911 resultados para sensory drive


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Proton translocation experiments with intact cells of Halobacterium salinarium overproducing sensory rhodopsin I (SRI) revealed transport activity of SRI in a two-photon process. The vectoriality of proton translocation depends on pH, being outwardly directed above, and inwardly directed below, pH 5.7. Activation of the transport cycle requires excitation of the initial dark state of SRI, SRI590, to form the intermediate SRI380. Action spectra identify the photocycle intermediates SRI380 and SRI520 as the two photochemically reactive species in the outwardly directed transport process. As shown by flash photolysis experiments, SRI520 undergoes a so-far unknown photochemical reaction to SRI380 with a half-time of <200 micros. Mutation of SRI residue Asp-76, the residue which is equivalent to the proton acceptor Asp-85 in bacteriorhodopsin, to asparagine leads to inactivation of proton translocation. This demonstrates that the underlying mechanisms of proton transport in both retinal proteins share similar features. However, SRI is to our knowledge the first case where photochemical reactions between two thermally unstable photoproducts of a retinal protein constitute a catalytic ion transport cycle.

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Regenerative proliferation occurs in the inner-ear sensory epithelial of warm-blooded vertebrates after insult. To determine how this proliferation is controlled in the mature mammalian inner ear, several growth factors were tested for effects on progenitor-cell division in cultured mouse vestibular sensory epithelia. Cell proliferation was induced in the sensory epithelium by transforming growth factor alpha (TGF-alpha) in a dose-dependent manner. Proliferation was also induced by epidermal growth factor (EGF) when supplemented with insulin, but not EGF alone. These observations suggest that stimulation of the EGF receptors by TGF-alpha binding, or EGF (plus insulin) binding, stimulates cell proliferation in the mature mammalian vestibular sensory epithelium.

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Residue replacements were made at five positions (Arg-73, Asp-76, Tyr-87, Asp-106, and Asp-201) in the Halobacterium salinarium phototaxis receptor sensory rhodopsin I (SR-I) by site-specific mutagenesis. The sites were chosen for their correspondence in position to residues of functional importance in the homologous light-driven proton pump bacteriorhodopsin found in the same organism. This work identifies a residue in SR-I shown to be of vital importance to its attractant signaling function: Asp-201. The effect of the substitution with the isosteric asparagine is to convert the normally attractant signal of orange light stimulation to a repellent signal. In contrast, similar neutral substitution of the four other ionizable residues near the photoactive site allows essentially normal attractant and repellent phototaxis signaling. Wild-type two-photon repellent signaling by the receptor is intact in the Asp-201 mutant, genetically separating the wild-type attractant and repellent signal generation processes. A possible explanation and implications of the inverted signaling are discussed. Results of neutral residue substitution for Asp-76 confirm our previous evidence that proton transfer reactions involving this residue are not important to phototaxis but that Asp-76 functions as the Schiff base proton acceptor in proton translocation by transducer-free SR-I.

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We have cloned an additional member (GC-D) of the membrane receptor guanylyl cyclase [GTP pyrophosphate-lyase (cyclizing), EC 4.6.1.2] family that is specifically expressed in a subpopulation of olfactory sensory neurons. The extracellular, putative ligand-binding domain of the olfactory cyclase is similar in primary structure to two guanylyl cyclases expressed in the retina but diverges considerably from other known guanylyl cyclases. The expression of GC-D RNA is restricted to a small, randomly dispersed population of neurons that is within a single topographic zone in the olfactory neuroepithelium and resembles the pattern of the more diverse seven-transmembrane-domain odorant receptors. These observations suggest that GC-D may function directly in odor recognition or in modulating the sensitivity of a subpopulation of sensory neurons to specific odors.

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In the latter half of the twentieth century the workforce dynamic changed when the number of women entering the workforce increased by record amounts. In direct opposition to this change was the inability of organizations to meet the needs of employees with childcare concerns. Organizations and employees alike are best served when policies, procedures, and benefits are implemented to achieve a positive work/life balance. Companies that institute benefits that are supportive to families observe decreases in turnover and increased employee retention. Employees who are offered family friendly resources have been known to stay with companies even when offered a higher salary elsewhere. Demonstrating that retention of valued employees is linked to an organizations ability to offer support for family needs.

