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At least 19 recordsLinked to original sources

Motor activity, anticipated motor activity, and young children's associative learning.

The purpose of this study was to determine whether motor activity, previously assumed necessary to induce imagery in young children's associative learning, actually has to be executed. The results of our experiment with kindergartners clearly suggest not: In conditions where subjects simply planned to the potential motor activity (without executing it), learning was enhanced. Further, the temporal proximity of the planning to the potential motor activity did not prove to be important. These results, combined with those from 2 follow-up experiments, give rise to the speculation--among others--that young children can be "tricked" into imagery generation through appropriately worded instructions.

Association Learning

[Thyroid gland activity and motor activity during dog ontogenesis].

The locomotor activity (LA) and the level of the protein-bound iodine (PBI) in the blood serum were investigated in 62 puppies at the age of 1--12 months. A parallel elevation of PBI and the LA was observed the first 4 months after birth. The second peak of the LA at the age of 7--9 months was not accompanied by any PBI rise. Inhibition of the thyroid function with mercasolyl increased the LA at the age of 1--3 months and decreased it at the age of 7 months. An increase of the LA one month after thyroidectomy was found at the age of 1 and 3.5 months. The activity of puppies operated on at the age of one month showed a sharp fall after 2--4 months. The data on various effect of thyroid hormones on puppies of different age pointed to the complex relation between the LA and the thyroid gland function.

Animals

[Vegetative functions and motor activity in endogenous depression. Longitudinal study on salivary secretion, temperature, and motor activity in a patient with 48-hour cycles (author's transl)].

Vegetative functions were studied in a 66-year-old-male patient with 48-h unipolar cycles of depression. Salivary secretion, body temperature, and motor activity were measured at 3-h-intervals during the day and once at night. The mood state was assessed by two self-rating scales. There was a regular alternation between 'good' and 'bad' days. Salivary secretion was higher on good days, especially in the morning (P less than 0.002, 10:00). The shape of the 24-h-prolife was different on good and bad days, with a maximum at 10:00 on good at 16:00 on bad days. The mimimum in the night was the same on both good and bad days. Body temperature was increased, as compared with normal subjects (mean 37.2 degrees C) and the diurnal variation was slight. On good days, body temperature during the day was about 0.1 degree C higher than on bad days. Motor activity (arm and leg), registrated by means of the 'activity watch', was higher (during the day) on good days. The present data give some hints for a central dyregulation of vegetative functions in endogenous depression.

Aged

The relationship between wrist-monitored motor activity and serum CPK activity in psychiatric in-patients.

Motor activity, monitored by a wrist motion transducer, was related to serum CPK activity the following morning in a group of psychiatric in-patients. In 4 of 10 patients, studied for periods exceeding one week, total 24-hour activity was significantly correlated with morning serum CPK activity. Motor activity during the night was unrelated to serum CPK activity. In a larger group of 30 patients, studied for one or two-day periods, inter-individual differences in activity level were not related to serum CPK activity, although both sex and race were significantly related to variance between subjects in that activity.

Creatine Kinase

Objective measurement of human motor activity: a preliminary normative study.

Motor activity values have been generated for a population of young adult subjects in order to develop normative values for motor activity levels. Using the large-scale-integrated (LSI) motor activity monitor, day and night motor activity have been continuously and noninvasively monitored for approximately 1 month on 13 normal subjects. Comparisons between measured and self-rated motor activity tend to validate this technique. The results are discussed in relation to ongoing motor activity studies showing definite changes in activity associated with fluctuations in mood and anxiety.

Adult

[Effects of hypokinesia on cardiac activity in rats with high and low spontaneous motor activity].

Hypokinesia effects on cardiac contractivity and vegetative regulation were studied in rats with high and low spontaneous motor activity. It was shown that hypokinesia promotes depression of the stroke volume and decrease of sympathetic nervous activity in rats with low motor activity. At the same time, in rats with high motor activity these parameters were not significantly affected by hypokinesia. The conclusion is made about a relationship between resistance to hypokinesia and spontaneous motor activity.

