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1 ed NPs protected against inflammation in the temporomandibular joint.
2 transduction of hard and soft tissues of the temporomandibular joint.
3 udy the effects of lentiviral vectors on the temporomandibular joint.
4 e then euthanized for collection of knee and temporomandibular joints.
5 ng, shock-absorbing, lubricating material in temporomandibular joints.
6 of children, mostly at the ankle, foot, and temporomandibular joints.
7 artilage, mandible, the articulating disc of temporomandibular joint and branchial arch nerve ganglia
9 ardized videotapes showing palpations of the temporomandibular joint and muscles of mastication and r
11 cterized by pain and reduced function in the temporomandibular joint and/or associated masticatory mu
12 lutionary innovations in the ear region, the temporomandibular joint, and the brain vault evolved inc
13 rome characterized by variable micrognathia, temporomandibular joint ankylosis, cleft palate, and a c
14 lyarticular disease are all risk factors for temporomandibular joint arthritis but may underpredict t
15 cal and radiographic signs, and treatment of temporomandibular joint arthritis in children with juven
17 currently the gold standard in detection of temporomandibular joint arthritis, and treatment with in
18 Given the paucity of clinical symptoms in temporomandibular joint arthritis, detection of temporom
19 imaging and by using the maxillary teeth and temporomandibular joints as a guide to finish the recons
20 the filling of the cavity (posterior to the temporomandibular joint) coincides with the moment of ma
23 lysis of these data demonstrated significant temporomandibular joint disc-engineering potential for P
24 e arthritis in the previous 6 months (mCSA), temporomandibular joint disease (mCSA and section modulu
25 2.3 times, the risk of developing myogenous temporomandibular joint disorder (TMD), a common musculo
28 incisors, alveolar bone loss and compressed temporomandibular joints, in addition to abnormal skull
29 corticosteroids holds promise for control of temporomandibular joint inflammation and prevention of a
30 poromandibular joint arthritis, detection of temporomandibular joint inflammation using contrast-enha
31 dibular joint arthritis but may underpredict temporomandibular joint involvement in juvenile idiopath
33 tstanding review of the anatomy of the human temporomandibular joint is presented by Piette [5.].
35 uffered physiological saline solution, TMJ = temporomandibular joint, mu(T) =tractional coefficient,
36 A single injection of FIV(HuMOR) into the temporomandibular joints of Col1-IL-1beta(XAT)-transgeni
38 -/-) MCCs, we discovered the early basis for temporomandibular joint osteoarthritis arises from abnor
40 d function, we used a genetic mouse model of temporomandibular joint osteoarthritis that is deficient
42 mpirical evidence suggests that the "normal" temporomandibular joint produces noise during function.
43 fficult joints to examine, such as the hips, temporomandibular joints, small joints of the feet, and
45 tes has roles in degenerative remodelling of temporomandibular joint (TMJ) and to determine associate
46 cells (BMSCs) on osteoarthritis (OA) of the temporomandibular joint (TMJ) and to explore the role of
53 , we determined whether the mutation affects temporomandibular joint (TMJ) development and growth.
54 n and hedgehog signaling, but their roles in temporomandibular joint (TMJ) development are unknown.
57 een used for the management of patients with temporomandibular joint (TMJ) disc displacement without
60 chanical fatigue-related degeneration of the temporomandibular joint (TMJ) disc may be promoted by tr
63 nical loading on solute transport in porcine temporomandibular joint (TMJ) discs using the electrical
67 previous data suggested the hypothesis that temporomandibular joint (TMJ) eminence shapes develop id
68 onatal mice and assessed the consequences on temporomandibular joint (TMJ) growth and organization ov
70 association between more advanced stages of temporomandibular joint (TMJ) intra-articular disorders
74 artilage stem cells (FCSCs) derived from the temporomandibular joint (TMJ) mandibular condyle that ge
76 (CFA) was injected unilaterally into the rat temporomandibular joint (TMJ) or perioral (PO) skin to p
79 of the US population will seek treatment for temporomandibular joint (TMJ) symptoms, typically occurr
80 es have indicated a positive response of the temporomandibular joint (TMJ) to mandibular advancement,
81 ditions, including those affecting the human temporomandibular joint (TMJ), but the underlying molecu
88 plants and chondrocytes, derived from bovine temporomandibular joints (TMJ), were examined for matrix
90 ites (UACs) elicited OA-like lesions in mice temporomandibular joints (TMJs), displaying as subchondr
91 rus (FIV) (Cre) vector in the right and left temporomandibular joints (TMJs), or in the cisterna magn
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