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X Yi

Publications and source records attributed to X Yi.

At least 19 recordsLinked to original sources

The receptor docking segment and S-adenosyl-L-homocysteine bind independently to the methyltransferase of bacterial chemotaxis.

To mediate adaptation to stimuli, the methyltransferase (CheR) catalyzes methyl group transfer from S-adenosyl-L-methionine (SAM) to glutamyl residues in the transmembrane receptors of the bacterial chemosensory signaling pathway. The interaction between receptors and CheR occurs at two sites: a methylation site-active site interaction, and a 'docking' site interaction that is separated both from the methylation sites and the CheR active site. It is not certain if the docking site interaction functions merely to localize the transferase in close proximity to the methylation sites, or if it also increases CheR catalytic activity. Isothermal titration calorimetry experiments are conducted to test for allosteric interactions between the docking and active sites on CheR, which are expected to be present if docking activates CheR. The binding parameters (DeltaG, DeltaH, DeltaS) of a substrate analog of SAM, S-adenosyl-L-homocysteine (SAH), are measured both in the absence and presence of saturating concentrations of a pentapeptide (NWETF) that defines the docking receptor docking segment. SAH binding is unaffected by the presence of saturating NWETF, providing evidence that an allosteric activation of CheR does not take place upon docking, and thus supports the idea that the CheR-NWETF interaction merely functions to localize CheR near the sites of methylation.

Binding Sites↗

Recombinant paramyosin (rec-Sj-97) tested for immunogenicity and vaccine efficacy against Schistosoma japonicum in mice and water buffaloes.

A primary vaccine candidate antigen against schistosomiasis is paramyosin (pmy), a myofibrillar protein found exclusively in invertebrates. Here we report the results of vaccine trials against the Asian schistosome undertaken on inbred and outbred mice and water buffaloes using a bacterially expressed and purified form of Schistosoma japonicum pmy (rec-Sj-97). Vaccination of the mice resulted in high levels of specific anti-pmy IgG antibodies when compared with adjuvant controls and significant reduction in worm burdens and in liver eggs. Furthermore, a significant reduction in liver eggs was recorded in two of the three water buffalo vaccine trials undertaken and, in all three trials, high levels of specific anti-pmy IgG antibodies were generated. There was no evidence of any toxic effects and the vaccine preparations and Quil A adjuvant were clearly well tolerated. The development of a vaccine intended for livestock animals such as bovines would be beneficial in two ways; directly by blocking transmission of schistosomiasis to humans and economically by contributing to healthier livestock. We are encouraged by the consistent efficacy in the mouse and the buffalo vaccine trials that resulted in a significant decrease in liver eggs. Indeed, predictions from mathematical models indicate that an egg reduction effect of 42-45% in buffaloes would be sufficient when combined with human treatment to control schistosomiasis japonica in the marshes and lakes along the middle and upper reaches of the Yangtze River, the most highly endemic areas for the disease in China.

Animals↗

Quantitation of telomerase components and hTERT mRNA splicing patterns in immortal human cells.

Telomerase is a reverse transcriptase that adds telomeric repeats to chromosomal ends. In most normal human somatic cells, telomerase is repressed and telomeres progressively shorten, leading to limited proliferative life-span. Telomerase reactivation is associated with cellular immortalization and is a frequent event during tumorigenesis. The telomerase ribonucleoprotein complex consists of two essential components, a catalytic protein subunit [human telomerase reverse transcriptase (hTERT)] and a template RNA (hTR). hTR is constitutively expressed, while hTERT is almost universally absent in telomerase-negative cells. Although repression of telomerase is transcriptional in telomerase-negative cells, post-transcriptional and assembly processes are likely to play important roles in regulating telomerase activity in those that are telomerase-positive. The telomerase transcript can also be alternatively spliced into a variety of non-functional forms. To establish the quantitative relationships between telomerase activity and its various components, we determined the numbers of molecules of hTR and hTERT mRNA, and the levels of alternatively spliced hTERT mRNA variants in normal, in vitro immortalized and cancer cell lines. We report here that there is surprisingly little variation in the proportion of alternatively spliced forms of hTERT in different cell lines. The only variation observed occurred when a change in splicing to non-functional forms appeared in response to conditions that repress telomerase activity in IDH4 cells. We also found that most telomerase-positive cell lines only contain a few molecules of potentially functional hTERT mRNA, and there is a correlation between telomerase activity and the levels of both hTR and hTERT +alpha+beta mRNA.

