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Electroresponsive properties of dendrites in central neurons.

A brief sketch of the historic development of the concept of neuronal integration is given. Some of the properties of dendritic spikes in chromatolyzed motoneurons, alligator Purkinje cells, and fish oculomotor neurons are reviewed, as well as the various ways in which the generation of dendritic spikes has altered our basic concept of neuronal integration. The principles of dendritic inhibition are elaborated, both as a "tonic modulatory action" and as a "functional amputating system" for dendrites that generate spikes.

Action Potentials↗

[Corticofugal influences on the reticulospinal neurons of gigantocellular nucleus in cats].

Stimulation of the motor cortex evoked excitatory and inhibitory PSP in reticulospinal neurons of the cat gigantocellular nucleus. EPSP were recorded in 94.3% of the investigated neurons and IPSP in 5.7%. Analysis of the presynaptic pathways showed that 77.4% of EPSPs appeared through monosynaptic and 22.6% through polysynaptic corticoreticular connections. According to latency, duration and rise time all monosynaptic EPSP were divided into two groups (fast and slow). Obviously, fast EPSPs are generated by fast corticobulbar fibres and slow ones by slow fibres. IPSP were recorded in neurons which were also inhibited by stimulation of the ventral funiculi of the spinal cord. It is suggested that motor cortical signals can be transmitted to the spinal cord through both mono- and polysynaptic connections of the fast and slow pyramidal neurons with reticulospinal neurons.

Animals↗

[A case report of descending thoracic aortic aneurysm associated with anterior spinal artery syndrome despite no marked ESP changes].

A 67-year-old man underwent graft replacement for the descending thoracic aortic aneurysm with the aid of temporary external bypass. Intraoperative evoked spinal potentials (ESPs) were monitored to detect the spinal cord ischemia. Incomplete paraplegia with sensory dissociation was developed in this patient after surgery, despite well maintained ESPs throughout the aortic cross-clamping. ESPs have been widely used as a mean of detecting early impairment of spinal neural conduction during aortic surgery. However, ESPs are principally mediated through posterior and lateral column pathways and they are not always a reliable monitor to predict paraplegia in aortic surgery.

Aged↗

[Effectivess of synaptic influences of the ascending tracts of different spinal cord funiculi on reticulospinal neurons in cats].

Extracellular recording of the responses of the reticulospinal neurons evoked by stimulation of the dorsal, dorsolateral, ventral and ventrolateral spinal funiculi were performed in cats under chloralose anesthesia. It is found that dorsal funiculi of the spinal cord are an effective source of ascending influences on the reticulospinal neurons. Correlation of synaptic responses of the reticulospinal neurons with antidromatic responses in the peripheral nerves set up by stimulation of the dorsal funiculi shows that the former can be evoked by low threshold muscle (groups I and II) and cutaneous (group II) afferent fibres. The role of the ascending tracts in the transmission of the spino-bulbo-spinal activity is discussed.

Afferent Pathways↗

Non-junctional modulation of neurogenic twitches of the guinea-pig ileum by some peptides and other compounds in the triple bath.

The effects of some neuropeptide transmitter candidates and of some other neurotoxins or drugs on conduction of neural excitation were studied in myenteric plexus-longitudinal muscle strips from the guinea-pig ileum. A preparation in a special triple bath was drawn through two rubber membranes dividing the strip into three segments. Neurogenic stimulation of the oral segment set up nerve action potentials propagating aborally across the middle segment so that the aboral segment might also be invaded. Drugs were added to the middle segment to affect neuronal propagation (non-junctional effects) which was monitored by twitch amplitude of the aboral segment. The application of bradykinin and cromakalim did not affect aboral twitches although strong contractile and relaxatory effects were observed when the drugs were applied directly to the aboral segment; no neurogenic effects thus manifested. Capsaicin and neurotensin, when applied both to the middle and aboral segments, elevated the tone of the preparations accompanied with a decrease in twitch amplitude; these effects may have been due to neurogenic stimulation and release of other motor neurotransmitters. The application of VIP, apamin and dendrotoxin to the middle as well as to the aboral segments augmented aboral twitches, which might be at least partly due to facilitation of nerve action potential propagation in nerve terminals of cholinergic motor fibres.

Action Potentials↗

Brainstem auditory evoked potentials (BAEPs) in pregnant women.

