48 resultados para visit synchrony

em Brock University, Canada


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In October of 1969, Governor General Rolland Michener along with the Bailiff of Guernsey were invited to tour the Niagara Region with Dr. Gibson as part of a series of events to celebrate the 200th anniversary of Sir Isaac Brock's birth. Here they are visiting a stone monument erected in Queenston years ago by Albert Edward, Prince of Wales. Pictured in the foreground are Mrs. Michener, Dr. Gibson, and Governor General Michener - the man speaking with Dr. Gibson with his back to the photographer.

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During his visit to Canada in June of 1965, Captain Michael Mellish of Guernsey - O. B. E. Secretary, A. D. C. to the Lieutenant-Governor, and great nephew of Isaac Brock - donated a special photographic album containing various photos of the relics of Sir Isaac Brock. Pictured here from left to right are: Ed Mitchelson and Captain Mellish.

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Verse.

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A photograph of the visit by former Prime Minister John Turner, dated 5 June, 1987. Also in the photographs are Karl Kaiser and Donald Ziraldo.

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Three photographs of Prime Minister Pierre Trudeau's visit to Inniskillin in 1983.

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Synchronization of behaviour between individuals has been found to result in a variety of prosocial outcomes. The role of endorphins in vigorous synchronous activities (Cohen, Ejsmond-Frey, Knight, & Dunbar, 2010) may underlie these effects as endorphins have been implicated in social bonding (Dunbar & Shultz, 2010). Although research on synchronous behaviour has noted that there are two dominant phases of synchrony: in-phase and anti-phase (Marsh, Richardson, Baron, & Schmidt, 2006), research on the effect of synchrony on endorphins has only incorporated in-phase synchrony. The current study examined whether both phases of synchrony would generate the synchrony effect. Twenty-two participants rowed under three counterbalanced conditions - alone, in-phase synchrony and anti-phase synchrony. Endorphin release, as measured via pain threshold, was assessed before and after each session. Change in pain threshold during the in-phase synchrony session was significantly higher than either of the other two conditions. These results suggest that the synchrony effect may be specific to just in-phase synchrony, and that social presence is not a viable explanation for the effect of synchrony on pain threshold

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In 1860, the Prince of Wales, Albert Edward, Queen Victoria’s eldest son visited St. Catharines. He was 18 years old at the time. C.P. Camp, secretary who was the clerk and treasurer of the city council urged the citizens to show their affection for the Prince of Wales this was reflected in the broadside which he put out in which he noted that The Saint Catharines Volunteer Artillery Company would fire a royal salute and British Cheers would be given by the assembled throng.

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Broadside advertising the appearance of the Prince of Wales, Albert Edward, who was Queen Victoria’s eldest son. He was to become Edward VII. The visit took place on Tuesday, the 18th of September in 1860. The broadside measures 20 cm. x 17.5 cm. The Royal Coat of Arms is featured on the top. Different typefaces are used throughout the broadside. The Broadside reads: "The Prince's Visit to St. Catharines. His Royal Highness will be at St. Catharines on Tuesday, the 18th Sept. 1860. The Committee of Management express the earnest hope that the Inhabitants of the Counties of Lincoln & Welland Generally, will manifest their Loyalty by joining in an enthusiastic demonstration to the Prince. Come Early to get Seats! As the accommodation in the Amphitheatre will be limited. A Grand Procession Of Firemen and other Public Bodies will be formed, accompanied by Bands of Music. A Royal Salute Will be fired by the St. Catharines Volunteer Artillery Company; and British Cheers will be given by the assembled assembled thousands. A General Illumination in the Evening! God Save The Queen! C.P. Camp, Sec'y to Committee. St. Catharines, September 15, 1860."

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In 1969, Sir William Arnold, Bailiff of Guernsey - the birthplace of Sir Isaac Brock - was invited by Dr. Gibson to come to Canada and visit Brock University on the 200th anniversary of Sir Isaac Brock's birth. Following his visit in October of that year, the Bailiff presented Brock University with this miniature silver milk can. This milk can is of the traditional Guernsey style.

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In a special visit to Canada, Captain Michael Mellish of Guernsey - O. B. E. Secretary, A. D. C. to the Lieutenant-Governor, and great nephew of Isaac Brock - donates a photo album containing photographs of a number of Isaac Brock related items to the university in June of 1965. He also brings several of the artifacts themselves to show to the university. The item Capt. Mellish is holding here is a ceremonial wooden tomahawk presented to General Sir Isaac Brock by the native chief Tecumseh. Pictured here from left to right are: Capt. Mellish and Dr. Gibson.

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In 1969, Sir William Arnold, Bailiff of Guernsey - the birthplace of Sir Isaac Brock - was invited by Dr. Gibson to come to Canada and visit Brock University on the 200th anniversary of Sir Isaac Brock's birth. While visiting the Bailiff was granted an honourary degree at Brock's first fall convocation on October 6, 1969. The Bailiff is pictured here to the left and Chancellor Charles Sankey to the right. Dr. Gibson can be seen seated in the background.