Animals

The effect of synthetic scotophobin on motor activity in mice.

The motor activity of mice treated by scotophobin (1, 2, 4, 6 micrograms) was tested in a photoresistor actometer 24, 48 and 72 h after injection. Scotophobin in doses of 4 and 6 micrograms per mouse increased significantly the motor activity as compared with controls injected with saline only. This result suggests that shortening of dark box time, found by some authors after injection of scotophobin, seem to be the consequence of the enhanced motor activity of mice. Thus the effect of scotophobin on the behavior of animals is not specific and this substance can not be considered responsible for the "memory transfer".

Animals

The inhibitory effect of intraventricular administration of serotonin on spontaneous motor activity of rats.

Spontaneous motor activity was studied following injection of 1, 10 and 50 mug of serotonin (5-HT) into the lateral ventricle of chronically cannulated rats. During the first 15 min, the rats receiving the higher doses of 5-HT showed significant decrements (P less than 0.01) in motor activity compared to saline controls. No activation was observed in either group. After 20 min, no significant differences for any treatment condition compared to saline controls were observed. It is concluded that a principal effect of directly increasing brain 5-HT concentration is to decrease activity. Possible mechanisms for this effect are discussed.

Animals

Effects of fractionated doses of ionizing radiation on colonic motor activity.

The colonic motor effects of fractionated irradiation were studied in five conscious dogs. Seven colonic and two ileal strain gauge transducers were implanted. After control recordings, an abdominal dose of 250 cGy was administered three times a week on alternate days for three successive weeks (total dose 2,250 cGy). Recordings were then continued for 3 wk after the completion of radiation. Colonic giant migrating contractions (GMCs) occurred at a frequency of 0.15 +/- 0.05 contractions/h in the control state. Only one of these contractions (8.3%) originated in the small bowel and propagated into the colon. Abdominal field irradiation significantly increased the incidence of colonic GMCs to 0.51 +/- 0.11 contractions/h (P < 0.05). Fifty-four percent of GMCs originated in the small intestine. GMCs during the radiation schedule were associated with explosive diarrhea on seven occasions. Irradiation did not alter the frequency of colonic migrating motor complexes, but the mean duration of contractile states decreased in the middle and distal colon. Diarrhea occurred as early as the second dose of radiation. Pathological changes in the colon were correlated with motor activity. Both small intestinal and colonic GMCs reverted to control frequencies after cessation of radiation exposure. Abdominal irradiation significantly altered the contractile activity of the colon. These changes are associated with abdominal cramping and diarrhea.

Animals

Catecholamine receptor agonists: effects on motor activity and rate of tyrosine hydroxylation in mouse brain.

