Referenties Tendotonometrie: zinvol bij de prevent...
Referenties Tendotonometrie: zinvol bij de preventie van patellapees- en achillespees tendinopathie?
Challoumas D, Pedret C, Biddle M, et al. Management of patellar tendinopathy: a systematic review and network meta-analysis of randomised studies. BMJ open sport & exercise medicine. 2021;7(4):e001110. doi:10.1136/bmjsem-2021-001110
Sharma P, Maffulli N. Tendon injury and tendinopathy: healing and repair. Journal of Bone and Joint Surgery. 2005;87(1):187-202. doi:10.2106/JBJS.D.01850
Zwerver J, Bredeweg SW, van den Akker-Scheek I. Prevalence of Jumper’s knee among nonelite athletes from different sports: a cross-sectional survey. The American journal of sports medicine. 2011;39(9):1984-1988.
Visnes H, Bache-Mathiesen LK, Yamaguchi T, et al. Long-term Prognosis of Patellar Tendinopathy (Jumper’s Knee) in Young, Elite Volleyball Players: Tendon Changes 11 Years After Baseline. The American Journal of Sports Medicine. 2024;52(13):3314-3323. doi:10.1177/03635465241284648
Ceravolo ML, Gaida JE, Keegan RJ. Quality-of-life in Achilles tendinopathy: an exploratory study. Clinical Journal of Sport Medicine. 2020;30(5):495-502. doi:10.1097/JSM.0000000000000636
Lian ØB, Engebretsen L, Bahr R. Prevalence of jumper’s knee among elite athletes from different sports: a cross-sectional study. The American journal of sports medicine. Apr 2005;33(4):561-567. doi:10.1177/0363546504270454
Lagas IF, Fokkema T, Verhaar JA, Bierma-Zeinstra SM, van Middelkoop M, de Vos R-J. Incidence of Achilles tendinopathy and associated risk factors in recreational runners: A large prospective cohort study. Journal of Science and Medicine in Sport. 2020;23(5):448-452. doi:10.1016/j.jsams.2019.12.013
Wang Y, Zhou H, Nie Z, Cui S. Prevalence of Achilles tendinopathy in physical exercise: a systematic review and meta-analysis. Sports Medicine and Health Science. 2022;4(3):152-159. doi:10.1016/j.smhs.2022.03.003
Bourke D, Patel S, Flint D. The best physiotherapy exercises for management of patella tendinopathy. National Institute for health and care excellence Available: https://bestbets org/bets/bet php.
Coombes BK, Bisset L, Vicenzino B. Efficacy and safety of corticosteroid injections and other injections for management of tendinopathy: a systematic review of randomised controlled trials. The Lancet. Nov 20 2010;376(9754):1751-1767. doi:10.1016/S0140-6736(10)61160-9
Everhart JS, Cole D, Sojka JH, et al. Treatment options for patellar tendinopathy: a systematic review. Arthroscopy: The Journal of Arthroscopic & Related Surgery. Apr 2017;33(4):861-872. doi:10.1016/j.arthro.2016.11.007
Malliaras P, Cook J, Purdam C, Rio E. Patellar tendinopathy: clinical diagnosis, load management, and advice for challenging case presentations. Journal of orthopaedic & sports physical therapy. Nov 2015;45(11):887-898. doi:10.2519/jospt.2015.5987
Visnes H, Hoksrud A, Cook J, Bahr R. No effect of eccentric training on jumper’s knee in volleyball players during the competitive season: a randomized clinical trial. Scandinavian Journal of Medicine & Science in Sports. Jul 2006;16(3):215-215. doi:10.1097/01.jsm.0000168073.82121.20
Yu C, Deng L, Li L, Zhang X, Fu W. Exercise Effects on the Biomechanical Properties of the Achilles Tendon—A Narrative Review. Biology. Jan 21 2022;11(2):172. doi:10.3390/biology11020172
Centner C, Jerger S, Lauber B, et al. Low-load blood flow restriction and high-load resistance training induce comparable changes in patellar tendon properties. Medicine & Science in Sports & Exercise. 2022;54(4):582-589. doi:10.1249/MSS.0000000000002824
Kjaer M. Role of extracellular matrix in adaptation of tendon and skeletal muscle to mechanical loading. Physiological reviews. 2004;84(2):649-698.
