1.Anatomical Importance Between Neural Structure and Bony Landmark in Neuroventral Decompression for Posterior Endoscopic Cervical Discectomy
Xin WANG ; Tao HU ; Chaofan QIN ; Bo LEI ; Mingxin CHEN ; Ke MA ; Qingyan LONG ; Qingshuai YU ; Si CHENG ; Zhengjian YAN
Neurospine 2025;22(1):286-296
Objective:
This study aims to investigate the anatomical relationship among the nerve roots, intervertebral space, pedicles, and intradural rootlets of the cervical spine for improving operative outcomes and exploring neuroventral decompression approach in posterior endoscopic cervical discectomy (PECD).
Methods:
Cervical computed tomography myelography imaging data from January 2021 to May 2023 were collected, and the RadiAnt DICOM Viewer Software was employed to conduct multiplane reconstruction. The following parameters were recorded: width of nerve root (WN), nerve root-superior pedicle distance (NSPD), nerve root-inferior pedicle distance (NIPD), and the relationship between the intervertebral space and the nerve root (shoulder, anterior, and axillary). Additionally, the descending angles between the spinal cord and the ventral (VRA) and dorsal (DRA) rootlets were measured.
Results:
The WN showed a gradual increase from C4 to C7, with measurements notably larger in men compared to women. The NSPD decreased gradually from the C2–3 to the C5–6 levels. However, the NIPD showed an opposite level-related change, notably larger than the NSPD at the C4–5, C5–6, and C7–T1 levels. Furthermore, significant differences in NIPD were observed between different age groups and genders. The incidence of the anterior type exhibited a gradual decrease from the C2–3 to the C5–6 levels. Conversely, the axillary type exhibited an opposite level-related change. Additionally, the VRA and DRA decreased as the level descended, with measurements significantly larger in females.
Conclusion
A prediction of the positional relationship between the intervertebral space and the nerve root is essential for the direct neuroventral decompression in PECD to avoid damaging the neural structures. The axillary route of the nerve root offers a safer and more effective pathway for performing direct neuroventral decompression compared to the shoulder approach.
2.Anatomical Importance Between Neural Structure and Bony Landmark in Neuroventral Decompression for Posterior Endoscopic Cervical Discectomy
Xin WANG ; Tao HU ; Chaofan QIN ; Bo LEI ; Mingxin CHEN ; Ke MA ; Qingyan LONG ; Qingshuai YU ; Si CHENG ; Zhengjian YAN
Neurospine 2025;22(1):286-296
Objective:
This study aims to investigate the anatomical relationship among the nerve roots, intervertebral space, pedicles, and intradural rootlets of the cervical spine for improving operative outcomes and exploring neuroventral decompression approach in posterior endoscopic cervical discectomy (PECD).
Methods:
Cervical computed tomography myelography imaging data from January 2021 to May 2023 were collected, and the RadiAnt DICOM Viewer Software was employed to conduct multiplane reconstruction. The following parameters were recorded: width of nerve root (WN), nerve root-superior pedicle distance (NSPD), nerve root-inferior pedicle distance (NIPD), and the relationship between the intervertebral space and the nerve root (shoulder, anterior, and axillary). Additionally, the descending angles between the spinal cord and the ventral (VRA) and dorsal (DRA) rootlets were measured.
Results:
The WN showed a gradual increase from C4 to C7, with measurements notably larger in men compared to women. The NSPD decreased gradually from the C2–3 to the C5–6 levels. However, the NIPD showed an opposite level-related change, notably larger than the NSPD at the C4–5, C5–6, and C7–T1 levels. Furthermore, significant differences in NIPD were observed between different age groups and genders. The incidence of the anterior type exhibited a gradual decrease from the C2–3 to the C5–6 levels. Conversely, the axillary type exhibited an opposite level-related change. Additionally, the VRA and DRA decreased as the level descended, with measurements significantly larger in females.
Conclusion
A prediction of the positional relationship between the intervertebral space and the nerve root is essential for the direct neuroventral decompression in PECD to avoid damaging the neural structures. The axillary route of the nerve root offers a safer and more effective pathway for performing direct neuroventral decompression compared to the shoulder approach.
3.Anatomical Importance Between Neural Structure and Bony Landmark in Neuroventral Decompression for Posterior Endoscopic Cervical Discectomy
Xin WANG ; Tao HU ; Chaofan QIN ; Bo LEI ; Mingxin CHEN ; Ke MA ; Qingyan LONG ; Qingshuai YU ; Si CHENG ; Zhengjian YAN
Neurospine 2025;22(1):286-296
Objective:
This study aims to investigate the anatomical relationship among the nerve roots, intervertebral space, pedicles, and intradural rootlets of the cervical spine for improving operative outcomes and exploring neuroventral decompression approach in posterior endoscopic cervical discectomy (PECD).