Alternative Splicing↗

cDNA cloning and promoter analysis of rat caspase-9.

Caspase-9 is the apex caspase of the mitochondrial pathway of apoptosis, which plays a critical role in apoptotic initiation and progression. However, gene regulation of caspase-9 is largely unknown. This is in part due to the lack of information on the gene promoter. Here we have cloned the full-length cDNA of rat caspase-9 and have isolated promoter regions of this gene. The rat caspase-9 cDNA of 2058 bp predicts a protein of 454 amino acids, which contains a caspase-recruitment domain ('CARD') at the N-terminus and enzymic domains at the C-terminus. The enzyme's active site, with a characteristic motif of QACGG, was also identified. Overall, rat and human caspase-9 have 71% identity. With the cDNA sequence, we subsequently isolated the proximal 5'-flanking regions of rat caspase-9 by the procedure of genomic walking. The 2270 bp genomic segment is 'TATA-less', but contains several GC boxes. Elements binding known transcription factors such as Sp-1, Pit-1, CCAAT-enhancer-binding protein (C/EBP), glucocorticoid receptor and hypoxia-inducible factor 1 (HIF-1) were also identified. When cloned into reporter gene vectors, the genomic segment showed significant promoter activity, indicating that the 5'-flanking regions isolated by genomic walking contain the gene promoter of rat caspase-9. Of significance is that the cloned promoter segments were activated by severe hypoxia, conditions inducing caspase-9 transcription. Thus, the genomic sequences reported here contain not only the basal promoter of rat caspase-9 but also regulatory elements responsive to pathophysiological stimuli including hypoxia.

3T3 Cells↗

Hydrogen exchange reveals a stable and expandable core within the aspartate receptor cytoplasmic domain.

Intensive study of bacterial chemoreceptors has not yet revealed how receptor methylation and ligand binding alter the interactions between the receptor cytoplasmic domain and the CheA kinase to control kinase activity. Both monomeric and dimeric forms of an Asp receptor cytoplasmic fragment have been shown to be highly dynamic, with a small core of slowly exchanging amide hydrogens (Seeley, S. K., Weis, R. M., and Thompson, L. K. (1996) Biochemistry 35, 5199-5206). Hydrogen exchange studies of the wild-type cytoplasmic fragment and an S461L mutant thought to mimic the kinase-inactivating state are used to investigate the relationship between the stable core and dimer dissociation. Our results establish that (i) decreasing pH stabilizes the dimeric state, (ii) the stable core is present also in the transition state for dissociation, and (iii) this core is expanded significantly by small changes in electrostatic and hydrophobic interactions. These kinase-inactivating changes stabilize both the monomeric and the dimeric states of the protein, which has interesting implications for the mechanism of kinase activation. We conclude that the cytoplasmic domain is a flexible region poised for stabilization by small changes in electrostatic and hydrophobic interactions such as those caused by methylation of glutamate residues and by ligand-induced conformational changes during signaling.

Calorimetry↗

Anterior approach to the second thoracic vertebral body for surgical treatment (vertebrectomy, bone grafting, and titanium alloy plate fixation).

The surgical approach to the second thoracic vertebral body is difficult from the anterior side. A 38-year-old woman suffering from plasmacytoma in the second thoracic vertebra showed paraplegia for 2 weeks prior to surgery. X-ray, computed tomography (CT), and magnetic resonance imaging (MRI) examinations indicated breakdown of the second thoracic vertebral body and arch, associated with spinal cord compression. A 99mTc bone scintigram showed accumulation only in the second thoracic vertebra. After one course of chemotherapy with cyclophosphamide and prednisone (CP protocol), surgery was carried out. The incision was made on the right side of the anterior of the neck, from the middle half of the sternocleidomastoideus along the anterior edge to the jugular notch of the sternum. After cutting the platysma, severing the sternohyoideus, splitting the sternothyroid muscle, and forming a compartment between the esophagus and vagina carotica, we extended the incision to the sternum. Without wedging the sternum, we separated tissue from the posterior of the sternum to the second and third thoracic vertebrae, excised the second thoracic vertebra to expose the hard spinal meninges, and removed the tumor in the vertebral canal to release the compression on the spinal cord. An autogeneous bone graft, taken from the right ilium (1.5 x 1.5 x 3 cm in size), was implanted between the first and third thoracic vertebrae, and a spinal titanium alloy plate was used to increase fixation between the first and third thoracic vertebrae from the front. During the surgery, 800 ml of blood was transfused. On the fifth postsurgical day, the patient could walk normally with a neck collar, and the paraplegia was completely alleviated, with no complications.

