1.A Self-Developed Mobility Augmented Reality System Versus Conventional X-rays for Spine Positioning in Intraspinal Tumor Surgery: A Case-Control Study
Wenyao HONG ; Xiaohua HUANG ; Tian LI ; Juntao LUO ; Yuqing LIU ; Shengyue HUANG ; Zhongyi CHEN ; Bingwei HE ; Yuxing WEN ; Yuanxiang LIN
Neurospine 2024;21(3):984-993
Objective:
To evaluate the efficacy of a self-developed mobile augmented reality navigation system (MARNS) in guiding spinal level positioning during intraspinal tumor surgery based on a dual-error theory.
Methods:
This retrospective study enrolled patients diagnosed with intraspinal tumors admitted to Fujian Provincial Hospital between May and November 2023. The participants were divided into conventional x-rays and self-developed MARNS groups according to the localization methods they received. Position time, length of intraoperative incision variation, and location accuracy were systematically compared.
Results:
A total of 41 patients (19 males) with intraspinal tumors were included, and MARNS was applied to 21 patients. MARNS achieved successful lesion localization in all patients with an error of 0.38±0.12 cm. Compared to x-rays, MARNS significantly reduced positioning time (129.00±13.03 seconds vs. 365.00±60.43 seconds, p<0.001) and length of intraoperative incision variation (0.14 cm vs. 0.67 cm, p=0.009).
Conclusion
The self-developed MARNS, based on augmented reality technology for lesion visualization and perpendicular projection, offers a radiation-free complement to conventional x-rays.
2.A Self-Developed Mobility Augmented Reality System Versus Conventional X-rays for Spine Positioning in Intraspinal Tumor Surgery: A Case-Control Study
Wenyao HONG ; Xiaohua HUANG ; Tian LI ; Juntao LUO ; Yuqing LIU ; Shengyue HUANG ; Zhongyi CHEN ; Bingwei HE ; Yuxing WEN ; Yuanxiang LIN
Neurospine 2024;21(3):984-993
Objective:
To evaluate the efficacy of a self-developed mobile augmented reality navigation system (MARNS) in guiding spinal level positioning during intraspinal tumor surgery based on a dual-error theory.
Methods:
This retrospective study enrolled patients diagnosed with intraspinal tumors admitted to Fujian Provincial Hospital between May and November 2023. The participants were divided into conventional x-rays and self-developed MARNS groups according to the localization methods they received. Position time, length of intraoperative incision variation, and location accuracy were systematically compared.
Results:
A total of 41 patients (19 males) with intraspinal tumors were included, and MARNS was applied to 21 patients. MARNS achieved successful lesion localization in all patients with an error of 0.38±0.12 cm. Compared to x-rays, MARNS significantly reduced positioning time (129.00±13.03 seconds vs. 365.00±60.43 seconds, p<0.001) and length of intraoperative incision variation (0.14 cm vs. 0.67 cm, p=0.009).
Conclusion
The self-developed MARNS, based on augmented reality technology for lesion visualization and perpendicular projection, offers a radiation-free complement to conventional x-rays.
3.A Self-Developed Mobility Augmented Reality System Versus Conventional X-rays for Spine Positioning in Intraspinal Tumor Surgery: A Case-Control Study
Wenyao HONG ; Xiaohua HUANG ; Tian LI ; Juntao LUO ; Yuqing LIU ; Shengyue HUANG ; Zhongyi CHEN ; Bingwei HE ; Yuxing WEN ; Yuanxiang LIN
Neurospine 2024;21(3):984-993
Objective:
To evaluate the efficacy of a self-developed mobile augmented reality navigation system (MARNS) in guiding spinal level positioning during intraspinal tumor surgery based on a dual-error theory.
Methods:
This retrospective study enrolled patients diagnosed with intraspinal tumors admitted to Fujian Provincial Hospital between May and November 2023. The participants were divided into conventional x-rays and self-developed MARNS groups according to the localization methods they received. Position time, length of intraoperative incision variation, and location accuracy were systematically compared.
Results:
A total of 41 patients (19 males) with intraspinal tumors were included, and MARNS was applied to 21 patients. MARNS achieved successful lesion localization in all patients with an error of 0.38±0.12 cm. Compared to x-rays, MARNS significantly reduced positioning time (129.00±13.03 seconds vs. 365.00±60.43 seconds, p<0.001) and length of intraoperative incision variation (0.14 cm vs. 0.67 cm, p=0.009).
Conclusion
The self-developed MARNS, based on augmented reality technology for lesion visualization and perpendicular projection, offers a radiation-free complement to conventional x-rays.
4.A Self-Developed Mobility Augmented Reality System Versus Conventional X-rays for Spine Positioning in Intraspinal Tumor Surgery: A Case-Control Study
Wenyao HONG ; Xiaohua HUANG ; Tian LI ; Juntao LUO ; Yuqing LIU ; Shengyue HUANG ; Zhongyi CHEN ; Bingwei HE ; Yuxing WEN ; Yuanxiang LIN
Neurospine 2024;21(3):984-993
Objective:
To evaluate the efficacy of a self-developed mobile augmented reality navigation system (MARNS) in guiding spinal level positioning during intraspinal tumor surgery based on a dual-error theory.
