Alfayez Eman
Department of Oral Biology, King Abdulaziz University, Jeddah, Saudi Arabia.
Med Sci Monit. 2025 Mar 28;31:e947152. doi: 10.12659/MSM.947152.
This review examines the latest advancements in maxillofacial reconstruction, focusing on transformative innovations in dentistry. Traditional surgical techniques, although effective, are accompanied by challenges such as inherent risks, complications, and inconsistent outcomes that can be influenced by variations in surgeon skill. To address these drawbacks, cutting-edge technologies have emerged, emphasizing enhanced precision, safety, and efficiency in treatment modalities. Key innovations in this field include 3-dimensional printing (additive manufacturing), virtual surgical planning, computer-aided design/computer-aided manufacturing (CAD/CAM) technology, and tissue engineering. These advancements not only revolutionize diagnostics but also streamline workflow processes, offering sustainable, timely treatments while improving therapeutic results and aesthetic outcomes. The integration of CAD/CAM technology enhances workflow efficiency by simplifying complex processes in dental prosthetic design. Simultaneously, additive manufacturing facilitates the creation of intricate dental implants with superior accuracy. Virtual surgical planning provides clinicians with valuable preoperative insights, enabling tailored surgical interventions, while tissue engineering presents regenerative solutions to complex reconstructive challenges. Despite these technological breakthroughs, the adoption of these innovations requires significant initial investments and extensive training for healthcare professionals. While logistical and financial obstacles can arise, the long-term benefits, such as enhanced patient care and superior aesthetic results, are considerable. In conclusion, this article aims to evaluate the transformative impact of digital and additive manufacturing technologies on maxillofacial reconstruction and to underscore their crucial role in advancing modern dentistry.
本综述探讨了颌面重建的最新进展,重点关注牙科领域的变革性创新。传统手术技术虽然有效,但伴随着一些挑战,如固有风险、并发症以及可能受外科医生技术差异影响的不一致结果。为解决这些缺点,已出现了前沿技术,强调在治疗方式上提高精准度、安全性和效率。该领域的关键创新包括三维打印(增材制造)、虚拟手术规划、计算机辅助设计/计算机辅助制造(CAD/CAM)技术以及组织工程。这些进展不仅彻底改变了诊断方式,还简化了工作流程,在改善治疗效果和美学成果的同时,提供可持续、及时的治疗。CAD/CAM技术的整合通过简化假牙设计中的复杂流程提高了工作流程效率。同时,增材制造有助于制造出精度更高的复杂牙种植体。虚拟手术规划为临床医生提供了有价值的术前见解,使他们能够进行量身定制的手术干预,而组织工程则为复杂的重建挑战提供了再生解决方案。尽管有这些技术突破,但采用这些创新需要医疗专业人员进行大量的初始投资和广泛的培训。虽然可能会出现后勤和财务障碍,但长期利益,如改善患者护理和获得更好的美学效果,是相当可观的。总之,本文旨在评估数字和增材制造技术对颌面重建的变革性影响,并强调它们在推动现代牙科发展中的关键作用。