山东大学学报 (医学版) ›› 2026, Vol. 64 ›› Issue (2): 96-103.doi: 10.6040/j.issn.1671-7554.0.2025.1242
• 临床医学 • 上一篇
齐硕1,刘可宇2,徐展望3,谭国庆3,张强4,5
QI Shuo1, LIU Keyu2, XU Zhanwang3, TAN Guoqing3, ZHANG Qiang4,5
摘要: 目的 探讨C臂引导下改良经皮椎间孔穿刺活检联合宏基因组二代测序(metagenomics next-generation sequencing, mNGS)技术在腰椎间盘感染早期诊断中的应用价值。 方法 回顾性分析山东大学附属公共卫生临床中心骨外二科(骨感染)2020年10月至2023年11月疑似腰椎间盘感染患者179例的临床资料。所有患者均在C臂引导下进行穿刺,其中采用传统经皮椎体后凸成形术穿刺系统90例(传统组),采用改良经皮椎间孔穿刺活检系统89例(改良组)。所有患者均行需氧菌、厌氧菌、抗酸菌、真菌培养,常规药敏试验,mNGS及组织病理学检查。比较两组的穿刺组织敏感度、手术时间、透视次数及即时并发症发生率。 结果 两组在性别、年龄、体质量指数、合并高血压及糖尿病比例,以及术前C反应蛋白和血沉等基线临床特征方面差异均无统计学意义(P>0.05),具有良好可比性;但手术节段分布存在显著差异(P=0.027)。在主要效性指标上,两组阳性穿刺组织敏感度差异均无统计学意义(P>0.05),提示改良活检术在病原检出效能方面与传统术式相当。安全性分析显示,两组并发症发生率和手术时间差异均无统计学意义(P>0.05);在操作特征方面,改良组透视次数[(8.04±0.94)次]略高于传统组[(7.53±0.75)次](P<0.001)。提示改良活检术在早期病原学诊断效能方面可达到与传统术式相当的水平。 结论 改良经皮椎间孔穿刺活检联合mNGS技术是一种微创、高安全性和高获取率的诊断早期椎间盘感染的方法,为临床提供了一种稳健、可靠的诊断优化路径,具有显著的临床应用价值。其有效性通过大样本量和长期随访的研究进一步验证。
中图分类号:
| [1] Lener S, Hartmann S, Barbagallo GMV, et al. Management of spinal infection: a review of the literature[J]. Acta Neurochir, 2018, 160(3): 487-496. [2] 徐正源, 朱磊, 史航, 等. 脊柱化脓性感染的诊疗进展[J]. 东南大学学报(医学版), 2023, 42(3): 487-491. XU Zhengyuan, ZHU Lei, SHI Hang, et al. Progress in diagnosis and treatment of spinal purulent infection[J]. Journal of Southeast University(Medical Science Edition), 2023, 42(3): 487-491. [3] Marruzzo D, Mancini F, Ricciuti V, et al. Modified percutaneous biopsy of the spine: improvement of the technique[J]. Eur Spine J, 2023, 32(1): 221-227. [4] 王润生, 黄承军, 唐成. 脊柱感染继发腰大肌脓肿的诊断及微创治疗研究进展[J]. 中国脊柱脊髓杂志, 2024, 34(2): 206-210. WANG Runsheng, HUANG Chengjun, TANG Cheng. Study progress of diagnosis amd minimally invasive treatment of psoas abscess secondary to spinal infection[J]. Chinese Journal of Spine and Spinal Cord, 2024, 34(2): 206-210. [5] 陈浩月, 王晓玉, 于润原, 等. 非特异性腰痛的研究进展[J]. 中国医学创新, 2024, 21(7): 169-173. CHEN Haoyue, WANG Xiaoyu, YU Runyuan, et al. Research progress of non-specific low back pain[J]. Medical Innovation of China, 2024, 21(7): 169-173. [6] Buranapanitkit B, Lim A, Geater A. Misdiagnosis in vertebral osteomyelitis: problems and factors[J]. J Med Assoc Thai, 2001, 84(12): 1743-1750. [7] Colmenero JD, Jiménez-Mejías ME, Reguera JM, et al. Tuberculous vertebral osteomyelitis in the new millen-nium: still a diagnostic and therapeutic challenge[J]. Eur J Clin Microbiol Infect Dis, 2004, 23(6): 477-483. [8] 罗伟刚, 尹园园, 任慧玲. 原发性脊柱感染的分析和治疗[J]. 临床荟萃, 2022, 37(6): 525-529. LUO Weigang, YIN Yuanyuan, REN Huiling. Analysis and treatment of primary spinal infection[J]. Clinical Focus, 2022, 37(6): 525-529. [9] Schömig F, Li Z, Becker L, et al. Gas within the intervertebral disc does not rule out spinal infection: a case series of 135 patients with spontaneous spondylodiscitis[J]. Diagnostics, 2022, 12(5): 1089. [10] 孙洋, 曾雪伟. MRI椎旁软组织强化方式在脊柱感染中的鉴别意义[J]. 影像研究与医学应用, 2023, 7(1): 167-169. SUN Yang, ZENG Xuewei. Differential significance of MRI paravertebral soft tissue enhancement in spinal infection[J]. Journal of Imaging Research and Medical Applications, 2023, 7(1): 167-169. [11] 李昶荣, 叶桥钦, 文康彦. CT影像联合血清C反应蛋白检测对术后器械性脊柱感染的诊断价值[J]. 