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Rapid prototyping technology for cranioplasty: A case series

机译:颅骨成形快速成型技术:案例系列

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摘要

Cranial vault defects may be acquired or congenital in origin. Rehabilitation of these patients often poses challenge to the operating team and prosthodontist. Polymethylmethacrylate is a commonly used alloplastic graft material which is used for the fabrication of cranial prosthesis. Nowadays, with the advancement in the bioengineering, custom-made template and cranial prosthesis can be made by rapid prototyping technology (RPT) by patient three-dimensional (3D) computed tomography (CT) scan images. This series of two cases explained two different techniques for the rehabilitation of the patient with frontotemporoparietal cranial defect. Case 1 had a history of cerebrovascular accident, followed by decompression craniotomy which led to frontotemporoparietal defect of the left side. This defect area was associated with the cerebrospinal fluid accumulation which made delineation of underlying bony margins difficult and interfered with conventional impression procedures. Case 2 had a road traffic accident which led to intracerebral hemorrhage followed by decompression craniotomy which resulted in frontotemporoparietal defect of the right side. The patient had a poor neuromuscular control which impedes with the upright posture of the head during impression making of the defect area. Therefore, these cases were planned to rehabilitate by RPT. In these techniques, the prosthesis was made using custom-made skull template produced by RPT, using the data of 3D-CT scan images. This technique resulted in the prosthesis with good esthetics and better fit of the prosthesis. The contours of the prosthesis were replicated in the same manner as compared to the contralateral side. RPT is an additive manufacturing technology which is now used in the field of dentistry too. This technique is easy to use; fabricate prosthesis with high precision is less time-consuming and has fewer chances of error.
机译:颅穹顶缺损可能是先天性或后天性的。这些患者的康复常常给手术团队和修复医生带来挑战。聚甲基丙烯酸甲酯是一种常用的同种异体移植材料,用于制造颅骨假体。如今,随着生物工程学的进步,可以通过患者3D(3D)计算机断层扫描(CT)扫描图像的快速原型技术(RPT)来制作定制模板和颅骨假体。这一系列的两例解释了两种不同的技术用于额颞顶颅颅缺损患者的康复。病例1有脑血管意外的病史,随后进行减压颅骨切开术,导致左侧额颞颞顶缺损。该缺损区域与脑脊液积聚有关,这使得难以划定下面的骨切缘并干扰了传统的压印程序。病例2发生道路交通事故,导致脑出血,随后进行减压颅骨切开术,从而导致右侧额颞顶叶缺损。该患者的神经肌肉控制不佳,妨碍了在缺陷区域的印模过程中头部的直立姿势。因此,RPT计划将这些案件恢复原状。在这些技术中,使用3D-CT扫描图像的数据,使用RPT生产的定制头骨模板制作假体。该技术使假体具有良好的美学效果并更好地适合于假体。与对侧相比,假体的轮廓以相同的方式复制。 RPT是一种增材制造技术,现在也用于牙科领域。这种技术易于使用。高精度地制造假体耗时少,出错的机会也少。

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