835 research outputs found

    Reduction in stiffness of proximal leg muscles during the first 6 months of glucocorticoid therapy for giant cell arteritis: A pilot study using shear wave elastography.

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    Aim: To investigate muscle stiffness changes in patients treated for giant cell arteritis (GCA) with high‐dose oral glucocorticoids. Methods: Using ultrasound elastography, shear wave velocity (SWV) was measured in the quadriceps, hamstrings and biceps brachii muscles of 14 patients with GCA (4 male, mean age ± SD, 68.2 ± 4.3 years) within the first 2 weeks of initiating glucocorticoid treatment (baseline) and repeated after 3 and 6 months treatment. Muscle strength and performance tests were performed at each visit. Baseline measures were compared with those from 14 healthy controls. Linear mixed models were used to test for change in patient measures over time. Results: At baseline, muscle SWV in patients was not significantly different from controls. With glucocorticoid treatment, there was a reduction in SWV in the leg but not the arm muscles. SWV decreased by a mean of 14% (range 8.3%‐17.3%; P = .001) after 3 months and 18% (range 10.2%‐25.3%; P < .001) after 6‐months in the quadriceps and hamstrings during the resting position. The baseline, 3 and 6 months mean SWV (±SD) for the vastus lateralis were 1.62 ± 0.16 m/s, 1.40 ± 0.10 m/s and 1.31 ± 0.06 m/s, respectively (P < .001). In the patient group as a whole, there was no significant change in muscle strength. However, there were moderate correlations (r = .54‐.69) between exhibiting weaker muscle strength at follow‐up visits and a greater reduction in SWV. Conclusion: Glucocorticoid therapy in patients with GCA was associated with a significant reduction in proximal leg muscle stiffness during the first 6 months. Future research should study a larger sample of patients for a longer duration to investigate if diminished muscle stiffness precedes signs of glucocorticoid‐induced myopathy

    Coarse-Grained Models of Biological Membranes within the Single Chain Mean Field Theory

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    The Single Chain Mean Field theory is used to simulate the equilibrium structure of phospholipid membranes at the molecular level. Three levels of coarse-graining of DMPC phospholipid surfactants are present: the detailed 44-beads double tails model, the 10-beads double tails model and the minimal 3-beads model. We show that all three models are able to reproduce the essential equilibrium properties of the phospholipid bilayer, while the simplest 3-beads model is the fastest model which can describe adequately the thickness of the layer, the area per lipid and the rigidity of the membrane. The accuracy of the method in description of equilibrium structures of membranes compete with Monte Carlo simulations while the speed of computation and the mean field nature of the approach allows for straightforward applications to systems with great complexity.Comment: Accepted for publication in Soft Matte

    A systematic review of outcome measures used in clinical trials of treatment interventions following traumatic dental injuries

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    Background: Traumatic dental injuries (TDI) are common, andappropriate treatment will maximize the chances of maintaining teeth infunction while safeguarding their longevity and aesthetics. Subjectively, itappears that outcome measures used in studies investigating TDI arenumerous and diverse. Objectives: To undertake a systematic review ofthe outcomes used in clinical trials of treatment interventions followingTDI. Data sources: The MEDLINE, Cochrane Central Register of Con-trolled Trials, Cochrane Database of Systematic Reviews and EMBASEdatabases were searched up to June 2014. Reference lists of eligible studieswere cross-checked to identify additional studies and strategies to identifygrey literature and ongoing trials were employed. Study selection: Twoauthors independently assessed studies for inclusion and undertook dataextraction. The study designs included were as follows: systematic reviewswith/without meta-analyses, randomized and pseudo-randomized con-trolled trials and controlled clinical trials. There were no language restric-tions. Results: Ten studies confined to two types of TDI were included:avulsion (5) and non-vital immature permanent incisor teeth (5). The out-comes reported predominantly concentrated on injury activity and thephysical consequence of injury. There was little consistency between studiesfor the length of follow up, the time points at which outcomes were evalu-ated or the methods used to measure them. Conclusions: There is signifi-cant heterogeneity in outcomes reported for TDI in the literature. Thesefindings preclude meaningful meta-analysis between studies. Future clinicalstudies need to consider collecting a more consistent and wider range ofoutcomes, which should include one or more from each of the followingdomains: health resources utilisation, adverse effects and quality of life andfamily outcome. There is a clear need for the development of a Core Out-come Set for TDI using robust and established methodology, thus optimiz-ing the value of future research

    Enhanced endocannabinoid-mediated modulation of rostromedial tegmental nucleus drive onto dopamine neurons in sardinian alcohol-preferring rats

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    The progressive predominance of rewarding effects of addictive drugs over their aversive properties likely contributes to the transition from drug use to drug dependence. By inhibiting the activity of DA neurons in the VTA, GABA projections from the rostromedial tegmental nucleus (RMTg) are well suited to shift the balance between drug-induced reward and aversion. Since cannabinoids suppress RMTg inputs to DA cells and CB1 receptors affect alcohol intake in rodents, we hypothesized that the endocannabinoid system, by modulating this pathway, might contribute to alcohol preference. Here we found that RMTg afferents onto VTA DA neurons express CB1 receptors and display a 2-arachidonoylglycerol (2-AG)-dependent form of short-term plasticity, that is, depolarization-induced suppression of inhibition (DSI). Next, we compared rodents with innate opposite alcohol preference, the Sardinian alcohol-preferring (sP) and alcohol-nonpreferring (sNP) rats. We found that DA cells from alcohol-naive sP rats displayed a decreased probability of GABA release and a larger DSI. This difference was due to the rate of 2-AG degradation. In vivo, we found a reduced RMTg-induced inhibition of putative DA neurons in sP rats that negatively correlated with an increased firing. Finally, alcohol failed to enhance RMTg spontaneous activity and to prolong RMTg-induced silencing of putative DA neurons in sP rats. Our results indicate functional modifications of RMTg projections to DA neurons that might impact the reward/aversion balance of alcohol attributes, which may contribute to the innate preference observed in sP rats and to their elevated alcohol intak

    ImPACT: a multifaceted implementation for conversation partner training in aphasia in Dutch rehabilitation settings.

