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Onset of a painful peripheral neuropathy in rat: a partial and differential deafferentation and spontaneous discharge in A beta and A delta primary afferent neurons.

1. The activity of primary afferent axons was recorded in rats that had received a chronic constriction injury (CCI) to the common sciatic nerve. The CCI gives rise to a painful peripheral neuropathy that is characterized by allodynia, hyperalgesia, and, probably, spontaneous pain (or dysesthesia). In the majority of animals, these neuropathic pain symptoms begin 2 days postinjury; sciatic nerve afferents were examined just before and just after the time of symptom onset, at 1 and 3 days postinjury. 2. We used two stimulating electrodes, one proximal to the injury and the other distal, to activate the injured sciatic nerve while we recorded from individual primary afferent axons in microfilaments teased from the L4-L6 dorsal roots. Measurements of conduction velocities (calculated from the proximal electrode) and evaluation of conduction through the site of injury were made from 181 A beta, 135 A delta, and 60 C-fibers. 3. The percentage of axons that did not conduct through the injury site at 1 day postinjury was 85% for the A beta fibers and 55% for the A delta fibers, but only 9% for the C-fibers. By day 3, these percentages had increased to 89% for the A beta fibers, 87% for the A delta fibers, and 32% for the C-fibers. Some axons were activated from the distal stimulating electrode at currents greater than 5-10 times those required from the proximal electrodes, but their distally evoked responses did not have the longer latencies expected from a more distant site of activation. Control experiments confirmed that such high-threshold responses were due to current spread from the distal electrode to a site proximal to the nerve injury. 4. Spontaneous discharges were observed in 35% of A beta fibers, 15% of A delta fibers, and 3% of C-fibers (data from 1 and 3 days postinjury combined). Of the 55 A beta fibers exhibiting spontaneous discharge, 89% did not conduct through the injury site; the same was true of 65% of the A delta fibers (n = 20). Both of the two spontaneously discharging C-fibers conducted through the injury. The frequency of the spontaneous discharge of the myelinated fibers ranged from 10 to 50 Hz and was usually regular or bursting. 5. Intravenous administration of gallamine triethiodide (Flaxedil), a K+ channel blocker, either induced activity in previously silent fibers or increased the frequency of spontaneous activity in 50% (21/42) of A beta fibers and 19% (3/16) of A delta fibers.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Axonal cross-excitation in nerve-end neuromas: comparison of A- and C-fibers.

1. We recorded from single afferent axons ending in chronic sciatic nerve end neuromas in rats with the use of the teased-fiber method. Axons were sought that had ongoing impulse discharge originating in the neuroma. 2. Recording from myelinated (A-) fibers, tetanic stimulation of neighboring axons (50 Hz, 5 or 10 s, intensity adequate to drive A-fibers) caused an increase, and sometimes a decrease, in the rate of ongoing discharge in 68% of the fibers tested. In addition, some initially silent neuroma A-fibers (1.4%) were activated in this way. Both A beta and A delta fibers responded, although the likelihood of response was greater in A beta fibers. We call this form of interfiber cross-excitation "crossed afterdischarge." 3. In contrast to A-fibers, crossed afterdischarge was evoked with these stimulation parameters in < or = 5% of the spontaneously active unmyelinated (C-) fibers sampled. No initially silent C-fibers were activated. 4. C-fibers remained largely insensitive to cross-excitation by neighboring axons even when the strength of stimulus pulses was increased so as to include neighboring A + C-fibers. 5. The difference between A- and C-fibers could not be accounted for on the basis of the maturity of the neuroma, rate and pattern of ongoing discharge, or use of Flaxedil paralysis. 6. The difference between A- and C-fibers is discussed in terms of two alternative mechanisms that may underlie crossed afterdischarge: mediation by a neurotransmitter(s) in a nonsynaptic mode, and mutual K+ depolarization.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Mechanism of action of honey bee (Apis mellifera L.) venom on different types of muscles.