Methods:
This retrospective study enrolled patients diagnosed with intraspinal tumors admitted to Fujian Provincial Hospital between May and November 2023. The participants were divided into conventional x-rays and self-developed MARNS groups according to the localization methods they received. Position time, length of intraoperative incision variation, and location accuracy were systematically compared.
Results:
A total of 41 patients (19 males) with intraspinal tumors were included, and MARNS was applied to 21 patients. MARNS achieved successful lesion localization in all patients with an error of 0.38±0.12 cm. Compared to x-rays, MARNS significantly reduced positioning time (129.00±13.03 seconds vs. 365.00±60.43 seconds, p<0.001) and length of intraoperative incision variation (0.14 cm vs. 0.67 cm, p=0.009).
Conclusion
The self-developed MARNS, based on augmented reality technology for lesion visualization and perpendicular projection, offers a radiation-free complement to conventional x-rays.
5.A Self-Developed Mobility Augmented Reality System Versus Conventional X-rays for Spine Positioning in Intraspinal Tumor Surgery: A Case-Control Study
Wenyao HONG ; Xiaohua HUANG ; Tian LI ; Juntao LUO ; Yuqing LIU ; Shengyue HUANG ; Zhongyi CHEN ; Bingwei HE ; Yuxing WEN ; Yuanxiang LIN
Neurospine 2024;21(3):984-993
Objective:
To evaluate the efficacy of a self-developed mobile augmented reality navigation system (MARNS) in guiding spinal level positioning during intraspinal tumor surgery based on a dual-error theory.
Methods:
This retrospective study enrolled patients diagnosed with intraspinal tumors admitted to Fujian Provincial Hospital between May and November 2023. The participants were divided into conventional x-rays and self-developed MARNS groups according to the localization methods they received. Position time, length of intraoperative incision variation, and location accuracy were systematically compared.
Results:
A total of 41 patients (19 males) with intraspinal tumors were included, and MARNS was applied to 21 patients. MARNS achieved successful lesion localization in all patients with an error of 0.38±0.12 cm. Compared to x-rays, MARNS significantly reduced positioning time (129.00±13.03 seconds vs. 365.00±60.43 seconds, p<0.001) and length of intraoperative incision variation (0.14 cm vs. 0.67 cm, p=0.009).
Conclusion
The self-developed MARNS, based on augmented reality technology for lesion visualization and perpendicular projection, offers a radiation-free complement to conventional x-rays.
6.Advances in identification methods of alien genomic components in plants.
Zhongyi XIE ; Jiangbo DANG ; Guo WEN ; Haiyan WANG ; Qigao GUO ; Guolu LIANG
Chinese Journal of Biotechnology 2021;37(8):2703-2718
Plants with alien genomic components (alien chromosomes / chromosomal fragments / genes) are important materials for genomic research and crop improvement. To date, four strategies based on trait observation, chromosome analysis, specific proteins, and DNA sequences have been developed for the identification of alien genomic components. Among them, DNA sequence-based molecular markers are mainly used to identify alien genomic components. This review summarized several molecular markers for identification of alien genomic components in wheat, cabbage and other important crops. We also compared the characteristics of nine common molecular markers, such as simple sequence repeat (SSR), insertion-deletion (InDel) and single nucleotide polymorphism (SNP). In general, the accuracy of using a combination of different identification methods is higher than using a single identification method. We analyzed the application of different combination of identification methods, and provided the best combination for wheat, brassica and other crops. High-throughput detection can be easily achieved by using the new generation molecular markers such as InDel and SNP, which can be used to determine the precise localization of alien introgression genes. To increase the identification efficiency, other new identification methods, such as microarray comparative genomic hybridization (array-CGH) and suppression subtractive hybridization (SSH), may also be included.
Chromosomes, Plant
;
Comparative Genomic Hybridization
;
Genome, Plant/genetics*
;
Genomics
;
Triticum/genetics*
7.Experience of multi-disciplinary team mode in 40 tertiary public hospitals in China
Linghe YANG ; Zhongyi WEN ; Meicen LIU ; Chenyang PEI ; Zirui LIAO ; Linlin HU ; Jing MA ; Yuanli LIU
Chinese Journal of Hospital Administration 2021;37(6):505-508
Objective:To analyze the practice and experience of " patient-centered, popularizing multi-disciplinary team(MDT) mode" in medical institutions, and to put forward reasonable suggestions and opinions for medical institutions to further improve and popularize MDT mode.Methods:Based on the evaluation of China Healthcare Improvement Initiative, 40 typical cases of MDT in medical institutions were collected, and descriptive analysis and textual analysis were carried out on the cases.Results:There were more specialized hospitals carrying out MDT, the application scope of MDT services was constantly expanding, and the management system and diagnosis and treatment process were constantly optimized.Conclusions:The mode of MDT in China is in the stage of exploration and development. In the promotion process, it is necessary to give full play to the role of information means, establish scientific and reasonable cost measurement and charge standard, and improve the enthusiasm of medical institutions and medical personnel to participate in MDT.