Rogers SA. Relationships Between Multiple Mechanical Stiffness Assessments and Performance in Middle-Distance Runners. Auckland University of Technology Auckland, New Zealand. Accessed March 1, 2022. https://openrepository.aut.ac.nz/handle/10292/9749
Bohm S, Mersmann F, Arampatzis A. Human tendon adaptation in response to mechanical loading: a systematic review and meta-analysis of exercise intervention studies on healthy adults. Sports medicine-open. 2015;1:1-18. doi:10.1186/s40798-015-0009-9
Kubo K, Miyazaki D, Shimoju S, Tsunoda N. Relationship between elastic properties of tendon structures and performance in long distance runners. European journal of applied physiology. 2015;115(8):1725-1733. doi:10.1007/S00421-015-3156-2
Morgan GE, Martin R, Williams L, Pearce O, Morris K. Objective assessment of stiffness in Achilles tendinopathy: a novel approach using the MyotonPRO. BMJ open sport & exercise medicine. 2018;4(1):e000446. doi:10.1136/bmjsem-2018-000446
Finnamore E, Waugh C, Solomons L, Ryan M, West C, Scott A. Transverse tendon stiffness is reduced in people with Achilles tendinopathy: A cross-sectional study. PLoS One. 2019;14(2):e0211863. doi:10.1371/journal.pone.0211863
Breda SJ, van der Vlist A, de Vos R-J, Krestin GP, Oei EH. The association between patellar tendon stiffness measured with shear-wave elastography and patellar tendinopathy—a case-control study. European Radiology. Nov 2020;30(11):5942-5951. doi:10.1007/s00330-020-06952-0
Dirrichs T, Quack V, Gatz M, Tingart M, Kuhl CK, Schrading S. Shear wave elastography (SWE) for the evaluation of patients with tendinopathies. Academic radiology. Oct 2016;23(10):1204-1213. doi:10.1016/j.acra.2016.05.012
Zhang C, Duan L, Liu Q, Zhang W. Application of shear wave elastography and B-mode ultrasound in patellar tendinopathy after extracorporeal shockwave therapy. Journal of Medical Ultrasonics. 2020;47:469-476. doi:10.1007/s10396-019-00979-7
Breda SJ, de Vos R-J, Krestin GP, Oei EH. Decreasing patellar tendon stiffness during exercise therapy for patellar tendinopathy is associated with better outcome. Journal of Science and Medicine in Sport. 2022;25(5):372-378. doi:10.1016/j.jsams.2022.01.002
Lee W-C, Ng GY-F, Zhang Z-J, Malliaras P, Masci L, Fu S-N. Changes on tendon stiffness and clinical outcomes in athletes are associated with patellar tendinopathy after eccentric exercise. Clinical Journal of Sport Medicine. 2020;30(1):25-32. doi:10.1097/JSM.0000000000000562
Mersmann F, Domroes T, Tsai M-S, et al. Longitudinal evidence for high-level patellar tendon strain as a risk factor for tendinopathy in adolescent athletes. Sports medicine-open. 2023;9(1):83. doi:10.1186/s40798-023-00627-y
Zhang ZJ, Lee WC, Fu SN. One session of extracorporeal shockwave therapy-induced modulation on tendon shear modulus is associated with reduction in pain. Journal of sports science & medicine. 2020;19(2):309.
Helland C, Bojsen-Møller J, Raastad T, et al. Mechanical properties of the patellar tendon in elite volleyball players with and without patellar tendinopathy. British journal of sports medicine. 2013;47(13):862-868. doi:10.1136/bjsports-2013-092275
Wiesinger H-P, Seynnes OR, Kösters A, Müller E, Rieder F. Mechanical and material tendon properties in patients with proximal patellar tendinopathy. Frontiers in physiology. 2020;11:704. doi:10.3389/fphys.2020.00704
Lee W, Zhang Z, Masci L, Ng G, Fu SN. Alterations in mechanical properties of the patellar tendon is associated with pain in athletes with patellar tendinopathy. European journal of applied physiology. 2017;117:1039-1045. doi:10.1007/s00421-017-3593-1
Kongsgaard M, Qvortrup K, Larsen J, et al. Fibril morphology and tendon mechanical properties in patellar tendinopathy: effects of heavy slow resistance training. The American journal of sports medicine. 2010;38(4):749-756. doi:10.1177/0363546509350915
Couppé C, Kongsgaard M, Aagaard P, et al. Differences in tendon properties in elite badminton players with or without patellar tendinopathy. Scandinavian journal of medicine & science in sports. 2013;23(2):e89-e95. doi:10.1111/sms.12023
