Elizabeth Tanner
@LizTanner99
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Wedge-augmented and angled BIO rTSA were compared in a retroverted glenoid using FE models. With 4 screws, both showed good initial fixation and low micromotion. Graft stiffness had limited effect, while using only 2 screws markedly worsened fixation. https://t.co/ApAAVNDzL0
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Fantastic to see Queen Maryβs pioneering work in in vitro models highlighted on the BBC. Find out more about this work, and what it aims to do: https://t.co/S7emm7O5fN
@hazelscreen @FrancesBalkwill @QMULSEMS
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Scotland is home to 8% of the UKβs engineering & tech workforce! With Modern Apprenticeships & SVQs available, nowβs the time to help students explore these careers. Learn more: https://t.co/hpGuKj8q52 If you shared your story for #TEWeek25, share it for #ScotCareersWeek25 too!
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This study assessed minipigs as a preclinical model for small bone replacement in the wrist. Scaled radial carpal bone implants were tested in vivo, showing close fit to surgeon-selected sizes and proving strong potential for testing wrist bone implants. https://t.co/lWaJHYQc88
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This study compared anterior, posterior, and circumferential fixation after cage placement to prevent subsidence in corpectomy. CF showed the lowest subsidence in low bone density, suggesting superior stability for osteoporotic patients. https://t.co/iAltr5jnDZ
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This study designs a lightweight Ti-6Al-4V cranial implant using CT data and lattice structures to reduce stress shielding. The isotruss design cut weight by 50% while maintaining strength, showing strong potential for durable, patient-specific implants. https://t.co/QQKsHnVpdR
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Additive manufacturing is transforming biomedical engineering and biosensors by enabling customizable implants, scaffolds, and diagnostic tools. This review highlights its materials, methods, and future potential to revolutionize biosensing and healthcare. https://t.co/ChDxOuiJFD
journals.sagepub.com
The domains of biomedical engineering and biosensors have been revolutionized by additive manufacturing, commonly referred to as 3D printing. This study delves ...
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This study compared fretting-corrosion at stem-cement and stem-head interfaces in stainless steel implants. Tests showed higher fretting current, ion, and particle release at the stem-cement interface, suggesting greater risk for adverse tissue reactions. https://t.co/fHAqNxOoIX
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ππHalloween Fun on Oct 31 & Nov 1ππ The house & gardens will be lit up at dusk. This is a family-friendly event π» fancy dress, pumpkin trail & craft tent. Hot food will be available & ππ are welcome. Tickets https://t.co/ashhZCwTTz
#Shropshire #Ludlow #Halloween2025
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πJoin us on December 10th, 11th & 12th for a Christmas tour of Stokesay Courtπ This is the last chance to visit the house in all its festive glory. A guided tour will be followed by refreshments. Tickets https://t.co/ashhZCwm41
#shropshire #ludlow
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This study explores PCL cog threads as a minimally invasive option for pelvic organ prolapse repair. After 180βdays in vitro, threads showed mild degradation yet retained strength through 100 cycles, indicating promise for durable POP treatment. https://t.co/C6vMrl7eEd
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β¦@QMULSciEngβ© β¦@QMULSEMSβ© demonstrating graphene (from pencil lead) as a conductor and the importance of its atomic structure β¦@newscientistβ© today.
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Seeing the β¦@RAEngNewsβ© Ingenious stand from β¦@MiddlesexUniβ© on rescue after flooding. If youβre at β¦@newscientistβ© Live come and see them. β¦@SMASHfestUKβ©
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Why is it important to understand the end user when designing medical technologies? Great advice shared by our panel at the Innovation Incoming event with @Organ_Ox, the 2025 #MacRobertAward winner and organ preservation pioneers. Watch the full event: https://t.co/PpKWetRnUF
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Triply Periodic Minimal Surface (TPMS) structure scaffolds mimic bone architecture for regeneration. CFD showed network types had better permeability and flow, while sheet types offered higher surface area for cell adhesionβguiding scaffold optimization. https://t.co/MyQve7xqQu
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A novel pressure-relief insole with auxetic structure and reverse graded-stiffness reduced heel stress in diabetic feet. FE and gait tests showed 38% lower stress, 20% lower pressure, and improved energy dissipation, offering promise for ulcer prevention. https://t.co/vvk690Lwtq
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This study presents an underactuated lower-limb exoskeleton for gait rehabilitation. Using a Stephenson III linkage and carbon fiber, the device achieved a lightweight design. LSTM-based deep learning predicted high time-dependent reliability over 200 runs https://t.co/u0DWRWbiFA
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This study introduces signal-based methods to evaluate walking stability in lower limb fracture patients. CoP analysis and frequency-domain modeling show reduced intralimb stability and increased interlimb dependency, especially in calcaneus fractures. https://t.co/CGhGNhaO1g
journals.sagepub.com
Lower limb fragility fractures included a break in bone from the pelvis to the foot. Weight-bearing and walking stability stand as key performance indicators to...
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We're thrilled to announce that Queen Mary's @ShareEastLondon's Collaborative has been shortlisted in the Knowledge Exchange UK Awards 2025 π Their initiative is a finalist in the Impact-led Initiative category. Find out more: https://t.co/9iVDfCNZJI
#KEAwards2025
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πππ¬π’π π§ π¨π π πππ§πππ¦ ππ§π€π₯π π«ππ‘πππ’π₯π’ππππ’π¨π§ π«π¨ππ¨π The authors use the AnyBody Modeling System for assessing the activation levels of muscles involved in the ankle movement during robotic-assisted training. π (PDF) https://t.co/D6AVSxJMjx
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