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Cerebellar iTBS enhances gait adaptation by modulating cortical sensorimotor network dynamics: a randomized controlled trial.

Gait adaptation enables individuals to maintain locomotor stability under persistent perturbations. Although the cerebellum is critical for sensory prediction error-based (SPE) adaptation, how cerebellar neuromodulation reshapes cortical sensorimotor networks to enhance gait adaptation remains unclear. This study investigated the behavioral effects and underlying cortical neurodynamic mechanisms of cerebellar intermittent theta-burst stimulation (iTBS) on gait adaptation. Thirty-two healthy adults received either active or sham cerebellar iTBS. Participants performed a split-belt treadmill adaptation task before and after intervention. Cortical responsiveness was evaluated using TMS-evoked EEG over primary motor cortex (M1), while resting-state EEG was analyzed to assess spectral power and directional functional connectivity. Compared to sham, cerebellar iTBS significantly enhanced gait adaptation, evidenced by a faster adaptation rate (p = 0.035) and enhanced Early Adaptation SLS (p = 0.011), without altering initial perturbation responses or post-adaptation outcomes. The iTBS increased TMS-evoked α (p = 0.031) and γ (p = 0.022) power in M1, while the α power was correlated with faster adaptation (r = 0.526, p = 0.002). Furthermore, iTBS strengthened PPC-to-M1 directed connectivity in the β (p = 0.025) and γ (p = 0.013) bands. Enhanced parieto-motor directionality were positively associated with adaptation rate (β: r = 0.515, p = 0.003; γ: r = 0.463, p = 0.009). These findings suggest that cerebellar iTBS facilitates gait adaptation by modulating cortical responsiveness and directional sensorimotor network connectivity, providing multi-level neurodynamic evidence for the cerebello-cortical modulation during gait adaptation and offering a strong physiological rationale for targeted neuromodulation in gait rehabilitation strategies.

Humans

[Effect of a constant and low frequency magnetic field on the behavioral and autonomic responses of the human operator].

The object of the study was conjugation of latencies of sensorimotor reactions and of following physiological characteristics: respiratory rate, heart rate, skin resistance and temperature, in man doing the work of operator, under the action of DC and AC (50 c/s) magnetic fields with maximal tension equalling 8-10 a/m on the head. "Disfunction" of behavioural reactions and of their vegetative sufficiency was observed in the magnetic field. The degree of deterioration of control and compensatory properties of the central nervous system is of inverse dependence on the quality of the operator's work and the level of the central nervous system functional possibilities.

Adult

Recurrent seizures induced by cortical iron injection: a model of posttraumatic epilepsy.

A single injection of 5 or 10 microliters of ferrous or ferric chloride into rat or cat sensorimotor cortex resulted in chronic recurrent focal paroxysmal electroencephalographic discharges as well as behavioral convulsions and electrical seizures. Iron-filled macrophages, ferruginated neurons, and astroglical cells surrounded the focus of seizure discharge. Recurrent focal epileptiform discharges caused by cortical injection of iron salts suggests that the development of human posttraumatic epilepsy may depend, in part, on neurochemical alterations induced by the principal metallic ions found in whole blood.

Animals

EEG and clinical studies of the development of alumina cream epileptic focus in split-brain cats.

Alumina cream epileptic focus was established in the right sensorimotor cortex in 20 split-brain cats (partial or complete). EEG and behavioral observations were made in a period ranging from 24 to 836 days. Four types of EEG changes after alumina cream injection were differentiated. These types could be related to the direct effects of brain damage and to development of epilepsy. Spikes and sharp waves and paroxysmal discharges (focal and multifocal) were observed in about 60% of the cats. Clinical seizures developed in about the same percentage of the animals. These values are below those reported for cats with intact interhemispheric commissures. Diphenylhydantoin (DPH) was given orally in a daily dose of up to 15 mg/kg body weight in 9 animals with developed epileptic EEG activity. Five of them had epileptic seizures. DPH was introduced not earlier than 1.5 months after intracortical alumina cream injection. The plasma level of DPH varied between 7-20 mug/ml. This dose produced chronic symptoms of intoxication. Neither EEG changes nor clinical seizures were entirely controlled by this drug. Additional doses of Relanium (diazepam), and phenobarbital were necessary to stop generalized seizures or status epilepticus.

Aluminum

Chronic focal epileptiform discharges induced by injection of iron into rat and cat cortex.

A single injection of 5 or 10 microliters of ferrous or ferric chloride into rat or cat sensorimotor cortex resulted in chronic recurrent focal paroxysmal electroencephalographic discharges as well as behavioral convulsions and electrical seizures. Recurrent focal epileptiform discharge caused by cortical injection of iron salts suggests that the development of human posttraumatic epilepsy may depend, in part, on the neurochemical alterations induced by the principal metallic ions found in whole blood.

Animals

The basal ganglia. A brief review and interpretation.