Obst SJ, Heales LJ, Schrader BL, et al. Are the mechanical or material properties of the achilles and patellar tendons altered in tendinopathy? A systematic review with meta-analysis. Sports medicine. 2018;48:2179-2198. doi:10.1007/s40279-018-0956-7
Bravo-Sánchez A, Abián P, Jimenez F, Abián-Vicén J. Structural and mechanical properties of the Achilles tendon in senior badminton players: Operated vs. non-injured tendons. Clinical Biomechanics. May 2021;85:105366. doi:10.1016/j.clinbiomech.2021.105366
Arya S, Kulig K. Tendinopathy alters mechanical and material properties of the Achilles tendon. Journal of applied physiology. 2010;108(3):670-675. doi:10.1152/japplphysiol.00259.2009
Couppe C, Kongsgaard M, Aagaard P, et al. Habitual loading results in tendon hypertrophy and increased stiffness of the human patellar tendon. Journal of Applied Physiology. 2008;105(3):805-810. doi:10.1152/japplphysiol.90361.2008
Kongsgaard M, Nielsen C, Hegnsvad S, Aagaard P, Magnusson S. Mechanical properties of the human Achilles tendon, in vivo. Clinical Biomechanics. 2011;26(7):772-777. doi:10.1016/j.clinbiomech.2011.02.011
Henriksen P, Brage K, Junge T, Juul-Kristensen B, Bojsen-Møller J, Thorlund JB. Concurrent validity and intrarater reliability of two ultrasound-based methods for assessing patellar tendon stiffness. Ultrasound. 2022;30(1):18-27. doi:10.1177/1742271X21994609
Porta F, Damjanov N, Galluccio F, Iagnocco A, Matucci‐Cerinic M. Ultrasound elastography is a reproducible and feasible tool for the evaluation of the patellar tendon in healthy subjects. International journal of rheumatic diseases. 2014;17(7):762-766. doi:10.1111/1756-185X.12241
Jenkyn TR, Ehman RL, An K-N. Noninvasive muscle tension measurement using the novel technique of magnetic resonance elastography (MRE). Journal of biomechanics. 2003;36(12):1917-1921. doi:10.1016/S0021-9290(03)00005-8
Koga A, Itoigawa Y, Suga M, et al. Stiffness change of the supraspinatus muscle can be detected by magnetic resonance elastography. Magnetic Resonance Imaging. 2021;80:9-13. doi:10.1016/j.mri.2021.03.018
Muthupillai R, Ehman RL. Magnetic resonance elastography. Nat Med. May 1996;2(5):601-3. doi:10.1038/nm0596-601
Hansen P, Bojsen-Moller J, Aagaard P, Kjaer M, Magnusson SP. Mechanical properties of the human patellar tendon, in vivo. Clinical biomechanics. 2006;21(1):54-58. doi:10.1016/j.clinbiomech.2005.07.008
Taş S, Onur MR, Yılmaz S, Soylu AR, Korkusuz F. Shear wave elastography is a reliable and repeatable method for measuring the elastic modulus of the rectus femoris muscle and patellar tendon. Journal of ultrasound in medicine. 2017;36(3):565-570. doi:10.7863/ultra.16.03032
Ito N, Sigurðsson HB, Pohlig RT, Cortes DH, Grävare Silbernagel K, Sprague AL. Reliability of continuous shear wave elastography in the pathological patellar tendon. Journal of Ultrasound in Medicine. 2023;42(5):1047-1055. doi:10.1002/jum.16115
Devran S, Gözübüyük ÖB, Dinçer Ş, Günver MG, Bayraktar B. Diagnostic value of shear-wave elastography for patellar tendinopathy in female volleyball and basketball athletes: a cross sectional case control study. The Physician and Sportsmedicine. 2024:1-8. doi:10.1080/00913847.2024.2308507
Zhang ZJ, Fu SN. Shear elastic modulus on patellar tendon captured from supersonic shear imaging: correlation with tangent traction modulus computed from material testing system and test–retest reliability. PloS one. 2013;8(6):e68216. doi:10.1371/journal.pone.0068216
Corrigan P, Zellers JA, Balascio P, Silbernagel KG, Cortes DH. Quantification of mechanical properties in healthy Achilles tendon using continuous shear wave elastography: a reliability and validation study. Ultrasound in medicine & biology. 2019;45(7):1574-1585. doi:10.1016/j.ultrasmedbio.2019.03.015
Pelea MA, Serban O, Badarinza M, Rosca R, Fodor D. Factors influencing the Shear Wave Elastography evaluation of the patellar tendon. Medical Ultrasonography. 2023;25(2):145-152. doi:10.11152/mu-4193
