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Handgrip strength and upper limb functional performance measures in people over 18 years old: Analysis of relationships and influencing factors
dc.rights.license | http://creativecommons.org/licenses/by-nc-nd/4.0/ | |
dc.contributor.author | Pérez-Parra J.E. | |
dc.contributor.author | Henao-Lema C.P. | |
dc.contributor.author | Arcos-Rodríguez A.V. | |
dc.contributor.author | López-Ocampo N. | |
dc.contributor.author | Castaño-García C. | |
dc.contributor.author | Pérez-Gamboa O.P. | |
dc.date.accessioned | 2024-12-02T20:15:53Z | |
dc.date.available | 2024-12-02T20:15:53Z | |
dc.date.issued | 2024 | |
dc.identifier.issn | 8941130 | |
dc.identifier.uri | https://hdl.handle.net/20.500.14112/28982 | |
dc.description.abstract | Background: Handgrip strength is a common, simple, and inexpensive method to measure muscle strength. On the other hand, the functional performance measurement involves a usual task which implies repeating elements between the individuals’ interaction and the environment. This is fundamental for projecting their results to daily life situation. Purpose: To explore the relationship between grip strength and measures of functional performance of the upper limbs (ULs) in people over 18 years of age, and to determine the influence of sociodemographic and anthropometric variables on the relationship. Study Design: A cross-sectional study was conducted under the analytical empirical approach, using linear associations between handgrip strength and functional performance measurement tests (correspondence analysis). Methods: Three hundred sixty-two male and female individuals between 18 and 91 years of age from 4 Colombian cities participated. The grip strength of both ULs measured with a digital dynamometry was associated with the Box and Block Test (BBT, manual dexterity), Nine-Hole Peg Test (NHPT, daily living tasks), and Jebsen-Taylor Hand Function Test (JJT, ability to grasp, pick up, and place). Multiple linear regression analyzes were performed to assess possible explanatory factors of a sociodemographic and anthropometric order. Results: A significant association was found between the grip strength of dominant and non-dominant ULs with all functional performance tests (ρ > 0.27 and p < .001), except for the writing and simulated feeding subtests of the JJT (ρ ≤ 0.16). An interactive effect of age was found in the relationship between grip strength and the 3 functional performance tests. Conclusions: These results support the association between grip strength with the NHPT, JJT, and BBT measures and the interactive effect of age on the performance of all tests. © 2024 Elsevier Inc. | |
dc.description.sponsorship | The authors thank the participants in the study for their valuable collaboration. They also thank the following students of the Occupational Therapy program of the Universidad Mariana de Pasto, Colombia, for their contribution to the data collection: Luisa Mar\u00EDa Solarte-Gaviria, Jos\u00E9 Luis Pantoja-Pantoja and Tatiana Valentina Delgado-Barco. Likewise, thanks to the Institute of Languages of the Universidad Aut\u00F3noma de Manizales, Colombia for the translation into English of this manuscript. This study was funded by the Universidad Aut\u00F3noma de Manizales, Colombia, as part of the \u201CNormative data in Colombian adult population of upper limb functional performance measures\u201D project. | |
dc.format | 8 | |
dc.format.medium | Recurso electrónico | |
dc.format.mimetype | application/pdf | |
dc.language.iso | eng | |
dc.publisher | Hanley and Belfus Inc. | |
dc.rights.uri | Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) | |
dc.source | Journal of Hand Therapy | |
dc.source | J. Hand Ther. | |
dc.source | Scopus | |
dc.title | Handgrip strength and upper limb functional performance measures in people over 18 years old: Analysis of relationships and influencing factors | |
datacite.contributor | Departament of Human Movement, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.contributor | Occupational Therapy Career, Universidad Mariana de Pasto, Pasto, Colombia | |
