1.Current status of research on the mechanism of action of emodin in the prevention and treatment of chronic liver diseases
Yajie CHEN ; Xin WANG ; Yunjuan WU ; Ying SU ; Yuhan WANG ; Jinxue ZHANG ; Ning YAO ; Ying QIN ; Xiaoning ZUO
Journal of Clinical Hepatology 2026;42(1):228-234
Chronic liver diseases are a group of diseases in which the liver is subjected to a variety of injuries over a long period of time, resulting in irreversible pathological changes that last longer than 6 months. Emodin (EMO) is a natural anthraquinone derivative derived from Rheum officinale, and its pharmacological effect has been extensively studied, exhibiting a variety of biological properties and involving multiple signaling molecules and pathways. Western medicine or surgical treatment is currently the main treatment regimen for chronic liver diseases, and the advance in treatment is limited by various reasons such as side effects and high costs. Due to its natural origin and efficacy, EMO has unique advantages in the treatment of chronic liver diseases and has now become a research hotspot. This article summarizes the therapeutic effect of EMO on chronic liver diseases and its mechanism, in order to provide a certain scientific basis for the traditional Chinese medicine treatment of chronic liver diseases and the development of drugs in clinical practice.
2.Research Progress of Traditional Chinese Medicine in Improving Diabetic Retinopathy Based on Nrf2 Signaling Pathway
Xueqing LIU ; Xinyu ZHONG ; Tingting WANG ; Ning WANG ; Man LIU ; Li WU ; Lili WU ; Lingling QIN ; Tonghua LIU
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(9):69-78
Diabetic retinopathy (DR) is a microvascular complication of diabetes and one of its most common complications. Prolonged hyperglycemia induces oxidative stress, inflammatory responses, apoptosis, and pathological angiogenesis, ultimately disrupting the blood-retinal barrier(BRB) and leading to visual impairment or even blindness. Recent studies show that the nuclear factor erythroid 2-related factor 2 (Nrf2) signaling pathway plays an important role in the development of DR's pathological changes. Meanwhile, Chinese herbal monomers have been shown to modulate the Nrf2 signaling pathway, thereby intervening in the development of DR. In terms of inhibiting oxidative stress, saponin compounds such as platycodin-D and ginsenoside Rb1 downregulate the expression of malondialdehyde (MDA), thereby ameliorating retinal oxidative stress. Flavonoids such as total flavonoids from Pueraria lobata flower and puerarin upregulate the expression of superoxide dismutase (SOD) and glutathione peroxidase (GPx), effectively clearing lipid peroxides. Regarding the suppression of inflammation, phenolic compounds like resveratrol and chlorogenic acid inhibit the nuclear factor kappa B (NF-κB) pathway, reducing the release of tumor necrosis factor-alpha (TNF-α) and mitigating inflammatory responses. In the context of inhibiting apoptosis, polysaccharides such as Polygonatum sibiricum polysaccharide and Angelica sinensis polysaccharide downregulate the expression of the pro-apoptotic protein Bcl-2-associated X protein (Bax) and suppress the activity of the executioner Caspase-3, thereby reducing the apoptosis rate. As for the inhibition of neovascularization, compounds including bilobalide and physcion significantly decrease the protein expression of vascular endothelial growth factor (VEGF), leading to a reduction in retinal pathological angiogenesis. Furthermore, Chinese herbal compound prescriptions such as Tongluo Zhujing pills, Yiqi Huoxue Yangyin decoction, Qiming granules, and Danlou tablets can also intervene in the onset and progression of DR through the mechanisms described above. In summary, both Chinese herbal monomers and Chinese herbal compound prescriptions can modulate the Nrf2 signaling pathway to inhibit oxidative stress, alleviate inflammation, and participate in maintaining BRB integrity, suppressing retinal neovascularization, and preventing neurodegeneration, thereby delaying the progression of DR. Therefore, this paper reviews and summarizes recent studies at home and abroad on how traditional Chinese medicine (TCM) works to treat DR, and the relationship between the Nrf2 pathway and DR. It aims to provide research ideas for preventing and treating DR.
