Implementing implantable sensors which are robust enough to maintain long term functionality inside the body remains a significant challenge. The ideal implantable sensing system is one which is simple and robust; free from batteries, telemetry, and complex electronics. We have developed an elementary implantable sensor for orthopaedic smart implants. The sensor requires no telemetry and no batteries to communicate wirelessly. It has no on-board signal conditioning electronics. The sensor itself has no electrical connections and thus does not require a hermetic package. The sensor is an elementary L-C resonator which can function as a simple force transducer by using a solid dielectric material of known stiffness between two parallel Archimedean coils. The operating characteristics of the sensors are predicted using a simplified, lumped circuit model. We have demonstrated sensor functionality both in air and in saline. Our preliminary data indicate that the sensor can be reasonably well modeled as a lumped circuit to predict its response to loading.
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Eur J Orthop Surg Traumatol
December 2024
University of Washington Department of Orthopaedic Surgery and Sports Medicine, 1959 NE Pacific St, Seattle, WA, 98195, USA.
Purpose: To assess the rate of heterotopic ossification (HO) following acetabular surgery with a standardized protocol via the Kocher-Langenbeck. Secondarily, to evaluate patient characteristics, injury variables, and perioperative data among patients with HO and no HO.
Methods: This was a retrospective case series from an academic Level I trauma center.
J Am Acad Audiol
December 2024
Program in Audiology and Communication Sciences, Department of Otolaryngology, Washington University School of Medicine in St. Louis, St. Louis, Missouri.
Background: Clinicians are increasingly interested in self-reported hearing-specific quality of life (HQoL) for cochlear implant (CI) recipients, including pediatric CI recipients.
Purpose: (1) To compare HQoL of adolescent CI recipients to those of peers with typical hearing (TH); (2) to examine, longitudinally, HQoL for a set of CI recipients; and (3) to determine the effects of child, demographic, audiological, speech perception, and language variables on adolescent HQoL.
Research Design: Hearing Environments and Reflections on Quality of Life (HEARQL) questionnaires were completed by children with CIs at elementary (HEARQL-26) and adolescent (HEARQL-28) ages.
Epileptic Disord
December 2024
Department of Neurology, Duke Comprehensive Epilepsy Center, Durham, North Carolina, USA.
We present two unique cases of sleep-related hypermotor epilepsy (SHE) originating from the occipital lobe. Patients with sleep-related seizures and drug-resistant occipital lobe epilepsy were identified from the ANPHY lab stereo-electroencephalography (SEEG) research database at the Duke Comprehensive Epilepsy Center. We identified two young females with frequent sleep-related focal seizures and occasional focal to bilateral tonic clonic seizures characterized by hypermotor movements.
View Article and Find Full Text PDFMaterials (Basel)
August 2024
Division of Oral and Maxillofacial Surgery, School of Dentistry, Iwate Medical University, 19-1, Uchimaru, Morioka 020-8505, Japan.
Mandibular reconstruction for large bone defects is performed with consideration of patients' specific morphology and sufficient strength. Metal additive manufacturing techniques have been used to develop biomaterials for mandibular reconstruction. Titanium artificial mandibles with a lattice structure have been proposed, and the optimal conditions for their strength to withstand mechanical stress around the mandible have been reported.
View Article and Find Full Text PDFSmall
October 2024
Key Laboratory of Environmentally Friendly Chemistry and Applications of Ministry of Education, College of Chemistry, Xiangtan University, Xiangtan, 411105, P. R. China.
Developing high electroactivity ruthenium (Ru)-based electrocatalysts for pH-universal hydrogen evolution reaction (HER) is challenging due to the strong bonding strengths of key Ru─H/Ru─OH intermediates and sluggish water dissociation rates on active Ru sites. Herein, a semi-ionic F-modified N-doped porous carbon implanted with ruthenium nanoclusters (Ru/FNPC) is introduced by a hydrogel sealing-pyrolying-etching strategy toward highly efficient pH-universal hydrogen generation. Benefiting from the synergistic effects between Ru nanoclusters (Ru NCs) and hierarchically F, N-codoped porous carbon support, such synthesized catalyst displays exceptional HER reactivity and durability at all pH levels.
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