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  • Application of magnetic resonance angiography navigation technology in target bypass of moyamoya disease surgery

    Objective To explore the application value of time of flight magnetic resonance angiography (TOF-MRA) in target bypass surgery for moyamoya disease. Methods The data of patients with moyamoya disease in Affiliated Drum Tower Hospital, Medical College, Nanjing University between May 1 and August 30, 2020 were retrospectively analyzed. Patients were divided into navigation group and control group according to whether navigation technology was used during operation. All patients completed TOF-MRA evaluation before operation, and all patients completed surgical treatment. One week after operation, TOF-MRA was reviewed to evaluate the patency of anastomotic stoma. The intraoperative and postoperative conditions of the two groups were compared. Results Finally, 48 patients with moyamoya disease were included. 22 patients who used intraoperative navigation were included in the navigation group, and 26 patients with moyamoya disease who did not use intraoperative navigation in the same period were included in the control group. There was no significant difference between the two groups in gender, age, Suzuki stage before operation, proportion of posterior circulation involvement, proportion of bleeding type, proportion of hypertension and proportion of diabetes (P>0.05). The operation duration [(3.3±0.4) vs. (3.6±0.6) h] and postoperative hospital stay [(7.3±1.9) vs. (8.8±2.7) d] in the navigation group were shorter than those in the control group (P<0.05). There was no significant difference between the two groups in the proportion of patients who completed bypass surgery, the proportion of middle meningeal artery retained, the postoperative patency rate, the proportion of temporary dysfunction, and the proportion of serious complications (P>0.05). Conclusion TOF-MRA sequence combined with navigation technology can effectively guide the surgical scheme design and postoperative evaluation of moyamoya disease.

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  • Clinical application of 3D precise localization based on anatomical markers in the treatment of pulmonary nodules during thoracoscopic surgery

    ObjectiveTo explore the safety and feasibility of 3D precise localization based on anatomical markers in the treatment of pulmonary nodules during video-assisted thoracoscopic surgery (VATS).MethodsFrom June 2019 to April 2015, 27 patients with pulmonary nodules underwent VATS in our Hospital were collected in the study, including 3 males and 24 females aged 51.8±13.7 years. The surgical data were retrospectively reviewed and analyzed, such as localization time, localization accuracy rate, pathological results, complication rate and postoperative hospital stay.ResultsA total of 28 pulmonary nodules were localized via this method. All patients received surgery successfully. No mortality or major morbidity occurred. The general mean localization time was 17.6±5.8 min, with an accuracy of 96.4%. The mean diameter of pulmonary nodules was 14.0±8.0 mm with a mean distance from visceral pleura of 6.5±5.4 mm. There was no localization related complication. The mean postoperative hospital stay was 6.7±4.3 d. The routine pathological result showed that 78.6% of the pulmonary nodules were adenocarcinoma.Conclusion3D precise localization based on anatomical markers in the treatment of pulmonary nodules during thoracoscopic surgery is accurate, safe, effective, economical and practical, and it is easy to master with a short learning curve.

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  • Application of mixed reality technology in orthopedic field

    Mixed reality technology is new digital holographic imaging technology that generates three-dimensional simulation images through computers and anchors the virtual images to the real world. Compared with traditional imaging diagnosis and treatment methods, mixed reality technology is more conducive to the advantages of precision medicine, helps to promote the development of medical clinical application, teaching and scientific research in the field of orthopedics, and will further promote the progress of clinical orthopedics toward standardization, digitization and precision. This article briefly introduces the mixed reality technology, reviews its application in the perioperative period, teaching and diagnosis and treatment standardization and dataization in the field of orthopedics, and discusses its technical advantages, aiming to provide a reference for the better use of mixed reality technology in orthopedics.

    Release date:2021-09-24 01:23 Export PDF Favorites Scan
  • Liddle syndrome complicated with Gordon syndrome: A case report

    Liddle syndrome and Gordon syndrome are two rare single-gene inherited hypertension diseases. In patients≤40 years, the prevalence of Liddle syndrome is about 1% and Gordon syndrome is uncertain all over the word, for which is often misdiagnosed and mistreated. The therapies of those diseases are targeted at gene mutation sites, as well as combined with modified lifestyle, and can achieve satisfactory diseases control. This paper reports a patient who is diagnosed with Liddle syndrome and Gordon syndrome at the same time. We aimed to consolidate and improve the diagnosis and accurate treatment of those two diseases by sharing, studying and discussing together with clinical doctors.

    Release date:2022-09-20 08:57 Export PDF Favorites Scan
  • A comparative study on treatment of lumbar degenerative disease with osteoporosis by manual and robot-assisted cortical bone trajectory screws fixation

