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Biomedical subjects

K Karita

Publications and source records attributed to K Karita.

At least 19 recordsLinked to original sources

Effects of the autonomic ganglion blocking agent hexamethonium on vasodilator responses mediated by the parasympathetic ganglion on the chorda tympani pathway of the cat.

We investigated the pharmacological properties of a parasympathetic ganglion (a chorda tympani ganglion) that mediates vasodilator responses in the lower lip induced by electrical stimulation of the distal cut end of the chorda tympani or facial nerve root of the cat. These responses were suppressed by prior treatment with the autonomic ganglion blocking agent hexamethonium. We compared the effects of three doses of hexamethonium (1, 3 and 10 mg/kg, i.v.) on the chorda tympani ganglion with their effects on three large ganglia; the otic, submandibular and pterygopalatine ganglia that mediate vasodilator responses. Experiments were conducted on 20 cats weighing 1-3 kg which had been anesthetized with a mixture of urethane (100 mg/kg, i.v.) and chloralose (50 mg/kg, i.v.) then artificially ventilated (pancuronium bromide 0.2 mg/kg per h, i.v.). The chorda tympani ganglion's sensitivity to hexamethonium was similar to that of the otic ganglion but differed from the sensitivities of submandibular and pterygopalatine ganglia. We speculate that transmission through the chorda tympani ganglion is pharmacologically similar to the otic ganglion, although its precise location has yet to be determined.

Animals

Pentylenetetrazole-induced parasympathetic blood flow increase in the lower lip of the cat.

The pentylenetetrazole (30 mg/kg i.v.)-induced blood flow increase in cat lip was more marked on the sympathectomized side than on the intact side (P < 0.01). This difference is probably dependent on the degree of simultaneous activation of the sympathetic nerve elicited by pentylenetetrazole administration. The blood flow increases were markedly suppressed by prior treatment with hexamethonium (10 mg/kg i.v.), an autonomic ganglion blocker (P < 0.01). Combined section of the facial and glossopharyngeal nerve roots completely abolished the blood flow increases elicited by pentylenetetrazole administration (P < 0.01), but section of either the facial or glossopharyngeal nerve root alone failed to produce complete abolition (P < 0.05). These results indicate that the relevant parasympathetic vasodilator fibers originate not only from the glossopharyngeal, but also the facial nerves and that both participate in pentylenetetrazole-induced vasodilatation in the cat lower lip.

Animals

Effect of baseline vascular tone on vasomotor responses in cat lip.

1. Parasympathetic vasodilator and sympathetic vasoconstrictor responses were monitored using laser Doppler measurement of red cell flux in the lips of anaesthetized and artificially ventilated cats. 2. Three relationships were investigated: (i) that between the reflex parasympathetic vasodilator response induced by lingual nerve (LN) stimulation and baseline red cell flux (BRCF) levels adjusted by repetitive stimulation of the cervical sympathetic nerve (CSN) at various frequencies; (ii) that between the sympathetic vasoconstrictor response elicited by CSN stimulation and the adjusted BRCF levels; and (iii) that between the vasomotor response evoked by simultaneous stimulation of the LN and CSN and the adjusted BRCF levels. 3. The amplitude of the parasympathetic vasodilator response increased as BRCF decreased. In contrast, the amplitude of the sympathetic vasoconstrictor response increased in line with BRCF. 4. Simultaneous activation of the parasympathetic and sympathetic nerves induced a blood flow decrease at high BRCF levels but an increase at low levels. 5. The tendency for the skin of cold subjects to vasodilate and that of warm ones to vasoconstrict in response to various types of stimuli discussed in the light of the present findings.

Adrenergic Fibers

Two types of vasodilatation in cat choroid elicited by electrical stimulation of the short ciliary nerve.

