Grote J J
ENT Department, University Hospital, Leiden, The Netherlands.
Am J Otol. 1987 Sep;8(5):396-401.
To achieve a lasting result in reconstruction of the ossicular chain, strict material and surgical criteria must be combined. The best biomaterial, apart from bone, is hydroxyapatite, the mineral matrix of living bone tissue. For the reconstruction, the assembly technique is used instead of a columella. Direct contact with the drum membrane is not reliable if a columella is used, and extrusion or lateralization may influence postoperative results. In the case of a missing incus, an assembly prosthesis of dense hydroxyapatite is placed on top of the stapes head and the handle of the malleus, in a pocket between drum membrane and the neck of the malleus. Long postoperative follow-up of 120 patients showed an air-bone gap closure within 20 dB for 83.3% of the patients, no extrusion was observed, and the hearing gain stayed constant. Reconstruction of a tympanic membrane perforation and posterior canal wall was performed in the same stage in sixty patients. In the case of a missing incus and stapes superstructure, an incus/stapes prosthesis of dense hydroxyapatite, as assembly between footplate and handle of the malleus, was used. Long postoperative follow-up of twenty-five patients showed an air-bone gap closure within 20 dB for 68% of the patients. Reconstruction of a tympanic membrane perforation and posterior canal wall was performed in sixteen patients. No extrusion was observed and the hearing gain stayed constant. Hydroxyapatite prostheses have proven to be a good alternative for autologous and homologous ossicles.
为了在听骨链重建中取得持久的效果,必须结合严格的材料和手术标准。除了骨之外,最好的生物材料是羟基磷灰石,即活骨组织的矿物质基质。在重建过程中,采用组装技术而非柱状体。如果使用柱状体,与鼓膜的直接接触不可靠,并且柱状体的挤出或侧向移位可能会影响术后效果。在砧骨缺失的情况下,将致密羟基磷灰石组装假体放置在镫骨头和锤骨柄的顶部,位于鼓膜与锤骨颈部之间的袋内。对120例患者进行的长期术后随访显示,83.3%的患者气骨导差缩小至20 dB以内,未观察到假体挤出,听力增益保持稳定。在60例患者中,鼓膜穿孔和外耳道后壁重建在同一阶段进行。在砧骨和镫骨上部结构缺失的情况下,使用致密羟基磷灰石砧骨/镫骨假体,作为镫骨足板与锤骨柄之间的组件。对25例患者进行的长期术后随访显示,68%的患者气骨导差缩小至20 dB以内。对16例患者进行了鼓膜穿孔和外耳道后壁重建。未观察到假体挤出,听力增益保持稳定。羟基磷灰石假体已被证明是自体和同种异体听小骨的良好替代品。