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[Effect of transversely directed accelerations on gastric motor function].

The motor function of the human stomach and starvation activity of dogs were investigated after their exposure to accelerations of various values and duration. Inhibition of the motor function of the stomach and alteration in the periodicity pattern were found. The alteration included suppression of hungry contractions, development of continuous motor activity and gradual recovery of periodic activity of the stomach. Motor changes were related to the acceleration value. The reaction of the motor apparatus of the stomach to accelerations was shown to be nonspecific. The changes in the motor function of the stomach seem to be secondary and to be associated with the changes in the functional state of regulatory centers of motor activity.

Acceleration

Esophageal motor function in Graves' disease.

Esophageal motor function was studied in 10 patients with untreated Graves' disease and 15 healthy volunteers who served as controls. A noncompliant recording system with a triple-lumen assembly was used. Resting upper- and lower-esophageal-sphincter pressures, amplitude, duration, and velocity of peristaltic contractions in the body of the esophagus, and the number of repetitive and simultaneous contractions were measured. There was no significant difference in peristaltic amplitude and duration between the controls and the patients with Graves' disease. However, there was a significant increase in velocity of contractions in Graves' disease as compared with controls. On restudy of 5 patients who became euthyroid after treatment with 131I, all the measured parameters were unchanged except for velocity of the peristaltic contractions. The value for this measurement decreased essentially to the same as that found in the control subjects. It is concluded that: (1) thyrotoxicosis increases the propagation velocity of esophageal contraction, and (2) thyroid hormones may play a physiologic role in the control of esophageal motor function.

Adult

Recovery of motor function after lesions in motor cortex of monkey.

This behavioural study concerns the contribution of active retraining to motor recovery after a standard lesion in the motor cortex, and includes an evaluation of various retraining procedures. These problems have not previously been experimentally analysed in man or animal. Rhesus monkeys (27) were initially trained on two motor tasks which consisted of a pulling task, involving the proximal muscles of the upper limb, and a hand-grip task for the distal musculature. Strength of pulling and hand-grip were measured quantitatively. For brevity, only the hand grip data are described. After a plateau of proficient performance was achieved in both hands (usually 6-8 months), the cortical precentral forelimb area was surgically ablated on one side. Each animal was then randomly assigned to one of four experimental groups or to a sham operative control group. The groups differed with respect to the use of the contralateral and/or ipsilateral forelimb(s) in post-operative motor training on the same task. In addition, to evaluate the contribution of spontaneous post-operative recovery independent of retraining, we started to train two groups immediately after surgery; in the other two experimental groups the weak forelimb remained idle for the first four post-operative months. Combined training of the weak and normal limb, which resulted in 85% recovery in the weak limb, did not differ statistically from training the weak limb alone (79% recovery). This suggests that the critical factor in promoting recovery is training of the weak forelimb, presumably by 'activation' of the damaged hemisphere. The role of the ipsilateral (strong) limb appears negligible. When post-operative training in the weak limb was delayed four months, spontaneous recovery noted one week after the start of delayed training was about 50% compared with 9% recovery after one week in the groups retrained immediately after surgery (P less than 0.001). The 'immediate' groups, however, continued to improve over a six-month period to about 82% of their pre-operative performance. The 'delay' groups, by contrast, exhibited only slight further improvement, reaching a plateau of 67% recovery six months after the start of retraining (10 months post-operatively). This difference in recovery between the immediate and delay groups was significant at the 0.05 level. This confirms that active physical retraining facilitates motor recovery, although the mechanism remains obscure. The data also suggest that, to be most effective, the training should begin as soon as possible after the insult to the brain has occurred.

Animals

The effects of phenytoin on motor function in awake cats.

Adult cats were monitored for their performance of a variety of motor functions before and after acute administration of phenytoin (5, 10 or 20 mg/kg) in a schedule in which each animal received all drug doses. The only significant loss in motor function was balance and coordination. Half the animals could not balance or walk along a narrow-edged beam after 20 mg/kg of phenytoin although their performance was not impaired at lower drug doses or on wider surfaces. There were no effects of phenytoin on the righting reflex, flexor reflex, muscle strength, the hopping response, the blind placing response or visually aided placing. The data suggest that phenytoin has a selective effect on higher order neuronal systems involved with balance and locomotion rather than simple reflex pathways.