广东医科大学学报, 2021, 39(3): 352-356. LI Changrong, YE Qiaoqin, WEN Kangyan. Clinical value of CT image combined with serum C-reactive protein detection in the diagnosis of post-operative instrumented spine infection[J]. Journal of Guangdong Medical College, 2021, 39(3): 352-356. [12] Digby JM, Kersley JB. Pyogenic non-tuberculous spinal infection: an analysis of thirty cases[J]. J Bone Joint Surg Br, 1979, 61(1): 47-55. [13] 王韬, 吴佳宏, 马朋朋, 等. 非特异性脊柱感染误诊分析并文献复习[J]. 临床误诊误治, 2023, 36(2): 15-18. WANG Tao, WU Jiahong, MA Pengpeng, et al. Mis-diagnosis analysis of non-specific spinal infection and literature review[J]. Clinical Misdiagnosis & Mistherapy, 2023, 36(2): 15-18. [14] Dunbar JAT, Sandoe JAT, Rao AS, et al. The MRI appearances of early vertebral osteomyelitis and discitis[J]. Clin Radiol, 2010, 65(12): 974-981. [15] 徐仲阳, 吕超亮, 卢公标, 等. 脊柱真菌感染研究进展[J/OL]. 中华实验和临床感染病杂志(电子版), 2021, 15(1): 11-14. XU Zhongyang, LYU Chaoliang, LU Gongbiao, et al. Progress on fungal vertebral osteomyelitis[J/OL]. Chinese Journal of Experimental and Clinical Infectious Diseases(Electronic Edition), 2021, 15(1): 11-14. [16] Love C, Patel M, Lonner BS, et al. Diagnosing spinal osteomyelitis: a comparison of bone and Ga-67 scintigraphy and magnetic resonance imaging[J]. Clin Nucl Med, 2000, 25(12): 963-977. [17] Ohtori S, Suzuki M, Koshi T, et al. 18F-fluorodeoxyglucose-PET for patients with suspected spondylitis showing modic change[J]. Spine, 2010, 35(26): 1599-1603. [18] Ball RP. Needle(aspiration)biopsy[J]. J Am Med Assoc, 1936, 107(17): 1381. doi:10.1001/jama.1936.927704300040106 [19] Saththianathan M, Mallinson PI, Munk PL, et al. Percutaneous spine biopsy: reaching those hard-to-reach places[J]. Skeletal Radiol, 2023, 52(10): 1803-1814. [20] Tehranzadeh J, Tao C, Browning CA. Percutaneous needle biopsy of the spine[J]. Acta Radiol, 2007, 48(8): 860-868. [21] Liang Y, Liu P, Jiang LB, et al. Value of CT-guided core needle biopsy in diagnosing spinal lesions: a comparison study[J]. Orthop Surg, 2019, 11(1): 60-65. [22] 齐典文, 赵茗, 马天晓, 等. CT引导下经皮粗针穿刺活检对上中胸椎病变的诊断价值[J]. 实用骨科杂志, 2021, 27(2): 157-161. QI Dianwen, ZHAO Ming, MA Tianxiao, et al. Diagnostic value of CT-guided percutaneous coarse needle biopsy in upper and middle thoracic spine lesions[J]. Journal of Practical Orthopaedics, 2021, 27(2): 157-161. [23] Murphy WA, Destouet JM, Gilula LA. Percutaneous skeletal biopsy 1981: a procedure for radiologists: results, review, and recommendations[J]. Radiology, 1981, 139(3): 545-549. [24] Appel NB, Gilula LA. “Bulls-eye” modification for transpedicular biopsy and vertebroplasty[J]. Am J Roentgenol, 2001, 177(6): 1387-1389. [25] Saththianathan M, Mallinson PI, Munk PL, et al. Percutaneous spine biopsy: reaching those hard-to-reach places[J]. Skeletal Radiol, 2023, 52(10): 1803-1814. [26] Hadjipavlou AG, Kontakis GM, Gaitanis