Choroidal blood vessels are innervated by three types of vasoactive nerve fibers: sympathetic, parasympathetic and sensory fibers in the short ciliary nerve. We investigated whether or not stimulation of the short ciliary nerve elicits vasodilatation. In 30 cats (2-4 kg) anesthetized with pentobarbital sodium (30 mg kg-1, i.v.) and artificially ventilated (pancuronium bromide; 0.2 mg kg-1 hr-1, i.v.), choroidal blood flow was continuously measured trans-sclerally with a laser Doppler flowmeter. The lateral short ciliary nerve was stimulated electrically (0-50 V, 2 msec, 20 Hz, for 10 sec) at two sites, one close to the eyeball (site P) and the other between the main and accessory ciliary ganglia (site Q). Choroidal vasodilatation occurred with a high incidence (80%) in response to electrical stimulation of the short ciliary nerve at site P or Q, when cats had been treated with the alpha-adrenergic blocking agent phentolamine (3 mg kg-1) to eliminate sympathetic vasoconstrictor effects. A long-lasting vasodilatation was observed during 1% capsaicin application to the nerve bundle at site P, but not at site Q and capsaicin nearly abolished the vasodilatation evoked by stimulation at site P, but not that evoked from site Q. Vasodilatation elicited by electrical stimulation at site P or Q was not sensitive to the ganglion-blocking agent hexamethonium (3 mg kg-1, i.v.).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Antagonists

Low-frequency subthreshold sympathetic stimulation augments maximal reflex parasympathetic salivary secretion in cats.

Electrical stimulation of the peripheral cut end of the cervical sympathetic trunk for 3 min at frequencies < 1 Hz with pulses of 2-ms duration at supramaximal intensities did not elicit any salivary secretion, but an increase of stimulus frequency over the range 2-10 Hz produced progressively greater salivary secretion, the maximum volume of salivary secretion being evoked at 10 Hz. Frequency-dependent augmentation of parasympathetic reflex submandibular salivary secretion occurred when the lingual nerve was stimulated during repetitive sympathetic stimulation (at frequencies of 0.1-2 Hz) in our sympathectomized cats. The augmentation was found to be linearly related to sympathetic stimulus frequency (regression line calculated by method of least squares; r = 0.939, P < 0.01). This augmentation was abolished by prior treatment with the beta-adrenoceptor blocking drug propranolol (1 mg/kg, P < 0.01 vs. before propranolol) but not by the alpha-adrenoceptor blocking agent phentolamine (1 mg/kg), indicating that the augmented response was mediated via an activation of beta-adrenoceptors. The reduction of the augmentation caused by propranolol had diminished 1 h after its administration, showing that the effect was reversible.

Animals

Effects of clonidine and yohimbine on parasympathetic reflex salivation and vasodilatation in cat SMG.

The present experiments were designed to examine the site of action of the alpha 2-adrenoceptor agonist, clonidine, and the alpha 2-antagonist, yohimbine, on the salivary secretion response to parasympathetic and sympathetic stimulation in the cat submandibular gland (SMG). The parasympathetic reflex salivary secretion was significantly affected by both clonidine and yohimbine (clonidine reduced and yohimbine increased the amount of saliva secreted) while the reflex vasodilator response was not affected by either agent. No degree of methacholine-induced salivation was affected by prior treatment with either clonidine or yohimbine. The salivation elicited by facial nerve root stimulation was markedly reduced by clonidine but potentiated by yohimbine. Prior treatment with scopolamine completely abolished the salivary secretion induced by either methacholine or facial nerve root stimulation. Clonidine and yohimbine had no effect on SMG salivation elicited by sympathetic stimulation. These results indicate that the alpha 2-agonist and antagonist act specifically on parasympathetic salivary fibers but have no effect on parasympathetic vasodilator fibers. They thus suggest that postganglionic parasympathetic innervation is differentiated into salivary and vasodilator fibers.

Animals

Absence of parasympathetic vasodilatation in cat dental pulp.