1. The effect of crude honeybee (Apis mellifera) venom on the skeletal, smooth as well as cardiac muscles were studied in this investigation. 2. Perfusion of gastrocnemius-sciatic nerve preparation of frogs with 1 microgram/ml venom solution has weakened the mechanical contraction of the muscle without recovery. Blocking of nicotinic receptors with 3 micrograms/ml flaxedil before bee venom application sustained normal contraction of gastrocnemius muscle. 3. The electrical activity of duodenum rabbits was recorded before and after the application of 1 microgram/ml venom solution. The venom has depressed the amplitude of the muscle contraction after 15 min pretreatment with atropine nearly abolished the depressor effect of the venom on smooth muscle. 4. In concentrations from 0.5-2 micrograms/ml, bee venom caused decrease of heart rate of isolated perfused toad heart. This bradycardia was accompanied by elongation in the P-R interval. A gradual and progressive increase in the R-wave amplitude reflected a positive inotropism of the venom. Application of 5 micrograms/ml verapamil, a calcium channels blocking agent, abolished the noticed effect of the venom. 5. Marked electrocardiographic changes were produced within minutes of the venom application on the isolated perfused hearts, like marked injury current (elevation or depression of the S-T segment), atrioventricular conduction disturbances and sinus arrhythmias. Atropine and nicotine could decrease the toxic effect of the venom on the myocardium. 6. Results of the present work lead to the suggestion that bee venom is mediated through the peripheral cholinergic neurotransmitter system. General neurotoxicity of an inhibitory nature involving the autonomic as well as neuromuscular system are established as a result of the venom, meanwhile a direct effect on the myocardium membrane stabilization has been suggested.

Animals↗

A further study on fast and slow principal cells of rat lateral geniculate body: an analysis of flash-evoked responses.

In the lateral geniculate body (LGB) of urethane-anesthetized and Flaxedil-immobilized rats, unit responses of principal cells (P-cells) were recorded by using flash stimulation of the eyes. By measuring response latencies to electrical stimulation of the optic tract, all P-cells were classified into the fastor slow group according to the criterion established by Fukuda. Flash-evoked unit responses consisted of the two kinds of discharges, i.e. the early discharge (ED) with latencies less than 100 msec and the late discharges of spike burst (LDs) often recurring twice or more (LD1, LD2 and so on). Cells' firings were suppressed during the interval between ED and LD1 and those between successive LDs. The ED- and LD1-latencies, measured in dark with strong flashes, were shorter in the fast cells than in the slow one. The interval between ED and LD1 was shorter in the fast cells than in the slow ones. It was common to the both types of P-cells that as flash intensity was reduced, the ED-latency increased and the LD1-latency decreased. However, the ED-LD1 interval remained shorter in the fast cells than in the slow ones. Upon shifting from dark to light, the LD1-latency markedly increased or decreased in the slow cells, whereas such was not seen in the fast cells. These findings seem to provide a further support for the classification of P-cells into the fast and slow types.

Animals↗

Chemically modified carbon paste electrode for iodide determination on the basis of cetyltrimethylammonium iodide ion-pair.

A new carbon paste electrode (CPE) for the determination of iodide ion based on a cetyltrimethylammonium iodide (CTMAI) ion pair as an electroactive material is described. The electrode shows a linear response for iodide ion over the concentration range of 4 x 10(-5) M to 1 x 10(-1) M with a lower detection limit of 4 x 10(-5) M at 25 degrees C. The electrode has a Nemstian slope of -55.0 +/- 0.4 mV/decade and a fast potential response of 45 s, which is almost constant over a pH range of 5.0 - 9.0. Selectivity coefficient data of the CTMAI-CPE for some common ions show negligible interference, and the electrode has high selectivity towards the iodide ion. An average recovery of 101.83% with a relative standard deviation of 1.53% has been achieved for the determination of iodide in Flaxedil (gallamine triethiodide) ampoules, a muscle relaxant drug. The electrode has been examined for the determination of iodide in saline water; the results were found to compare favorably with those obtained using Metrohm iodide ISE. The electrode has been utilized as an end-point indicator electrode for the determination of Hg(II) and phenylmercury(I) in their aqueous solutions using potentiometric titration with a potassium iodide standard solution.

Carbon↗

Electrophysiological evidence for the existence of caudate-caudate connections.

