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  • AF-DX 116  (1)
  • Head and neck neoplasm  (1)
  • 1
    ISSN: 1436-3771
    Keywords: Key words Ultrasound ; Radiation caries ; Head and neck neoplasm ; Radiotherapy ; Modulus of elasticity ; Enamel ; Dentine ; In vitro ; In vivo
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract  Ultrasound transmission velocity (UTV) in isotropic material as a measure for the modulus of elasticity was correlated to mechanical properties. Changes in micromechanical properties of radiated teeth and influence of the oral cavity were to be evaluated nondestructively. UTV was measured in extracted teeth after 36 Gy and 62 Gy of in situ (enorally, with no contact to the oral cavity) and in vitro irradiation. Relative to controls, teeth subjected to 62 Gy in vivo showed higher UTV values for dentine and enamel. Sound teeth irradiated with 60 Gy in situ also showed higher UTV values for enamel, whereas dentine values were not significantly different from those of control. The mechanical properties of teeth irradiated in vitro were affected only after high experimental doses of up to 500 Gy. The difference between in vivo and in vitro mechanical properties may be due to radioxerostomia-induced damages as well as the status of dentine vitality. This supports the concept of direct radiation-induced damage in synergy with radioxerostomia-induced caries.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-1912
    Keywords: Prejunctional muscarinic receptors ; Acetylcholine release ; Parasympathetic vasoconstriction ; Methoctramine ; AF-DX 116
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Experiments were carried out on rat isolated perfused hearts with both vagus nerves attached. The acetylcholine stores were labelled with [14C]-choline. The effects of muscarinic receptor antagonists on the [14C]overflow and increase in perfusion pressure evoked by vagus nerve stimulation (10 Hz, 4–10 mA) were studied in order to determine the muscarinic receptor type involved in autoinhibition of acetylcholine release and vagally-induced vasoconstriction in the rat heart. Stimulation of the vagus nerves (1200 pulses) caused an increase in [14C]-overflow and in perfusion pressure which was significantly reduced by hexamethonium 500 μmol/l and abolished by tetrodotoxin 0.3 μmol/l or perfusion with Ca2+-free solution. The fractional rate of evoked [14C]-overflow per pulse upon stimulation at 10 Hz (720 pulses) was doubled in the presence of the non-selective antagonist atropine (0.01–1 μmol/l) as well as in that of the M2-selective compounds methoctramine (0.1 μmol/l) and AF-DX 116 (0.1–1 μmol/l), but remained unaffected by the M3-selective hexahydrosiladifenidol (0.1 μmol/l). The increase in perfusion pressure upon nerve stimulation was reduced by atropine (0.01 μmol/l) or hexahydrosiladifenidol (0.1 μmol/l) to approximately 50% and increased by about 50% in the presence of AF-DX 116 (0.1 μmol/l). The results show that the autoinhibition of acetylcholine release in the rat heart is mediated by M2 receptors. On the other hand, the increase in perfusion pressure upon vagus nerve stimulation is caused by a different muscarinic receptor, more sensitive to hexahydrosiladifenidol than to M2-selective antagonists.
    Type of Medium: Electronic Resource
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