datacite.contributor | Master in Neurorehabilitation, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.contributor | Pérez-Parra J.E., Departament of Human Movement, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.contributor | Henao-Lema C.P., Departament of Human Movement, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.contributor | Arcos-Rodríguez A.V., Occupational Therapy Career, Universidad Mariana de Pasto, Pasto, Colombia | |
datacite.contributor | López-Ocampo N., Master in Neurorehabilitation, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.contributor | Castaño-García C., Master in Neurorehabilitation, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.contributor | Pérez-Gamboa O.P., Master in Neurorehabilitation, Universidad Autónoma de Manizales, Manizales, Colombia | |
datacite.rights | http://purl.org/coar/access_right/c_abf2 | |
oaire.resourcetype | http://purl.org/coar/resource_type/c_6501 | |
oaire.version | http://purl.org/coar/version/c_ab4af688f83e57aa | |
dc.contributor.contactperson | J.E. Pérez-Parra | |
dc.contributor.contactperson | Departament of Human Movement, Universidad Autónoma de Manizales, Manizales, Colombia | |
dc.contributor.contactperson | email: jeperez@autonoma.edu.co | |
dc.contributor.sponsor | Universidad Mariana de Pasto | |
dc.contributor.sponsor | Institute of Languages of the Universidad Autónoma de Manizales | |
dc.contributor.sponsor | Universidad Autónoma de Manizales | |
dc.identifier.doi | 10.1016/j.jht.2023.05.009 | |
dc.identifier.instname | Universidad Mariana | |
dc.identifier.local | JHTHF | |
dc.identifier.pissn | 37580200 | |
dc.identifier.reponame | Repositorio Clara de Asis | |
dc.identifier.url | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85168013239&doi=10.1016%2fj.jht.2023.05.009&partnerID=40&md5=e2c9c9c54b3f06e249831dae60eedc55 | |
dc.relation.citationendpage | 109 | |
dc.relation.citationstartpage | 101 | |
dc.relation.citationvolume | 37 | |
dc.relation.iscitedby | 2 | |
dc.relation.references | Almashaqbeh S.F., Al-Momani S., Khader A., Et al., The effect of gender and arm anatomical position on the hand grip strength and fatigue resistance during sustained maximal handgrip effort, J Biomed Phys Eng., 12, 2, pp. 171-180, (2022) | |
dc.relation.references | Lin Y.H., Chen H.C., Hsu N.W., Chou P., Using hand grip strength to detect slow walking speed in older adults: the Yilan study, BMC Geriatr., 21, 1, (2021) | |
dc.relation.references | Zammit A.R., Robitaille A., Piccinin A.M., Muniz-Terrera G., Hofer S.M., Associations between aging-related changes in grip strength and cognitive function in older adults: a systematic review, J Gerontol A Biol Sci Med Sci., 74, 4, pp. 519-527, (2019) | |
dc.relation.references | Wang L., Song P., Cheng C., Et al., The added value of combined Timed Up and Go test, walking speed, and grip strength on predicting recurrent falls in Chinese community-dwelling elderly, Clin Interv Aging., 16, pp. 1801-1812, (2021) | |
dc.relation.references | Liu W., Chen R., Song C., Et al., A prospective study of grip strength trajectories and incident cardiovascular disease, Front Cardiovasc Med., 8, (2021) | |
dc.relation.references | Tsuburai T., Komase Y., Tsuruoka H., Et al., The relationship between peak inspiratory flow and hand grip strength measurement in men with mild chronic obstructive pulmonary disease, BMC Pulm Med., 22, 1, (2022) | |
dc.relation.references | Parra-Soto S., Pell J.P., Celis-Morales C., Ho F.K., Absolute and relative grip strength as predictors of cancer: prospective cohort study of 445552 participants in UK Biobank, J Cachexia Sarcopenia Muscle., 13, 1, pp. 325-332, (2022) | |
dc.relation.references | Song M., Zhang Q., Tang M., Et al., Associations of low hand grip strength with 1 year mortality of cancer cachexia: a multicentre observational study, J Cachexia Sarcopenia Muscle., 12, 6, pp. 1489-1500, (2021) | |
dc.relation.references | Dercon Q., Nicholas J.M., James S.N., Schott J.M., Richards M., Grip strength from midlife as an indicator of later-life brain health and cognition: evidence from a British birth cohort, BMC Geriatr., 21, 1, (2021) | |
dc.relation.references | Jin Y.L., Xu L., Jiang C.Q., Et al., Association of hand grip strength with mild cognitive impairment in middle-aged and older people in Guangzhou biobank cohort study, Int J Environ Res Public Health., 19, 11, (2022) | |
dc.relation.references | Li J., Weng S., Lin S., Et al., Evaluation of the quantitative myasthenia gravis score and grip strength in Chinese patients with myasthenia gravis: an observational study, Front Neurol., 12, (2021) | |
