Midfoot and ankle movement coordination during heel rise is disrupted in people with diabetes and peripheral neuropathy

Andersen H. Gjerstad M.D. Jakobsen J.

Atrophy of foot muscles: a measure of diabetic neuropathy.

Diabetes Care. 2004; 27: 2382-2385View in Article Scopus (148) PubMed Crossref Google ScholarAndersen H. Nielsen S. Mogensen C.E. Jakobsen J.

Muscle strength in type 2 diabetes.

Diabetes. 2004; 53: 1543-1548View in Article Scopus (251) PubMed Crossref Google ScholarAndreassen C. Jakobsen J. Ringgaard S. Ejskjaer N. Andersen H.

Accelerated atrophy of lower leg and foot muscles—a follow-up study of long-term diabetic polyneuropathy using magnetic resonance imaging (MRI).

Diabetol. 2009; 52: 1182-1191View in Article Scopus (90) PubMed Crossref Google ScholarArmstrong D.G. Lavery L.A. Vela S.A. Quebedeaux T.L. Fleischli J.G.

Choosing a practical screening instrument to identify patients at risk for diabetic foot ulceration.

Arch. Intern. Med. 1998; 158: 289-292View in Article Scopus (308) PubMed Crossref Google ScholarBirke J.A. Patout Jr., C.A. Foto J.G.

Factors associated with ulceration and amputation in the neuropathic foot.

J. Orthop. Sports Phys. Ther. 2000; 30: 91-97View in Article Scopus (37) PubMed Crossref Google ScholarChan Y.

Biostatistics 104: correlational analysis.

Singap. Med. J. 2003; 44: 614-619View in Article PubMed Google ScholarCheuy V.A. Hastings M.K. Commean P.K. Ward S.R. Mueller M.J.

Intrinsic foot muscle deterioration is associated with metatarsophalangeal joint angle in people with diabetes and neuropathy.

Clin. Biomech. 2013; 28: 1055-1060View in Article Scopus (41) PubMed Abstract Full Text Full Text PDF Google ScholarChimenti R.L.T.J. Hillin C.D. Flemister A.S. Houck J.

Adult-acquired flatfoot deformity and age-related differences in foot and ankle kinematics during the single-limb heel-rise test.

J. Orthop. Sports Phys. Ther. 2014; 44: 283-290View in Article Scopus (26) PubMed Crossref Google ScholarChuter V.H. de Jonge X.A.J.

Proximal and distal contributions to lower extremity injury: a review of the literature.

Gait Posture. 2012; 36: 7-15View in Article Scopus (97) PubMed Crossref Google ScholarCohen J.

Statistical Power Analysis for the Behavioral Sciences.

Academic Press, 2013View in Article Crossref Google ScholarDeJong A.F. Koldenhoven R.M. Hertel J.

Hip biomechanical alterations during walking in chronic ankle instability patients: a cross-correlation analysis.

Sports Biomech. 2021; : 1-12View in Article Google ScholarDeLeo A.T. Dierks T.A. Ferber R. Davis I.S.

Lower extremity joint coupling during running: a current update.

Clin. Biomech. 2004; 19: 983-991View in Article Scopus (104) PubMed Abstract Full Text Full Text PDF Google ScholarDeschamps K. Matricali G.A. Roosen P. Nobels F. Tits J. Desloovere K. Bruyninckx H. Flour M. Deleu P.-A. Verhoeven W.

Comparison of foot segmental mobility and coupling during gait between patients with diabetes mellitus with and without neuropathy and adults without diabetes.

Clin. Biomech. 2013; 28: 813-819View in Article Scopus (27) PubMed Abstract Full Text Full Text PDF Google ScholarDiLiberto F.E. Nawoczenski D.A.

Ankle and midfoot power during single-limb heel rise in healthy adults.

J. Appl. Biomech. 2020; 36: 52-55View in Article Crossref Google ScholarDrewes L.K. McKeon P.O. Paolini G. Riley P. Kerrigan D.C. Ingersoll C.D. Hertel J.

Altered ankle kinematics and shank-rear-foot coupling in those with chronic ankle instability.

J. Sport Rehabil. 2009; 18: 375-388View in Article Scopus (103) PubMed Crossref Google ScholarHastings M.K. Woodburn J. Mueller M.J. Strube M.J. Johnson J.E. Sinacore D.R.

Kinematics and kinetics of single-limb heel rise in diabetes related medial column foot deformity.

Clin. Biomech. 2014; 29: 1016-1022View in Article Scopus (15) PubMed Abstract Full Text Full Text PDF Google ScholarHastings M.K. Mueller M.J. Woodburn J. Strube M.J. Commean P. Johnson J.E. Cheuy V. Sinacore D.R.

