BMC Musculoskelet Disord
November 2024
Background: Foot and ankle arthrodesis procedures are frequently performed in concert with the utilization of bone grafts. However, the availability of autologous bone is often limited, inaccessible, or not suitable, thus there is a need for bone graft substitutes with equally effective clinical outcomes. A next generation integrative bone matrix (IBM) has been developed that has intrinsic osteogenic, osteoconductive, and osteoinductive characteristics, and is a promising solution to mitigate complications such as nonunion and reduce the need for autologous bone graft harvest.
View Article and Find Full Text PDFBackground: Total ankle arthroplasty (TAA) has become increasingly popular in the treatment for end-stage ankle arthritis in recent decades. However, there is limited evidence regarding the long-term clinical outcomes and complication rates of modern TAA implants.
Methods: This study presents a follow-up on a previous cohort involving 78 patients (81 ankles) who underwent Salto Talaris fixed-bearing TAA to treat end-stage arthritis, with a mean postoperative follow-up of 5.
Appl Radiat Isot
July 2023
A 100-nm-thick gadolinium layer deposited on a pixelated silicon sensor was activated in a neutron field to measure the internal conversion electron (ICE) spectrum generated by neutron capture products of Gd and Gd. The experiment was performed at the ISIS neutron and muon facility, using a bespoke version of the HEXITEC spectroscopic imaging camera. Signals originating from internal conversion electrons, Auger electrons, x rays and gamma rays up to 150 keV were identified.
View Article and Find Full Text PDFTumor cells have evolved to express immunosuppressive molecules allowing their evasion from the host's immune system. These molecules include programmed death ligands 1 and 2 (PD-L1 and PD-L2). Cancer cells can also produce acetylcholine (ACh), which plays a role in tumor development.
View Article and Find Full Text PDFWe report on a novel, noninvasive method applying Thomson scattering to measure the evolution of the electron beam energy inside a laser-plasma accelerator with high spatial resolution. The determination of the local electron energy enabled the in-situ detection of the acting acceleration fields without altering the final beam state. In this Letter we demonstrate that the accelerating fields evolve from (265±119) GV/m to (9±4) GV/m in a plasma density ramp.
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