dc.relation.references | Kobayashi H., Otani K., Nikaido T., Et al., Grip strength as a screening index for severe degenerative cervical myelopathy in primary care: development of cutoff values using receiver operating curve analysis, Int J Gen Med., 14, pp. 9863-9872, (2021) | |
dc.relation.references | Marconcin P., Marques A., Henriques-Neto D., Et al., Grip strength as a predictor of depressive symptoms among vulnerable elderly Europeans with musculoskeletal conditions, Sci Rep., 11, 1, (2021) | |
dc.relation.references | Xia Y., Cao L., Liu Y., Longitudinal associations between hand grip strength and non-alcoholic fatty liver disease in adults: a prospective cohort study, Front Med (Lausanne)., 8, (2021) | |
dc.relation.references | Choe H., Sung H., Kim G.H., Lee O., Moon H.Y., Kim Y.S., Associations between grip strength and glycemic control in type 2 diabetes mellitus: an analysis of data from the 2014-2019 Korea National Health and Nutrition Examination Survey, Epidemiol Health., 43, (2021) | |
dc.relation.references | Kim G.H., Song B.K., Kim J.W., Associations between relative grip strength and type 2 diabetes mellitus: the Yangpyeong cohort of the Korean genome and epidemiology study, PLoS One., 16, 8, (2021) | |
dc.relation.references | Bae Y.J., Cui X.S., Shin S.H., Increased omega-3 fatty acid intake is associated with low grip strength in elderly Korean females, Nutrients., 14, 12, (2022) | |
dc.relation.references | Bigman G., Ryan A.S., Healthy Eating Index-2015 is associated with grip strength among the US adult population, Nutrients, 13, 10, (2021) | |
dc.relation.references | Cui M., Zhang S., Liu Y., Gang X., Wang G., Grip strength and the risk of cognitive decline and dementia: a systematic review and meta-analysis of longitudinal cohort studies, Front Aging Neurosci., 13, (2021) | |
dc.relation.references | Senol D., Kizilay F., Toy S., Ciftci R., Ersoy Y., Evaluation of visual and auditory reaction time, pain, and hand grip strength performance before and after conventional physiotherapy in patients with herniated cervical intervertebral disc with radiculopathy, North Clin Istanb., 8, 6, pp. 581-587, (2021) | |
dc.relation.references | Meigh N.J., Keogh J.W.L., Schram B., Hing W., Rathbone E.N., Effects of supervised high-intensity hardstyle kettlebell training on grip strength and health-related physical fitness in insufficiently active older adults: the BELL pragmatic-controlled trial, BMC Geriatr., 22, 1, (2022) | |
dc.relation.references | Devise M., Lechaptois C., Berton E., Vigouroux L., Effects of different hangboard training intensities on finger grip strength, stamina, and endurance, Front Sports Act Living., 4, (2022) | |
dc.relation.references | Crotin R., Ramsey D., Grip strength measurement in baseball pitchers: a clinical examination to indicate stride length inefficiency, Int J Sports Phys Ther., 16, 5, pp. 1330-1337, (2021) | |
dc.relation.references | Bai Z., Shu T., Niu W., Test-retest reliability and measurement errors of grip strength test in patients with traumatic injuries in the upper extremity: a cross-sectional study, BMC Musculoskelet Disord., 20, 1, (2019) | |
dc.relation.references | Puthoff M.L., Saskowski D., Reliability and responsiveness of gait speed, five times sit to stand, and hand grip strength for patients in cardiac rehabilitation, Cardiopulm Phys Ther J., 24, 1, pp. 31-37, (2013) | |
dc.relation.references | Lang C.E., Bland M.D., Bailey R.R., Schaefer S.Y., Birkenmeier R.L., Assessment of upper extremity impairment, function, and activity after stroke: foundations for clinical decision making, J Hand Ther., 26, 2, pp. 104-114, (2013) | |
dc.relation.references | Rostamzadeh S., Saremi M., Tabatabaei S., Normative hand grip strength and prediction models for Iranian office employees, Work, 62, 2, pp. 233-241, (2019) | |
dc.relation.references | Yamamoto H., Takeda K., Koyama S., Et al., Relationship between upper limb motor function and activities of daily living after removing the influence of lower limb motor function in subacute patients with stroke: a cross-sectional study, Hong Kong J Occup Ther., 33, 1, pp. 12-17, (2020) | |