Adult↗

[Clinical significance of the expression of lung resistance protein in non-small cell lung carcinomas].

OBJECTIVE: To investigate the expression of the lung resistance-related protein (LRP) in non-small cell lung carcinomas (NSCLC) and evaluate its clinical significance. METHODS: Using immunohistochemistry, LRP was examined in 69 NSCLC specimens obtained by either transbronchial biopsy via fibrobronchoscopy or transcutaneous needle biopsy or surgical resection. Of the 69 patients from whom tumor specimens were obtained, 52 were male and 17 were female. RESULTS: LRP expression was detected in 39/69 (57%) tumor specimens. There was no correlation between LRP expression and NSCLC histological classification (P > 0.05). No significant differences were found in gender and among age groups. The positive rates of LRP were 67% (18/27), 55% (17/31), 52% (23/44), 64% (16/25), 83% (5/6), 57% (36/63) and 50% (3/6) in adenocarcinoma, squamous, staging T1-2, T3-4, N3, M0 and M1 respectively. It was shown that LRP expression was not associated with primary tumor size and metastasis status (N,M). NSCLC patients with positive LRP expression responded more poorly to chemotherapy than those with negative LRP expression (P < 0.05). CONCLUSIONS: The frequencies of multidrug resistance caused by LRP are similar between adenocarcinoma and squamous. Expression of LRP is related to multidrug resistance of NSCLC, which in turn related to the efficacy and prognosis of chemotherapy. The examination of LRP expression may be valuable for choice of chemotherapy regimen.

ATP-Binding Cassette Transporters↗

[Cardio-pulmonary pathology of sudden death in asthma].

OBJECTIVE: To elucidate the pathological characteristics of the heart and lung in asthmatics with sudden death. METHOD: A detail analysis of pathological data was performed on 14 patients with sudden death in asthma. RESULTS: There was no apparent gender difference among 14 patients. 9 patients were younger than 30 years old. Pathological examination showed that bronchial infiltration of eosinophils in 14 patient (100%), thickened basement membrane of the bronchial mucosa in 12 patients (85.7%), proliferation of smooth muscle cells in 11 patients (78.6%), proliferative mucous gland in 9 patients (64.3%), mucous plug in bronchiole in 8 patients (57.1%), and cicatvization of left ventricle in 10 patients (71.4%). CONCLUSION: Severe nonspecific airway inflammation is demonstrated in asthmatic patients with sudden death. Lesions of the left ventricle and mucous plug in bronchiole may contribute to the main cause leading sudden death.

Adolescent↗

[Study on 3D-QSAR of PPAR gamma agonists with thiazolidinedione and arylketo-acid moieties].

AIM: To build a model of two series of PPAR gamma agonists--thiazolidinedione and aryketo-acid derivatives using 3D-QSAR method, and to reveal the structural features affecting the binding activity to PPAR gamma, which relates to antihyperglycemic and antihyperlipidemic activity and has a potential application to the treatment of type II diabetes. METHODS AND RESULTS: 48 agonists with selective activity for PPAR gamma were analyzed using CoMFA. Based upon the active conformation of rosiglitazone (BRL) extracted from its complex with PPAR gamma all agonists were aligned. The model from CoMFA showed a high ability to explain and predict the activity of PPAR gamma agonists with cross-validation correlation coefficient R2 = 0.656, that of non-cross-validation R2 = 0.982, F10,37 = 201.1, and SE = 0.115. CONCLUSION: The CoMFA contour map indicates that the steric fields mainly contribute to the binding effect, and especially a bulk group in the arylketo-acid series favors in the increase of affinity for PPAR gamma, as compared to the thiazolidinedione.

Benzophenones↗

[Three dimensional quantitative structure-activity relationship of farnesyl protein transferase inhibitors].

