Quantifying Bite Forces for Solid Foods: Implications for Patients Postmandibular Reconstruction
ABSTRACT Background Bite forces required to masticate different food consistencies remain unknown, complicating dietary guidelines following mandibular reconstruction. This study quantifies the forces required for solid foods and estimates safe bite limits postreconstruction.
Jacob J. Clark +9 more
wiley +1 more source
Bone Evaluation with Micro Finite Element Analysis in Animal Models. [PDF]
Namiranian B +5 more
europepmc +1 more source
A flexible pressure sensor is developed based on a sponge‐like porous composite material with TEMs, which can switch between low and high compression modulus modes by driving the expansion of TEMs. It is capable of detecting physiological signals such as arterial pulse, respiratory status, touch force, and motion state, while also being combinable with
Shumin Niu +9 more
wiley +1 more source
Comunicazioni e relazioni : dalle isole del Capo Verde
Leonardo Fea
doaj +2 more sources
Energy absorption and damage prediction in natural fibre composites under low velocity impact using machine learning and FEA. [PDF]
Rekha N +7 more
europepmc +1 more source
FEA Analysis of Neck Sparing Versus Conventional Cementless Stem
Declan Brazil, H.S. Timothy McTighe
openalex +2 more sources
A plasmonic and intelligent sweat sensing patch for large‐scale health monitoring
We designed a miniaturized and intelligent sweat sensing patch that collects sweat through a microfluidic module and analyzes it using multimodal laser sensing and artificial intelligence‐assisted diagnosis. This patch enables rapid, large‐scale health monitoring and diagnosis by detecting multiple biomarkers in sweat, offering a noninvasive ...
Yuanchao Liu +13 more
wiley +1 more source
Revolutionizing spine surgery with emerging AI-FEA integration. [PDF]
Franceschini C +11 more
europepmc +1 more source
Investigation of cold formed steel angle compression through high throughput design FEA and machine learning [PDF]
Pradeep Thangavel +5 more
openalex +1 more source
Solder‐free room‐temperature multichannel integration for soft hybrid electronics
A room‐temperature direct interconnection (RTDI) technique enables solder‐free, stretchable bonding of multichannel soft–rigid interfaces via hydrogen bonding and molecular entanglement. It achieves 24.7× stronger mechanical bonding than conventional methods and maintains resistance variation within one order of magnitude at 110% strain.
Junchang Wang +13 more
wiley +1 more source

