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      Impact of Early-Commenced and Continued Sports Training on the Precuneus in Older Athletes

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          Abstract

          Intervention studies on sedentary older adults have demonstrated that commencing physical exercise at an older age has a positive effect on brain structure. Although this suggests that older athletes with lifelong sports training have larger gray matter volume (GMV) in some brain regions compared to age-matched non-athletes, evidence in the literature is scarce. Moreover, it remains unclear whether a larger GMV is associated with training intensity or period of training in life. To address these gaps in the literature, we compared regional brain GMV between 24 older athletes (mean age, 71.4 years; age at the commencement of sports training, 31.2 years, continuous sports training, 40.0 years; current training time, 7.9 h/week) and 24 age-matched non-athletes (mean age, 71.0 years). The period of sports training and the current training time of the athletes were assessed. Both groups were evaluated for physical activity intensity as well as cognitive and motor performance. Although no group differences were noted in cognitive and motor performance, athletes reported higher physical activity intensity than non-athletes. Whole-brain structural analysis revealed a significantly larger GMV in several brain regions in athletes. Notably, the GMV of the precuneus in athletes was positively correlated with earlier commencement of sports training and training duration but was negatively correlated with current training time. Our findings demonstrate that early-commenced and continued sports training predicts structural maintenance of the precuneus in old age. Our results also suggest that excessive training time in old age may have a negative impact on the GMV of the precuneus; thereby delineating how the precuneus is associated with lifelong sports training in older athletes.

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          International physical activity questionnaire: 12-country reliability and validity.

          Physical inactivity is a global concern, but diverse physical activity measures in use prevent international comparisons. The International Physical Activity Questionnaire (IPAQ) was developed as an instrument for cross-national monitoring of physical activity and inactivity. Between 1997 and 1998, an International Consensus Group developed four long and four short forms of the IPAQ instruments (administered by telephone interview or self-administration, with two alternate reference periods, either the "last 7 d" or a "usual week" of recalled physical activity). During 2000, 14 centers from 12 countries collected reliability and/or validity data on at least two of the eight IPAQ instruments. Test-retest repeatability was assessed within the same week. Concurrent (inter-method) validity was assessed at the same administration, and criterion IPAQ validity was assessed against the CSA (now MTI) accelerometer. Spearman's correlation coefficients are reported, based on the total reported physical activity. Overall, the IPAQ questionnaires produced repeatable data (Spearman's rho clustered around 0.8), with comparable data from short and long forms. Criterion validity had a median rho of about 0.30, which was comparable to most other self-report validation studies. The "usual week" and "last 7 d" reference periods performed similarly, and the reliability of telephone administration was similar to the self-administered mode. The IPAQ instruments have acceptable measurement properties, at least as good as other established self-reports. Considering the diverse samples in this study, IPAQ has reasonable measurement properties for monitoring population levels of physical activity among 18- to 65-yr-old adults in diverse settings. The short IPAQ form "last 7 d recall" is recommended for national monitoring and the long form for research requiring more detailed assessment.
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            A fast diffeomorphic image registration algorithm.

            This paper describes DARTEL, which is an algorithm for diffeomorphic image registration. It is implemented for both 2D and 3D image registration and has been formulated to include an option for estimating inverse consistent deformations. Nonlinear registration is considered as a local optimisation problem, which is solved using a Levenberg-Marquardt strategy. The necessary matrix solutions are obtained in reasonable time using a multigrid method. A constant Eulerian velocity framework is used, which allows a rapid scaling and squaring method to be used in the computations. DARTEL has been applied to intersubject registration of 471 whole brain images, and the resulting deformations were evaluated in terms of how well they encode the shape information necessary to separate male and female subjects and to predict the ages of the subjects.
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              The Timed “Up & Go”: A Test of Basic Functional Mobility for Frail Elderly Persons

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                Author and article information

                Contributors
                Journal
                Front Hum Neurosci
                Front Hum Neurosci
                Front. Hum. Neurosci.
                Frontiers in Human Neuroscience
                Frontiers Media S.A.
                1662-5161
                08 December 2021
                2021
                : 15
                : 766935
                Affiliations
                [1] 1Graduate School of Advanced Integrated Studies in Human Survivability, Kyoto University , Kyoto, Japan
                [2] 2Department of Behavioral Neurology and Neuropsychiatry, Osaka University United Graduate School of Child Development , Osaka, Japan
                [3] 3Faculty of Letters, Kumamoto University , Kumamoto, Japan
                [4] 4Liberal Arts Education Center, Kyushu Campuses, Tokai University , Kumamoto, Japan
                [5] 5Faculty of Child Care and Education, Osaka University of Comprehensive Children Education , Osaka, Japan
                [6] 6Kokoro Research Center, Kyoto University , Kyoto, Japan
                Author notes

                Edited by: Fanpei G. Yang, National Tsing Hua University, Taiwan

                Reviewed by: Sze Chai Kwok, Duke Kunshan University, China; Ayşe İkinci Keleş, Aksaray University, Turkey

                *Correspondence: Kaoru Sekiyama sekiyama.kaoru.8a@ 123456kyoto-u.ac.jp

                Specialty section: This article was submitted to Brain Health and Clinical Neuroscience, a section of the journal Frontiers in Human Neuroscience

                Article
                10.3389/fnhum.2021.766935
                8692267
                e3fde869-18a0-46f2-b112-a572c8b8a2fb
                Copyright © 2021 Yamashita, Suzuki, Kawagoe, Asano, Futada, Nakai, Abe and Sekiyama.

                This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

                History
                : 30 August 2021
                : 12 October 2021
                Page count
                Figures: 2, Tables: 4, Equations: 0, References: 63, Pages: 9, Words: 7373
                Categories
                Human Neuroscience
                Original Research

                Neurosciences
                older athletes,precuneus,aging,early-commenced sports training,excessive training
                Neurosciences
                older athletes, precuneus, aging, early-commenced sports training, excessive training

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