Utilizing Multiple BioMEMS Sensors to Monitor Orthopaedic Strain and Predict Bone Fracture Healing.
Jakob G WolynskiConor J SutherlandHilmi Volkan DemirEmre UnalAkbar AlipourChristian M PuttlitzKirk C McGilvrayPublished in: Journal of orthopaedic research : official publication of the Orthopaedic Research Society (2019)
Current diagnostic modalities, such as radiographs or computed tomography, exhibit limited ability to predict the outcome of bone fracture healing. Failed fracture healing after orthopaedic surgical treatments are typically treated by secondary surgery; however, the negative correlation of time between primary and secondary surgeries with resultant health outcome and medical cost accumulation drives the need for improved diagnostic tools. This study describes the simultaneous use of multiple (n = 5) implantable flexible substrate wireless microelectromechanical (fsBioMEMS) sensors adhered to an intramedullary nail (IMN) to quantify the biomechanical environment along the length of fracture fixation hardware during simulated healing in ex vivo ovine tibiae. This study further describes the development of an antenna array for interrogation of five fsBioMEMS sensors simultaneously, and quantifies the ability of these sensors to transmit signal through overlaying soft tissues. The ex vivo data indicated significant differences associated with sensor location on the IMN (p < 0.01) and fracture state (p < 0.01). These data indicate that the fsBioMEMS sensor can serve as a tool to diagnose the current state of fracture healing, and further supports the use of the fsBioMEMS as a means to predict fracture healing due to the known existence of latency between changes in fracture site material properties and radiographic changes. © 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 37:1873-1880, 2019.
Keyphrases
- hip fracture
- computed tomography
- minimally invasive
- healthcare
- low cost
- gene expression
- magnetic resonance
- magnetic resonance imaging
- high resolution
- systematic review
- risk assessment
- deep learning
- percutaneous coronary intervention
- atrial fibrillation
- positron emission tomography
- amino acid
- high throughput
- pet ct
- human health
- structural basis