8.UPLC characteristic fingerprint and chemical pattern recognition of Angong Niuhuang Pills.
Yu-Shuang CHAI ; Hu-Hu ZENG ; Yuan-Feng HE ; Xiao SHANG ; Ting WAN ; Zhen YIN ; Chun-Lin FAN ; Wen-Cai YE
China Journal of Chinese Materia Medica 2020;45(3):565-571
To establish the UPLC fingerprint of Zhongyi Angong Niuhuang Pills, in order to evaluate its quality by chemical pattern recognition. The method was developed on a column of Poroshell 120 EC-C_(18), with methanol-0.1% formic acid solution as the mobile phase for gradient elution at a flow rate of 0.4 mL·min~(-1). The column temperature was 30 ℃,and the detective wavelength was 254 nm. The similarity of 24 batches of Angong Niuhuang Pills was compared by using Traditional Chinese Medicine Chromatographic Fingerprint Similarity Evaluation System(2004 A). Hydrophobic cluster analysis,principal components analysis and partial least squares discriminant analysis were conducted by using SIMCA 13.0 software to investigate different components among these products. The UPLC characteristic fingerprint was established in this study. And 17 common peaks were identified by standard reference and UPLC-MS. The similarity of 24 batches samples were above 0.980,which can be classified into three categories for pattern recognition. Baicalin,berberine,jatrorrhizine,wogonin and wogonoside were identified as the main markers that cause differences of various batches. The method is simple,rapid,accurate and reproducible,and can provide scientific basis for improving the quality standard of Zhongyi Angong Niuhuang Pills.
Chromatography, High Pressure Liquid
;
Drugs, Chinese Herbal/chemistry*
;
Tandem Mass Spectrometry
9.Network Analysis of Y-STR in Six Ethnic Populations in Guangxi and Its Forensic Significances.
Yue XIAO ; Pan DENG ; Kai Chuang CHANG ; Quan MA ; En Fang QIAN ; Jian Hua YU ; Bao Wen CHENG ; Cai Xia LI ; Li JIANG
Journal of Forensic Medicine 2019;35(3):314-318
Objective To explore the distribution of genetic structure of Y-SNP and Y-STR genetic markers in different ethnic groups and its application in forensic science. Methods SNaPshot minisequencing was used to detect the polymorphisms of 12 Y-SNP loci in 439 males from 6 ethnic groups, including Guangxi Han, Guangxi Jing, Guangxi Miao, Guangxi Yao, Guangxi Zhuang and Guangxi Dong. DNATyperTM Y26 kit was used to multiplex-amplify 26 Y-STR loci. The PCR products were analyzed by 3130xl genetic analyzer. The network analysis of Y-STR haplotype under the same Y-SNP haplogroup was analyzed by Network 5.0 software. Results Six haplogroups defined by 12 Y-SNP loci were detected in 6 ethnic groups, and 362 haplotypes were detected in 26 Y-STR loci. The haplotype diversity was 0.996 6. In the C haplogroup, the samples from Guangxi Yao, Guangxi Zhuang and Guangxi Dong were clustered on different branches; in the O1 haplogroup, those from Guangxi Zhuang, Guangxi Miao and Guangxi Jing were relatively independent and clustered separately; in the O2 haplogroup, some samples from Guangxi Miao and Guangxi Yao were gathered in a cluster. Conclusion Based on the Y-STR network analysis of samples with identical haplogroup of Y-SNP, some ethnic groups can be preliminarily distinguished, which could be used to infer male suspects' ethnic group through detecting their genetic markers left in the crime scene.
China
;
Chromosomes, Human, Y
;
Ethnicity
;
Genetics, Population
;
Haplotypes
;
Humans
;
Male
;
Microsatellite Repeats
10.HPLC fingerprint of Zishen Yutai pills and simultaneous determination of 5 index components.
Hui-Wen MA ; Qi ZOU ; Chun LI ; Zhen YIN ; Hong YI ; Lian-Chao TIAN ; Cheng-Tao REN ; Xiao-Qian LIU ; Zhi-Min WANG
China Journal of Chinese Materia Medica 2018;43(14):2878-2883
To establish the HPLC fingerprint and determine five index components (loganic acid, chlorogenic acid, loganin, sweroside and asperosaponin Ⅵ) of Zishen Yutai pills by high performance liquid chromatography, and provide a scientific basis for its quality control. The fingerprint chromatogram was analysed by the chromatographic fingerprint similarity evaluation system for tradition Chinese medicine (2012), fifteen common peaks were obtained at the wavelength of 254 nm. Different batches of Zishen Yutai pills showed a similarity of above 0.90 in HPLC fingerprint profiles. For the quantitive analysis method, The separation of five components showed good regression (>0.999 2) with linear ranges, and the mean recoveries were in the range of 97.62%-101.9%, with the RSD (=9) less than 3%. The established fingerprint and quantitative analysis methods are highly specific, simple and accurate, which can reflect the quality of Zishen Yutai pills more comprehensively, and can be used for its quality control.

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