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The aim of this work is to develop a new, simple to use and reliable automatic method for detection and monitoring wear on the cutting tool.
Currently, the most accurate 3D method for monitoring wear is considered to be radiostereometric analysis (RSA).
The enrollment of these patients for the purpose of monitoring wear and cup and stem stability using RSA was approved by the Institutional Review Board.
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In our pilot work, we achieved a mean monitoring (wearing) time of 11 h per day.
Patients were assigned to home monitoring with a FreeStyle blood glucose meter and a masked continuous glucose monitor to be worn for 5 days every second week (control group) or to a group with real-time continuous glucose monitoring, wearing individual sensors for 5 days continuously for 26 weeks (continuous monitoring group).
The system checks each drill bit 10,000 times per second, not just to monitor wear, but to predict problems.
However both the Pelotas study and the Roots study had 24 hour monitor wear protocols.
Participants were given a diary with space to record details about monitor wear and removal during the free-living period.
We compared the total cpm from both Actigraph 7164 and the Actiheart accelerometry, for each participant for each full day of monitor wear (n = 254 days).
These were presented as figures, with means and 95% CI for each quartile, adjusted for sex, age, SES, monitor wear time and BMI.
Sedentary time was highest in the Roots and Pelotas cohorts, however this is partly explained by greater duration of monitor wear due the 24 hour wear protocol in these studies.
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CEO of Professional Science Editing for Scientists @ prosciediting.com