非手术牙髓疗法和利用巴斯克假说的微创疗法治疗根管囊肿感染:罕见病例报告。

IF 35 1区 物理与天体物理 Q1 PHYSICS, CONDENSED MATTER Advances in Physics Pub Date : 2016-10-01 DOI:10.4103/0976-237X.194098
Sanjeev Kumar Salaria, Shilpa Kamra, Simrat Kaur Ghuman, Garima Sharma
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引用次数: 0

摘要

根管囊肿(RC)是影响颌骨的最常见的牙源性炎性囊肿,累及龋齿或外伤性非重要牙齿的根部。针对此类病变的治疗,人们提出了不同的治疗方法,如非手术牙髓治疗或带有原封闭、减压等功能的外科根管治疗。本病例是一名 28 岁的健康男性患者,他报告说 41 号牙、31 号牙和 31 号牙出现疼痛和肿胀。根据临床、放射学和细针穿刺细胞学检查,确诊为罕见部位的感染性 RC。考虑到临床特征、起源、延伸、囊性病变的大小和患者的合作情况,采用了巴斯克假说的非手术牙髓疗法。术后一年的结果表明,非手术牙髓治疗和利用巴斯克假说的微创治疗是将感染性根尖囊肿病变转化为健康根尖周牙周组织的有效工具。
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Nonsurgical endodontic therapy along with minimal invasive treatment utilizing Bhasker's hypothesis for the management of infected radicular cystic lesion: A rare case report.

Radicular cyst (RC) is the most common odontogenic cyst of inflammatory origin affecting the jaws; involves the roots of the carious or traumatic non-vital tooth. Different therapeutic modalities, such as nonsurgical endodontic therapy or surgical enucleation with primary closure, decompression etc., were proposed for the management of such lesions. Presenting a case of a 28-year-old otherwise healthy male patient who reported with pain and swelling with respect to tooth #41, 31. Diagnosis of infected RC at a rare location was established on the basis of clinical, radiographical and fine needle aspiration cytological examination. Looking after the clinical characteristics, origin, extension, size of cystic lesion and patient cooperation; nonsurgical endodontic therapy utilizing Bhasker's hypothesis was opted. One year post-operative result suggested that nonsurgical endodontic therapy along with minimally invasive treatment utilizing Bhasker's hypothesis is an effective tool to transform infected radicular cystic lesion to healthy periapical periodontal tissue.

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来源期刊
Advances in Physics
Advances in Physics 物理-物理:凝聚态物理
CiteScore
67.60
自引率
0.00%
发文量
1
期刊介绍: Advances in Physics publishes authoritative critical reviews by experts on topics of interest and importance to condensed matter physicists. It is intended for motivated readers with a basic knowledge of the journal’s field and aims to draw out the salient points of a reviewed subject from the perspective of the author. The journal''s scope includes condensed matter physics and statistical mechanics: broadly defined to include the overlap with quantum information, cold atoms, soft matter physics and biophysics. Readership: Physicists, materials scientists and physical chemists in universities, industry and research institutes.
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