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Biomedical subjects

P Wand

Publications and source records attributed to P Wand.

At least 19 recordsLinked to original sources

Two types of cat static fusimotor neurones under separate central control?

The effect on the fusimotor system of an injection of the gamma-aminobutyric acid (GABA) antagonist picrotoxin into the reticular part of the substantia nigra (SNR) was studied in muscle spindle primary and secondary endings of pretibial flexors in cats anaesthetized with ketamine. Changes in fusimotor action after drug administration were deduced from changes in bias and sensitivity to sinusoidal stretching of the receptor-bearing muscles when compared to the deefferented preparation. Intranigral injection of picrotoxin (2 micrograms) removed a tonic static fusimotor action from flexor muscle spindle primary endings without affecting the secondary endings in the same muscles. It is concluded that static gamma motoneurones of cat flexors are of more than one functional type, and that the central nervous control of the static fusimotor input to cat flexor muscle spindles has selective access to static bag2 fibres and nuclear chain fibres.

Animals

Responses of Renshaw cells coupled with hindlimb extensor motoneurons to sinusoidal stimulation of labyrinth receptors in the decerebrate cat.

Contraction of ipsilateral limb extensors during side-down roll tilt of the head, leading to selective stimulation of labyrinth receptors, is attributed to an increased discharge of excitatory vestibulospinal (VS) neurons (alpha-responses) and a decreased discharge of medullary inhibitory reticulospinal (RS) neurons (beta-responses), both of which act on ipsilateral extensor motoneurons. Experiments were performed in decerebrate cats, with the de-efferented gastrocnemius-soleus (GS) muscle fixed at a constant length, to find out whether Renshaw (R) cells linked with GS motoneurons responded to labyrinth stimulation elicited by head rotation, while the neck had been bilaterally deafferented. We hoped in this way to clarify the role and the mechanism by which these inhibitory interneurons act on limb extensor motoneurons during the vestibular reflexes. 72.7% of the R-cells, disynaptically excited by group I volleys elicited by single shock stimulation of the GS nerve, weakly responded to head rotation at frequencies of 0.026-0.15 Hz and at a peak amplitude of 10 degrees. For the frequency of head rotation of 0.026 Hz, +/- 10 degrees C, most of the GS R-cells increased their firing rate during side-down head displacement (alpha-responses); some responses were related to head position, but others showed some phase lead or lag with respect to head position. The gain of the first harmonic of these unit responses was very low and corresponded on the average to 0.084 +/- 0.062, S.D. imp./s/deg, while the sensitivity corresponded to 2.14 +/- 2.35, S.D.%/deg (base frequency, 6.85 +/- 5.97, S.D. imp./s). These responses were attributed to the activity of VS neurons, the increased discharge of which during side-down head rotation exerts a weak excitatory influence on a limited number of GS motoneurons and, through their recurrent collaterals, on the related R-cells. The modulation of the firing rate of R-cells coupled with the GS motoneurons increased linearly by increasing the peak amplitude of displacement from 5 degrees to 20 degrees at the frequency of 0.026 Hz, so that the response gain remained almost unchanged. An increase in frequency of head rotation from 0.026 to 0.32 Hz at a fixed amplitude of 10 degrees, thus changing the maximal angular acceleration from 0.26 degrees/s2 to 41.7 degrees/s2, reversed the response pattern of R-cells reported above. The resulting beta-responses, which also showed some phase lead or lag with respect to head position, were attributed to vestibular activation of RS neurons.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Influence of Renshaw cells on the response gain of hindlimb extensor muscles to sinusoidal labyrinth stimulation.