The existence and nature of parasympathetic nerve fibers in the dental pulp have long been a subject for discussion; indeed, vasodilator responses mediated by such nerve fibers have yet to be conclusively demonstrated in the dental pulp. This study was designed to determine whether parasympathetic vasodilator mechanisms do or do not exist in the cat dental pulp. Dynamic changes in pulpal blood flow (PBF), with mandibular lip blood flow (LBF) recorded as a control, were investigated in cat mandibular canine teeth by means of laser Doppler velocimetry. Peripheral trigeminal afferents (see below) were stimulated electrically to confirm that somato-parasympathetic reflex vasodilatation could be induced. The peripheral cut ends of the facial and glossopharyngeal nerve roots, which have been reported to contain parasympathetic nerve fibers to the oral tissues, were then stimulated intracranially. Electrical stimulation of trigeminal afferents (in the infraorbital nerve or the maxillary buccal gingiva) caused no change in PBF but did increase ipsilateral LBF. Neither facial nor glossopharyngeal nerve root stimulation caused a PBF increase, though both elicited increases in ipsilateral LBF. The vasodilator responses in the lip were sensitive to ganglion blockade (with hexamethonium), indicating vasodilatation via activation of parasympathetic vasodilator fibers. In contrast, intracranial stimulation of the trigeminal nerve root induced increases in both PBF and LBF which were reduced by pre-treatment with tripelennamine, indicating antidromic vasodilatation via the trigeminal sensory nerve. These results suggest that a parasympathetic vasodilator mechanism is not present in feline dental pulp.

Animals

Increased and decreased choroidal blood flow elicited by cervical sympathetic nerve stimulation in the cat.

The effect of electrical stimulation of the cervical sympathetic nerve on choroidal blood flow in the cat was investigated. Flow at various sites in 30 pentobarbital-anesthetized cats was continuously measured trans-sclerally using a laser Doppler flowmeter. Changes in either direction, increases and decreases, occurred in response to electrical stimulation of the peripheral cut end of the cervical sympathetic nerve. These changes in flow appeared to depend on the site of choroidal blood flow measurement, as decreases were seen at sites with a high baseline blood flow and increases at sites with a low baseline level. Both types of response were reduced when the cats were treated with the alpha-adrenoreceptor antagonist phentolamine, but not by treatment with the beta-adrenoceptor antagonist propranolol. The decrease in choroidal blood flow elicited by cervical sympathetic nerve stimulation appears to be mediated via the vasoconstrictor fibers in that nerve. A choroidal blood flow increase may occur as a secondary effect following vasoconstriction of the arterioles elicited by cervical sympathetic nerve stimulation, producing a passive net increase in choroidal blood flow.

Adrenergic alpha-Antagonists

Parasympathetic reflex salivary secretion in the cat parotid gland.

The aim of the present study was to compare and to characterize the secretory and vasodilator effects in the parotid gland of sympathectomized cats elicited reflexly by electrical stimulation of the central cut ends of the chorda tympani (or glossopharyngeal) nerves (physiologically conveying gustatory stimuli), vagus nerve (visceral stimuli), and the lingual nerve after cutting the chorda tympani nerve (somatic stimuli). The threshold stimulus-intensity needed to elicit the salivary secretion and a blood flow increase was markedly lower for stimulation of the chorda tympani nerve and glossopharyngeal nerve (2 V for each nerve) than for the lingual nerve, inferior alveolar nerve, and vagus nerve (10 V for each nerve). The salivary and vasodilator responses to stimulation of each afferent nerve were all abolished by prior treatment with hexamethonium at a dose of 5 mg/kg, i.v. Prior treatment with scopolamine completely abolished the salivary secretion elicited by lingual nerve and glossopharyngeal nerve stimulation, but had less effect on the vasodilator response in the parotid gland. These results indicate that the secretory and vasodilator responses evoked by afferent traffic in the above nerves are mediated via an activation of the autonomic nervous system, particularly by a parasympathetic mechanism. They suggest that there is a marked difference in the ability of different sensory modalities to induce reflex salivary secretion and vasodilatation, there being low threshold nerve fibers in the chorda tympani and glossopharyngeal nerves and high threshold nerve fibers in the lingual nerve, vagus nerve, and inferior alveolar nerve.

