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M Passatore

Publications and source records attributed to M Passatore.

At least 37 records · Page 2Linked to original sources

Localization of neurons innervating masticatory muscle spindle and periodontal receptors in the mesencephalic trigeminal nucleus and their reflex actions.

The mesencephalic trigeminal nucleus was studied in anaesthetized and curarized rabbits by recording the unitary activity through extracellular microelectrodes and identifying the constituent cell types. Two types of units were found, namely primary afferents supplying jaw raising muscle spindles and periodontal or gingival mechanoreceptors. These two groups of neurons exhibited a rostrocaudal somatotopy: the former occupied the entire rostral portion of the nucleus (A7-P2.3; trochlear decussation being taken as an arbitrary 0 level), the latter was located caudally (P3-P4.5) while the somata of both types of afferent fibres were present between P2.2 and P3. No evidence was found for representation of both tendon organs of jaw muscles and joint receptors. Among the units innervating muscle spindles, secondary afferents were largely more numerous than the primary ones. Among periodontal and gingival mechanoreceptor afferents, incisors were the most widely represented, followed by interalveolar gingiva and molars; the axonal conduction velocity ranged between 9 and 40 m/sec and between 8 and 16 m/sec for ipsilaterally and contralaterally projecting neurons, respectively. The motor responses obtained by electrical stimulation of discrete areas of the MTN confirmed the presence of a high degree of segregation between the two different populations of neurons. In fact, jaw raising movements are obtained when stimulating the area within A7 and P2 containing the somata of spindle afferent neurons, while only jaw opening movements are elicited by stimulation of the caudal levels of the nucleus. These data also show that the periodontal neurons whose somata are located in the MTN participate in the jaw opening reflex, just as the more numerous periodontal mechanoreceptors whose somata are located in the Gasser ganglion. Soma-somatic and soma-axon hillock gap junctions were found among the neurons of the MTN, particularly in the caudal third of the nucleus.

Animals↗

Sympathetic modulation of periodontal mechanoreceptors.

The effect of the electrical stimulation of the peripheral stump of the cervical sympathetic nerve, at physiological frequencies, was studied on the activity of mechanoreceptors with sensory field around the teeth, in anaesthetized and paralysed animals. In the 33% of the tested units either an increase of the resting discharge rate or an activation of the receptors occurred. The latency of this response ranged between 0.3 and 6 sec; the maximum discharge frequency, which varied widely in different units, was reached within the subsequent 2 to 4 sec and usually outlasted the duration of the stimulation. The possible mechanisms of this sympathetic effect are discussed on the basis of its latency and pattern and of the following further observations: i) its presence after denervation of carotid sinus and glomus, ii) its dependence on the stimulation of preganglionic sympathetic fibres belonging to the groups S1 and S2, iii) the absence of response in the mechanoreceptor units by the temporary occlusion of the ipsilateral common carotid artery.

Animals↗

A dual effect of sympathetic nerve stimulation on jaw muscle spindles.

In anaesthetized and paralyzed rabbits, electrical stimulation of the cervical sympathetic nerve at physiological frequencies induces in jaw muscle spindle afferents a short-latency decrease or suppression of discharge. This effect is very stereotyped in pattern and is attributed to direct sympathetic innervation of spindles. It is mediated by preganglionic S1-S2 sympathetic fiber groups. A longer-latency facilitatory effect follows, probably vasomotor in origin and mediated by S3-S4 groups. Both responses are eliminated by administration of alpha-adrenergic blocking agents. The latencies, patterns, thresholds, durations and reproducibility of these responses have been studied and the mechanisms possibly involved are discussed.

Animals↗

On whether there is a direct sympathetic influence on jaw muscle spindles.

Electric stimulation of the peripheral stump of cervical sympathetic nerve (0.5-5.0 sec trains at 1 msec, 6-10 V, 0.5-30 HZ) induced in jaw muscle spindle afferents: (1) decrease of discharge frequency with 0.6-2.5 sec latency, lasting 8-13 sec (in 40% of the units) possibly due to direct sympathetic innervation of spindles; and (2) subsequent modest increase of frequency, probably secondary to muscular vasoconstriction.

Adrenergic Fibers↗

Epileptogenic stimulation of the cortical masticatory area and the mesencephalic trigeminal nucleus.

1. The effects of epileptogenic stimulation of the cerebral masticatory area on the somata of the first-order neurons of masticatory proprioception localized in the mesencephalic trigeminal nucleus (MTN) were studied in curarized, lightly anaesthetized rabbits. 2. Low-frequency stimulations inducing modest cortical after-discharges fired the silent MTN units with latencies of 0.3-0.8 sec, and induced alternate excitatory and inhibitory effects on the active units. On some occasions the tonic afferent discharge was changed into rhythmic bursts, which occurred at the constant frequency of 2.5-3.5/sec for the entire range of stimulation frequencies used, i.e. from 0.3 to 10/sec. 3. High-frequency cortical stimulations eliciting true epileptic seizures induced a transient increase in discharge of the MTN units, followed by a prolonged inhibition. 4. All these effects were attributed to activation of reticular pathways acting on the some of the recorded proprioceptive neurons. Such a modulation of the proprioceptive input elicited by the epileptic masticatory cortex may contribute to the motor effects and to the changes of the masseteric reflex which occur during convulsive seizures.

Animals↗

Carotid chemoreceptor influence on the cardiac sympathetic nerve discharge.

Pure stimulation of carotid chemoreceptors induces, as a primary effect, the general spontaneous activation of both the cardioexcitatory and the cardioinhibitory medullary centres. These effects have been shown by keeping constant those parameters which, when modified, produced secondary effects hiding the investigated primary ones.

Animals↗