Animals

[Electromyographic studies on gastric and intestinal motor function following pylorus preserving gastrectomy with jejunal interposition in dogs (author's transl)].

The gastric and intestinal motor function following pylorus preserving gastrectomy with jejunal interposition were studied electromyographically in dogs. The action potentials were recorded from the interposed jejunal segment, the preserving pylorus and the duodenum before and after insertion of warm water. Studies were made on the frequency, the propagation velocity of the spike-bursts in the portions mentioned above, and the incidence of the spike-bursts which propagated from the distal porition of the interposed jejunal segment to the preserving pylorus, and from the preserving pylorus to the proximal portion of the duodenum. The results obtained are as follows: 1) The frequency of the spike-bursts found in the interposed jejunal segment, the preserving pylorus, and the duodenum showed a remarkable increase after insertion of warm water. 2) The propagation velocity of the spike-bursts in the interposed jejunal segment, the preserving pylorus, and the duodenum were accelerated after insertion of warm water. 3) There were observed a moderate increase in the incidence of the spike-bursts which propagated from the distal portion of the interposed jejunal segment to the preserving pylorus, and from the preserving pylorus to the proximal portion of the duodenum after insertion of warm water. These findings suggested that the motor function of the interposed jejunal segment, that of the preserving pylorus, and that of the duodenum after pylorus preserving gastrectomy with jejunal interposition might be kept not yet injured enough to transport the contents from the interposed jejunal segment into the duodenum.

Action Potentials

Objective clinical assessment of motor function after experimental spinal cord injury in the rat.

A new method was developed for the clinical assessment of motor function in rats after experimental spinal cord injury. The method consists of placing the animal on an inclined plane which can be adjusted to provide a slope of varying grade, and then assessing the maximum angle of the plane at which the animal can maintain its position without falling. The method was used to quantitate motor function in normal rats and in rats subjected to myelectomy, and consistently showed major differences between the two groups. The method has many positive features: the plane is easy to construct and of low cost; and the test is rapid, non-invasive, repeatable, and consistent.

Animals

[Restoration of motor functions in disruption of the spinal cord or cauda equina].

Eight patients with a rupture of the spinal cord at the level of middle thoracic vertebrae or cauda equina at the lumbar level showed partial recovery of motor functions. The development of the activity was revealed by electromyography in body muscles and M. gluteus media in all the patients who attempted voluntary movements. Appearance and development of the activity was also observed in the muscles of the femur and crus. The level of rehabilitation shown by the patients was high enough. They could walk in fixation apparatuses, returned to their occupational activities and could practice self-service. The motor functions recovered more rapidly at the low levels of injury; however, the same and possibly complete rehabilitation was attained in 2 patients with a higher level of injury. The mechanism of the function recovery is underlain by the compensatory development of activity in the muscles of the body and capacity of the distal strip of the spinal cord for elaboration of new motor reactions in which the muscles of the extremities participate.

Cauda Equina

Repetitive transcranial magnetic stimulation in functional motor disorders: A systematic review of effects and targets.

OBJECTIVE: To evaluate the effectiveness, safety, and potential mechanistic implications of repetitive transcranial magnetic stimulation (rTMS) in adults with functional motor disorders (FMD), focusing on possible phenotype-specific responses and stimulation protocols. METHODS: Seven databases were searched from inception to July 2026. Randomised and non-randomised interventional studies were included. Risk of bias and evidence certainty were assessed using PEDro, RoB 2, JBI tools, and GRADE. Because of substantial clinical and methodological heterogeneity, findings were synthesised qualitatively. RESULTS: Fourteen studies were included. The primary motor cortex was targeted in 11 studies. Functional tremor showed the most consistent evidence with inhibitory stimulation: one small sham-controlled trial found a significant group-by-time effect on tremor severity (p = 0.007), while an uncontrolled prospective series reported 40 % reduction in postural tremor amplitude (p = 0.05). Evidence for functional weakness was conflicting: excitatory M1 stimulation increased objective strength by 25 % versus 10 % with sham (p = 0.004), whereas the largest inhibitory sham-controlled trial found no benefit (p = 0.80). No severe adverse events were reported, but safety reporting was incomplete. GRADE certainty was moderate for tremor and very low for all other outcomes. CONCLUSIONS: Current evidence is insufficient to establish the efficacy of rTMS in FMD or to recommend phenotype-specific protocols. Preliminary findings support further investigation of inhibitory stimulation for functional tremor, whereas evidence for excitatory stimulation in functional weakness remains uncertain. SIGNIFICANCE: The possible interaction between phenotype and stimulation direction is hypothesis-generating. rTMS should currently be considered an experimental, context-sensitive adjunct within multidisciplinary care, pending adequately powered phenotype-stratified sham-controlled trials. Prospero Registration Number: CRD420251250969.