Animals

Axon reflex vasodilatation in cat dental pulp elicited by noxious stimulation of the gingiva.

Antidromic stimulation of sensory nerves has been shown to increase blood flow in the tissue they innervate. This study was designed to determine if antidromic vasomotor responses occur in feline dental pulp and if they are mediated by branched axons supplying both tooth pulp and gingiva. Dynamic changes in pulpal blood flow (PBF) elicited by electrical stimulation, pinching, heating, and capsaicin application to the gingivae were investigated in cat mandibular canine teeth by means of Laser Doppler Velocimetry. All inferior alveolar nerve bundles and the cervical sympathetic trunk had been previously sectioned to avoid the occurrence of brainstem reflexes, e.g., somato-autonomic vasomotor reflexes. Increases in PBF were observed in seven out of 12 cats when a restricted gingival area adjacent to the canine teeth was stimulated as described, but the increases were abolished after the sensitive gingival area was painted with lidocaine jelly, a surface anesthetic. These vasodilator responses, remarkably reduced following repeated application of 30 mM of capsaicin, are considered to be induced via antidromic activation of capsaicin-sensitive nociceptive nerve fibers, presumably by axon reflex mechanisms, suggesting that nerve terminals supplying the gingiva originate from parent axons which have collaterals that innervate the canine tooth pulp.

Animals

Origins of parasympathetic postganglionic vasodilator fibers supplying the lips and gingivae; an WGA-HRP study in the cat.

Application of WGA-HRP to the mandibular lip and buccal gingiva of the cat resulted in retrograde labeling in the ipsilateral otic ganglion (OG), whereas labeled neurons appeared in the pterygopalatine ganglion (PPG) as well as in the OG when the tracer was injected into the maxillary lip and buccal gingiva. The results suggest that both the facial and the glossopharyngeal preganglionic vasodilator fibers supplying the mandibular lip and buccal gingiva mediated in the OG, and those innervating the maxillary lip and buccal gingiva are mediated in the PPG and the OG.

Animals

Effect of tooth temperature on activities of slowly adapting periodontal mechanoreceptors in the cat.

The mass response of a nerve bundle and the unitary discharges from a functional single nerve fibre evoked by mechanical stimulation of the upper canine tooth were recorded from the superior alveolar nerves of 10 anaesthetized cats. When the pulpal cavity of the mechanically stimulated tooth was perfused with a 0.9% NaCl solution at temperatures from 10 to 45 degrees C, the mass response of the nerve bundle to that stimulation increased linearly with the rise in perfusate temperature (hereafter, tooth temperature). In the unitary discharge recordings, the activities of 30 (88%) of 34 slowly adapting periodontal mechanosensitive units were modulated by tooth temperature. The optimal temperature, at which the periodontal mechanoreceptor shows extreme excitation by mechanical tooth stimulation, was distributed widely from 10 to < or = 45 degrees C with a peak at < or = 45 degrees C. A shift in tooth temperature away from the optimal value caused a decrease in, or sometimes the disappearance of, the response. This decrease was the result of the decrease in the excitability of the periodontal mechanoreceptor; i.e. an increase in threshold stimulus intensity and a shortening of the adaptation time to sustained pressure applied to the tooth.

Adaptation, Physiological

Somatosensory afferents in the parasympathetic vasodilator reflex in cat lip.

Somato-parasympathetic reflexive vasodilatation elicited by activation of the nociceptors in the oro-facial areas of the cat was investigated. Changes in lower lip blood flow monitored by a laser Doppler flowmeter took place in pentobarbital-anesthetized and artificially respirated cats. Pinch and heat stimulation of the oro-facial areas evoked a blood flow increase similar to that of electrically induced vasodilatation. Sustained increased responses in blood flow were obtained when a 1% capsaicin solution was applied to the tongue. These results show that the C-polymodal nociceptor is a strong candidate for a receptor that provokes somato-parasympathetic vasodilatation. Capsaicin-insensitive nerve fibers, however, also participate because electrical stimulation of the capsaicin-treated tongue evoked vasodilatation. The correlation between noxious stimulation-induced vasodilatation and systemic blood pressure change also is discussed.