JN, et al. Effectiveness and pitfalls of percutaneous transpedicle biopsy of the spine[J]. Clin Orthop Relat Res, 2003, 411: 54-60. doi:10.1097/01.blo.0000068184.83581.86 [27] Nourbakhsh A, Hanson ZC. Percutaneous spine biopsy: a review of the current literature[J]. J Am Acad Orthop Surg, 2021, 29(14): 681-692. [28] Yaffe D, Greenberg G, Leitner J, et al. CT-guided percutaneous biopsy of thoracic and lumbar spine: a new coaxial technique[J]. AJNR Am J Neuroradiol, 2003, 24(10): 2111-2113. [29] Yin C, Cong Y, Wang H, et al. Pathogenic detection by metagenomic next-generation sequencing in spinal infections[J]. Spine, 2025, 50(4): 70-75. [30] 赵赓, 买若鹏, 赵景才, 等. 中国人适应性腰椎微创通道: 基于CT影像学测量下的解剖数据分析[J]. 山东大学学报(医学版), 2023, 61(3): 90-96. ZHAO Geng, MAI Ruopeng, ZHAO Jingcai, et al. Minimally invasive channel of the lumbar spine surgery for Chinese: anatomical data based on CT imaging mea-surements[J]. Journal of Shandong University(Health Sciences), 2023, 61(3): 90-96. [31] Marruzzo D, Mancini F, Ricciuti V, et al. Modified percutaneous biopsy of the spine: improvement of the technique[J]. Eur Spine J, 2023, 32(1): 221-227. [32] Basu S, Gala RB, Solanki AM. Percutaneous wide bore needle biopsy for spinal lesions using the kyphoplasty cannula: a technical note[J]. Eur Spine J, 2021, 30(10): 2852-2856. [33] Muscogliati R, Akil H, AlAchkar M, et al. The biopsy dilemma in spinal infections: timing of antibiotics and diagnostic yield[J]. Eur Spine J, 2025: 1-14. doi:10.1007/s00586-025-09662-7 |
| [1] | 赵立星 宋代辉 魏魁杰 殷恺. 颞下颌关节骨关节病动物模型的建立[J]. 山东大学学报(医学版), 2209, 47(6): 25-27. |
| [2] | 张小艳 李刚 王令平. 不同剂量舒芬太尼对脊柱手术患者全麻诱导期血流动力学及血浆皮质醇的影响[J]. 山东大学学报(医学版), 2209, 47(6): 76-79. |
| [3] | 李鑫源,张心之,狄德润,原所茂,刘新宇,王连雷. Cobb角负重位三维自动成像与X线平片的对比分析[J]. 山东大学学报 (医学版), 2026, 64(2): 89-95. |
| [4] | 中国医师协会骨科医师分会智能骨科学组,中华预防医学会脊柱疾病预防与控制专业委员会脊柱脊髓损伤疾病预防与控制学组. 人工智能脊柱退变影像学测量位点与标注专家共识(2025)[J]. 山东大学学报 (医学版), 2026, 64(2): 1-10. |
| [5] | 代广鑫,王辉,王连雷,刘新宇,张梦华,黄伟杰. 基于多模态融合的脊柱图像分割方法[J]. 山东大学学报 (医学版), 2026, 64(2): 66-77. |
| [6] | 罗淇,王霞,姜孟. 脑功能网络分析在失语症诊疗中的应用:病理机制分析、临床诊断与疗效评价[J]. 山东大学学报 (医学版), 2025, 63(8): 111-126. |
| [7] | 吴霖,石晨曦,童星. 肺良性转移性平滑肌瘤病7例并文献复习[J]. 山东大学学报 (医学版), 2024, 62(4): 78-84. |
| [8] | 司海朋,王崇怡,宫桂青,张文灿,郭英俊,王凯斌,冯运泽,徐万龙,李乐. 加速康复外科在脊柱外科中的应用进展[J]. 山东大学学报 (医学版), 2024, 62(10): 8-17. |
| [9] | 吴南,仉建国,朱源棚,陈癸霖,陈泽夫. 人工智能在脊柱畸形诊疗中的应用[J]. 山东大学学报 (医学版), 2023, 61(3): 14-20. |
| [10] | 刘新宇,李冬来,赵文龙,王政,李超,王连雷,原所茂,田永昊. 机器人/导航辅助下椎弓根螺钉植入在脊柱畸形矫正中的应用[J]. 山东大学学报 (医学版), 2023, 61(3): 21-28. |
| [11] | 杜付鑫,张体冲,李倩倩,宋锐. 脊柱手术机器人研究进展[J]. 山东大学学报 (医学版), 2023, 61(3): 46-56. |
| [12] | 刘亚军,袁强,吴静晔,韩晓光,郎昭,张勇. 130例锥形束CT影像腰椎椎弓根螺钉自动规划的初步分析[J]. 山东大学学报 (医学版), 2023, 61(3): 80-89. |
| [13] | 李超,孙小刚,李昊,田永昊,原所茂,刘新宇,王连雷. 机器人联合三维“C”型臂辅助置钉在44例脊柱侧弯矫形术中的应用价值[J]. 山东大学学报 (医学版), 2023, 61(3): 107-114. |
| [14] | 王辉,王连雷,吴天驰,田永昊,原所茂,王霞,吕维加,刘新宇. 人工智能辅助设计3D打印手术导板在脊柱侧凸矫形术中的应用[J]. 山东大学学报 (医学版), 2023, 61(3): 127-133. |
| [15] | 杨咏青,赵鹏,汪玉,马文静,田迷迷,程亚旎,祖璐,林祥涛. 细胞外容积分数对62例不同病理类型肺癌的诊断价值[J]. 山东大学学报 (医学版), 2023, 61(2): 88-94. |
|
||