Humans

Effects of intravenous and oral domperidone on the motor function of the stomach and small intestine.

One hundred and fifty-six patients referred for barium meal with follow-up examination, participated in a placebo-controlled blind assessment of the effects of domperidone against placebo, on gastric motility and emptying. None of the patients had organic obstruction, had undergone previous gastrointestinal surgery or were currently taking anticholinergic drugs. In one study, patients were randomly given either 10 mg, 20 mg or 50 mg of domperidone or placebo suspension orally 30 minutes prior to barium meal to simulate therapeutic conditions. In a separate study conducted under identical conditions, either 8 mg domperidone or placebo was given intravenously. Domperidone (8 mg i.v. or 20 and 50 mg orally) significantly promoted antral peristalsis and gastric emptying compared to placebo. The results suggest that domperidone improves motor function in the proximal part of the gastrointestinal tract and synchronizes motor function due to its protracted activity.

Administration, Oral

Effect of glucagon on esophageal motor function.

This study evaluates the effect of exogenous glucagon on esophageal motor function in man. Manometric studies were performed using an infused catheter system. Resting lower esophageal sphincter (LES) pressure was monitored before and after intravenous pulse doses of glucagon (1 to 100 mug). The effect of glucagon (0 mug ) on esophageal peristalsis was also studied. Multiple blood samples were taken for determination of glucagon, insulin, and glucose concentration. Glucagon effect on LES pressure was also evaluated after LES stimulation by continuous intravenous infusion and pentagastrin (0.04 mug per kg per min). Glucagon caused a transient significant decrease of LES pressure only at pulse doses (20 and 100 mug) which caused nonphysiological elevation of plasma glucagon levels. The temporal profile of decreased LES pressure correlated closely with maximal blood glucagon levels. Glucagon caused no demonstrable change in esophageal peristalsis. During LES stimulation by pentagastrin, glucagon caused significant transient decreases of LES pressure at doses as low as 1 mug per kg. We conclude that glucagon at sufficient dosage has an inhibitory effect on LES pressure. This inhibitory effect is not mediated through changes in serum insulin or glucose and appears to be pharmacological.

Adolescent

[Effect of electroacupuncture combined with suspension exercise therapy on lower limb motor function in elderly patients with post-stroke spastic hemiplegia].

