Study Design: An in vivo analysis of the intervertebral disc's cellular response to dynamic compression and immobilization was performed using a rat-tail model.
Objective: To assess the effects of immobilization and short-term dynamic compression on intervertebral disc cell expression of anabolic and catabolic genes.
Summary Of Background Data: Static compressive loads applied in vivo alter the composition of the disc matrix and cell viability in a dose-dependent manner. The effects of in vivo dynamic compression, which is a more physiologic load, and reported risk factor for low back pain have not been investigated.
Methods: An Ilizarov-type device was implanted on the rat tail and used to determine the effects from 72 hours of immobilization (n = 6), 2 hours of dynamic compression (1 MPa/0.2 Hz) (n = 8), and the coupled effect of immobilization followed by compression (n = 8). Real-time reverse transcription-polymerase chain reaction was used to measure changes in anabolic and catabolic gene levels relative to both internal control subjects and a sham-operated group (n = 7).
Results: Immobilization and dynamic compression affect anabolic and catabolic genes, with an overall downregulation of types 1 and 2 collagen and upregulation of aggrecanase, collagenase, and stromelysin in the anulus. The effects of immobilization and compression appear to be additive for collagen types 1 and 2 in the anulus, but not in the nucleus, and not for catabolic genes.
Conclusions: Short-duration dynamic compression and immobilization alter gene expression in the rat disc. In studying the response of the disc to loading, it is necessary to look at both anabolic and catabolic pathways, and to consider strain history.
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http://dx.doi.org/10.1097/01.BRS.0000061985.15849.A9 | DOI Listing |
Dynamic carotid compression arising from a change in patient position is a rare complication of goitre, with the potential for cerebral ischaemia and infarction. In this report, a 37-year-old woman presented with a multi-nodular goitre with clinical features concerning for transient cerebral ischaemia. The anaesthetic management and neurological monitoring used to mitigate the risk of cerebral ischaemia during thyroidectomy is described and the literature surrounding this rare complication is explored.
View Article and Find Full Text PDFKorean J Radiol
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Research Scientist, AIRS Medical Inc., Seoul, Republic of Korea.
Objective: To evaluate the clinical efficacy of ultrafast dynamic contrast-enhanced (DCE)-MRI using a compressed sensing (CS) technique for differentiating benign and malignant soft-tissue tumors (STTs) and to evaluate the factors related to the grading of malignant STTs.
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Waste Manag
January 2025
College of Civil Engineering, Nanjing Forestry University, Nanjing, 210037, China.
The utilization of natural waste gravel soil as base course material contributes to environmental protection and carbon emission reduction. The purpose of this research is to establish a new model for automated gradation design of the composite soil stabilizer-stabilized waste gravel soil (CSSWGS). A gradation range of CSSWGS has been proposed.
View Article and Find Full Text PDFSmall Methods
January 2025
Department of Electrical and Computer Engineering, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Recently, implantable devices for treating peripheral nerve disorders have demonstrated significant potential as neuroprosthetics for diagnostics and electrical stimulation. However, the mechanical mismatch between these devices and nerves frequently results in tissue damage and performance degradation. Although advances are made in stretchable electrodes, challenges, including complex patterning techniques and unstable performance, persist.
View Article and Find Full Text PDFJ Vis
January 2025
Department of Psychology, National Taiwan University, Taipei City, Taiwan.
Intentional binding (IB) refers to the compression of subjective timing between a voluntary action and its outcome. In this study, we investigate the IB of a multimodal (audiovisual) outcome. We used a modified Libet clock while depicting a dynamic physical event (collision).
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