AIM: To build a three dimensional structure model that correlates the biological activities and the structures of a series of farnesyl protein transferase (FPT) inhibitors exemplified by the compound of 2, 3,4,5-tetrahydro-1-(1H-imidazol-4-ylmethyl)-4-(2-biphenylylcarbonyl)-1H-1, 4-benzodiazepine. METHODS AND RESULTS: Thirty-two FPT inhibitors with two types of scaffold were analyzed. Active conformations of which were studied using system search, a 3D-QSAR model were constructed using the method of comparative molecular field analysis (CoMFA). The resulting of cross-validated RCV2 = 0.602, non-cross-validated R2 = 0.958, SE = 0.270 and F = 124.5 indicate that the 3D-model possesses an ability to predict activities of new inhibitors. CONCLUSION: The information of CoMFA model offers an approach to designing new FPT inhibitors.

Alkyl and Aryl Transferases↗

Direct electrochemistry of horseradish peroxidase immobilized on a colloid/cysteamine-modified gold electrode.

Direct electron transfer of immobilized horseradish peroxidase on gold colloid and its application as a biosensor were investigated by using electrochemical methods. The Au colloids were associated with a cysteamine monolayer on the gold electrode surface. A pair of redox peaks attributed to the direct redox reaction of horseradish peroxidase (HRP) were observed at the HRP/Au colloid/cysteamine-modified electrode in 0.1 M phosphate buffer (pH 7.0). The surface coverage of HRP immobilized on Au colloid was about 7.6 x 10(-10) mol/cm(2). The sensor displayed an excellent electrocatalytic response to the reduction of H(2)O(2) without the aid of an electron mediator. The calibration range of H(2)O(2) was 1. 4 microM to 9.2 mM with good linear relation from 1.4 microM to 2.8 mM. A detection limit of 0.58 microM was estimated at a signal-to-noise ratio of 3. The sensor showed good reproducibility for the determination of H(2)O(2). The variation coefficients were 3. 1 and 3.9% (n = 10) at 46 microM and 2.8 mM H(2)O(2), respectively. The response showed a Michaelis-Menten behavior at higher H(2)O(2) concentrations. The K(app)(M) value for the H(2)O(2) sensor was found to be 2.3 mM.

Biosensing Techniques↗

Immunogenicity and immunolocalization of the 22.6 kDa antigen of Schistosoma japonicum.

The 22.6 kDa tegumental-associated antigens of Schistosoma mansoni (Sm22.6) and Schistosoma japonicum (Sj22.6) are of recognized interest in schistosomiasis vaccine development, although no direct vaccination/challenge experiments using either Sm22.6 or Sj22.6 had been previously described. We report that Escherichia coli-expressed reSj22.6 failed to protect mice or water buffaloes against subsequent challenge with S. japonicum cercariae. This was despite the fact that specific IgG (buffaloes) and IgG and IgE (CBA mice) antibodies were generated against the 22.6 kDa molecule, observations consistent with some of our earlier findings. We could find no evidence from immunolocalization studies that Sj22.6 is expressed or exposed on the surface of the adult parasite since it appears to be restricted to the apical cytoplasm of the tegument and is not associated with the apical or basal membrane or any membrane-bound structures in the apical cytoplasm. Nevertheless, Sj22.6 must be released to the immune system during the course of infection because specific anti-Sj22.6 IgG antibodies were present in the sera of nonvaccinated but challenged mice. We conclude that it may be necessary to produce reSj22.6 in a more relevant expression system, such as baculovirus, to further establish its vaccine potential and that detailed immunochemical and immunolocalization studies of early developmental stages may be necessary to determine how Sj22.6 is released or shed in S. japonicum infections.

Animals↗

Clevidipine blockade of L-type Ca2+ currents: steady-state and kinetic electrophysiological studies in guinea pig ventricular myocytes.

