Patient-Specific Lattice Cage Design for Cervical Spinal Fusion

Küçük Resim Yok

Tarih

2026

Dergi Başlığı

Dergi ISSN

Cilt Başlığı

Yayıncı

Turkish Neurosurgical Soc

Erişim Hakkı

info:eu-repo/semantics/closedAccess

Özet

AIM: To propose a patient-specific interbody cage with graded stiffness distributions analogous to the Young's modulus of the cervical spinal bone interface in order to improve mechanical compatibility, promote physiological load sharing, and enhance osseointegration. MATERIAL and METHODS: A synthetic database of spinal bone Young modulus values was used, incorporating anatomical regions (cervical, thoracic, lumbar) and patient-specific factors (age, bone density, health status). A parametric generative design approach allowed dynamic modification of lattice unit cell geometry to achieve target stiffness values (200-3000 MPa) while preserving structural integrity. RESULTS: Finite element endplate analysis demonstrated a 30%-50% reduction in stress shielding compared with conventional solid or homogeneous mesh lattices. Additively manufactured prototypes showed tunable stiffness-porosity trade-offs, achieving yield strength >= 150 MPa while supporting osseointegration. CONCLUSION: This study demonstrates improved load distribution and reduced risk of cage collapse compared with cadaveric spine data. Integrating computational design, biomechanical compatibility, and additive manufacturing may facilitate the development of patient-specific spinal implants with superior mechanical and biological performance.

Açıklama

Anahtar Kelimeler

Interbody cage implant, Young's modulus, Lattice generative design, Additive manufacturing, Finite element analysis

Kaynak

Turkish Neurosurgery

WoS Q Değeri

Q4

Scopus Q Değeri

Q3

Cilt

36

Sayı

1

Künye