15 research outputs found
Relationship between Tibial conformation, cage size and advancement achieved in TTA procedure
Previous studies have suggested that there is a theoretical discrepancy between the cage size and the resultant tibial tuberosity advancement, with the cage size consistently providing less tibial tuberosity advancement than predicted. The purpose of this study was to test and quantify this in clinical cases. The hypothesis was that the advancement of the tibial tuberosity as measured by the widening of the proximal tibia at the tibial tuberosity level after a standard TTA, will be less than the cage sized used, with no particular cage size providing a relative smaller or higher under-advancement, and that the conformation of the proximal tibia will have an influence on the amount of advancement achieved
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The Present and Future of QCD
This White Paper presents the community inputs and scientific conclusions
from the Hot and Cold QCD Town Meeting that took place September 23-25, 2022 at
MIT, as part of the Nuclear Science Advisory Committee (NSAC) 2023 Long Range
Planning process. A total of 424 physicists registered for the meeting. The
meeting highlighted progress in Quantum Chromodynamics (QCD) nuclear physics
since the 2015 LRP (LRP15) and identified key questions and plausible paths to
obtaining answers to those questions, defining priorities for our research over
the coming decade. In defining the priority of outstanding physics
opportunities for the future, both prospects for the short (~ 5 years) and
longer term (5-10 years and beyond) are identified together with the
facilities, personnel and other resources needed to maximize the discovery
potential and maintain United States leadership in QCD physics worldwide. This
White Paper is organized as follows: In the Executive Summary, we detail the
Recommendations and Initiatives that were presented and discussed at the Town
Meeting, and their supporting rationales. Section 2 highlights major progress
and accomplishments of the past seven years. It is followed, in Section 3, by
an overview of the physics opportunities for the immediate future, and in
relation with the next QCD frontier: the EIC. Section 4 provides an overview of
the physics motivations and goals associated with the EIC. Section 5 is devoted
to the workforce development and support of diversity, equity and inclusion.
This is followed by a dedicated section on computing in Section 6. Section 7
describes the national need for nuclear data science and the relevance to QCD
research