The data reviewed suggest that: 1. The BG are not only concerned with motor functions. 2. The BG are not directly involved in the control of neurophysiological, behavioral or homeostatic functions at a primary, elementary level. Thus, the effects of total ablation of the main component of the system, i,e. the caudate nuclei, demonstrates that the BG are not indispensable for life consciousness or the basic elementary integration of movements or sensory processes. 3. The BG operate at a high level of CNS integration and appears to be involved in two main types of, generally speaking, sensorimotor functions: a) The control of some of the organism-environment inter-relationships, both at a behavioral and neurological levels, a context of regulating the balance between approach and avoidance reactions. Some of the features of the acaudate cats suggest that this regulation might also include affective type reactions. b) The preparation or "setting up" of the organism for performance of both complex motor responses (response set), and of task requiring a high level of cognition (cognitive set). 26 High level of integration means here that, in the above functions, the BG control most probably operates upon performances not triggered reflexy, directly or indirectly, from the periphery but originated internally either "volitionally" or generated by symbolic, e.g. verbal, instructions. 4. The above functions appears to be accomplished by means of a modulatory action upon afferent signals arriving into the telencephalon and triggering efferent activities through forebrain output structures, particularly the neocortex. In normal conditions such modulation is seemingly carried on by means of a selective, flexible play of the intrinsic inhibitory mechanisms of the BG. When such control is disturbed either by pathology or by experimental manipulations, abnormal functional manifestations occur. These can be understood along the general concepts of (a) "release" from the BG inhibitory control ("compulsory approaching", hyperactivity, hyper reactivity, involuntary movements, abnormal postures, rigidity) or (b) "deficit" of the "setting up" for action postulated as a positive effect of striatal modulation (akinesia). The latter is viewed, therefore, as a permissive effect of the modulation, i.e., by selective removal of the inhibition, action is allowed to go through and to be expressed in actual performance. 5. Since lesions to individual BG structures, produced either neurosurgically in man or experimentally in animals, appear not to be capable of reproducing the complete clinical manifestations of any of the BG diseases, it follows that most of the BG syndromes in man must result from involvement of several BG components and often of other brain areas as well. More experimental work using the multiple lesions approach is needed to further ascertain this statement. 6. The literature on the effect of lesions and stimulation experiments, in particular, suggest that the BG are also involved in mental processes...

Acetylcholine

Acute homeostatic imbalances reinstate sensorimotor dysfunctions in rats with lateral hypothalamic lesions.

It has previously been demonstrated that rats recovered from aphagia and adipsia after large bilateral electrolytic lesions of the lateral hypothalamic area do not show the normal feeding response to 2-deoxyglucose or drinking response to polyethylene glyol. The present work reveals that such homeostatic imbalances reinstate the profound sensorimotor impairments that are seen in the immediate postoperative period but abate in parallel with the gradual recovery of ingestive behaviors. Administration of alpha-methyltyrosine or spiroperidol produced sensory and motor dysfunctions in rats with lateral hypothalamic lesions that were similar to those observed after 2-deoxyglucose. These results suggest that the residual feeding and drinking deficits of rats with lateral hypothalamic lesions after apparent recovery of function do not reflect specific loss of putative gluco- and volume-regulatory contributions to ingestive behavior. Instead, they may indicate continued impairments in nonspecific activational components of motivation that normally are mediated, in part, by central dopaminergic neurons.

Animals

Electroencephalographic correlates of prism adaptation in mentally retarded individuals.

Sensorimotor adaptation was studied in 23 institutionalized, mentally retarded individuals. This was achieved by recording the pattern of off-target pointing errors resulting from viewing through a 20-diopter prism. The results showed a wide range of individual differences in prism adaptation. The electroencephalogram (EEG) was also recorded from four scalp locations and analyzed by computer to determine EEG intensity, coherence, and phase angle. Correlations between EEG and behavioral scores of prism adaptation revealed a number of significant relationships, especially negative correlations between alpha intensity and prismatic adaptation. These results indicate that patterns of central nervous system activity are meaningful related to sensorimotor capabilities in retarded individuals.

Adaptation, Physiological

Unilateral cortical spreading depression in the rat: effects on feeding, drinking and other behaviors.

The effects of unilateral cortical spreading depression (CSD) on feeding, drinking and other behaviors were studied in rats. CSD waves were elicited by a microinjection of KC1 solution through an implanted cannula. The animal's behavior and slow potential changes (SPC) accompanying CSD were then simultaneously monitored for 20 min. Intensive face grooming was observed while the CSD wave-front propagated across the sensorimotor cortex. Animals commenced their first feeding or drinking shortly after the invasion of the negative SPC into the frontal cortex of Krieg's area 6 and 10 [14] had reached its maximum height. A two-way switching effect between the first feeding or drinking and quiescence (freezing) and a close relationship between their onsets were observed. The results are discussed specifically in relation to cortico-hypothalamic pathways.

Animals

Two types of aphagia and two types of sensorimotor impairment after lateral hypothalamic lesions: observations in normal weight, dieted, and fattened rats.