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Ivermectin is a veterinary pharmaceutical generally used to control the ecto- and endoparasites of livestock, but its use has resulted in adverse effects on coprophilous insects, causing population decline and biodiversity loss. There is currently no information regarding the direct effects of ivermectin on dung beetle physiology and behaviour. Here, based on electroantennography and spontaneous muscle force tests, we show sub-lethal disorders caused by ivermectin in sensory and locomotor systems of Scarabaeus cicatricosus, a key dung beetle species in Mediterranean ecosystems. Our findings show that ivermectin decreases the olfactory and locomotor capacity of dung beetles, preventing them from performing basic biological activities. These effects are observed at concentrations lower than those usually measured in the dung of treated livestock. Taking into account that ivermectin acts on both glutamate-gated and GABA-gated chloride ion channels of nerve and muscle cells, we predict that ivermectin’s effects at the physiological level could influence many members of the dung pat community. The results indicate that the decline of dung beetle populations could be related to the harmful effects of chemical contamination in the dung.

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EINLEITUNG Anhand eines Pelvitrainer Modells wurde ein sogenannter „Handheld Roboter“ (Kymerax© Precision- Drive Articulating Surgical System von Terumo©) mit konventionellen laparoskopischen Instrumenten verglichen. Das Kymerax© System verfügt über eine Instrumentenspitze, welche durch Knöpfe am Handgriff zusätzlich abgewinkelt und rotiert werden kann. METHODE 45 Probanden wurden in 2 Erfahrungsgruppen aufgeteilt: 20 ExpertInnen (mehr als 50 selbstständig durchgeführte laparoskopische Operationen pro Jahr) und 25 StudentInnen (keine Erfahrung in der Laparoskopie). Sie führten 6 standardisierte Übungen durch, wobei die ersten beiden Übungen jeweils nur der Instrumenteninstruktion dienten und nicht ausgewertet wurden. In den restlichen 4 Übungen wurden Zeit, Fehleranzahl und Präzision erfasst. Es wurde in 2 Gruppen randomisiert. Eine Gruppe führte die Übungen zuerst mit dem konventionellen System und dann mit dem Kymerax© System durch. Bei der anderen Gruppe erfolgten die Übungen in umgekehrter Reihenfolge. Am Ende beantworteten die Teilnehmer Fragen zu den Übungen und den Operationssystemen. Die Daten wurden mittels Varianzanalyse ausgewertet. RESULTATE In allen 4 gemessenen Übungen brauchten die Probanden mit Kymerax© signifikant mehr Zeit (20%-40%). Vorteile des Kymerax© Systems waren eine bessere Nadelkontrolle bei einer auf den Operateur gerichteten Stichrichtung, eine geringere Abweichung beim Schneiden einer graden Linie, sowie ein geringeres Ausfransen der Schnittlinie beim graden wie beim runden Schneiden. Im Gegensatz zu den Experten kamen Studenten, welche das Kymerax© System in der zweiten Runde verwendeten, besser mit diesem zu Recht, als Ihre Studentenkollegen, die das Kymerax© System in der ersten Runde verwendeten. In der Befragung gaben über 90% der Teilnehmer an, dass das Kymerax© System bei der Durchführung der Übungen einen Vorteil bringt. Die Probanden empfanden jedoch die Bedienung als gewöhnungsbedürftig und erschöpften mit dem Kymerax© System schneller. Bemängelt wurde beim Kymerax© System die nicht freie Rotation, die eingeschränkte Abwinklung, die Sichteinschränkung durch den 7mm Schaft sowie die Ergonomie des Handgriffs. DISKUSSION Das Kymerax© System bringt Vorteile bei gewissen komplexen laparoskopischen Aufgaben. Der Preis hierfür ist die langsamere Durchführung der Aufgaben, die längere Angewöhnungszeit an das Instrument sowie die schnellere Ermüdung des Benutzers. Das System zeigt ein grosses Potential für die laparoskopische Chirurgie, jedoch sind weitere Verbesserungen notwendig. Von der Firma Terumo© wurde zwischenzeitlich das Operationssystem vom Markt genommen.

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The article is about using of variable frequency drives for reduction oil pumping main line pumps energy consumption. Block diagram of developed computer program is shown in the article. The computer program allows to determine the reduction of energy consumption and to estimate payback period of variable frequency drives.