The contraction of limb extensor muscles during side-down roll tilt of the animal depends upon an increased discharge of excitatory vestibulospinal (VS) neurons (alpha-response) and a reduced discharge of inhibitory reticulospinal (RS) neurons of the medulla (beta-response), both acting on ipsilateral limb extensor motoneurons. In the decerebrate cat, a modulation of the multiunit EMG activity was clearly present in forelimb extensors, but was extremely weak or absent in hindlimb extensors. Experiments performed in decerebrate cats with the deefferented GS muscle fixed at a constant length have shown that Renshaw (R)-cells, monosynaptically coupled with gastrocnemius-soleus (GS) motoneurons, were either unresponsive or displayed only very weak, small amplitude alpha-responses to sinusoidal stimulation of labyrinth receptors elicited during slow head rotation after bilateral neck deafferentation. This effect was attributed to excitatory VS volleys acting on GS motoneurons and, through their recurrent collaterals, on the related R-cells. In these instances the recurrent inhibition of the GS motoneurons contributed to the very low gain of the EMG response of the corresponding muscles to labyrinth stimulation. Intravenous injection of an anticholinesterase (eserine sulphate, 0.05-0.1 mg/kg) at a dose that in previous experiments increased the firing rate of medullary RS neurons, while decreasing the decerebrate rigidity, slightly increased the discharge rate of R-cells linked with the GS motoneurons in the animal at rest; these findings suggest that the RS system inhibits the extensor motoneurons by exciting the related R-cells. All the R-cells, which prior to the injection were either unresponsive or showed an alpha-response to head rotation (at 0.026-0.15 Hz, +/- 10 degrees), after eserine sulphate showed a beta-response for the same parameters of labyrinth stimulation. In particular, a reduced discharge of the R-cells linked with the GS motoneurons occurred during side-down head rotation as shown for the majority of the RS neurons. It appears therefore that the same R-cells, which in the normal decerebrate cat responded to the excitatory VS volleys acting through the GS motoneurons, were now decoupled from their input motoneurons during head rotation, thus behaving as if they underwent the most efficient direct excitatory control of the RS system. The reduced discharge of the R-cells linked with the GS motoneurons during side-down head rotation would lead to disinhibition of these motoneurons, thus enhancing the response gain of the corresponding muscle to labyrinth stimulation.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Sensory-motor processing in substantia nigra pars reticulata in conscious cats.

Extracellular recordings were made with chronically implanted micro-electrodes from 109 substantia nigra neurones in conscious cats. Ninety-six of 109 neurones met the criteria of presumed non-dopaminergic pars reticulata (s.n.r.) neurones. Background discharge, in animals in a state of relaxed wakefulness and in the absence of overt movements, was in the range of 11-37 impulses/s, mean 19.2 impulses/s. The discharges of fifty-two of ninety-six neurones tested were modified by innocuous mechanical skin stimulation. Neurones responded chiefly to stimuli delivered to the contralateral body side. Responses generally comprised net excitation and occurred with short latency (range 10-34 ms; mean 17.3 ms). Convergence from both forelimbs or the contralateral fore- and hind limbs was evident in a few cases. One-fourth (twenty-four out of ninety-six) of the s.n.r. neurones tested were sensitive to passive manipulation of limb joints in the quiet, conscious cat and responded exclusively to angular displacement of one contralateral joint. Responses were directional and phasic. None of the s.n.r. neurones tested responded to clicks and/or light flashes. However, stimuli moving across the contralateral visual field substantially modified the discharge rate of ten out of ninety-six s.n.r. neurones. Responses were directional and invariably associated with eye movements. Animals were also trained to walk on a treadmill and to perform certain self-generated limb movements. S.n.r. neurones with a receptive field on a limb regularly showed modulations in discharge during locomotion, phase-related to the step cycle, and also short-latency responses during disturbance of such movements. Ten out of ninety-six s.n.r. neurones discharged almost exclusively prior to and during self-generated movements of a single limb. Their most powerful modulations in firing rate occurred, whenever an animal tried to overcome an external impediment or to resist an imposed movement. These observations on s.n.r. neurones, taken together with previous findings on nigral influences on spinal motor circuitry, indicate that the s.n.r. represents an output station of the basal ganglia which is involved in the subconscious processing of convergent multimodal sensory information and which participates in setting appropriate gains and biasses of spinal motor neuronal systems to adequately deal with changing motor requirements.

Acoustic Stimulation

Non-dopaminergic neurones of the reticular part of substantia nigra can gate static fusimotor action onto flexors in cat.

