|
[1]
|
|
KOPER D, TER LAAK-POORT M, LETHAUS B, et al. Cranioplasty with patient-specific
|
|
implants in repeatedly reconstructed cases [J]. Journal of Cranio- Maxillo-Facial
|
|
Surgery, 2019, 47(5): 709-714.
|
|
[2]
|
|
FRASSANITO P, MASSIMI L, TAMBURRINI G, et al. Custom-made hydroxyapatite for
|
|
cranial repair in a specific pediatric age group (7—13 years old): A
|
|
multicenter post-marketing surveillance study [J]. Child’s Nervous System,
|
20 |
18, 34(11): 2283-2289.
|
|
[3]
|
|
DODIER P, WINTER F, AUZINGER T, et al. Singlestage bone resection and
|
|
cranioplastic reconstruction: Comparison of a novel software-derived PEEK
|
|
workflow with the standard reconstructive method [J]. International Journal of
|
|
Oral and Maxillofacial Surgery, 2020, 49(8): 1007-1015.
|
[4] |
JAIN
|
|
A, MARRACHE M, HARRIS A, et al. Structural allograft versus PEEK implants in
|
|
anterior cervical discectomy and fusion: A systematic review [J]. Global Spine
|
|
Journal, 2020, 10(6): 775-783.
|
|
[5]
|
|
SAPONARO G, DONEDDU P, GASPARINI G, et al. Custom made onlay implants in peek
|
|
in maxillofacial surgery: A volumetric study [J]. Child’s Nervous System, 2020,
|
36 |
(2): 385-391.
|
[6] |
EL
|
|
MORSY O A, BARAKAT A, MEKHEMER S, et al. Assessment of 3-dimensional bone
|
|
augmentation of severely atrophied maxillary alveolar ridges using patient-specific
|
|
poly ether-ether ketone (PEEK) sheets [J]. Clinical Implant Dentistry and
|
|
Related Research, 2020, 22(2): 148-155.
|
|
[7]
|
|
EUFINGER H, WEHM¨OLLER M, MACHTENS E, et al. Reconstruction of craniofacial
|
|
bone defects with individual alloplastic implants based on CAD/CAMmanipulated CT-data
|
[J] |
Journal of Cranio-Maxillo- Facial Surgery, 1995, 23(3): 175-181.
|
|
[8]
|
|
ZHANG J B, TIAN W Q, CHEN J Y, et al. The application of polyetheretherketone
|
|
(PEEK) implants in cranioplasty [J]. Brain Research Bulletin, 2019, 153: 143-149.
|
|
[9]
|
|
WILLIAMS D F, MCNAMARA A, TURNER R M. Potential of polyetheretherketone (PEEK)
|
|
and carbonfibre- reinforced PEEK in medical applications [J]. Journal of
|
|
Materials Science Letters, 1987, 6(2): 188- 190.
|
|
[10]
|
|
CHANG B N, LI X M, PARANDOUSH P, et al. Additive manufacturing of continuous
|
|
carbon fiber reinforced poly-ether-ether-ketone with ultrahigh mechanical properties
|
|
Polymer Testing, 2020, 88: 106563.
|
|
[11]
|
|
ZHAO Y C, ZHAO K, LI Y C, et al. Mechanical characterization of biocompatible
|
|
PEEK by FDM [J]. Journal of Manufacturing Processes, 2020, 56: 28-42.
|
|
[12]
|
|
SHARMA N, AGHLMANDI S, CAO S S, et al. Quality characteristics and clinical
|
|
relevance of in-house 3D-printed customized polyetheretherketone (PEEK) implants
|
|
for craniofacial reconstruction [J]. Journal of Clinical Medicine, 2020, 9(9):
|
|
2818.
|
|
[13]
|
|
J¨ARVINEN S, SUOJANEN J, KORMI E, et al. The use of patient specific
|
|
polyetheretherketone implants for reconstruction of maxillofacial deformities [J].
|
|
Journal of Cranio-Maxillo-Facial Surgery, 2019, 47(7): 1072-1076.
|
|
[14]
|
|
GONG X, HE Y, AN J G, et al. Application of a computer-assisted navigation
|
|
system (CANS) in the delayed treatment of zygomatic fractures: A randomized controlled
|
|
trial [J]. Journal of Oral and Maxillofacial Surgery, 2017, 75(7): 1450-1463.
|
|
[15]
|
|
BAUMANN A, SINKO K, DORNER G. Late reconstruction of the orbit with
|
|
patient-specific implants using computer-aided planning and navigation [J].
|
|
Journal of Oral and Maxillofacial Surgery, 2015, 73(12): S101-S106.
|
[16] |
DAS
|
|
A, CHATHAM C A, FALLON J J, et al. Current understanding and challenges in high
|
|
temperature additive manufacturing of engineering thermoplastic polymers [J].
|
|
Additive Manufacturing, 2020, 34: 101218.
|
[17] |
LIN
|
|
L L, ZHOU J Y. Application status of 3D printed polyetheretherketone and its
|
|
composite in bone defect repair [J]. Chinese Journal of Tissue Engineering
|
|
Research, 2020, 24(10): 1622-1628 (in Chinese).
|
[18] |
LI
|
|
D C, YANG C C, KANG J F, et al. Precision design and control-performance
|
|
manufacturing research of large-size individualized PEEK implants [J]. Journal of
|
|
Mechanical Engineering, 2018, 54(23): 121-125 (in Chinese).
|
|
[19]
|
|
WASER-ALTHAUS J, SALAMON A, WASER M, et al. Differentiation of human
|
|
mesenchymal stem cells on plasma-treated polyetheretherketone [J]. Journal of Materials
|
|
Science: Materials in Medicine, 2014, 25(2): 515-525.
|
[20] |
LU
|
|
T, LIU X Y, QIAN S, et al. Multilevel surface engineering of nanostructured
|
|
TiO2 on carbonfiber- reinforced polyetheretherketone [J]. Biomaterials, 2014,
|
35 |
(22): 5731-5740. [21] WAN T, LI L L, GUO M et al. Immobilization via
|
|
polydopamine of dual growth factors on polyetheretherketone: Improvement of
|
|
cell adhesion, proliferation, and osteo-differentiation [J]. Journal of Materials
|
|
Science, 2019, 54(16): 11179-11196.
|
[22] |
LEE
|
|
J H, JANG H L, LEE K M, et al. In vitro and in vivo evaluation of the
|
|
bioactivity of hydroxyapatitecoated polyetheretherketone biocomposites created
|
|
by cold spray technology [J]. Acta Biomaterialia, 2013, 9(4): 6177-6187.
|
[23] |
FAN X X, REN H H, LUO X M, et al.
|
|
Mechanics, degradability, bioactivity, in vitro, and in vivo biocompatibility
|
|
evaluation of poly(amino acid)/hydroxyapatite/calcium sulfate composite for potential
|
|
load-bearing bone repair [J]. Journal of Biomaterials Applications, 2016,
|
30 |
(8): 1261-1272.
|