Methods:
Cervical computed tomography myelography imaging data from January 2021 to May 2023 were collected, and the RadiAnt DICOM Viewer Software was employed to conduct multiplane reconstruction. The following parameters were recorded: width of nerve root (WN), nerve root-superior pedicle distance (NSPD), nerve root-inferior pedicle distance (NIPD), and the relationship between the intervertebral space and the nerve root (shoulder, anterior, and axillary). Additionally, the descending angles between the spinal cord and the ventral (VRA) and dorsal (DRA) rootlets were measured.
Results:
The WN showed a gradual increase from C4 to C7, with measurements notably larger in men compared to women. The NSPD decreased gradually from the C2–3 to the C5–6 levels. However, the NIPD showed an opposite level-related change, notably larger than the NSPD at the C4–5, C5–6, and C7–T1 levels. Furthermore, significant differences in NIPD were observed between different age groups and genders. The incidence of the anterior type exhibited a gradual decrease from the C2–3 to the C5–6 levels. Conversely, the axillary type exhibited an opposite level-related change. Additionally, the VRA and DRA decreased as the level descended, with measurements significantly larger in females.
Conclusion
A prediction of the positional relationship between the intervertebral space and the nerve root is essential for the direct neuroventral decompression in PECD to avoid damaging the neural structures. The axillary route of the nerve root offers a safer and more effective pathway for performing direct neuroventral decompression compared to the shoulder approach.
4.Anatomical Importance Between Neural Structure and Bony Landmark in Neuroventral Decompression for Posterior Endoscopic Cervical Discectomy
Xin WANG ; Tao HU ; Chaofan QIN ; Bo LEI ; Mingxin CHEN ; Ke MA ; Qingyan LONG ; Qingshuai YU ; Si CHENG ; Zhengjian YAN
Neurospine 2025;22(1):286-296
Objective:
This study aims to investigate the anatomical relationship among the nerve roots, intervertebral space, pedicles, and intradural rootlets of the cervical spine for improving operative outcomes and exploring neuroventral decompression approach in posterior endoscopic cervical discectomy (PECD).
Methods:
Cervical computed tomography myelography imaging data from January 2021 to May 2023 were collected, and the RadiAnt DICOM Viewer Software was employed to conduct multiplane reconstruction. The following parameters were recorded: width of nerve root (WN), nerve root-superior pedicle distance (NSPD), nerve root-inferior pedicle distance (NIPD), and the relationship between the intervertebral space and the nerve root (shoulder, anterior, and axillary). Additionally, the descending angles between the spinal cord and the ventral (VRA) and dorsal (DRA) rootlets were measured.
Results:
The WN showed a gradual increase from C4 to C7, with measurements notably larger in men compared to women. The NSPD decreased gradually from the C2–3 to the C5–6 levels. However, the NIPD showed an opposite level-related change, notably larger than the NSPD at the C4–5, C5–6, and C7–T1 levels. Furthermore, significant differences in NIPD were observed between different age groups and genders. The incidence of the anterior type exhibited a gradual decrease from the C2–3 to the C5–6 levels. Conversely, the axillary type exhibited an opposite level-related change. Additionally, the VRA and DRA decreased as the level descended, with measurements significantly larger in females.
Conclusion
A prediction of the positional relationship between the intervertebral space and the nerve root is essential for the direct neuroventral decompression in PECD to avoid damaging the neural structures. The axillary route of the nerve root offers a safer and more effective pathway for performing direct neuroventral decompression compared to the shoulder approach.
5.Anatomical Importance Between Neural Structure and Bony Landmark in Neuroventral Decompression for Posterior Endoscopic Cervical Discectomy
Xin WANG ; Tao HU ; Chaofan QIN ; Bo LEI ; Mingxin CHEN ; Ke MA ; Qingyan LONG ; Qingshuai YU ; Si CHENG ; Zhengjian YAN
Neurospine 2025;22(1):286-296
Objective:
This study aims to investigate the anatomical relationship among the nerve roots, intervertebral space, pedicles, and intradural rootlets of the cervical spine for improving operative outcomes and exploring neuroventral decompression approach in posterior endoscopic cervical discectomy (PECD).