The effect on the fusimotor system of electrical stimulation of the reticular part of the substantia nigra or of the injection of the gamma-aminobutyric acid (GABA)-antagonist picrotoxin into this structure was studied in spindle receptors of pretibial flexors in cats anaesthetized with ketamine. Afferent activity of muscle spindle primary endings was recorded before and during these two forms of intranigral stimulation. Dynamic spindle sensitivity was assessed during both small- (100 microns) and large-amplitude (2 mm) sinusoidal stretching of the receptor-bearing muscles. From changes in spindle sensitivity after nigral electrical stimulation (eleven out of fourteen primary endings) or intranigral injection of picrotoxin (fifty-one out of sixty-seven primary endings) it is deduced that functional activation of neurones of the reticular part of substantia nigra, in this preparation, removed a normally present tonic static fusimotor action from the primary sensory endings of pretibial flexor muscle spindles. This effect, induced by picrotoxin (2 micrograms in 1 microliter), was reversed by a subsequent intranigral injection of the GABA-agonist muscimol (0.4 microgram in 1 microliters), but remained unchanged after subsequent intracaudate injections of haloperidol (12.5 micrograms in 5 microliters) or apomorphine (5 micrograms in 5 microliters). It is concluded that the C.N.S. can gate static fusimotor action onto flexor muscle spindle primary endings through non-dopaminergic output neurones of the reticular part of substantia nigra.

Animals

Effect of fusimotor stimulation on ia discharge during shortening of cat soleus muscle at different speeds.

1. In barbiturate-anaesthetized cats, the L7 and S1 dorsal and ventral roots were dissected to isolate functionally single afferents identified as primary endings of soleus muscle spindles, and motor filaments which exerted a fusimotor action on the afferents with limited action on extrafusal muscle. Up to seven filaments, with an action on a given primary ending, could be isolated and each was classified as exerting either a predominantly dynamic or static action.2. Combined stimulation of these filaments, at rates up to 200 impulses/s could maintain afferent firing during muscle shortenings at speeds up to 200 mm/s.3. Fusimotor stimulation could also maintain afferent firing at a target frequency of 100 impulses/s during muscle shortenings up to 200 mm/s. The timing, in relation to the onset of shortening, and the rates of fusimotor stimulation were found to be critical in achieving the target frequency.4. Sinusoidal modulation of the frequency of fusimotor stimulation was used to study the conditions required to achieve constant afferent firing in the face of imposed sinusoidal length changes.5. For given depths of modulation, the phase advance of fusimotor stimulation needed to produce minimum modulation of afferent firing (best compensation) increased with increasing frequency of the sinusoids. The compensation deteriorated with an increase in the frequency of the sinusoids and a change in the mean muscle lengths, although in some cases it could be restored by adjustments to the depth of modulation of fusimotor rate. This suggests that for movements of varying speeds and amplitudes, settings which are appropriate for shortening at a given velocity and mean muscle length, do not apply if either of these two variables are altered.6. These findings demonstrate that the fusimotor system is potentially capable of eliciting constant afferent firing as envisaged in the ;servo-assistance' hypothesis (Matthews, 1964, 1972; Stein, 1974). This, and the fact that constant afferent firing is not seen during normal unobstructed shortenings at velocities greater than 0.2 resting length/s (Prochazka, 1981), are used to argue that it is by choice rather than necessity that ;servo-assistance' (as defined above) is not employed during normal movements. However, servo-assistance of a different form (involving modulated spindle afferent feed-back from both agonists and antagonists) remains a viable alternative.

Animals

[The Effect of memantine on spinal alpha-motoneurons and on the content of dopamine, noradrenaline and serotonin in the striatum and lumbar spinal cord].

In the present paper the pharmacological effect of 1,3-dimethyl-5-aminoadamantane (DMAA, D-145, memantine, Memantine was investigated on the reflex activity of spinal alpha-motoneurones of the cat and on spontaneous hyperactivity of alpha-motoneurones of spastic Han-Wist rats. The activity of both systems is reduced by the drug. Furthermore the content of dopamine, noradrenaline, and serotonin of striatum and lumbar spinal cord of normals and mutants is dose dependently decreased. It is assumed that memantine depresses the activation of central nervous membranes and reduces repetitive discharges of axons and in addition acts by release of neurotransmitters.

Amantadine

Nigral output neurons are engaged in regulation of static fusimotor action onto flexors in cat.