Animals

Selective excitation of parasympathetic nerve fibers to elicit the vasodilatation in cat lip.

Electrical stimulation of the tongue and the proximal cut end of the lingual nerve caused a blood flow to increase in a stimulus-intensity dependent manner in the ipsilateral lower lip of the cats. Pretreatment with hexamethonium (an autonomic ganglionic blocker, 1.0 mg/kg) abolished the vasodilator response, while atropine, phentolamine, propranolol and tripelennamine had no effect on these vasoresponses. Ipsilateral sections of either the glossopharyngeal nerve root, inferior alveolar nerve or mental nerve at the main mental foramen, but not at the posterior mental foramen, abolished the vasodilator response caused by electrical stimulation of the tongue and the lingual nerve. Electrical stimulation of the distal cut ends of the glossopharyngeal nerve root and inferior alveolar nerve caused the vasodilator and vasoconstrictor responses, whereas stimulation of the tongue and the proximal cut ends of the lingual nerve did not elicit the vasoconstrictor response. These results suggest that reflex vasodilatation in the cat mandibular division is exclusively mediated via activation of the parasympathetic nerve fibers, and that selective excitation of the parasympathetic nerve fibers in the oral area is possible.

Animals

Effect of birth season on case fatality rate of pulmonary tuberculosis: coincidence or causality?

The effects of birth season on the case fatality rate (CFR) of pulmonary tuberculosis were examined in case records of 9206 patients discharged during 1937-1965 from a national hospital for tuberculosis in Tokyo. The CFR was over 60% until 1945, then it decreased down to less than 9% after 1950. Male cases had little variation in their CFR by their birth season, while female cases had a significant variation and showed a significantly higher CFR than the male cases when they were born in January-June. The results suggest that the birth season had a significant influence on the prognosis of pulmonary tuberculosis.

Delivery, Obstetric

Somatosensory stimulation causes autonomic vasodilatation in cat lip.

1. Electrical stimulation of the infra-orbital nerve and the maxillary buccal gingiva caused an increase in ipsilateral lip blood flow in a stimulus intensity-dependent manner in anaesthetized cats. 2. The reflex vasodilator response was resistant to blockade by antimuscarinic (atropine), antiadrenergic (phentolamine and propranolol) and antihistaminergic (tripelennamine) but sensitive to ganglionic blocking agent (hexamethonium). 3. The reflex vasodilator response was unaffected by section of the ipsilateral cervical sympathetic trunk and facial nerve root, but was completely abolished by ipsilateral section of the glossopharyngeal nerve root. 4. The vasodilator response elicited by stimulation of the facial and glosso-pharyngeal nerves was never affected by lesion of the ipsilateral pterygopalatine ganglion. 5. Local anaesthesia or section of the inferior alveolar nerve abolished the vasodilator effects of stimulation of the facial and the glossopharyngeal nerves. 6. These results suggest that there is a somato-autonomic reflex vasodilator system mediated via final neurons that are not cholinergic, and that the parasympathetic vasodilator fibres emerge from the brain stem with the glossopharyngeal nerve and reach the blood vessels via the otic ganglion and the inferior alveolar nerve in the cat mandibular lip.

Animals

Response field of cat trigeminal sensory complex neurons responsive to mechanical stimulation of the canine tooth.

Response fields of periodontal mechanoreceptive (PM) neurons in the cat's trigeminal sensory complex were examined while mechanical stimulation was applied to the canine tooth in 12 directions on the horizontal plane. Almost all the slowly adapting PM neurons were directionally selective to stimulation, and their response fields had response angles greater than 180 degrees, i.e. broad type.

Afferent Pathways