Methods:
Cervical computed tomography myelography imaging data from January 2021 to May 2023 were collected, and the RadiAnt DICOM Viewer Software was employed to conduct multiplane reconstruction. The following parameters were recorded: width of nerve root (WN), nerve root-superior pedicle distance (NSPD), nerve root-inferior pedicle distance (NIPD), and the relationship between the intervertebral space and the nerve root (shoulder, anterior, and axillary). Additionally, the descending angles between the spinal cord and the ventral (VRA) and dorsal (DRA) rootlets were measured.
Results:
The WN showed a gradual increase from C4 to C7, with measurements notably larger in men compared to women. The NSPD decreased gradually from the C2–3 to the C5–6 levels. However, the NIPD showed an opposite level-related change, notably larger than the NSPD at the C4–5, C5–6, and C7–T1 levels. Furthermore, significant differences in NIPD were observed between different age groups and genders. The incidence of the anterior type exhibited a gradual decrease from the C2–3 to the C5–6 levels. Conversely, the axillary type exhibited an opposite level-related change. Additionally, the VRA and DRA decreased as the level descended, with measurements significantly larger in females.
Conclusion
A prediction of the positional relationship between the intervertebral space and the nerve root is essential for the direct neuroventral decompression in PECD to avoid damaging the neural structures. The axillary route of the nerve root offers a safer and more effective pathway for performing direct neuroventral decompression compared to the shoulder approach.
6.Mechanism of Action of Chinese Medicinal Herbs in the Treatment of Primary Myelofibrosis based on Bioinformatics and Molecular Dynamics
Jiayuan GUO ; Jile XIN ; Man ZHANG ; Mingxin LIU ; Jingwen LIU ; Yajing SU ; Huihui SHI ; Jue GUO ; Wenqing LIU ; Kailu WEI ; Yalin SONG ; Qiuling MA
Journal of Traditional Chinese Medicine 2024;65(21):2250-2258
ObjectiveTo explore the molecular mechanism implicated in the treatment of primary myelofibrosis (PMF) using Chinese medicinal herbs (CMH) by bioinformatics and molecular dynamics. MethodsData mining was performed to find the high-frequency CMH in treating PMF between the year of 1985 and 2024 by searching CNKI, Chinese Science and Technology Journal Database (CCD), and China Academic Journal Database (CSPD). TCMSP, SwissTargetPrediction and related reports were used to collect the main active ingredients of high-frequency CMH and their targets. The PMF datasets GSE44426 and GSE124281 were downloaded from GEO database, and R software was used for data normalization and differentially expressed genes (DEGs) screening. Key module hub genes were obtained by weighted gene co-expression network analysis (WGCNA) analysis. The common intersection genes of active ingredient targets, DEGs and key module hub genes of CMH were selected, and the target network was generated using Cytoscape 3.9.2 software. The core target network was generated by topological analysis, while key pathways were selected by GO and KEGG pathway enrichment analysis, and protein interaction relationships were obtained from the String database, so as to construct drug-ingredient-target network and protein interaction network (PPI) relationship diagrams. Discovery Studio 2020 software was used to perform molecular docking, and the GROMACS program was used to perform molecular dynamics simulation. ResultsA total of 21 prescriptions were collected involving 121 herbs. There were 9 herbs with a frequency ≥10 times, which were Danshen (Radix et Rhizoma Salviae Miltiorrhizae), Huangqi (Radix Astragali), Baizhu (Rhizoma Atractylodis Macrocephalae), Danggui (Radix Angelicae Sinensis), Dangshen (Radix Codonopsis), Gancao (Radix et Rhizoma Glycyrrhizae), Baishao (Radix Paeoniae Alba), Fuling (Poria) and Shudihuang (Radix Rehmanniae Praeparata) from high- to low-frequency. A total of 98 active ingredients and 1125 potential targets were obtained from 9 high-frequency CMH. GSE44426 and GSE124281 data sets screened out 24 gene samples, including 14 of the healthy control group and 10 of the PMF group, and identified 319 DEGs between the two groups, including 122 up-regulated genes and 197 down-regulated genes. WGCNA screened out 24 co-expression module genes and found that the five modules closely related to the onset of PMF were MEpink, MEdarkred, MEblack, MEgrey, and MEturquoise, involving 7112 key module hub genes. The GO and KEGG enrichment analyses indicated that lipids and the atherosclerosis pathways were mainly involved in the mechanism of above high-frequency CMH in treating PMF, which included six hub protein targets: HSP90AA1, HSP90AB1, SRC, MAPK1, IL1B and IL10. From the drug-ingredient-target network, seven active ingredients of CMH targeting at these six hub targets were found, including verbascoside, verbascos isoflavone, kaempferol, luteolin, naringenin, quercetin and pachymic acid. The molecular docking and molecular dynamics analyses showed that the key CMH were Shudihuang, Huangqi, Baishao, Danshen, Gancao and Fuling, and among the seven active ingredients, calycosin had the highest binding affinity with HSP90AB1. ConclusionThe main CMH for the treatment of PMF may be Shudihuang, Huangqi, Baishao, Danshen, Gancao and Fuling, and the active ingredients include verbascoside, verbascos isoflavones, kaempferol, luteolin, naringenin, quercetin and pachymic acid. The relevant targets are HSP90AA1, HSP90AB1, SRC, MAPK1, IL-10, and IL-1β, and the most critical pathways are lipid and atherosclerosis pathways.