dc.relation.references | Silva N.S., de Almeida PHTQ, Mendes P.V.B., Komino C.S.M., Junior J.M.N., Da Cruz D.M.C., Electromyographic activity of the upper limb in three hand function tests, Hong Kong J Occup Ther., 29, 1, pp. 10-18, (2017) | |
dc.relation.references | Carpinella I., Cattane D., Ferrarin M., Quantitative assessment of upper limb motor function in Multiple Sclerosis using an instrumented Action Research Arm Test, J Neuroeng Rehabil., 11, (2014) | |
dc.relation.references | Culicchia G., Nobilia M., Asturi M., Cross-cultural adaptation and validation of the Jebsen-Taylor Hand Function Test in an Italian population, Rehabil Res Pract., 2016, (2016) | |
dc.relation.references | Santisteban L., Teremetz M., Bleton J.P., Baron J.C., Maier M.A., Lindberg P.G., Upper limb outcome measures used in stroke rehabilitation studies: a systematic literature review, PLoS One., 11, 5, (2016) | |
dc.relation.references | Mathiowetz V., Volland G., Kashman N., Weber K., Adult norms for the Box and Block Test of manual dexterity, Am J Occup Ther., 39, 6, pp. 386-391, (1985) | |
dc.relation.references | Platz T., Pinkowski C., van Wijck F., Kim I.H., di Bella P., Johnson G., Reliability and validity of arm function assessment with standardized guidelines for the Fugl-Meyer Test, Action Research Arm Test and Box and Block Test: a multicentre study, Clin Rehabil., 19, 4, pp. 404-411, (2005) | |
dc.relation.references | Lin K.C., Chuang L.L., Wu C.Y., Hsieh Y.W., Chang W.Y., Responsiveness and validity of three dexterous function measures in stroke rehabilitation, J Rehabil Res Dev., 47, 6, pp. 563-571, (2010) | |
dc.relation.references | Huertas-Hoyas E., Martinez-Piedrola M.R., Sanchez-Herrera-Baeza P., Et al., Alterations in dexterity and manual function in patients with focal hand dystonia, Neurologia (Engl Ed)., 22, 20, pp. S0213-S4853, (2020) | |
dc.relation.references | Alvarez-Rodriguez M., Lopez-Dolado E., Salas-Monedero M., Et al., Concurrent validity of a virtual version of box and block test for patients with neurological disorders, World J. Neurosci., 10, pp. 79-89, (2020) | |
dc.relation.references | Valencia-Lemos Y.M., Guzman-Villamarin D.E., Majin-Erazo J.J., Londono-Prieto J., Ajuste dinámico de dificultad en aplicaciones de realidad virtual para rehabilitación del miembro superior, Ingeniería y Desarrollo [Internet]., 37, 2, pp. 173-191, (2019) | |
dc.relation.references | Johansson G.M., Hager C.K., A modified standardized Nine-Hole Peg Test for valid and reliable kinematic assessment of dexterity post-stroke, J Neuroeng Rehabil., 16, (2019) | |
dc.relation.references | Jobbagy A., Marik A.R., Fazekas G., Quantification of the upper extremity motor functions of stroke patients using a Smart Nine-Hole Peg Tester, J Healthc Eng., 2018, (2018) | |
dc.relation.references | Cabrera I., Ortiz A., Benitez A., Moreno M., Casilda J., Valenza M., Capacidades físicas y motoras de miembro superior y su relación con la independencia funcional en parálisis cerebral infantil, Fisioterapia., 433, pp. 1-8, (2017) | |
dc.relation.references | Aval P., Penalva J.B., Garcia L., Perez P., Recuperación de la función de la extremidad superior en esclerosis múltiple mediante neuromodulación eléctrica espinal asistida con exoesqueleto robótico, TOG (A Coruña)., 17, 2, pp. 232-237, (2020) | |
dc.relation.references | Radder B., Prange-Lasonder G.B., Kottink A.I.R., Et al., Home rehabilitation supported by a wearable soft-robotic device for improving hand function in older adults: a pilot randomized controlled trial, PLoS One., 14, 8, (2019) | |
dc.relation.references | Berardi A., Saffioti M., Tofani M., Et al., Internal consistency and validity of the Jebsen-Taylor Hand Function Test in an Italian population with hemiparesis, NeuroRehabilitation., 45, 3, pp. 331-339, (2019) | |
dc.relation.references | Sigirtmac I.C., Oksuz C., Investigation of reliability, validity, and cutoff value of the Jebsen-Taylor Hand Function Test, J Hand Ther., 34, 3, pp. 396-403, (2021) | |
dc.relation.references | Delgado-Rico C., Cuesta-Garcia C., Estudio piloto sobre la fiabilidad del Jebsen & Taylor Hand Function Test en población española con daño adquirido, TOG (A Coruña)., 15, 27, pp. 19-28, (2017) | |
dc.relation.references | Hernandez-Sampieri R., (2018) | |
dc.relation.references | Lera L., Albala C., Leyton B., Et al., Reference values of hand-grip dynamometry and the relationship between low strength and mortality in older Chileans, Clin Interv Aging., 13, pp. 317-324, (2018) | |
