106 research outputs found
Evaluating the effectiveness of spatial augmented reality in smart manufacturing: a solution for manual working stations
Augmented reality (AR) is a key technology for the development of smart manufacturing. One of the main advantages of AR is that it can help workers to accomplish several tasks, making it possible the shift from mass production to mass customization. However, it is still not clear how these promises can be fulfilled in an industrial scenario. In particular, the question about which display solutions fit better the industrial constraints remains open. Based on the literature overview, laboratory experiments, and feedbacks from industrial companies, we supported the use of spatial augmented reality (SAR), designing a prototype intended to be used for manual working stations of the future smart factories. This work presents the evaluation of the effectiveness of conveying technical instructions with this SAR prototype as compared to paper manual. We run a within-subjects experiment with 16 participants to measure user task performance (completion times and error rates) and to collect subjective evaluation. We projected technical information on a motorbike engine during a seven-task maintenance procedure. Our results proved that SAR technology improves the operatorsâ performance with respect to a paper manual and that users well accept it. We found that SAR is more effective for difficult tasks than for simple ones and that the main advantage of SAR is related more to the reduction of error rates than to completion times. These results confirm the goodness of our design choices; then our prototype can be a valid candidate solution for a smart manufacturing application
One session of remote ischemic preconditioning does not improve vascular function in acute normobaric and chronic hypobaric hypoxia
Application of repeated short duration bouts of ischemia to the limbs, termed remote ischemic preconditioning (RIPC), is a novel technique that may have protective effects on vascular function during hypoxic exposures. In separate parallel-design studies, at sea-level (SL; n=16), and after 8-12 days at high-altitude (HA; n=12; White Mountain, 3800m), participants underwent either a sham protocol or one session of 4x5 minutes of dual-thigh cuff occlusion with 5-minutes recovery. Brachial artery flow-mediated dilation (FMD; ultrasound), pulmonary artery systolic pressure (PASP; echocardiography), and internal carotid artery flow (ICA; ultrasound) were measured at SL in normoxia and isocapnic hypoxia [end-tidal PO (PETO ) maintained to 50mmHg], and during normal breathing at HA. The hypoxic ventilatory response (HVR) was measured at each location. All measures at SL and HA were obtained at baseline (BL), 1 hour, 24 hours, and 48 hours post-RIPC or sham. At SL, RIPC produced no changes in FMD, PASP, ICA flow, end-tidal gases or HVR in normoxia or hypoxia. At HA, although HVR increased 24 hours post RIPC compared to BL (2.05{plus minus}1.4 vs. 3.21{plus minus}1.2 L•min-1•%SaO2-1, p<0.01), there were no significant differences in FMD, PASP, ICA flow, resting end-tidal gases. Accordingly, a single session of RIPC is insufficient to evoke changes in peripheral, pulmonary, and cerebral vascular function in healthy adults. Although chemosensitivity may increase following RIPC at HA, this did not confer any vascular changes. The utility of a single RIPC session seems unremarkable during acute and chronic hypoxia
Ischaemic preconditioning changes the pattern of coronary reactive hyperaemia in the goat: role of adenosine and nitric oxide
Retrograde conduction of the impulse in ventricular tachycardia and its hemodynamic significance.
Autoregulation of the coronary vascular resistance after beta-adrenergic receptor blockade.
Integration between myogenic response and neurovegetative activity in the regulation of the coronary flow.
Haemodynamic effect of the suppression of ventricular tachycardia by atrio-ventricular captures
Variazioni della dinamica cardiaca da improvviso aumento dell'impedenza aortica all'eiezione ventricolare nel coniglio
The effect of beta-blockade on the transient increase in coronary vascular resistance resulting from haemorrhage.
Abrupt reduction in aortic blood pressure by haemorrhage in the anaesthetized dog has previously been used to assess the effect of elastic recoil and myogenic properties of the coronary vascular wall on diastolic coronary resistance. Using such assessments this study examines whether beta-blockade influences the magnitude of the effect of the vessel wall on coronary resistance. In two groups of dogs abrupt reduction in aortic blood pressure caused by haemorrhage resulted in an initial increase in diastolic coronary resistance, followed by its decline to the control value. In the first group with intact vagi, beta-blockade resulted in a greater initial increase in resistance and attenuation of its subsequent decline. Vagotomy in the second group did not abolish the effect of beta-blockade on diastolic coronary resistance. The findings suggest that during abrupt reduction in perfusion pressure, beta-blockade and reduction in heart rate and coronary blood flow resulted in a greater elastic recoil of the coronary vascular wall associated with an initial increase in diastolic coronary resistance and attenuation of myogenic properties related to return of diastolic coronary resistance to the control level
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