Motor activity during the first 5 min in a motility meter was measured in mice given 0.025-3.2 mg/kg of the dopamine and noradrenaline receptor agonists apomorphine and clonidine, respectively. The accumulation of Dopa, as induced by the inhibitor of aromatic amino acid decarboxylase, NSD 1015, was measured in parallel in two dopamine-rich regions, i.e. the limbic system and the corpus striatum, and in two noradrenaline-rich regions, i.e. the neocortex and the lower brain stem. Low doses (0.025-0.2 mg/kg) of apomorphine reduced locomotion in a dose-dependent manner, while the reduction after higher doses was less pronounced, indicating a biphasic dose-response relationship. Clonidine caused a dose-dependent locomotor depression. When low doses of the two drugs were combined, the inhibitory effect observed was at least additive. When clonidine was combined with a high dose of apomorphine (0.8 mg/kg), it caused a significant inhibition of locomotion in a dose of 0.1-0.2 mg/kg, but not after 0.8 mg/kg, indicating a biphasic dose-response relationship. Either drug given alone reduced Dopa accumulation after inhibition of its decarboxylation, in all regions, but smaller doses of apomorphine had a clearcut effect only in the dopamine-rich regions, whereas the lowest dose of clonidine investigated (0.05 mg/kg) had an inhibitory effect on Dopa formation only in the neocortex. The relationship between the dose of apomorphine and Dopa formation in the neocortex appeared biphasic, the highest dose (3.2 mg/kg) having no significant effect. Further, apomorphine in this dose accelerated the disappearance of noradrenaline after inhibition of synthesis by alpha-methyltyrosine. Reversal of reserpine-induced suppression of motor activity was taken to indicate postsynaptic receptor activation. The threshold dose of apomorphine causing reversal was 0.2 mg/kg. The inhibitory effect of e.g. 0.05 mg/kg on locomotion and on Dopa formation suggests a preferential activation of inhibitory autoregulatory dopamine receptors by low doses of this drug. A similar trend was observed for clonidine. The basal importance of dopamine neurones for the locomotor function studied in the present paper is illustrated by the marked inhibition by low doses of apomorphine. On the other hand, the observations with clonidine suggest a somewhat less striking and perhaps less direct influence of noradrenaline neurones on motor activity. Mice with a low motor activity, as induced e.g. by reserpine or, in another experiment, mice adapted to the motility meter, displayed an increased motor activity after higher doses of apomorphine (from 0.2 and 2 mg/kg, respectively), whereas all doses depressed the initial high motor activity. Probably, high motor activity requires active dopamine neurones, making this behaviour more susceptible to interference with autoregulatory mechanisms, whereas a low basal activity may be more affected by activation of postsynaptic dopamine receptors.

Animals

[Quantitative evaluation of motor activity of children with hyperkinetic syndrome].

Quantitative assessment of children's motor activity is necessary to objective classification of children according to their motor activity. The authors of the study made a quantitative assessment of motor activity of 55 boys in the age from 8-12, with normal IQ, using motor-scopic-motor-metric method. Global motor activity was assessed together with the activity of the head, trunk, and limbs, in such testing situations as sitting, standing, lying, and reading. It was found out that quiet children make 6.4 movements per minute, and hyperkinetic children make 21.4 movements per minute. Assessment of motor activity of upper limbs (arms, hands, fingers) is a sufficient factor to assess motor activity of children and verify their hyperkinetic syndrome. In such conditions 3.1 movements per minute is a borderline for quiet children and 6.4 movements per minute for hyperkinetic children. It was found out that the growing-up process leads to lessening of motor activity, especially in hyperexcitable children.

Attention Deficit Disorder with Hyperactivity

[Ultrastructure of rat cerebral cortex neurons at different levels of motor activity].

The reaction of neurons in rat motor cortex during the intensive motor activity and fatigue caused by swimming was investigated with the electron microscope. In both the cases the nuclear envelope in the neuron perikaryon was sharply enlarged resulting in the appearance of deep invaginations; the nucleolus displaced towards the nuclear envelope. Components of the endoplasmic reticulum and Golgi complex increase in size and number, ribosomes become more numerous, the cytoplasm getting denser. During fatigue the above changes appear more pronounced in addition to mitochondrial swelling, the matrix becomes less dense and cristae less numerous. These changes suggest the intensification of metabolitic activity of the cortical neurons during both the intensive motor activity and fatigue.

Animals

[Effect of different schedules of motor activity on the processes of human adaptation to high-altitude conditions].

Responses of external respiration, hemodynamics and blood were studied in 12 test subjects during their step-by-step adaptation to altitudes of 2200 and 3200 m. The test subjects were subdivided into two groups who were exposed to different schemes of motor activity--free motor activity and diminished motor activity during bed rest. The results indicate a direct relationship between positive adaptive reactions of physiological systems of the human body and motor activity.

Acclimatization

Effects of locally applied dopamine to the nucleus accumbens on the motor activity of normal rats and following alpha-methyltyrosine or reserpine.