OBJECTIVE: To observe the efficacy of electroacupuncture (EA) combined with suspension exercise therapy in elderly patients with post-stroke spastic hemiplegia and its effect on lower limb motor function. METHODS: A total of 120 elderly patients with post-stroke spastic hemiplegia were enrolled. Using a 2&#xd7;2 factorial design, all the patients were assigned to a group A (conventional treatment), a group B (conventional treatment combined with suspension exercise therapy), a group C (conventional treatment combined with EA at Jiaji [EX-B2] and limb acupoints), and a group D(conventional treatment combined with suspension exercise therapy and EA at Jiaji [EX-B2] and limb acupoints), with 30 patients in each group. The main acupoints were bilateral Jiaji (EX-B2) points at the C2-C7, T2-T12, L1-L5, and S1 segments. The adjunct acupoints included Jianyu (LI15), Binao (LI14), Huantiao (GB30), Chengfu (BL36), etc. on the affected side.Continuous wave was applied at a frequency of 100 Hz with a current intensity of 1.5-3.0 mA, and needles were retained for 30 min, once daily for 4 weeks. Before treatment and after 2 and 4 weeks of treatment, the modified Ashworth scale (MAS),Fugl-Meyer assessment (FMA), Berg balance scale (BBS), and Barthel index scores were evaluated in the four groups. Root mean square (RMS) values of surface electromyography (sEMG) of the erector spinae and rectus abdominis muscles on the affected side, as well as balance function indexes, including the mean pressure symmetry index (SI), contact area SI, ellipse area, and displacement distances of the center of pressure in the anteroposterior (AP) and mediolateral (ML) directions, were measured. Clinical efficacy was also compared among the four groups. RESULTS: After 2 and 4 weeks of treatment, MAS scores in all groups were lower than those before treatment (P<0.05), whereas FMA, BBS, and Barthel index scores were higher than those before treatment (P<0.05). After 4 weeks of treatment, MAS scores were lower than those after 2 weeks of treatment (P<0.05), whereas FMA, BBS, and Barthel index scores were higher than those after 2 weeks of treatment (P<0.05) in the four groups. At both 2 and 4 weeks after treatment, group D had lower MAS scores (P<0.05) and higher FMA,BBS, and Barthel index scores (P<0.05) than the other three groups. After 2 and 4 weeks of treatment, RMS values of sEMG of the erector spinae and rectus abdominis muscles on the affected side at all tested angles were higher than those before treatment in all groups (P<0.05), and the values after 4 weeks of treatment were higher than those after 2 weeks of treatment(P<0.05). At both 2 and 4 weeks after treatment, all these indexes in the group D were higher than those in the other three groups (P<0.05). After 2 and 4 weeks of treatment, the mean pressure SI, contact area SI and ellipse area of each group were lower than those before treatment (P<0.05). After 4 weeks of treatment, the mean pressure SI, contact area SI and ellipse area of each group were lower than those after 2 weeks of treatment (P<0.05). After 2 and 4 weeks of treatment, the AP displacement distances of groups A, C and D were lower than those before treatment (P<0.05), and after 4 weeks of treatment, the AP displacement distances of groups A, C and D were lower than those after 2 weeks of treatment (P<0.05);after 2 weeks of treatment, there was no statistically significant difference in AP displacement distance in the group B compared with before treatment (P>0.05), and after 4 weeks of treatment, the AP displacement distance of group B was lower than that before treatment (P<0.05). After 2 weeks of treatment, there was no statistically significant difference in ML displacement distance in group A compared with before treatment (P>0.05); after 4 weeks of treatment, the ML displacement distance of group A was lower than that before treatment (P<0.05). After 2 and 4 weeks of treatment, there was no statistically significant difference in ML displacement distance in the group B compared with that before treatment (P>0.05).After 2 and 4 weeks of treatment, the ML displacement distances of groups C and D were lower than those before treatment(P<0.05), and after 4 weeks of treatment, the ML displacement distances of groups C and D were lower than those after 2 weeks of treatment (P<0.05). At both 2 and 4 weeks after treatment, mean pressure SI, contact area SI, ellipse area, and AP and ML displacement distances in the group D were lower than those in the other three groups (P<0.05). Factorial analysis of variance showed that EA had the strongest main effect on FMA score (F=6.243, P<0.05), suspension exercise therapy had the strongest main effect on BBS score (F=6.292, P<0.05), and the interaction effect was most significant for MAS score (F=5.941, P<0.05), indicating that the combined therapy produced a greater synergistic effect on reducing muscle tone than on the other outcome measures. The total effective rate in the group D was 93.3% (28/30), which was higher than those in the group A (53.3% [16/30]), group B (56.7% [17/30]), and group C (66.7% [20/30], P<0.05). CONCLUSION: EA combined with suspension exercise therapy could effectively promote the recovery of lower limb function in elderly patients with post-stroke spastic hemiplegia, improve motor and balance functions, and enhance activities of daily living.

Humans

Development of functional motor innervation in supernumerary hindlimbs of the chick embryo.

