|
|
Review and Prospect of indications and materials for cranioplasty |
QIN JiaJun CHEN Xianzhen |
Department of Neurosurgery, the Tenth People's Hospital of Tongji University, Shanghai 200072, China |
|
|
Abstract Cranioplasty is a common surgical management in the department of neurosurgery, which is usually received in patients with skull defects for decompression craniectomy. However, the surgical indications and materials used for cranioplasty are still controversial. The surgical indications and the characteristics of the materials used in surgery can affect the postoperative outcome and the prognosis of the patients. This paper reviews the characteristics of the materials used currently, the indications and complications of cranioplasty. The future trends of cranioplasty materials are also prospected.
|
|
|
|
|
[1] Gooch MR,Gin GE,Kenning TJ,et al.Complications of cranioplasty following decompressive craniectomy:analysis of 62 cases [J]. Neurosurg Focus,2009,26(6):E9.
[2] 兰松,刘运生.不同材料修补颅骨缺损的疗效分析[J].中南大学学报:医学版,2004,29(3):351-352.
[3] Fu KJ,Barr RM,Kerr ML,et al. An Outcomes Comparison Between Autologous and Alloplastic Cranioplasty in the Pediatric Population [J]. J Craniofac Surg,2016,27(3):1.
[4] Cabraja M,Klein M,Lehmann TN. Long-term results following titanium cranioplasty of large skull defects [J]. Neurosurg Focus,2009,26(6):E10.
[5] Winkler PA,Stummer W,Linke R,et al. The influence of cranioplasty on postural blood flow regulation,cerebrovascular reserve capacity,and cerebral glucose metabolism [J]. J Neurosurg,2000,8(1):e9.
[6] Wen L,Yang XF, Lin WG,et al. Cranioplasty of large cranial defect at an early stage after decompressive craniectomy performed for severe head trauma [J]. J Craniofac Surg,2007,18(3):526.
[7] Mukherjee S,Thakur B,Haq I,et al. Complications of titanium cranioplasty——a retrospective analysis of 174 patients [J]. Acta Neurochir(Wien),2014,156(5):989-998.
[8] Jaberi J,Gambrell K,Tiwana P,et al. Long-term clinical outcome analysis of poly-methyl-methacrylate cranioplasty for large skull defects [J]. J Oral Maxillofac Surg,2013,71(2):81-88.
[9] Pietrzak WS,Eppley BL.Antibiotic elution from hydroxyapatite cement cranioplasty materials[J].J Craniofac Surg,2005,16(2):228-233.
[10] 张立杰.颅骨修补材料的临床应用及研究现状[J].中国组织工程研究,2008,12(10):1939-1942.
[11] Aydin S,Kucukyuruk B,Abuzayed B,et al. Cranioplasty:Review of materials and techniques [J]. J Neurosci Rural Pract,2011,2(2):162-167.
[12] Thesleff T, Lehtimäki K, Niskakanägas T, et al Cranioplasty with adipose-derived stem cells and biomaterial:a novel method for cranial reconstruction [J]. Neurosurgery,2011, 68(6):1535.
[13] Azmi A,Latiff AZ,Johari A. Methyl methacrylate cranioplasty [J]. Med J Malaysia,2004,59(3):418.
[14] Liu JK,Gottfried ON,Cole CD,et al. Porous polyethylene implant for cranioplasty and skull base reconstruction [J]. Neurosurg Focus,2004,16(3):ECP1.
[15] Li L,Skowronski M. Frozen Autograft Cranioplasty After Decompressive Craniectomy-Medical and Economical Benefits. Springer Japan,1993.
[16] Schwarz F,Dünisch P,Walter J,et al. Cranioplasty after decompressive craniectomy:is there a rationale for an initial artificial bone-substitute implant? A single-center experience after 631 procedures [J]. J Neurosurg,2016, 124(3):710.
[17] Lee CH,Chung YS,Lee SH,et al. Analysis of the factors influencing bone graft infection after cranioplasty [J]. J Trauma Acute Care Surg,2012,73(1):255-260.
[18] Plum AW,Tatum SA. A comparison between autograft alone,bone cement,and demineralized bone matrix in cranioplasty [J]. Laryngoscope,2015,125(6):1322-1327.