In two experiments, reactions to food and to tactile stimuli were examined in rats whose body weights were normal, reduced by restricted feeding (dieted), or raised by having access to palatable foods (fattened) prior to receiving bilateral lesions in the lateral hypothalamic (LH) area. Postoperative aphagia and sensorimotor impairments were less prolonged than normal in the dieted rats and more prolonged than normal in the fattened rats. The LH lesions produced a transient hyperthermia which was attenuated by dieting and facilitated by fattening. Certain motor impairments (which accompanied more posterior lesion placements), hypokinesia, and a lesion-induced exaggerated aphagia to novel foods were relatively unaffected by preoperative body weight. Depending importantly upon lesion placement, there appeared to be at least two types of aphagia and two types of sensorimotor impairment. Animals with more posterior LH lesions displayed a passive kind of aphagia and sensory neglect. These animals did not react to food or to sensory stimuli presented externally, but they chewed and appeared to swallow food placed in the mouth. Animals with more anterior LH lesions displayed an active kind of aphagia and sensory rejection. These latter animals briskly turned their heads toward food or a light touch; however, they also showed simple stereotyped withdrawal or reactions of aversion to the food, to a light touch, and to a variety of sensory stimuli. Animals with intermediately placed lesions showed symptoms common to passive and active aphagia and to sensory neglect and sensory rejection. The effects of preoperative weight manipulation on the specific types of aphagia and sensorimotor impairments are discussed.

Animals

Lissencephaly in two Lhasa Apso dogs.

Lissencephaly, a congenital absence of cerebrocortical convolutions, was discovered in 2 Lhasa Apso dogs by clinical and pathologic evaluation. Neurologic abnormalities, which became evident within the 1st year of life, included behavioral, visual, and convulsive disorders. The neurologic abnormalities were mild or delayed in onset after birth, indicating the dog is less dependent on the cerebral cortex for sensorimotor function than is man.

Animals

A comparison of hypothalamically induced biting attack with natural predatory behavior in the cat.

A comparison of biting attack induced by electrical stimulation of the cat hypothalamus with natural feline predatory attack revealed a high degree of similarity between the two behaviors. All major components of natural attack could be elicited by hypothalamic stimulation in cats not showing spontaneous attack, including stalking approach to prey, holding and pinning of the prey with forepaws, biting directed to the head and neck, prey kicking, prey carrying, and prey eating. Differences between natural and elicited attack appeared to be related to the range of completenes of elicited attack, the greater intensity of elicited attack, and the presence of unrelated responses induced by hypothalamic stimulation. Results support the view that hypothalamic stimulation facilitates sensorimotor mechanisms for separate response components, which are highly sensitive to specific stimulus features of the environment and potential goal objects.

Aggression

Figure drawing as an expression of self-esteem.

Figure drawings were obtained from 97 preadolescent males who differed in self and behavioral assessments of self-esteem. These subjects had been selected from a much larger sample and represented five different types of self-esteem. The figure drawings were scored for 15 variables, dealing with formal characteristics, content, and global-interpretations of the total drawings. Five significant differences were obtained, with the content and global-interpretative categories proving more differentiating between self-esteem groups than did the formal characteristics. Behavioral expressions of self-esteem were more associated with figure drawing characteristics than were subjective evaluations. Discussion focuses on the nature of self-concept and self-esteem in children as a sensorimotor rather than symbolic expression.

Child

Sensorimotor organization in reach and prehension: a development model.

A model is presented to depict the organization of the reflex, visual, voluntary motor, and perceptual-cognitive systems in the development of reach and prehension during the first year of life. Five components of hand skills are identified based upon a review of infant scales and observational studies, and the sequential occurrence of behaviors leading to the development of these components is graphically presented. These sequences are juxtaposed to enable the reader to view the temporal relationship of the systems at various stages in the development of reach and prehension in the infant. Items in the models are operationally defined. An explanation is included to clarify the nature and the sequence of events involved in the culmination of mature hand skills. The model should be useful in the identification, analysis, and remediation of deficits in reach and prehension often noted in children with developmental disabilities.

Child Development

[Effect of switching off the globus pallidus on alimentary and electrophysiologic responses induced by stimulation of the hypothalamus].

In chronic experiments on eight cats a direct electrical stimulation of the lateral hypothalamus evoked: 1) food eating in a state of satiation and 2) a reproduction of a conditioned food-procuring reflex, preliminarily elaborated to an acoustic signal. Bilateral electrolytic ablation of the globus pallidum abolished both reactions, but for different time periods. The first one was restored spontaneously on the 20th to the 46th day; the second disappeared for 2.5 to 8.5 months without spontaneous restoration. Stimulation of the lateral hypothalamus alimentary zones brought about a statistically significant rise of the thresholds of desynchronization reactions in the ipsi- and contralateral sensorimotor cortex. The activating role of the globus pallidum in the organization of a motivational alimentary excitation is discussed.

Animals