Kuervers EJ, Firminger CR, Edwards WB. Effect of knee angle and quadriceps muscle force on shear-wave elastography measurements at the patellar tendon. Ultrasound in Medicine & Biology. 2021;47(8):2167-2175. doi:10.1016/j.ultrasmedbio.2021.03.031
Chen G, Wu J, Chen G, et al. Reliability of a portable device for quantifying tone and stiffness of quadriceps femoris and patellar tendon at different knee flexion angles. PloS one. 2019;14(7):e0220521. doi:10.1371/journal.pone.0220521
Gatz M, Betsch M, Dirrichs T, et al. Eccentric and isometric exercises in Achilles tendinopathy evaluated by the VISA-A score and shear wave elastography. Sports health. 2020;12(4):373-381. doi:10.1177/1941738119893996
Althoff AD, Vance K, Plain M, et al. Evaluation of achilles tendon stiffness as measured by shear wave elastography in female college athletes compared with nonathletes. Sports Health. 2024;16(1):12-18. doi:10.1177/19417381231153657
Feng Y, Li Y, Liu C, Zhang Z. Assessing the elastic properties of skeletal muscle and tendon using shearwave ultrasound elastography and MyotonPRO. Scientific reports. Nov 20 2018;8(1):1-9. doi:10.1038/s41598-018-34719-7
Garcia-Bernal M-I, Heredia-Rizo AM, Gonzalez-Garcia P, Cortés-Vega M-D, Casuso-Holgado MJ. Validity and reliability of myotonometry for assessing muscle viscoelastic properties in patients with stroke: A systematic review and meta-analysis. Scientific reports. Mar 3 2021;11(1):1-12. doi:10.1038/s41598-021-84656-1
Sohirad S, Wilson D, Waugh C, Finnamore E, Scott A. Feasibility of using a hand-held device to characterize tendon tissue biomechanics. PloS one. 2017;12(9):e0184463. doi:10.1371/journal.pone.0184463
van Dam L, Terink R, van den Akker-Scheek I, Zwerver J. Intra-and inter-operator reliability of measuring compressive stiffness of the patellar tendon in volleyball players using a handheld digital palpation device. PloS one. 2024;19(6):e0304743. doi:10.1371/journal.pone.0304743
van Dam L, Terink R, van den Akker-Scheek I, Zwerver J. Differences in stiffness across the patellar tendon: An observational study using tendotonometry. PLoS One. 2025;20(9):e0329710. doi:10.1371/journal.pone.0329710
Schneebeli A, Falla D, Clijsen R, Barbero M. Myotonometry for the evaluation of Achilles tendon mechanical properties: A reliability and construct validity study. BMJ Open Sport & Exercise Medicine. 2020;6(1):e000726. doi:10.1136/bmjsem-2019-000726
Taş S, Salkın Y. An investigation of the sex-related differences in the stiffness of the Achilles tendon and gastrocnemius muscle: Inter-observer reliability and inter-day repeatability and the effect of ankle joint motion. The Foot. Dec 2019;41:44-50. doi:10.1016/j.foot.2019.09.003
Liu CL, Li YP, Wang XQ, Zhang ZJ. Quantifying the stiffness of Achilles tendon: Intra-and inter-operator reliability and the effect of ankle joint motion. Medical Science Monitor: International Medical Journal of Experimental and Clinical Research. Jul 14 2018;24:4876. doi:10.12659/MSM.909531
Chang T-T, Feng Y-N, Zhu Y, Liu C-L, Wang X-Q, Zhang Z-J. Objective assessment of regional stiffness in Achilles tendon in different ankle joint positions using the MyotonPRO. Medical Science Monitor: International Medical Journal of Experimental and Clinical Research. Oct 19 2020;26:e926407-1. doi:10.12659/MSM.926407
Cristi-Sánchez I, Danes-Daetz C, Neira A, Ferrada W, Yáñez Díaz R, Silvestre Aguirre R. Patellar and Achilles tendon stiffness in elite soccer players assessed using myotonometric measurements. Sports health. Mar/Apr 2019;11(2):157-162. doi:10.1177/1941738118820517
Young FC, Cristi-Sánchez I, Danes-Daetz C, Monckeberg JE, Aguirre RS. Patellar tendon stiffness in elite breakdancers assessed by myotonometric measurement. Journal of Dance Medicine & Science. Dec 1 2018;22(4):179-183. doi:10.12678/1089-313X.22.4.179
Bravo-Sánchez A, Abián P, Sousa F, Jimenez F, Abián-Vicén J. Influence of Badminton Practice on Age-Related Changes in Patellar and Achilles Tendons. Journal of Aging and Physical Activity. Jun 1 2020;29(3):382-390. doi:10.1123/japa.2020-0215