Steady-state and transient effects of clevidipine, a rapidly degraded dihydropyridine (DHP) L-type Ca2+ channel antagonist, were examined on I(Ca) in guinea pig ventricular myocytes. When myocytes were voltage-clamped with holding potential (V(H)) at -80 mV, 10 nM clevidipine decreased I(Ca) at 0 mV by approximately 30%, but >50% when V(H) was -40 mV. Rapid (<50 ms) perfusion switching and repeated depolarizations delivered at 0.5-2 Hz were used to determine the time constants of onset (tau(on)) and recovery from (tau(off)) clevidipine inhibition of I(Ca). The tau(on) and tau(off) were monoexponential functions of time. The tau(on) of I(Ca) inhibition decreased from 21.5 +/- 1.2 to 9.9 +/- 0.9 s when the rapidly applied [clevidipine] was increased from 10 to 100 nM at V(H) = -80 mV; tau(off) was independent of the applied [clevidipine] and was 23.9 +/- 1.1 s. The dissociation constant (K(D)) calculated for clevidipine at V(H) = -80 mV was 65 +/- 3 nM, similar to the IC50 of 78 nM determined in steady-state measurements. Decreasing V(H) to -40 mV increased tau(off) more than threefold to 81 +/- 6 s, and K(D) was markedly decreased to 9.0 +/- 0.8 nM (IC50, 7.1 nM at V(H) = -40 mV). The increased affinity at depolarized V(H) may contribute to the varying concentration-effect relation observed in vivo.

Animals↗

Corneal epithelial tight junctions and their response to lipopolysaccharide challenge.

PURPOSE: To investigate the expression and cellular distribution of putative tight junction (TJ) proteins occludin, ZO-1, ZO-2, and claudin-1 in rat corneal epithelium and alterations of TJs in cultured human corneal epithelial cells in response to lipopolysaccharide (LPS) challenge. METHODS: Immunohistochemistry was used to determine tissue distribution of occludin, ZO-1, ZO-2, and claudin-1 in the rat cornea. Reverse transcription-polymerase chain reaction was used to reveal the expression of mRNAs for claudins in simian virus (SV)40-immortalized human corneal epithelial (THCE) cells. To assess epithelial response to LPS challenge, THCE cells were cultured on the upper chamber of Transwell filters (Costar, Cambridge, MA), transepithelial electrical resistance (TER) was measured using a voltohmmeter. Immunocytochemistry and immunoblotting were used to assess alteration in the levels and localization of TJ-associated proteins occludin, ZO-1, and ZO-2 in LPS-treated THCE cells. RESULTS: Occludin, ZO-1, and ZO-2 were found at the cell borders of the superficial layer, whereas claudin-1 was localized mainly in the basal and wing cell layers of rat corneal epithelium. In addition to claudin-1, the transcripts for several other isotypes of claudins-2, -3, -7, -9, -14, and -15 were identified in THCE cells. Treatment of cultured THCE cells with LPS caused a dose- and time-dependent increase in monolayer permeability as assessed by TER measurements. The maximal decrease of TER was observed at approximately 6 to 9 hours after LPS challenge. The TER was then recovered gradually and returned to baseline after 24 hours. Examination of specific proteins associated with TJs by immunoblot analysis and immunomicroscopy revealed changes in the expression levels and localization of some of these proteins after their exposure to LPS. Specifically, LPS challenge resulted in a decrease in the levels of ZO-1 and ZO-2 compared with untreated cells. Reduction of the ZO-2 level was associated with the disappearance of ZO-2 staining from cell borders in 6-hour LPS-treated cells. CONCLUSIONS: Occludin, ZO-1, and ZO-2, but not claudin-1, are components of corneal epithelial TJs. LPS induces breakdown of the epithelial barrier through disruption of TJs, and ZO-1 and ZO-2 are targets for the induction.

Animals↗

[Effects of stress level on the biomechanical behavior of the temporomandibular joint disc in domestic pigs].

This study aimed to examine the responses of the temporomandibular joint (TMJ) disc against compression, to clarify the property of viscoelasticity and permeability of the disc, and to provide experimental data for further analyzing the mechanism of stress dissipation within the TMJ disc. With the use of confined compression mechanics and biphasic theory, creep experiments on eight TMJ discs of four domestic pigs were performed under three stress levels(0.07 MPa, 0.13 MPa and 0.30 MPa). The results showed that at 0.07 stress level, the compressive stiffness at 2 seconds of the anterior band(AB), intermediate zone(IZ) and posterior band(PB) of the disc was 4.48 MPa, 3.93 MPa and 6.31 MPa, respectively; the coefficient K of permeability was 0.272 x 10(-12) m4/NS, 0.30 x 10(-12) m4/NS, and 0.042 x 10(-12) m4/NS. At 0.30 Mpa level, the compressive stiffness increased to 14.07 MPa, 13.68 Mpa and 14.00 MPa; the coefficient K lowered to 0.017 x 10(-12) m4/NS, 0.012 x 10(-12) m4/NS and 0.005 x 10(-12) m4/NS. In conclusion, the TMJ disc has viscoelastic and biobiphasic properties against compression. The stiffness of the disc increases with the increment of stress level but the coefficient of permeability decreases. These findings demonstrate that the modulation of stress and of permeability may be two important factors influencing stress dissipation and shock absorption behavior of the disc during compressive and impact loads.

