 35 ms prior movement onset, respectively. Estimating mutual timing of movement preparation and execution and sensory delays, these shifts correspond to the simultaneity of onsets of MS and proprioceptive feedback in the brain. Thus the results suggest about proprioceptive origin of perception of active movement onset.

Adult

Increase in cutaneous temperature induced by hypnotic suggestion of pain.

Eight patients with atopic eczema and six healthy subjects were given hypnotic suggestion to feel pain in the upper part of the back and in one case on the palm. An average local increase in skin temperature of 0.6 degrees C (detected by thermovision) occurred under this condition. For some patients cutaneous pain threshold was increased before the experiment by means of repetitive hypnotic suggestion of analgesia. These subjects reported feeling no pain subjectively, but the local change in skin temperature was equal in both cases. The results suggest a central mechanism induced by measuring changes in pain threshold in the skin, which changes are independent of local changes in blood flow.

Adolescent

Perceptual-motor coordination and style in healthy boys and those with minimal brain dysfunction.

Differences in visual-motor tracking by 8- to 9-yr.-old boys diagnosed with Minimal Brain Dysfunction or healthy have been analyzed. The subject's task was to use two computer keys to control a cursor line within a target which moved horizontally in two directions over the display. Target size and speed were the experimental variables. Off-target incidences and durations were measured and evaluated. The latter were longer and the former were more frequent on small targets for boys with brain dysfunction than for healthy boys. The two measures correlated negatively in most situations. The perceptual-motor style expressed by means of the distribution of coincidences of the two measures being over or under a criterion set equal to the corresponding averages of the healthy boys was different in the two groups. Brain-damaged boys were characterized mostly by the combination of high incidence of low duration misses for small and fast targets and by high incidence of high duration misses for large and slow targets, whereas most healthy boys showed a few misses of low duration for large and slow targets and few misses of high duration for small and fast targets.

Attention

Cooperative tapping: time control under different feedback conditions.

The same isochronous tone sequence was presented simultaneously to two mutually isolated subjects. In half the trials, accentuation in this sequence was accomplished by doubling the duration of the first and then of every fourth tone; in the other half, by doubling the frequency of those tones. The subjects' task was to follow the rhythm of the resulting four-tone patterns by finger tapping to tone onsets. There were four auditory feedback (FB) conditions: (1) no FB; (2) FB from the subject's own motor responses; (3) "alien" FB from the motor responses of the other pair member who, in turn, was listening to FB from his/her own tapping; (4) mutually "crossed" FB, where each pair member listened to FB from the tapping of the other. Tap onsets regularly preceded stimulus onsets. The observed order of the amount of this anticipation (from least to greatest) was: (1) own FB, (2) no FB, (3) alien FB, and (4) crossed FB. No mutual dynamic influence between simultaneously performing subjects was detected. Anticipation was more pronounced for sequences that were accentuated by frequency rather than by duration changes. The type of accent also influenced timing of intertap intervals in the rhythmic patterns. For the frequency accent, regular timing was produced, whereas for the durational accent, shortening of the second and lengthening of the fourth (the last) intertap interval were observed. The presence and source of feedback as well as the character of accentuation are therefore relevant factors in the timing of auditorally controlled rhythmic motor behavior.

Adult

Selective directional sensitivity in visual motion perception.

We present two experiments demonstrating that: (i) the latency of perception of the position of a small visual target moving towards the fovea is shorter than that of the same target moving away from the fovea; (ii) the reaction time (RT) to onset of motion of the same type of target is also shorter when it moves towards the fovea; and (iii) the RT to onset of motion away from the fovea may be shorter when larger, textured stimuli are employed. The relation of the findings to the existence of two systems for visual motion information processing and to recent neurophysiological findings is discussed.

Adult

Finger tapping in musicians and nonmusicians.

Timing plays an important role in perceiving and performing music. Finger tapping has been successfully used for analyzing timing processes (Fraisse, 1966, Franĕk et al., 1987, 1988). The aim of this study is to determine differences between musically trained and untrained subjects in their ability to follow repetitive rhythmic tonal patterns by finger tapping. It has been found previously (Povel, 1981; Smith, 1983) that time estimation differs among musicians and nonmusicians under certain conditions. The results presented here show that motor timing revealed by tapping is more accurate in musicians than in nonmusicians.

Fingers

Some neuropsychological and psychological parameters in children with minimal brain dysfunction: a transcultural comparison.

Performances of groups of second grade elementary school boys with Minimal Brain Dysfunction (ns = 34) and matched with normal boys (ns = 30) were studied using mostly psychometric criteria in Prague, Czechoslovakia and Skopje, Macedonia. Boys with brain dysfunctions scored more poorly than normal ones at both places, but normal boys from both cultures did not differ. Information-processing capability (derived from Wechsler scale) was lower and its rank among disordered features higher among Skopje boys, probably because organized care for minimal brain dysfunctioning children was relatively lower.

Achievement

Correlations between symbolic motor performance and achievement in school for children with minimal brain dysfunction.

Significant correlations were found between grades for reading, writing, and calculating and each child's individual mean reaction time for symbolic motor performance tasks with letters and numbers as stimuli for 240 elementary school boys with minimal brain dysfunction and in first to fourth classes in Prague (Czechoslovakia) and Skopje (Yugoslavia). For age(class)-matched groups of 382 healthy boys the correlations disappeared by the age of ten years. Similar results were noted for groups of boys in both cities.

Achievement

Sensorimotor synchronization: motor responses to regular auditory patterns.

Subjects (N = 32) were asked to synchronize a motor response with tones in auditory patterns. These patterns were created from six tones and six intertone intervals of equal duration. The pitch of the first tone differed from the others. It was found that subjects used three types of timing in their motor response: (1) the first intertone interval was prolonged and the second interval was shortened, (2) the second intertone interval was prolonged and the first interval was shortened, and/or (3) the first interval and the second interval were of approximately the same length. The prolongation of the fifth interval was observed during all three types of timing. The results are explained using the concept of suprasegmental control of timing, which explains a prolongation of intervals at critical control point of the patterns. The occurrence of three different strategies of timing is discussed in connection with similar principles in musical performance.

Acoustic Stimulation

Cardiac frequency, phase and errors in one-dimensional sensorimotor tracking.

One dimensional manual tracking was investigated in relation to actual heart rate and phase of cardiac cycle. Higher heart rate was combined with increased tracking error incidence and decreased successful tracking time (light spot inside target). Error incidence was time-locked with respect to the phase of cardiac cycle.

Electrocardiography