Chang T-T, Li Z, Wang X-Q, Zhang Z-J. Stiffness of the gastrocnemius–Achilles tendon complex between amateur basketball players and the non-athletic general population. Frontiers in Physiology. 2020;11:606706. doi:10.3389/fphys.2020.606706
Svensson RB, Heinemeier KM, Couppé C, Kjaer M, Magnusson SP. Effect of aging and exercise on the tendon. Journal of applied physiology. 2016;121(6):1353-1362. doi:10.1152/japplphysiol.00328.2016
Brar KK, Bhardwaj P, Prabu RG. The influence of lower limb plyometric and resistance training on the stiffness of Achilles and patellar tendons in recreational athletes. Biomedical Human Kinetics. 2021;13(1):56-62. doi:10.2478/bhk-2021-0008
Klich S, Ficek K, Krymski I, et al. Quadriceps and patellar tendon thickness and stiffness in elite track cyclists: An ultrasonographic and myotonometric evaluation. Frontiers in Physiology. 2020;11:607208. doi:10.3389/fphys.2020.607208
Pożarowszczyk B, Gołaś A, Chen A, Zając A, Kawczyński A. The impact of post activation potentiation on achilles tendon stiffness, elasticity and thickness among basketball players. Sports. 2018;6(4):117. doi:10.3390/sports6040117
Pożarowszczyk B, Pawlaczyk W, Smoter M, et al. Effects of karate fights on Achilles tendon stiffness measured by myotonometry. Journal of human kinetics. 2017;56:93. doi:10.1515/hukin-2017-0026
Krzysztofik M, Wilk M, Pisz A, et al. Acute effects of high-load vs. plyometric conditioning activity on jumping performance and the muscle-tendon mechanical properties. The Journal of Strength & Conditioning Research. 2023;37(7):1397-1403. doi:10.1519/JSC.0000000000004398
Kalinowski R, Pisz A, Kolinger D, Wilk M, Stastny P, Krzysztofik M. Acute effects of combined isometric and plyometric conditioning activities on sports performance and tendon stiffness in female volleyball players. Frontiers in Physiology. 2022;13:1025839. doi:10.3389/fphys.2022.1025839
Zhu Y, Feng Y, Huang F, et al. Changes in stiffness of the specific regions of knee extensor mechanism after static stretching. Frontiers in Bioengineering and Biotechnology. 2022;10:958242. doi:10.3389/fbioe.2022.958242
Konrad A, Seiberl W, Tilp M, Holzer D, Paternoster FK. What to stretch?-Isolated proprioceptive neuromuscular facilitation stretching of either quadriceps or triceps surae followed by post-stretching activities alters tissue stiffness and jump performance. Sports Biomechanics. 2022:1-18. doi:10.1080/14763141.2022.2058991
Li YP, Feng YN, Liu CL, Zhang ZJ. Paraffin therapy induces a decrease in the passive stiffness of gastrocnemius muscle belly and Achilles tendon: A randomized controlled trial. Medicine. 2020;99(12):e19519. doi:10.1097/MD.0000000000019519
Chang T-T, Li Z, Zhu Y-C, Wang X-Q, Zhang Z-J. Effects of self-myofascial release using a foam roller on the stiffness of the gastrocnemius-achilles tendon complex and ankle dorsiflexion range of motion. Frontiers in physiology. 2021;12:718827. doi:10.3389/fphys.2021.718827
Szymczyk P, Węgrzynowicz K, Trybulski R, et al. Acute effects of percussive massage treatment on drop jump performance and achilles tendon stiffness. International Journal of Environmental Research and Public Health. 2022;19(22):15187. doi:10.3390/ijerph192215187
Obst SJ, Barrett RS, Newsham-West R. Immediate effect of exercise on achilles tendon properties: systematic review. Medicine & Science in Sports & Exercise. 2013;45(8):1534-1544. doi:10.1249/MSS.0b013e318289d821
Merza EY, Pearson SJ, Lichtwark GA, Malliaras P. The acute effects of higher versus lower load duration and intensity on morphological and mechanical properties of the healthy Achilles tendon: a randomized crossover trial. Journal of Experimental Biology. 2022;225(10)doi:10.1242/jeb.243741
van Dam L, Terink R, van den Akker-Scheek I, Zwerver J. No relevant change in patellar tendon stiffness, pain and function after one strength training session in volleyball players; an observational study [under review]. International Journal of Sports Medicine. 2025;