Animals↗

[Biomechanics of temporomandibular joint].

Temporomandibular joint (TMJ) is one of the most intricate and complicate loading joints in the human body. Articular cartilage is characteristic of low infiltrative, porous viscoelastic material. In physiological condition, there is a stress-absorbing architecture system in the TMJ cartilage, which consists of collagen-proteoglycan-water gel network. TMJ disc is a specific connective tissue as stress concentration absorber between condyle and articular fossa, but it does not belong to fibrocartilage. Retrodiscal tissue has high compliance of which the role is to play volume-compensating mechanism in joint movement. Lateral wall is a complexed structure out of ligament and capsule with weak tensile strength and tensile rigidity. Therefore, prolonged oral parafunction will result in joint fatigue and failure.

Biomechanical Phenomena↗

[Tensile mechanics of mandibular condylar cartilage].

OBJECTIVE: To study the biomechanical properties of the mandibular condyle cartilage and determine its functional importance. METHODS: Eight condyle specimens of the four pig temporomandibular joints were obtained by autopsy and stored in sealed plastic bags at -20 degrees C. These pigs were healthy, aged 1 year +/- 2 months. In the coronal direction, 300 microns wide, rectangular cartilage-bone specimens were prepared on the right condyles using specified knife. In the sagittal direction, rectangular cartilage-bone specimens with the same width were obtained on the left condyles. Standard rectangular testing specimens were prepared from cartilage-bone specimens in a microtome kept at -20 degrees C (300 microns wide and 250 microns thick). The specimens were inserted in a soft-tissue uniaxial tensile test machine and immersed in a bath of Ringer's solution at room temperature. Preconditioning of the specimens was carried out prior to the uniaxial tensile experiment and the specimens were elongated to failure with the constant strain rate (0.05 mm/s). The resulting mean values were curved fitted with Fung's two-parameter (A, B) exponential stress strain equation using a nonlinear regression program. RESULTS: The data obtained showed that a typical nonlinear biomechanical behavior of the condyle cartilage. Toe-region and quasi-linear zone were obvious on the experimental stress strain relation curve. Theoretically fitted parameter A and B were 0.47 and 4.13 (coronally) and 0.60 and 4.70 (sagittally). The sagittal specimens showed greater tensile stress (2.92 MPa), tensile stiffness (9.04 MPa), energy absorption (6.02 N.mm) but less tensile strain (37.34%) than that of the coronal specimens (2.15 MPa, 6.55 MPa, 4.91 N.mm, and 41.12%). The differences were statistically significant (P < 0.05). CONCLUSION: The mandibular condyle cartilage is a kind of biophasic material which shows nonlinear viscoelastic behavior, anistrophic characteristics in biomechanical function and high ability to resist tensile stress in the longitudinal direction.

Animals↗

[A biomechanical study on the retrodiscal tissue of human temporomandibular joint].

In order to investigate the biomechanical properties and functional mechanism of the retrodiscal tissue (RT) of human temporomandibular joint (TMJ), we conducted a uniaxial tensile test on thirteen RT specimens taken from eight fresh TMJs of the human cadavers aged between 8-15 years (m = 11.8 yrs). The experimental data were analyzed in conjunction with the Quasi-Linear Viscoelastic Theory as proposed by Fung YC to characterize the time-dependent behaviour and the constitutive relationship of the RT. The results showed that the physiological biphasic zone of stress-strain curve lied within 20%-30% strain levels. The elastic modulus (MPa), tensile strength(MPa) and strain to failure(%) were high. There were significant differences in strain to yielding and energy resorption (N.mm) between lateral and medial RT. There was a good agreement between theoretical prediction value and experimental result within 6% strain level. These data suggest that there would be a higher passive deformation and lower safety storage of strength in the RT which could be related to anterior displacement of the TMJ disc and that Fung's Theory can adequately describe the stress-time behaviour and the constitutive relationship of the RT within lower strain rate.

Adolescent↗