Acquired midfoot deformity and function in individuals with diabetes and peripheral neuropathy.

Clin. Biomech. 2016; 32: 261-267View in Article Scopus (18) PubMed Abstract Full Text Full Text PDF Google ScholarHouck J. Neville C.G. Tome J. Flemister A.

Foot kinematics during a bilateral heel rise test in participants with stage II posterior tibial tendon dysfunction.

J. Orthop. Sports Phys. Ther. 2009; 39: 593-603View in Article Scopus (22) PubMed Crossref Google ScholarJeong H.-J. Mueller M.J. Zellers J.A. Hastings M.K.

Midfoot and ankle motion during heel rise and gait are related in people with diabetes and peripheral neuropathy.

Gait Posture. 2021; 84: 38-44View in Article Scopus (3) PubMed Crossref Google ScholarJeong H.-J. Mueller M.J. Zellers J.A. Yan Y. Hastings M.K.

Heel rise and non–weight-bearing ankle plantar flexion tasks to assess foot and ankle function in people with diabetes mellitus and peripheral neuropathy.

Phys. Ther. 2021; 101: pzab096View in Article Scopus (2) PubMed Crossref Google ScholarJeong H.-J. Mueller M.J. Zellers J.A. Commean P.K. Chen L. Hastings M.K.

Body mass index and maximum available midfoot motion are associated with midfoot angle at peak heel rise in people with type 2 diabetes mellitus and peripheral neuropathy.

Foot. 2022; 51101912View in Article Scopus (1) PubMed Crossref Google ScholarLamb P.F. Stöckl M.

On the use of continuous relative phase: review of current approaches and outline for a new standard.

Clin. Biomech. 2014; 29: 484-493View in Article Scopus (90) PubMed Abstract Full Text Full Text PDF Google ScholarLegault-Moore D. Chester V.L. De Vries G.

Multisegment foot kinematics during walking in younger and older adults.

J. Clin. Med. Res. 2012; 4: 259View in Article PubMed Google ScholarMenz H.B.

Biomechanics of the ageing foot and ankle: a mini-review.

Gerontol. 2015; 61: 381-388View in Article Scopus (61) PubMed Crossref Google ScholarMoghtaderi A. Bakhshipour A. Rashidi H.

Validation of Michigan neuropathy screening instrument for diabetic peripheral neuropathy.

Clin. Neurol. Neurosurg. 2006; 108: 477-481View in Article Scopus (219) PubMed Crossref Google ScholarNeedham R.A. Naemi R. Hamill J. Chockalingam N.

Analysing patterns of coordination and patterns of control using novel data visualisation techniques in vector coding.

Foot. 2020; 44101678View in Article Scopus (8) PubMed Crossref Google ScholarNelson-Wong E. Howarth S. Winter D.A. Callaghan J.P.

Application of autocorrelation and cross-correlation analyses in human movement and rehabilitation research.

J. Orthop. Sports Phys. Ther. 2009; 39: 287-295View in Article Scopus (84) PubMed Crossref Google ScholarPohl M.B. Buckley J.G.

Changes in foot and shank coupling due to alterations in foot strike pattern during running.

Clin. Biomech. 2008; 23: 334-341View in Article Scopus (65) PubMed Abstract Full Text Full Text PDF Google ScholarRao S. Saltzman C.L. Yack H.J.

Relationships between segmental foot mobility and plantar loading in individuals with and without diabetes and neuropathy.

Gait Posture. 2010; 31: 251-255View in Article Scopus (56) PubMed Crossref Google ScholarSalsich G.B. Brown M. Mueller M.J.

Relationships between plantar flexor muscle stiffness, strength, and range of motion in subjects with diabetes-peripheral neuropathy compared to age-matched controls.

J. Orthop. Sports Phys. Ther. 2000; 30: 473-483View in Article Scopus (30) PubMed Crossref Google ScholarTakabayashi T. Edama M. Nakamura E. Yokoyama E. Kanaya C. Kubo M.

Coordination among the rearfoot, midfoot, and forefoot during walking.

J. Foot Ankle Res. 2017; 10: 1-9View in Article Scopus (12) PubMed Crossref Google ScholarVan de Velde M. Matricali G.A. Wuite S. Roels C. Staes F. Deschamps K.

Foot segmental motion and coupling in stage II and III tibialis posterior tendon dysfunction.

Clin. Biomech. 2017; 45: 38-42View in Article Scopus (8) PubMed Abstract Full Text

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