Picrotoxin and muscimol were unilaterally injected into the postero-lateral part of the reticular zone of substantia nigra (plSNR) through chronically implanted guide cannulae in ketamine-anesthetized cats. Afferent activity of pretibial flexor muscle spindle primary and secondary endings was recorded before and after drug administration, and spindle sensitivity monitored during both sinusoidal and ramp stretch of the receptor-bearing muscle. From changes in spindle sensitivity after drug injection it is deduced that unilateral block by picrotoxin of the action of GABA on postsynaptic receptors in plSNR removes tonic static fusimotor action from flexor muscle spindle primary endings. Secondary endings seemed largely unaffected. The effect on primary endings is reversed by a subsequent injection of muscimol. It is concluded that the central nervous system, through GABA-modulated nigral output neurons, can control static fusimotor action onto flexor muscle spindle primary and secondary endings separately to some extent.

Animals

Neuromuscular responses to gait perturbations in freely moving cats.

If an obstacle impedes the forward swing of a cat's foot, the animal responds by rapidly lifting the foot over the obstacle. In freely moving cats, the electrical activity of hindlimb flexors and extensors was recorded during such reactions elicited both mechanically and electrically. The sequencing of muscle activity was more complex and longer in duration in the mechanically elicited reactions. Anaesthesia of the foot dorsum abolished responses in ankle extensors and knee flexors, and converted the responses of ankle flexors to simple stretch reflexes. Although our findings closely resemble those reported for chronic spinal kittens, there are interesting points of difference, which should be taken into account if the notion of a purely spinal mediation of the placing reaction during stepping is to be accepted.

Afferent Pathways

Tendon organ discharge during voluntary movements in cats.

1. The discharge activity of tendon organ afferents was recorded during voluntary movements in cats. 2. The eight tendon organ afferents in our sample all fired during isotonic movements involving active muscle shortening. 3. Firing rates usually exceeded 100 sec-1, even up to the highest muscle shortening velocity observed, 1.8 resting lengths per second (lr/sec). 4. We suggest that during voluntary, isotonic movements involving muscle shortening at velocities exceeding 0.2 lr/sec, the net action of muscle afferents on homonymous motoneurones is often inhibition. 5. These observations on tendon organs, taken together with previous findings on muscle spindles, indicate that in normal fast movements the role of the large muscle afferents is to signal dynamic functions of muscle length and force.

Action Potentials

Drug-induced stereotypes and asymmetric behaviour after substantia nigra pars posterior (SNPP) lesions in cats.

Apomorphine- (Apo) and amphetamine- (Amph) induced behavioural phenomena were studied in cats which received either 6-hydroxydopamine (6-OHDA) or electrothermic lesions of the posterior part of the substantia nigra (SNPP). In this species, as in rats, both drugs evoked sterotypies (sniffing and head nodding) and an enhancement of locomotor activity. However, distinct differences between the reactions of cats and rats to both drugs were found, the most evident effect being the lack of sterotyped gnawing and licking. By correlating the data on behaviour, the histological examination showing the size and location of the lesions, and the dopamine (DA) content of the corresponding caudate nuclei, it is concluded that the fewer DA-specific neurons lesioned in the SNPP, the more pronounced was the ipsilateral asymmetric behaviour. We suggest, therefore, that the ipsilateral asymmetric behaviour in cats following APO- and AMPH-treatment is due to the destruction of a non-catecholaminergic output.

Animals

The effects of intranigral injections of picrotoxin and carbachol in cats with a lesioned nigrostriatal pathway.

Picrotoxin, carbachol and atropine were injected intranigrally through chronically implanted crannulae in cats. The drug-induced behavioural syndromes, mainly asymmetric behaviour, were analyzed. The changes in these syndromes after 6-hydroxydopamine (6-OHDA) lesion of the substantia nigra (SN) indicate that, in addition to the dopaminergic (DA), a non-catecholaminergic (non-CA) nigral output exists, both being responsible for asymmetric behaviour. It is further suggested that gamma-aminobutyric acid (GABA) receptors are present on both dopaminergic and non-CA nigral output neurons, while acetylcholine (ACh) receptors, responsible for asymmetric behaviour, are almost exclusively located on non-CA nigral output neurons.

Animals