The electrophysiological correlate of change in sensory function during pregnancy has not been reported. The brain stem auditory evoked potentials were recorded in eight pregnant women during third trimester from CZ-A1 and CZ-A2 position, with alternating 90 dB sound pressure click stimuli delivered at 10/sec and -40 dB (white noise) masking of contralateral ear. Two thousand and forty eight responses were analysed and replicated. The noise and other artefacts were rejected with filter bandpass setting 150 to 3000 Hz. The evoked responses in pregnant women were compared with ten age matched normal subjects using Student's 't' test. The threshold for eliciting wave V of the brainstem auditory response was higher in pregnant women (28.1 +/- 2.1 dB). The absolute peak latencies of waves I to V were similar in both groups. However, Inter peak latencies (IPLs) I-III, III-V were on higher side in the pregnant women, and I-V, in particular (3.9 +/- 0.14) was significantly higher when compared with controls (3.73 +/- 0.16). These findings suggest that besides an increase in evoking wave V threshold, neural conduction process in brainstem auditory pathways during pregnancy is also delayed within + 2SD of the mean central conduction time in nonpregnant state.

Adult↗

Neural modeling and model identification.

The complexity of the nervous system poses challenging experimental and theoretical problems to the investigator. While experimental studies have provided a broad understanding of the physiological and anatomical role of neural elements, a comprehensive description of how the nervous system acquires and processes information is still lacking. Neural modeling addresses itself to the quantitative interpretation of neurophysiological experiments, to the assimilation of diverse experimental results into unified theories, and to the investigation of mechanisms of information-processing units, codes, and networks and their relation to capabilities of living systems. This review will emphasize neural models which can be tested by physiological or psychophysical experiments and will include the identification of model parameters based on experimental measurements. An overview of neural firing models, neural interaction models, neural variability and coding, design of input-output experiments for model identification, and description of small network interactions through multiunit and gross potential recording will be included.

Action Potentials↗

The participation of the nigro-thalamic pathway in the nigral control of the caudate nucleus.

Unilateral injections of carbachol (CCh, 2 mul) to lateral parts of substantia nigra (SNlat) of the rabbit increased the alert index (participation of alert pattern in EEG), produced epileptoidal EEG discharges, sniffing, ipsi- and contralateral rotations, and abnormal movements of fore limbs, which may be regarded as an equivalent of localized seizures. Ipsilateral rotations appeared together with epileptoidal discharges confined to SNlat, while contralateral -- with discharges in ventrolateral thalamic nucleus (VLTh). The EEG discharges appeared firstly and had the longest duration in VLTh. Injection of CCh to medial substantia nigra (SNmed) did not produce contralateral turnings and rotations, and epileptoidal EEG discharges appeared primarily in SNmed. In rabbits with previously lesioned nigro-neostriatal pathway (NSP) at the level of Forel's fields, the EEG discharges produced by CCh injected into SNlat appeared firstly and were most prolonged in SNlat, while they appeared much later in caudate nucleus (NC), cerebral cortex, and VLTh. The contralateral rotations were inhibited, and ipsilateral ones -- potentiated in the lesioned rabbits.

Animals↗

Sensitization of the crayfish lateral giant escape reaction.

Most behavioral reactions that habituate can also be dishabituated by strong stimuli. In the best studied cases, dishabituation seems to be the result of an independent "sensitization" of the behavioral reaction that compensates for habituation without necessarily abolishing it. Crayfish lateral giant (LG) neuron-mediated escape reactions are one of the most fully analyzed behavioral reactions that are prone to habituation; however, sensitization/dishabituation of LG escape has not previously been reported. Here, the effect of strong AC shocks to head or abdomen on the ability of 0.1 msec "test" shocks to sensory roots innervating the tailfan to elicit an LG escape response was examined. Following single AC shocks, test shock threshold for eliciting LG escape reliably fell 5-80% and recovered over 15 min to 1 hr. When AC shocks and test shocks alternated at 90 sec intervals, test shock threshold rapidly dropped to an asymptote that was maintained as long as AC shocks were given (up to 2 hr); following such repeated AC shocks, recovery often required a number of hours but was complete within 24. Comparable sensitization is seen in the response of interneuron A, the largest of a set of sensory interneurons that links afferents to LGs. AC shocks (to either head or tail) no longer sensitize abdominal LG reflex circuitry if the nerve cord is severed between thorax and abdomen. Thus, sensitization appears to depend on a neurally conducted influence that arises in the rostral half of the animal. Pharmacological evidence suggests that octopamine may mediate the sensitization.

Animals↗