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    Purpose: Exploration of the clinical uptake of a novel conversation partner training (CPT) programme in aphasia in ten Dutch rehabilitation facilities and identification of its perceived facilitators and barriers in service providers, and the evaluation of the implementation methods used. Method: Ten rehabilitation centres took part in a multifaceted implementation of conversation partner training over thirteen months. Each centre selected two speech and language therapists to act as knowledge brokers whose role it was to raise awareness of CPT in the team and to facilitate getting partners of people with aphasia into the programme. The implementation was evaluated using analysis of recruitment data and questionnaires, supplemented by consensus data and scrutiny of implementation plans. Results: Successful implementation was described as 1) four dyads included during the intervention period, 2) two more dyads included after the intervention period, before the end of the study and 3) inclusion of Partners of Aphasic Clients Conversation Training (PACT) in a description of the logistics of local stroke care (stroke care pathway). Seven centres were successful in reaching the target inclusion of 6 dyads in total. Only one centre had care pathways in place. From a recruitment pool of 504 dyads, 41 dyads were recruited and 34 partners completed the implementation of PACT study (ImPACT). Observed facilitators included the motivation to engage partners in the rehabilitation process and the perceived added value of PACT. The perceived barriers focused on time limitations within current systems to discuss the consequences of PACT with relevant professionals and to establish allocated time for PACT within existing care routines. Conclusions: The motivation of professionals to involve partners in the rehabilitation process assisted with the introduction of PACT in practice. The main barrier was time, linked to the requirement to think through integration of this innovation within existing care. Longer term evaluation would ascertain how centres sustain uptake without support

    hCALCRL mutation causes autosomal recessive nonimmune hydrops fetalis with lymphatic dysplasia

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    We report the first case of nonimmune hydrops fetalis (NIHF) associated with a recessive, in-frame deletion of V205 in the G protein–coupled receptor, Calcitonin Receptor-Like Receptor (hCALCRL). Homozygosity results in fetal demise from hydrops fetalis, while heterozygosity in females is associated with spontaneous miscarriage and subfertility. Using molecular dynamic modeling and in vitro biochemical assays, we show that the hCLR(V205del) mutant results in misfolding of the first extracellular loop, reducing association with its requisite receptor chaperone, receptor activity modifying protein (RAMP), translocation to the plasma membrane and signaling. Using three independent genetic mouse models we establish that the adrenomedullin–CLR–RAMP2 axis is both necessary and sufficient for driving lymphatic vascular proliferation. Genetic ablation of either lymphatic endothelial Calcrl or nonendothelial Ramp2 leads to severe NIHF with embryonic demise and placental pathologies, similar to that observed in humans. Our results highlight a novel candidate gene for human congenital NIHF and provide structure–function insights of this signaling axis for human physiology

    Quantitative bone imaging biomarkers and joint space analysis of the articular Fossa in temporomandibular joint osteoarthritis using artificial intelligence models

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    Temporomandibular joint osteoarthritis (TMJ OA) is a disease with a multifactorial etiology, involving many pathophysiological processes, and requiring comprehensive assessments to characterize progressive cartilage degradation, subchondral bone remodeling, and chronic pain. This study aimed to integrate quantitative biomarkers of bone texture and morphometry of the articular fossa and joint space to advance the role of imaging phenotypes for diagnosis of Temporomandibular Joint Osteoarthritis (TMJ OA) in early to moderate stages by improving the performance of machine-learning algorithms to detect TMJ OA status. Ninety-two patients were prospectively enrolled (184 h-CBCT scans of the right and left mandibular condyles), divided into two groups: 46 control and 46 TMJ OA subjects. No significant difference in the articular fossa radiomic biomarkers was found between TMJ OA and control patients. The superior condyle-to-fossa distance (p < 0.05) was significantly smaller in diseased patients. The interaction effects of the articular fossa radiomic biomarkers enhanced the performance of machine-learning algorithms to detect TMJ OA status. The LightGBM model achieved an AUC 0.842 to diagnose the TMJ OA status with Headaches and Range of Mouth Opening Without Pain ranked as top features, and top interactions of VE-cadherin in Serum and Angiogenin in Saliva, TGF-β1 in Saliva and Headaches, Gender and Muscle Soreness, PA1 in Saliva and Range of Mouth Opening Without Pain, Lateral Condyle Grey Level Non-Uniformity and Lateral Fossa Short Run Emphasis, TGF-β1 in Serum and Lateral Fossa Trabeculae number, MMP3 in Serum and VEGF in Serum, Headaches and Lateral Fossa Trabecular spacing, Headaches and PA1 in Saliva, and Headaches and BDNF in Saliva. Our preliminary results indicate that condyle imaging features may be more important in regards to main effects, but the fossa imaging features may have a larger contribution in terms of interaction effects. More studies are needed to optimize and further enhance machine-learning algorithms to detect early markers of disease, improve prediction of disease progression and severity to ultimately better serve clinical decision support systems in the treatment of patients with TMJ OA
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