The motor activity of rats was investigated following bilateral application of various doses (0--80 micrograms) of dopamine to the nucleus accumbens. A high dose (80 micrograms) of dopamine increased the motor activity of normal as well as alpha-methyltyrosine- and reserpine-treated rats. It also increased the late motor activity (6--9 min) of normal rats, probably due to stimulation of postsynaptic dopamine receptors. Lower doses (10--40 micrograms) of dopamine suppressed initial (0--3 min) motor activity of normal rats, perhaps due to stimulation of dopamine autoreceptors on the dopamine nerve terminals in the nucleus accumbens with a subsequent inhibition of dopamine neurotransmission. An intermediate dose (40 micrograms) of dopamine was able to restore the motor activity of alpha-methyltyrosine-treated but not of reserpine-treated rats at all time intervals. This difference, indicating a restoration of the normal pattern of habituation by dopamine only in animals pretreated with alpha-methyltyrosine, suggests that normal behaviour is dependent on release of dopamine by nerve impulses.

Animals

Effects of lithium carbonate on motor activity in mania and depression.

A telemetered movement recording system and nursing ratings of behavior were utilized to assess spontaneous motor activity and symptom intensity of 15 patients with affective illness before and during lithium carbonate treatment. Prior to treatment, patients rated hyperactive-elated, angry, and agitated had more motor activity, and patients rated anergic and retarded had less motor activity. Lithium carbonate treatment was not associated with any uniform change in motor activity for all patients; however, patients with a decrease during treatment in thought disorder, motor agitation, and hyperactivity-elation had a decrease in motor activity, and patients who had a decrease in depressed mood, anergia, motor retardation, and social withdrawal had an increase in motor activity. The decrease in activity of manic patients, except for the 11 p.m. to 3 a.m. period of apparent sleep, appeared to occur fairly uniformly throughout the 24-hour period, but the increase in activity of the depressed patients occurred mostly during the daytime. The data indicate that lithium does not exert a strong and consistent direct effect on spontaneous motor movement, and that when changes in movement do occur, they relate to changes in clinical states.

Adult

A method of quantitating aggressive behaviour revealing possible dissociation of motor activity and aggression.

A method is described for quantitating isolation-induced aggression in wild male mice by measuring coarse motor activity. It is based on the operational definition that aggression is the form of motor activity in which two (or more) animals are involved in behaviour patterns, such as physical attack and/or defence including pursuit and flight. Both coarse and fine motor activity were measured by means of an electromagnetic activity meter. Four hundred ninety-two fights occurring among mice treated with various hormones, neurotransmitter antagonists, hashish, and cyproterone acetate were recorded; a positive significant correlation (P less than 0.001) between indices of fighting behaviour as well as fighting time and coarse motor activity were found. The simultaneous measurement of motor activity and aggression revealed dissociated effects of some drugs on non-aggressive fine motor activity and aggression.

5,7-Dihydroxytryptamine

Interdigestive motor activity of Heidenhain pouches in relation to main stomach in conscious dogs.

A great number of studies using Heidenhain pouches have been reported, but most of them have been concerned with secretory activity. Studies on the motor activity of the pouch are few, and our knowledge about it is rather limited. In the present study, therefore, long-term changes in contractile activity of the Heidenhain pouches were recorded simultaneously with those of the main stomach in conscious dogs by means of chronically implanted force transducers. It was found that during the interdigestive state Heidenhain pouches contracted precisely in association with the main stomach. During this time a series of strong contractions arose simultaneously in the Heidenhain pouch and the main stomach, lasted for 24.2 +/- 1.90 min, and then ceased abruptly. Such strong contractions were followed by a long period of motor quiescence lasting for 86.9 +/- 6.06 min. These characteristic recurring episodes in the Heidenhain pouch and the main stomach lasted during the interdigestive state but were inhibited by the ingestion of food or intravenous administration of pentagastrin. These findings indicate that the interdigestive motor activity of the stomach is strongly controlled by a humoral factor(s) rather than the parasympathetic nervous system; however, we also propose a possible role for the sympathetic nervous system for coordinated occurrence of the interdigestive contractions between the Heidenhain pouch and the main stomach.

Animals