[19] Li Z,Gu X,Lou S,et al. The development of binary Mg-Ca alloys for use as biodegradable materials within bone [J]. Biomaterials,2008,29(10):1329-1344.
[20] Ma E,Xu J. Biodegradable Alloys:The glass window of opportunities [J]. Nat Mater,2009,8(11):855-857.
[21] Erbel R,Mario CD,Bartunek J,Bonnier J,et al. https//www. researchgate.net/publication/6291259_Temporary_scaffolding_of_coronary_arteries_with_bioabsorbable_magnesium_ stents_A_prospective_non-randomised_ multicentre_trial [J]. 1474-547 X,9576(1869):75-78.
[22] Windhagen H,Radtke K,Weizbauer A,et al. Biodegradable magnesium-based screw clinically equivalent to titanium screw in hallux valgus surgery:short term results of the first prospective,randomized,controlled clinical pilot study [J]. Biomed Eng OnLine,2013,12(1):62.
[23] Staiger MP,Pietak AM,Huadmai J,et al. Magnesium and its alloys as orthopedic biomaterials:A review [J]. Biomaterials,2006,27(9):1728-1734.
[24] Han HS,Kim YY,Kim YC,et al. Bone formation within the vicinity of biodegradable magnesium alloy implant in a rat femur model [J]. Met Mater Int,2012,18(2):243-247.
[25] Wong HM,Yeung KW,Lam KO,et al. A biodegradable polymer-based coating to control the performance of magnesium alloy orthopaedic implants[J].Biomaterials,2010,31(8):2084-2096.
[26] Med FW,Reifenrath J,Müller PP,et al. Cartilage repair on magnesium scaffolds used as a subchondral bone replacement[J].Materwiss Werksttech,2006,37(6):504-508.
[27] Witte F,Mantovani D.1st minimum consensus meeting on standardization in biodegradable metals:at the 4th Biometal Conference,Maratea,Italy August 28-September 1,2012 [J]. Acta Biomater,2013,9(10):8472-8473.
[28] Gu X,Zheng Y,Cheng Y,et al. In vitro corrosion and biocompatibility of binary magnesium alloys [J]. Biomaterials,2009,30(4):484.
[29] Peng Q,Huang Y,Zhou L,et al. Preparation and properties of high purity Mg-Y biomaterials [J]. Biomaterials,2010,31(3):398-403.
[30] Zhang E,Yang L,Xu J,et al. Microstructure,mechanical properties and bio-corrosion properties of Mg-Si(-Ca,Zn)alloy for biomedical application[J].Acta Biomater,2010, 6(5):1756-1762.
[31] Alvarezlopez M,Pereda MD,del Valle JA,et al. Corrosion behaviour of AZ31 magnesium alloy with different grain sizes in simulated biological fluids [J]. Acta Biomater,2010,6(5):1763.
[32] Hornberger H,Virtanen S,Boccaccini AR.Biomedical coatings on magnesium alloys-A review[J].Acta Biomater,2012,8(7):2442-2455.
[33] Onoki T,Yamamoto S,Onodera H,et al. New technique for bonding hydroxyapatite ceramics and magnesium alloy by hydrothermal hot-pressing method [J]. Mater Sci Eng C,2011,31(2):499-502.
[34] Chen M,Ou C,Lu W,et al. Effect of Ca and P Ion Concentrations on the Structural and Corrosion Properties of Biomimetic Ca-P Coatings on ZK60 Magnesium Alloy [J]. Int J Electrochem Sci,2013,8(7):9518-9530.
[35] Pérez-Anes A,Gargouri M,Laure W,et al. Bioinspired Titanium Drug Eluting Platforms Based on a Poly-β-cyclodextrin-Chitosan Layer-by-Layer Self-Assembly Targeting Infections [J]. ACS Appl Mater Interfaces,2015,7(23):12882.
[36] Tian P,Xu D,Liu X. Mussel-inspired functionalization of PEO/PCL composite coating on a biodegradable AZ31 magnesium alloy [J]. Colloid Surface B,2016, 141:327-337. |
|
|
|