Orthodontic considerations for managing patients with functional movement disorders: a narrative review and clinical guide. [PDF]
Al-Jewair T +2 more
europepmc +1 more source
dynoGP: Deep Gaussian Processes for Dynamic System Identification
This work introduces a novel class of deep models for system identification, dynamical deep Gaussian processes, which combine the strengths of data‐driven methods, such as those based on neural network architectures, with the ability to output a probability distribution for uncertainty representation.
Alessio Benavoli +3 more
wiley +1 more source
Functional Movement Disorders and Deep Brain Stimulation: A Review. [PDF]
Boogers A, Fasano A.
europepmc +1 more source
Difficulties in Management of Functional Movement Disorders: Three Illustrative Cases. [PDF]
Nadler M, Cary I, Symeon C.
europepmc +1 more source
This study examines how helicoidal architectures with different porosities respond to bending. Adjusting layer angle and spacing in 3D‐printed polymers reveals clear tradeoffs between stiffness, strength, and energy absorption. Experiments and simulations highlight designs that distribute stress effectively, offering pathways for optimizing lightweight
Praveenkumar Subhash Patil +2 more
wiley +1 more source
'Hyperbinding' in functional movement disorders: role of supplementary motor area efferent signalling. [PDF]
Dutta A.
europepmc +1 more source
Entropy‐Driven Design of Low‐Melting‐Point Alloys via Compositionally Complex Strategy
Conventional low‐melting‐point alloys (LMPAs) are limited by a narrow compositional space and inherent property trade‐offs. This review presents an entropy‐driven design strategy that overcomes these limitations, ushering in a new class of low‐melting‐point compositionally complex alloys (LMCCAs).
Yinghui Shang +6 more
wiley +1 more source
Response to: 'Hyperbinding' in functional movement disorders: role of supplementary motor area efferent signalling. [PDF]
Pastötter B +12 more
europepmc +1 more source
Investigating the Low‐Temperature Phase Stability of the Binary Ta–W System
Atomistic simulations show that the binary Ta–W system forms ordered intermetallic phases, B2‐TaW and D03‐TaW3, as 0 K ground states. Configurational entropy, however, lowers the free energy of the disordered bcc solid solution, which becomes the stable phase above about 400 K.
Klemens Lechner +7 more
wiley +1 more source
Differential resting-state functional connectivity patterns in functional movement disorders: Evidence for gait-disorder-specific aberrations. [PDF]
Gless CA +14 more
europepmc +1 more source