1. The development of functional motor innervation in supernumerary chick hindlimbs transplated to host embryos at stages 16--18, was studied throughout the embryonic period from stage 27 when peripheral synapses were first formed. 2. The innervation pattern, defined as the number and sequential order of spinal nerves innervating individual muscles, were determined for supernumerary hindlimbs innervated by thoracic, lumbosacral-thoracic, or wholly lumbosacral spinal cord segments. Spinal nerves were electrically stimulated and muscle contraction was scored visually or by tension measurement and compound action-potential recordings were made from muscle nerves. 3. There was no tendency for spinal nerves to grow to or to synapse with the muscles which they normally innervate. Rather, they formed functional connections with inappropriate muscles, which were maintained throughout the developmental period studied. The localization of the motoneuron cell bodies was confirmed with retrograde transport of horseradish peroxidase (HRP) and shown to be adjacent to the spinal nerves through which their axons exited. Motoneurons innervating specific muscles occupied a similar medial-to-lateral position in the cord in both control and supernumerary limbs. 4. In all supernumerary limbs a definite peripheral innervation pattern was formed, which approximated the normal pattern. Specifically, the relative craniocaudal position of motor columns innervating individual muscles was conserved, even though the actual spinal nerves innervating the transplant were different from animal to animal. In limbs reversed along the anterior-posterior axis, the innervation pattern was also reversed. 5. The results suggest that motoneurons have not been rigidly specified to innervate certain muscles at the time when the limb buds were transplanted. Further, the limb itself can apparently influence the innervation pattern in an important manner, possibly by specifying motoneurons or by subsequently directing axon outgrowth and synapse formation.

Action Potentials

Management of children with non-organic (hysterical) disorders of motor function.

Five children aged between 10 and 13 years are discribed whose disorders of motor function were found to have a non-organic (hysterical) cause. In most cases extensive investigations had been made to establish an organic cause before the hysterical basis was diagnosed. The three essentials of management of such cases are to limit further investigations to the essential minimum, to institute quickly a programme of graduated physical rehabilitation, and to establish and treat the underlying psychological problems.

Adolescent

[A developmental study of visual-motor function in cerebral palsied children (author's transl)].

The purpose of this study was to investigate whether the disorder in the visual-motor function of cerebral palsied children was affected by specific defects or by the distortion in perceptual motor system or by mere developmental lag in the function of recognition and reconstruction using the method of multiple choice and Shochi's Block Design Test (1971). The results were as follows : Cerebral palsied children's developmental lag in the function of recognition was not conspicuous but the development in the function of reconstruction was obviously inferior to that of normal children. There was the difference in reconstruction ability by children with the types of cerebral palsy and intellectual levels and design-constructive patterns. Those factors and the developmental lag cause visual-motor disorders.

Cerebral Palsy

A new device for the rapid measurement of impaired motor function in mice.

Measurement of the ability of mice to balance on a rotating rod or cone is often used as a measure of impaired motor function. In most of these procedures the mice must be trained prior to the test. In the new screen test described in this paper, untrained mice are used in a 60 sec test which measures the ability of mice to either climb to the top of or cling to the bottom of a horizontal screen. The ED50 values obtained for failure to reach the top of the horizontal screen are similar to those obtained with the rotarod; the values for falling from the screen are somewhat higher. With both of the horizontal screen measures there were fewer control failures than in the rotarod procedure.

Animals

[Characteristics of the motor function of the gallbladder in the dumping syndrome and their importance in establishing a therapeutic diet].

In 76 patients suffering from the dumping syndrome following gastric resection in connection with peptic ulcer the motor function of the gallbladder and gastric stump was studied. Investigations ascertained the existence of a direct relationship between the type of the gallbladder dyskinesia and evacuation periods from the gastric stump. The authors consider the hypermotor dyskinesia of the gallbladder combined with an accelerated evacuation from the stump to be an optimal combination after excision of the stomach. On the other hand, the hypomotor dyskinesia of the gallbladder with an accelerated emptying of the gastric stump was regarded as am explicit pathology demanding persistent curative measures. Principles of pathogenetic dietotherapy have been evolved.

Dumping Syndrome

The interaction of ethanol and delta9-tetrahydrocannabinol in man: effects on perceptual, cognitive and motor functions.

Twelve paid student volunteers (8 male, 4 female) were used in a double-blind crossover experiment to investigate the effects of delta9-tetrahydrocannabinol (THC) alone, and in combination with ethanol, on human perceptual, cognitive and motor functions. Both THC (10 mg/70 kg) and ethanol (0-5 g/kg) had little effect when administered alone. The combination of drugs, however, induced a significnat decrement in performance in some of the tests and this interaction was considered to be at least additive. The peak blood ethanol concentration was higher (P = 0-05) when subjects received both ethanol and THC than when they received ethanol alone.

Adolescent