dc.relation.references | Solaro C., Di Giovanni R., Grange E., Et al., Box and block test, hand grip strength and nine-hole peg test: correlations between three upper limb objective measures in multiple sclerosis, Eur J Neurol., 27, 12, pp. 2523-2530, (2020) | |
dc.relation.references | Tayeun K., In Y., Changes in function and muscle strength of Encephalitis survivors after inpatient rehabilitation, Ann Rehabil Med., 45, 6, pp. 422-430, (2021) | |
dc.relation.references | Allgower K., Hermsdorfer J., Fine motor skills predict performance in the Jebsen Taylor Hand Function Test after stroke, Clin Neurophysiol., 128, 10, pp. 1858-1871, (2017) | |
dc.relation.references | Martin J.A., Ramsay J., Hughes C., Peters D.M., Edwards M.G., Age and grip strength predict hand dexterity in adults, PLoS One., 10, 2, (2015) | |
dc.relation.references | Bardo A., Kivell T.L., Town K., Get a grip: variation in human hand grip strength and implications for human evolution, Symmetry., 13, 7, (2021) | |
dc.relation.references | Abe T., Thiebaud R.S., Loenneke J.P., Age-related change in handgrip strength in men and women: is muscle quality a contributing factor, Age (Dordr)., 38, 1, (2016) | |
dc.relation.references | Werle S., Goldhahn J., Drerup S., Simmen B.R., Sprott H., Herren D.B., Age- and gender-specific normative data of grip and pinch strength in a healthy adult Swiss population, J Hand Surg Eur., 34E, 1, pp. 76-84, (2009) | |
dc.relation.references | Massy-Westropp N.M., Gill T.K., Taylor A.W., Et al., Hand grip strength: age and gender stratified normative data in a population-based study, BMC Res Note., 4, (2011) | |
dc.relation.references | Li K., Lin L., Chan A., Chen C., Chang W., Cho Y., Population based norms for the box and blocks test in healthy right-handed Taiwanese adults, Biomed J., 43, 6, pp. 484-489, (2020) | |
dc.relation.references | Iconaru E.I., Ciucurel M.M., Georgescu L., Ciucurel C., Hand grip strength as a physical biomarker of aging from the perspective of a Fibonacci mathematical modeling, BMC Geriatr., 18, 1, (2018) | |
dc.relation.references | Logue Cook R.N., Brown S.H., Hasson R.E., Kinnett-Hopkins D., Davis M.A., Is maximum grip strength a reliable predictor of hand limitations among older adults, Aging Clin Exp Res., (2022) | |
dc.rights.accessrights | info:eu-repo/semantics/openAccess | |
dc.subject.keywords | Hand strength | |
dc.subject.keywords | Linear models | |
dc.subject.keywords | Muscle strength dynamometer | |
dc.subject.keywords | Task performance and analysis | |
dc.subject.keywords | Upper extremity | |
dc.subject.keywords | Adolescent | |
dc.subject.keywords | Adult | |
dc.subject.keywords | Cross-Sectional Studies | |
dc.subject.keywords | Female | |
dc.subject.keywords | Hand Strength | |
dc.subject.keywords | Humans | |
dc.subject.keywords | Male | |
dc.subject.keywords | Muscle Strength | |
dc.subject.keywords | Physical Functional Performance | |
dc.subject.keywords | Upper Extremity | |
dc.subject.keywords | adult | |
dc.subject.keywords | aged | |
dc.subject.keywords | Article | |
dc.subject.keywords | body mass | |
dc.subject.keywords | controlled study | |
dc.subject.keywords | cross-sectional study | |
dc.subject.keywords | daily life activity | |
dc.subject.keywords | dynamometry | |
dc.subject.keywords | female | |
dc.subject.keywords | grip strength | |
dc.subject.keywords | hand function | |
dc.subject.keywords | handwriting | |
dc.subject.keywords | human | |
dc.subject.keywords | male | |
dc.subject.keywords | middle aged | |
dc.subject.keywords | multiple linear regression analysis | |
dc.subject.keywords | normal human | |
dc.subject.keywords | obesity | |
dc.subject.keywords | performance | |
dc.subject.keywords | underweight | |
dc.subject.keywords | upper limb | |
dc.subject.keywords | adolescent | |
dc.subject.keywords | hand strength | |
dc.subject.keywords | muscle strength | |
dc.subject.keywords | physical performance | |
dc.subject.keywords | physiology | |
dc.type.driver | info:eu-repo/semantics/article | |
dc.type.hasversion | info:eu-repo/semantics/acceptedVersion | |
dc.type.redcol | http://purl.org/redcol/resource_type/ART | |
dc.type.spa | Artículo científico | |
dc.relation.citationissue | 1 |
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