7.Effect of anesthesia on the recurrence and metastasis of hepatocellular carcinoma
Peihan MA ; Lingming ZHANG ; Ning LU ; Mingxin ZHANG
Journal of International Oncology 2023;50(2):117-121
Hepatocellular carcinoma (HCC) is one of the leading causes of cancer death. There is a high risk of recurrence and metastasis after surgery. Anesthesia methods, anesthesia-related drugs and intraoperative anesthesia management can affect the biological behavior of HCC cells or the body's immunity, thus affecting the recurrence and metastasis of HCC. Paying attention to the effect of anesthesia on recurrence and metastasis of HCC and optimizing anesthesia management are expected to improve the long-term survival of patients.
8.Clinical analysis of 11 cases of neonates with influenza virus infection in the neonatal intensive care unit
Guoqiang XIE ; Jie ZHU ; Mingxin MA ; Weiwei YAN ; Guangli REN
Chinese Journal of Applied Clinical Pediatrics 2022;37(9):682-686
Objective:To analyze the clinical characteristics, examination results, treatment and prognosis of neonates with influenza virus infection in the neonatal intensive care unit (NICU).Methods:Clinical data of neonates with influenza virus infection who were hospitalized in the NICU of the General Hospital of Southern Theater Command of Chinese People′s Liberation Army from January 2018 to December 2020 were retrospectively analyzed.Results:A total of 11 hospitalized neonates with influenza virus infection in the NICU were recruited, including 2 cases of influenza A and 9 cases of influenza B. Ten cases (90.9%) had respiratory symptoms, and among them, there were 8 cases with increased oxygen demand, 7 cases with complicated pneumonia, 4 cases with dyspnea, and 2 cases with apnea.Seven cases showed abnormal body temperature, including 6 cases of fever, and 1 case of hypothermia.Five cases had circulatory system symptoms.Digestive system symptoms and urinary system symptoms were detected in 5 cases and 3 cases, respectively.Eight cases complicated with systemic symptoms, including 3 cases of poor mental response, 3 cases of worsening jaundice, 3 cases of weight loss, 2 cases of hyperglycemia, 1 case of edema and sclerosis.Ten cases were treated with gamma globulin immunotherapy, 2 cases were treated with plasma immune support, and 1 case was treated with Peramivir antiviral.Eight cases were treated with increased oxygen therapy, among which non-invasive ventilator parameters or modes increased in 4 cases, and nasal cannula oxygen concentration increased in 2 cases.The change of noninvasive-assisted ventilation to invasive-assisted ventilation occurred in 1 case, and 1 case developed the change of nasal cannula to noninvasive-assisted ventilation.Four neonates received anti-shock and (or) myocardial contractility therapy.Conclusions:Neonates with influenza virus infection in the NICU are mainly manifested as respiratory symptoms and fever, and the incidence of complicated pneumonia is high.Multiple systems may be involved at the same time, often leading to severe disease status.Comprehensive supportive treatment is necessary.Neonatologists should pay attention to these symptoms, and early detection of influenza virus and timely isolation are the key methods to prevent influenza outbreaks in NICU.
9.Expression characteristics of glutamine synthetase of wheat in Escherichia coli.
