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1  programme (gallbladder removal and ruptured Achilles tendon).
2  fulfil one function of the calf muscles and Achilles tendon.
3 eriod of time and leads to a compliant human Achilles tendon.
4 g tendon in a transected rabbit model of the Achilles tendon.
5 NR in patients, 9.4 +/- 3.0; P < .05) of the Achilles tendon.
6  through a compliant spring representing the Achilles tendon.
7 ignificantly decreases in healthy-aged mouse Achilles tendons.
8 needle biopsies from the healing area of the Achilles tendon 6 weeks after treatment with PRP or plac
9 may reflect a decrease of GAG content in the Achilles tendon after ciprofloxacin intake.
10 ion through a series elastic component (SEC, Achilles tendon and foot) which limits maximal ankle sti
11 sensory information through vibration of the Achilles tendons and additional finger touch (contact fo
12 hus we attribute this stiffness to the foot, Achilles' tendon and aponeurosis rather than the activat
13 ted heart attack, ruptured gut, and ruptured Achilles tendon) and three in the comparison group (tran
14 t of normal development, bone grows into the Achilles tendon as the calcaneus enlarges.
15 underwent 7-T MR imaging examinations of the Achilles tendon at baseline and 10 days and 5 months aft
16                    Here we identify that the Achilles tendon-bone insertion is characterized by an in
17 his was attributed to a displacement of both Achilles tendon by 0.6-1.1 cm (P < 0.01) and all instant
18 were obtained from 20 patients with ruptured Achilles tendon by means of ultrasound-guided needle bio
19  that the geometric equilibrium state of the Achilles tendon can coincide with minimization of the to
20 rop, scapular winging, mild facial weakness, Achilles tendon contractures, and diminished or absent d
21 score) was significantly correlated with the Achilles tendon CSA and vascular calcification, this sco
22  The elastic stretch-shortening cycle of the Achilles tendon during walking can reduce the active wor
23            We demonstrate that the compliant Achilles tendon elicited a series of adaptations from di
24 stologic analysis was performed on cadaveric Achilles tendon entheses to determine whether regional v
25                               A total of 20% Achilles tendon entheses, 45% plantar aponeurosis enthes
26   This study combined ultrasonography of the Achilles tendon enthesis at different stages of spondyla
27           Thirty-seven patients with SpA and Achilles tendon enthesitis (20 with early SpA and 17 wit
28             Bone erosion in association with Achilles tendon enthesitis in SpA is anatomically uncoup
29 xplanations require that the passive tissue (Achilles' tendon, foot) transmitting the calf muscle ten
30                    Substantially unrealistic Achilles tendon forces and moments generated around the
31 all genes, the normal, painful, and ruptured Achilles tendon groups each had a distinct mRNA expressi
32 cal suture significantly improves functional Achilles tendon healing in a rabbit model, resulting in
33  following tendon injury in a mouse model of Achilles tendon healing.
34                                     Thirteen Achilles tendons in 10 cadavers (four male, six female;
35 ation, 58 years +/- 9) were compared with 20 Achilles tendons in 10 control subjects without FH (two
36 ion of tendon-like tissues in a rat model of Achilles tendon injury.
37                                          The Achilles tendon insertion is associated with a complex o
38 volar flexor tenosynovitis (trigger finger), Achilles tendon lesions, and occupational medicine issue
39 tral response of collagen type I from bovine Achilles tendon matched that of the rat-tendon cryosecti
40                    At any given ankle angle, Achilles tendon moment arm length during MVC increased b
41 lexor maximum voluntary contraction (MVC) on Achilles tendon moment arm length.
42 flexor MVC would be calculated using resting Achilles tendon moment arm measurements.
43                                              Achilles tendon moment arms were measured at ankle angle
44 maging signal and the GAG CEST effect in the Achilles tendon of healthy volunteers.
45             Sections of small spurs from the Achilles tendons of elderly humans were also examined fo
46 oduce mechanical work through elastic (e.g., Achilles tendon, plantar fascia) or viscoelastic (e.g.,
47                                   Fascia and Achilles tendon primarily consist of similar collagen ty
48 ens the gastrocnemius muscle by 5% while the Achilles tendon remains virtually unaffected.
49 approach of one author for the management of Achilles tendon rupture.
50                   Histologic sections of rat Achilles tendons, stained with toluidine blue or Masson'
51 iled unpaired t test in three regions of the Achilles tendon: the insertion area, the middle portion,
52 munohistochemical response of ruptured human Achilles tendon to PRP.
53          We performed RNA-seq analysis using Achilles tendons to investigate the molecular changes un
54                      Mice underwent hindlimb Achilles' tendon transection and dorsal burn injury (bur
55  was to investigate the response of ruptured Achilles tendon treated with PRP.
56                  Collagen type I from bovine Achilles tendon was imaged for SHG in the backscattered
57  from each region, as well as from the whole Achilles tendon, was compared between patients and healt
58            For intact ex vivo SHG imaging of Achilles tendon, we observe a significant contribution o
59 rts) in 26 consecutive cases of tears of the Achilles tendon were compared with surgical findings.
60 sions of the middle and distal thirds of the Achilles tendons were evaluated histologically.
61 ea, volume, and fat-water separation) of the Achilles tendons were obtained at baseline and in patien
62                                              Achilles tendon, when degenerated, exhibits lower stiffn
63 partial-thickness tears or tendinosis of the Achilles tendon with 92% accuracy.
64            Materials and Methods Forty-eight Achilles tendons with clinically apparent xanthomas in 2
65                Bony spurs can develop in the Achilles tendon without the need for preceding microtear
66 pose To investigate the fat-water content of Achilles tendon xanthomas at baseline and after treatmen
67        Conclusion Most of the enlargement of Achilles tendon xanthomas is due to an increase in water
68 core on electron-beam CT (EBCT), and size of Achilles tendon xanthomas.

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