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Laser induced breakdown spectroscopy for bone and cartilage differentiation - ex vivo study as a prospect for a laser surgery feedback mechanism

机译:用于骨骼和软骨分化的激光诱导击穿光谱-离体研究作为激光手术反馈机制的前景

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Laser surgery enables for very accurate, fast and clean modeling of tissue. The specific and controlled cutting and ablation of tissue, however, remains a central challenge in the field of clinical laser applications. The lack of information on what kind of tissue is being ablated at the bottom of the cut may lead to iatrogenic damage of structures that were meant to be preserved. One such example is the shaping or removal of diseased cartilaginous and bone tissue in the temporomandibular joint (TMJ). Diseases of the TMJ can induce deformation and perforation of the cartilaginous discus articularis, as well as alterations to the cartilaginous surface of the condyle or even the bone itself. This may result in restrictions of movement and pain. The aim of a surgical intervention ranges from specific ablation and shaping of diseased cartilage, bone or synovial tissues to extensive removal of TMJ structures. One approach to differentiate between these tissues is to use Laser Induced Breakdown Spectroscopy (LIBS). The ultimate goal is a LIBS guided feedback control system for surgical laser systems that enables real-time tissue identification for tissue specific ablation. In the presented study, the authors focused on the LIBS based differentiation between cartilage tissue and cortical bone tissue using an ex-vivo pig model.
机译:激光手术可以对组织进行非常准确,快速和干净的建模。然而,组织的特异性和受控切割和消融仍然是临床激光应用领域中的主要挑战。缺少关于在切口底部消融哪种组织的信息,可能会导致原本应保留的结构的医源性损害。一个这样的例子是在颞下颌关节(TMJ)中成形或去除患病的软骨和骨组织。 TMJ的疾病会引起关节软骨软骨变形和穿孔,以及con突软骨表面甚至骨骼本身的改变。这可能会限制运动和疼痛。外科手术的目的范围从特定的消融和病变软骨,骨或滑膜组织的成形到广泛去除TMJ结构。区分这些组织的一种方法是使用激光诱导击穿光谱法(LIBS)。最终目标是为手术激光系统提供LIBS引导的反馈控制系统,该系统能够针对组织特异性消融进行实时组织识别。在提出的研究中,作者集中于使用离体猪模型的基于LIBS的软骨组织和皮质骨组织之间的区分。

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