Experiments were performed in cats unanesthetized and paralyzed with Flaxedil. The stimulation of the right caudate elicited in the contralateral nucleus, biphasic positive-negative field potentials with latencies between 11-20 msec and peak to peak amplitudes of 132-216 microv. These were the shortest latencies and the highest amplitudes for those potentials evoked by stimulation of the symmetrical positions to recording electrode. However, no responses could be evoked in the caudate tail by stimulation of any part of the opposite nucleus. Lesions of cerebral cortex (sensorimotor cortex or hemidecortication) and thalamus (center median-parafascicular complex and massa intermedia) left the evoked responses in the caudate nucleus unchanged. However, the evoked potentials were suppressed by section of the corpus callosum. Our results suggest direct connections between both caudates, through the corpus callosum.

Animals↗

Somatotopic organization of caudate-caudate relationships in the cat.

Experiments were carried out on cats locally anesthetized and paralyzed with Flaxedil. Stimulation of the caudate nucleus and the sciatic nerve evoked biphasic positive-negative field potentials in the contralateral nucleus with mean latencies of 16.1 +/- 1.8 msec and 18.1 +/- 1.6 msec, and peak to peak amplitudes of 185.5 +/- 19.8 microV and 236.9 +/- 11.5 microV, respectively. A mediolateral distribution was observed in the caudate connections. The medial and lateral halves of one nucleus project to medial and lateral halves of the contralateral caudate, respectively. However, maximum amplitude responses were grouped in the middle-external two-thirds of the caudate. No responses could be evoked in the caudate tail by stimulation of any part of the opposite nucleus. On the other hand, the somatic afferents are distributed to all levels of the caudate nucleus. Although the largest responses were recorded in the same areas where the highest potentials were evoked by contralateral caudate stimulation. It is concluded that, in the cat, a topographic organization of the caudate-caudate relations exist in the mediolateral axis of the nucleus, and that its middle regions could be the primary receptive fields for caudate and somatic afferents.

Afferent Pathways↗

Responses of simple and non-oriented cells to stimuli of variable duration in areas 17 and 18 of cat visual cortex.

Single unitresponses to photic stimuli of variable duration were studied in the cat visual areas 17 and 18. The closed-chamber technique was used to record extracellularly impulsive electrical activity in locally anaesthetized, Flaxedil-paralyzed and artificially ventilated cats. Stimulus duration ranges between 0.020 and 10 sec, the background luminance and the intensity of stimuli being constant. We found a first group of cells which fire independently of the stimulus duration; a second group which fire in close relation to the stimulus duration in a rather wide range of values, and a third group which fire monotonously as long as the stimulus goes on. The three groups of cells are supposed to be three functionally different types of cortical cells.

Animals↗

[GABA mediated inhibitory effect of amygdala on the activity of medial geniculate body neurons].

On 10 New Zealand white rabbits immobilized with Flaxedil, the inhibitory effect of amygdaloid stimulation on the responses of medial geniculate body (MGB) neurons to tone bursts and the involved neurotransmitter mechanism were investigated with microiontophoresis technique. The results showed that application of GABA could cause a suppression of spontaneous activity of MGB neurons while GABAA antagonist bicuculline had an opposite effect. Iontophoretic injection of GABA gave an inhibitory effect on MGB neurons similar to that caused by stimulating the amygdala or the auditory cortex behind the rhinal sulcus (ACBRS), and in particular, the GABA induced suppression could be completely antagonized by application of bicuculline. Taken together, these data suggested that GABA mediated the amygdaloid inhibitory effect. It seemed unlikely that glycine was involved in the effect, since strychnine, a glycine antagonist, could not affect the descending inhibition from ACBRS area.

Amygdala↗

[The inhibitory effect of amygdaloid stimulation on the "on-off" response of medial geniculate body neurons in rabbits].

Experiments were performed on 23 New Zealand rabbits immobilized with Flaxedil. The characteristics of on-off responses of medial geniculate body (MGB) neurons to tone bursts of varying frequency, intensity and duration were affected by lateral amygdaloid nucleus (LAm) stimulation, which was in form of altering the pattern of discharge or complete suppression. The effect also varied with the changes of the interval between amygdaloid stimulation and the tone bursts. The results of the present work show that LAm could modulate temporal processing of auditory information.