    ObjectiveTo compare the safety and accuracy of manual and robot-assisted cortical bone trajectory (CBT) screws fixation in the treatment of lumbar degenerative diseases with osteoporosis.MethodsThe clinical data of 58 cases of lumbar degenerative disease with osteoporosis treated by CBT screw fixation between February 2017 and February 2019 were analyzed retrospectively. Among them, 29 cases were fixed with CBT screws assisted by robot (group A), 29 cases were fixed with CBT screws by hand (group B). There was no significant difference between the two groups in terms of gender, age, body mass index, lesion type, T-value of bone mineral density, and operative segment (P>0.05), with comparability. The accuracy of implant was evaluated by Kaito’s grading method, and the invasion of CBT screw to the superior articular process was evaluated by Babu’s method.ResultsThe operation time and intraoperative blood loss in group A were significantly less than those in group B (t=−8.921, P=0.000; t=−14.101, P=0.000). One hundred and sixteen CBT screws were implanted in the two groups. At 3 days after operation, according to the Kaito’s grading method, the accuracy of implant in group A was 108 screws of grade 0, 6 of grade 1, and 2 of grade 2; and in group B was 86 screws of grade 0, 12 of grade 1, and 18 of grade 2; the difference was significant (Z=4.007, P=0.000). There were 114 accepted screws (98.3%) in group A and 98 (84.5%) in group B, the difference was significant (χ2=8.309, P=0.009). At 3 days after operation, according to Babu’s method, there were 85 screws in grade 0, 3 in grade 1, and 2 in grade 2 in group A; and in group B, there were 91 screws in grade 0, 16 in grade 1, 5 in grade 2, and 4 in grade 3; the difference was significant (Z=7.943, P=0.000). No serious injury of spinal cord, nerve, and blood vessel was found in the two groups. One patient in group A had delayed cerebrospinal fluid leakage, and 2 patients in group B had mild anemia. Both groups were followed up 10-14 months (mean, 11.6 months). The neurological symptoms were improved, and no screw loosening or fracture was found during the follow-up.ConclusionCompared with manual implantation of CBT screw, robot-assisted spinal implant has higher accuracy, lower incidence of invasion of superior articular process, and strong holding power of CBT screw, which can be applied to the treatment of lumbar degenerative diseases with osteoporosis.

    Release date:2020-09-28 02:45 Export PDF Favorites Scan
  • Preliminary construction of value judgment framework of precision medicine technology

    ObjectivesTo initially construct a scientific, reasonable and precision medicine technology value judgment framework suitable for China’s national conditions based on expert consultation method, so as to provide scientific value judgment system support for China's medical insurance decision-making.MethodsThe preliminary evaluation indicator system for precision medicine technology value was established by using literature analysis and expert consultation method, and the direct weighting method was used to determine the indicators weight.ResultsAfter two rounds of expert consultation, an indicator system suitable for the value judgment of precision medicine technology in China was constructed, including 5 primary indicators (health needs, health effects, economics, innovation and suitability) and 14 secondary indicators. Each indicator was weighted according to importance.ConclusionsA set of precision medicine value judgment indicator system suitable for China has been initially established, which lays a certain foundation for further measurement research of the indicator system and provides a scientific basis for medical insurance decision-making.

    Release date:2020-09-21 04:26 Export PDF Favorites Scan
  • Promoting “Healthy China” strategy, taking responsibility: practice of precision healthy poverty alleviation of West China Hospital of Sichuan University

    By analyzing the current situation and problems of China’s precision healthy poverty alleviation, combining the current situation of poverty alleviation areas and its own clinical and regional advantages, West China Hospital of Sichuan University explores a practical “West China Way” to solve the healthy poverty problem. We insist on demand orientation, build the top-level design, and implement precise policies. Starting with the promotion of health screening, we actualizes hospital management, multi-disciplinary collaboration, integrated medical care construction according to regional needs, “double-group” style assistance, stratified and graded training, and telemedicine education. As the combination of “transfusion” and “hematopoiesis”, we help the local areas to build modern systems of hospital management, technology, and human resource.

    Release date:2020-02-03 02:30 Export PDF Favorites Scan
  • 抗癫痫药物所致不良反应的研究进展

    癫痫治疗需要长期使用抗癫痫药物 (AEDs),在这个过程中可能会出现药物不良反应,影响治疗效果和患者生活质量,严重者甚至威胁患者的生命安全。最常见的 AEDs 不良反应是皮肤及其相关的损害,其次是消化系统及神经系统损害。AEDs 的不良反应可分为剂量相关、特异体质相关、长期治疗相关及致畸作用,文章就不同种类不良反应的临床表现、潜在机制及应对措施等方面进行综述,以期为优化癫痫治疗的药物管理提供必要的理论依据,进一步指导癫痫患者精准治疗。

    Release date:2019-07-15 02:48 Export PDF Favorites Scan
  • Theory and practice of lesioned bile duct tree drainage resection in the diagnosis and treatment of benign biliary tract diseases

    The global incidence of benign biliary tract diseases is high. Not only its anatomical variations are complex and the disease heterogeneity is strong, but also its preoperative assessment methods, surgical techniques and diagnostic and treatment strategies need to be improved. Consequently, patients have many perioperative complications and a poor long-term prognosis. According to the anatomical characteristics of the biliary tract and the pathophysiological characteristics of benign biliary diseases, we propose the surgical treatment concept of benign biliary tract diseases with the removal of the diseased bile duct tree drainage as the core, which is different from the traditional biliary surgery that takes “patency and obstruction” as the focus of treatment, and “alleviates symptoms” as the treatment goal. Through a series of improvements such as preoperative evaluation, surgical planning, surgical operations, and postoperative management, we have designed a series of innovative diagnosis and treatment strategies and procedures with the goal of curing biliary diseases, with a view to changing the diagnosis and treatment status of biliary surgery. We hope that can change the current the diagnosis and treatment status of biliary surgery.

    Release date:2023-02-02 08:55 Export PDF Favorites Scan
  • The design of the software system for the interpretation and guidance of drug locus related to drug treatment

    Based on the pharmacogenomics theory, this study developed a software system for interpretation of drug gene loci and guidance on clinical safe medication with the purpose of providing clinical guidance on the safety and effectiveness of drug use through accurate and efficient detection and interpretation of drug gene loci. The system infrastructure was built on a service-oriented architecture (SOA) design and Docker container virtualization approach to achieve a rapid and automatic interpretation of genetic results and best available drugs. The front end was established on HTML5 and JavaScript to realize visualization of analysis results and user interaction. The system was tested and validated to show robust performance which is reliable in clinical use. It will show high impact on the development of pharmacogenomics and clinical practice of patients with personalized medicine.

    Release date:2019-08-12 02:37 Export PDF Favorites Scan
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