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The oscillation of neuronal circuits reflected in the EEG gamma frequency may be fundamental to the perceptual process referred to as binding (the integration of various thoughts and perceptions into a coherent picture). The aim of our study was to expand our knowledge of the developmental course ofEEG gamma in the auditory modality. 2 We investigated EEG 40 Hz gamma band responses (35.2 to 43.0 Hz) using an auditory novelty oddball paradigm alone and with a visual-number-series distracter task in 208 participants as a function of age (7 years to adult) at 9 sites across the sagital and lateral axes (F3, Fz, F4, C3, Cz, C4, P3, Pz, P4). Gamma responses were operationally defined as change in power or a change in phase synchrony level from baseline within two time windows. The evoked gamma response was defined as a significant change from baseline occurring between 0 to 150 ms after stimulus onset; the induced gamma response was measured from 250 to 750 ms after stimulus onset. A significant evoked gamma band response was found when measuring changes in both power and phase synchrony. The increase in both measures was maximal at frontal regions. Decreases in both measures were found when participants were distracted by a secondary task. For neither measure were developmental effects noted. However, evoked gamma power was significantly enhanced with the presentation of a novel stimulus, especially at the right frontal site (F4); frontal evoked gamma phase synchrony also showed enhancement for novel stimuli but only for our two oldest age groups (16-18 year olds and adults). Induced gamma band responses also varied with task-dependent cognitive stimulus properties. In the induced gamma power response in all age groups, target stimuli generated the highest power values at the parietal region, while the novel stimuli were always below baseline. Target stimuli increased induced synchrony in all regions for all participants, but the novel stimulus selectively affected participants dependent on their age and gender. Adult participants, for example, exhibited a reduction in gamma power, but an increase in synchrony to the novel stimulus within the same region. Induced gamma synchrony was more sensitive to the gender of the participant than was induced gamma power. While induced gamma power produced little effects of age, gamma synchrony did have age effects. These results confirm that the perceptual process which regulates gamma power is distinct from that which governs the synchronization for neuronal firing, and both gamma power and synchrony are important factors to be considered for the "binding" hypothesis. However, there is surprisingly little effect of age on the absolute levels of or distribution of EEG gamma in the age range investigated.

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Increased losses of eggs and chicks resulting from human intrusion (investigator or other) into seabird colonies has been well documented. In 1990/91, I studied the effects of investigator disturbance on aggressive behaviour and breeding success of individual pairs of ring-billed gulls nesting at two colonies near Port Colborne, Ontario. The insular colony was on an artificial breakwall, associated with the Welland Ship Canal, approximately 1 km off the north shore of Lake Erie. The mainland colony was adjacent to the canal approximately 1 km east of the breakwall. The frequencies of adult threat and assault behaviours, chick movement and adult attacks on chicks were recorded by continuous scan sampling 30 min prior to, 30 min during and 60 (2 X 30) min after investigator disturbance. The frequency of threat and assault behaviours increased during the period of investigator activity in the colony while the duration of wingpulls and beakpulls decreased. Significantly more chicks ran ("runners") from their natal territories during disturbances and "runners" were more frequently attacked than "territorial" chicks. No chicks were fatally attacked during disturbance and "runners" returned to their natal territories quickly after disturbance. Breeding success was determined for pairs nesting in study plots subjected to two levels of disturbance (normal and moderate). The disturbance level of each plot differed in visitation frequency and activities performed on each visit. Investigator disturbance had no effect on the hatching success or fledging success (taken as 21 days of age) of ring-billed gull study pairs at either colony.

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This study examined the interactions between the reproductive status and the thermoregulatory responses during exercise in the cold in girls involved in competitive sports. Four girls with established menstrual cycles comprised the eumenorrheic menarcheal group (EM) and 5 non-menstruating girls comprised the pre-menarcheal group (PM). During the first visit maximal oxygen consumption, height, weight and percent body fat (%BF) were measured. The second visit involved: a determination of metabolic rate in thermoneutrality (21°C) involving 10-min rest and 20-min cycling (30% of VCL max), and a cold stress test (5°C, 40% humidity, <0.3 m/s air velocity) involving 20-min rest and 40-min cycling (30% of VCL max.). Subjects in the EM group were tested twice in the chamber during the follicular and luteal phases. Pre-menarcheal subjects were found to have significantly (p<0.05) lower core temperatures during the final stages of cold exposure. Overall, body fat was not significantly correlated with core temperature in the cold, however there was a significant surface-to-mass ratio difference between the groups. While in the follicular phase, EM girls had a higher core temperature during cold exposure. Therefore, reproductive hormonal status seems to be an important factor in terms of cold tolerance in females during adolescence.