Acoustic Stimulation↗

Response of cat cerebellar vermis induced by sound. I. Influence of drugs on responses of single units.

Experiments were done on the cats under Chloralose and/or Nembutal anesthesia. A click was used as a standard acoustic stimulus. The type of responses of single units from cerebellar vermis lobuli V-VII were analyzed. At least four different types of single unit reactions were observed and one of these - oscillatory - was produced by the presence of Flaxedil simultaneously with Chloralose. The system that controls the activity of the middle-ear-muscles can be suspected as the source of the oscillatory pattern of the cerebellar response. Latencies were found to be constant, independent of anesthesia, but it was necessary to have a low level of Nembutal anesthesia because of the overriding inhibitory influence of Nembutal.

Acoustic Stimulation↗

Studies on vesicourethral reflexes. I. Urethral sphincteric responses to detrusor stretch.

For the purpose of studies on vesicourethral reflexes, a model was established wherein the vesicosphincteric unit is divided into two separate compartments. In one group, the compartments were formed by single mucosal separation but muscular continuity was maintained. In the other, complete interruption of muscular continuity was performed by full bladder wall thickness separation. To maintain the proper nerve and blood supply to the upper compartment, the separation was made below the ureteral orifices and urinary diversion was accomplished through ureterosigmoidostomy. Postoperative cystographic studies demonstrated the complete separation. Detailed pre- and postoperative physiologic studies were done. Spontaneous contraction of the upper compartment excited contraction of the detrusor component of the lower compartment where muscular continuity was maintained. Contraction of the upper compartment induced reflex relaxation of the sphincteric element, regardless of whether the muscular continuity was maintained or interrupted. Flaxedil and Regitine both led to a drop in resting urethral pressure and abolished the drop in urethral pressure in response to contraction of the upper detrusor compartment. Although muscular contraction might be a contributory factor, it is clear that a nerve-mediated spinal reflex exists that induces drop in urethral resistance in response to detrusor contraction.

Animals↗

Effect of hypothermia on focal experimental seizures.

The effect of general hypothermia was investigated in 15 unanesthetized cats. The animals were immobilized with Flaxedil and maintained on mechanical respiration. An epileptogenic focus was induced by stereo-tactical injection of penicillin to the right hippocampus. Cooling of the body was followed by a marked decrease of the amplitude and frequency of the penicillin spikes. The antiepileptic effect of general hypothermia was not dependent on brain stem section as suggested by previous investigations. Seizures generated by a hippocampic penicillin focus were more resistant to hypothermia than discharges produced by penicillin applied to the visual cortex.

Animals↗

[Effects of injection of L-glutamate into the locus coeruleus complex area on the respiration].

Experiments were performed on 55 urethane anesthetized and flaxedil immobilized rabbits under artificial respiration. Injection of L-Glutamate into the locus coeruleus area led to a marked augmentation of respiration. This effect of L-Glutamate could be significantly attenuated or reversed by a previous injection of prazosin, yohimbine and propranolol into the NTS area. These results indicate that the neurons in the locus coeruleus are involved in the regulation of the respiration as a result of mediation by alpha and beta receptors in the NTS area.

Animals↗

[The role of midbrain periaqueductal grey in the inhibition of central cardiac ischemia by somatic nerve and its mechanism in rabbits].