Mingxin GU ; Yihao WEI ; Xiting JIA ; Shuping XIONG ; Xinming MA ; Xiaochun WANG
Chinese Journal of Biotechnology 2018;34(2):264-274
Glutamine synthetase is a key enzyme in plant nitrogen assimilation. To study the structure of wheat glutamine synthetase isoenzymes, GS1, GSr, GSe, GS2 and GS2p of wheat were cloned into pET-21a, and the expression condition was optimized. Although wheat glutamine synthetase isoenzymes had 70%-80% amino acid sequence homology, the isoforms expressed with different characteristics. Induced at 30 °C, the most expression level of GSr, GSe and GS2 was after 3 h, and of GS1 was at the 7 h whereas no GS2p was expressed, and the GS isoenzymes showed different expression level, with the order of GS1 (22%)>GSr (15%)>GS2 (12%)>GSe (5%). GSe expressed as soluble protein, and GS1 expressed mainly as soluble protein whereas GSr and GS2 expressed as insoluble proteins. Induced at 30 °C for 3 h, mRNA transcript levels of GS isoforms were different, with the order of GSr (7.59)>GS2 (1.84)>GS2p (1.66)>GSe (1.46)>GS1 (1.00). The levels of mRNA transcription were not consistent with the level of the protein translation. The analysis of mRNA secondary structure showed the free energy of translation initiation region of glutamine synthetase isoforms was different, with the order of GS1 (14.4)
10.Multiple Effective Components Determination in Essential Oil from Curcuma phaeocaulis by GC-MS and Its Integrated Pharmacokinetic Study in Rats
Mingxin GUO ; Deyi MA ; Wenjing LI ; Bo HONG
China Pharmacy 2018;29(20):2752-2757
OBJECTIVE:To develop the determination method for plasma concentration of effective components in essential oil from Curcuma phaeocaulis,and to study its integrated pharmacokinetics. METHODS:Sixteen rats were given the extract of essential oil from C. phaeocaulis 1.0 g/kg(by crude drug)intragastrically;blood samples 300-400 μL from orbit were collected 0, 0.17,0.5,1,2,2.5,3,4,6,8,10,12,24 h after medication. The plasma concentration of α-pinene,1,8-cineole,borneol, β-elemene,curcumol,germacrone and curdione in rats were determined by GC-MS. The determination was performed on DB-5 capillary column,using helium as carrier gas,at the flow rate of 1.2 mL/min. The injector temperature was 270 ℃,by temperature programming,and split ratio was 20∶1. The sample size was 1 μ L. The ion source was electrospray ion source. The selective reaction monitoring mode was used for the positive ion scanning in the range of m/z 20-500. Pharmacokinetic parameters of above effective components were calculated by using DAS 2.0 software. The weight coefficients were customized according to the proportion of AUC0-∞in the sum of AUC0-∞. The integrated pharmacokinetic parameters of multiple effective components in essential oil from C. phaeocaulis were calculated. RESULTS:The linear range of α-pinene,1,8-cineole,borneol,β-elemene, curcumol, germacrone, and curdione were 2.71-173.54, 7.76-496.88, 3.37-215.72, 21.68-1 387.50, 40.21-2 573.44, 24.84-3 179.69,47.78-3 057.81 ng/mL,respectively (r>0.99). The lower limits of quantitation were 2.71,7.76, 3.37,21.68,40.21,24.84,47.78 ng/mL,respectively. The precision,accuracy and matrix effects were in line with related requirements of quantitative analysis of biological samples. The pharmacokinetic parameters of α-pinene,1,8-cineole,borneol, β-elemene,curcumol,germacrone,and curdione were as follows that cmaxwere (34.72 ± 9.97),(99.86 ± 5.54),(16.10 ± 3.37), (248.98±86.19),(673.75±104.15),(2 353.64±637.83),(2 420.04±708.51)ng/mL;tmaxwere(2.33±0.29),(0.67±0.29), (1.33±0.58),(1.83±0.76),(0.83±0.29),(0.89±0.18),(1.17±0.76)h;t1/2were(8.64±1.46),(8.98±1.63),(12.43± 2.88),(19.86 ± 4.05),(15.63 ± 5.50),(14.17 ± 4.13),(7.14 ± 0.67)h;AUC0-twere (189.78 ± 89.10),(454.74 ± 82.43), (100.55±8.27),(1 067.37±216.55),(3 154.16±405.94),(16 501.24±663.88),(12 524.92±3 222.10)ng·h/mL;AUC0-∞were(229.57±93.50),(524.32±81.67),(146.28±10.74),(2 092.70±416.18),(5 388.65±661.86),(28 198.87±4 102.62), (14 139.35 ± 3 109.19)ng·h/mL,respectively. After integration,the pharmacokinetic parameters were as follows that cmaxwas 1 880.94 ng/mL; tmaxwas 0.50 h; t1/2was 11.22 h;AUC0-twas 13 050.89 ng·h/mL;AUC0- ∞was 19 015.21 ng·h/mL. CONCLUSIONS: The method can be used for the detection of plasma concentration of effective components in rats;pharmacokinetic parameters of essential oil from C. phaeocaulis after integration are greatly different from single effective component,which can provide reference for characterization of its overall pharmacokinetics.

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