UNLABELLED: Experiments were performed on vagotomized male rabbits weighing 1.8-2.2 kg. Urethane and chloralose were administered intravenously, and were paralyzed by flaxedil. After a cannula was inserted into femoral artery to measure blood pressure, the epicardial electrogram (EECG) was recorded. Then we inserted a bipolar electrode into caudal dorsolateral subdivision of periaqueductal grey (CDL), or dorsomedial hypothalamic nucleus (DMH). In some animals, a microinjecting tube was inserted into CDL for microinjection of enkephalin antibodies. In 12 animals, stimulation of CDL could elicit pressor response and elevation of EECG-ST segment. When stimulating deep peroneal nerve, these two responses were inhibited. In 14 animals, with brainstem transected in P5 level, the stimulation of DPN could not inhibit the presser response induced by CDL, but still inhibited the EECG-ST segment changes. After enkephalin antibodies were injected into CDL, DPN could not inhibited EECG-ST changes. In 4 animals, instead of enkephalin antibodies, rabbit serum had no effects. The unit discharges of 96 neurons in CDL were recorded by glass microelectrodes, among them, 15 neurons could be excited by DMH stimulation. We called these neurons the defence reaction related neurons. Stimulation of DPN or median nerve could inhibit the spontaneous discharge and DMH evoked discharge of these defence reaction related neurons. CONCLUSIONS: 1. DPN stimulation can inhibit the pressor response and cardiac ischemia induced by defence reaction centre in CDL of PAG. The inhibitory effect on cardiac ischemia is still eminently remained after the brainstem is cut in P5 level to eliminate the influence of hypothalamic arcuate nucleus.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Effect of leucine-enkephalin on the interneuronal transmission of excitation].

In the experiments on non-anesthetized flaxedil-immobilized cats it has been shown that the injection of leucin-enkephalin (1 mg) into the lateral ventricle of the brain is followed by the inhibition of evoked potentials in the ventrolateral columns of the spinal cord and of segmental interneuronal transmission in the spinal cord as well as by the reduction of the amplitude of potentials in the S I zone of the brain cortex induced by the sciatic nerve stimulation. Naloxone (1 mg/kg, i.v.) prevented the effects of leucin-enkephalin. Methysergide pretreatment (2.5 mg/kg, i.p.) led to a decrease of leucin-enkephalin effect on the interneuronal transmission in the spinal cord. Leucin-enkephalin failed to change the amplitude of polysynaptic potentials of glosso-mandibular reflex integrated at the brain stem level.

Animals↗

[Influence of stimulation of cerebral anterior lateral association area on cortical potentials evoked by C-fiber inputs in saphenous nerve].

The effect of stimulation of cerebral anterior lateral association area (ALA) on evoked potentials recorded in the primary somatosensory cortex (SI), elicited by C-fiber inputs of saphenous nerve (C-CEP) was investigated in cats anesthetized with chloralose and immobilized by Flaxedil. Following 1 min electric stimulation of ALA (0.1 mA, 100 Hz, duration 0.2 ms), the amplitudes of C-CEP were obviously decreased, indicating that ALA had an inhibitory effect on C-CEP. In order to explore the neural pathway underlying the inhibition of C-CEP by ALA stimulation, a vertical section between ALA and SI was made. It was shown that the inhibition of C-CEP produced by ALA stimulation was reduced considerably and the time course of the inhibition was shortened after the section. Moreover, the ALA stimulation-produced inhibition was also blocked partially 7 min after the intraventricular injection of naloxone (25 micrograms/50 microliters). The results suggest that ALA may exert an inhibitory effect on C-CEP, which is mediated by endogenous opiate like substances and through the nervous connection between ALA and SI. The cerebral association area may play a role in the modulation of C-CEP.

Animals↗

[Effect of electro-acupuncture (EA) on response of cerebellar cortex to slow pain].

Experiments were performed on cats under chloralose anaesthesia and immobilized by Flaxedil. The right saphenous nerve was stimulated with single rectangular electric pulse of 30V and A-fibers were blocked selectively by the anodal current so as to elicic the C-fiber input only. The cerebellar cortical field potential evoked by C-fiber input (C-CEP) was recorded on the contralateral vermian VI lobule surface. C-CEP can be inhibited obviously by injecting the morphine (0.5 mg/kg) intravenously. It indicated that C-CEP had the close concern with the slow pain information and might be regarded as the index of the slow pain. The effects of the EA at the "Zusanli" point on C-CEP were observed. The results as following: 1. The amplitude of C-CEP decreased obviously after the EA at the ipsilateral "Zusanli" (strength: 10V, duration: 0.2 ms, frequency: 5 Hz). 2. From 5V-30V the more the strength of the EA was, the more the inhibitory efficiency was. 3. The inhibitory efficiency of the EA at the ipsilateral "Zusanli" point on C-CEP was stronger than at the contralateral, and the strongest at the bilateral.

Animals↗