3.The Structure and Function of The YopJ Family Effectors in The Bacterial Type III Secretion System
Ao-Ning LI ; Wen-Bo LI ; Yu-Ying LU ; Min-Hui ZHU ; Yu-Long QIN ; Yong ZHAO ; Zhao-Huan ZHANG
Progress in Biochemistry and Biophysics 2026;53(3):516-533
The Type III Secretion System (T3SS) serves as a pivotal virulence apparatus for numerous Gram-negative bacterial pathogens, enabling them to infect both animal and plant hosts. Functioning as a molecular syringe, the T3SS directly translocates bacterial effector proteins from the bacterial cytoplasm into the interior of eukaryotic host cells. These effectors are central weapons that precisely manipulate a wide spectrum of host cellular physiological processes, ranging from cytoskeletal dynamics to immune signaling, to establish a favorable niche for bacterial survival and proliferation. Among the diverse arsenal of T3SS effectors, the YopJ family constitutes a critical group of virulence factors. Members of this family are characterized by a conserved catalytic triad structure—a hallmark of the CE clan of cysteine proteases that has been evolutionarily repurposed to confer acetyltransferase activity. A defining and intriguing feature of these enzymes is their stringent dependence on a host-derived eukaryotic cofactor, inositol hexakisphosphate (IP6), for allosteric activation. This requirement acts as a sophisticated molecular safeguard, ensuring enzymatic activity only within the appropriate host environment, thereby preventing detrimental effects on the bacterium itself. While seminal studies on individual members such as Yersinia’s YopJ and Salmonella’s AvrA have provided deep mechanistic insights, a systematic and integrative understanding of the structure-function relationships across the entire family remains fragmented. Key questions persist regarding how a conserved catalytic core has diverged to recognize distinct host substrates in different kingdoms of life. To address this gap, this article provides a systematic review of the YopJ family, focusing on three interconnected aspects: their structural features, their catalytic mechanism, and their divergent immunosuppressive strategies in animal versus plant hosts. By conducting a comparative analysis of the sequences and resolved three-dimensional structures of three representative members (e.g., HopZ1a, PopP2, AvrA), we elucidate regions of significant variation embedded within the conserved core catalytic architecture. These variable regions, often involving surface loops and substrate-binding interfaces, are crucial determinants of target specificity and functional specialization. The functional divergence of this effector family is most apparent when comparing their modes of action in different hosts. In animal hosts, YopJ-family effectors primarily sabotage innate immune signaling pathways. They achieve this by acetylating key serine and threonine residues within the activation loops of critical kinases in the MAPK and NF‑κB pathways. This post-translational modification blocks the phosphorylation and subsequent activation of these kinases, leading to potent suppression of inflammatory cytokine production. Conversely, in plant hosts, the strategy broadens to dismantle the two-tiered plant immune system. YopJ homologs target a more diverse set of substrates, including immune-associated receptor-like cytoplasmic kinases (RLCKs), microtubule networks via tubulin acetylation (which disrupts cellular trafficking and signaling), and transcription factors central to defense gene regulation. This multi-target approach effectively suppresses both Pattern-Triggered Immunity (PTI) and Effector-Triggered Immunity (ETI). In conclusion, this synthesis aims to deepen the mechanistic understanding of YopJ family-mediated pathogenesis by integrating structural biology with cellular function across host kingdoms. Elucidating the precise molecular basis for substrate selection—how conserved platforms achieve target diversity—is a major frontier. Furthermore, this knowledge provides a vital theoretical foundation for developing novel anti-virulence strategies. Targeting the conserved IP6-binding pocket or the catalytic acetyltransferase activity itself represents a promising avenue for designing broad-spectrum inhibitors that could disarm this critical family of bacterial effectors, potentially offering new therapeutic approaches against a range of pathogenic bacteria.
4.Cryo-lift-out Technique for Cryo-electron Tomography of Tissue Samples
Chang-Dong QIN ; Qiang GUO ; Ning GAO
Progress in Biochemistry and Biophysics 2026;53(6):1503-1519
Cryo-electron tomography (cryo-ET) enables the determination of high-resolution three-dimensional structures of macromolecular complexes within cells in a near-physiological state, providing crucial structural insights into fundamental life processes. Cryo-ET has achieved landmark successes in single-cell models. However, many critical biological processes do not occur in isolated cells but emerge from intercellular coordination within tissues. Furthermore, many research subjects, including neural tissues, tumor biopsies, plant tissues, and clinical pathological samples, cannot be obtained through single-cell culture and must be directly dissected from organisms or tissue blocks. Advancing cryo-ET from single-cell to tissue-level applications is therefore crucial for capturing the full complexity of biological activities in their native context. A major technical bottleneck for tissue cryo-ET lies in the preparation of sufficiently thin (<300 nm) lamellae from vitrified tissue specimens. Although high-pressure freezing can vitrify tissues up to 200 µm thick, these samples are far too thick for direct transmission electron microscopy imaging. Among the available thinning methods, cryo-focused ion beam (cryo-FIB) milling has emerged as the most promising approach, as it avoids the mechanical artifacts inherent to cryo-ultramicrotomy. However, conventional on-the-grid cryo-FIB milling is inefficient for thick tissues, requiring excessive milling time and discarding most of the sample. To overcome these limitations, cryo-lift-out has been developed—a technique in which a micromanipulator physically extracts a chunk of interest from deep within the tissue and transfers it to a dedicated grid for final thinning. This approach bypasses the thickness barrier and enables site-specific analysis of internal structures. This review systematically traces the evolution of cryo-lift-out from its origins in materials science to its adaptation for biological tissues. In room-temperature lift-out, reliable attachment is achieved by gas-injection system (GIS)-assisted metal deposition. Transferring this approach to cryogenic conditions proved challenging because precursor gases condense on all cold surfaces, leading to contamination and poor adhesion. The development of copper-assisted redeposition marked a critical turning point: instead of relying on gas deposition, this method uses ion-beam sputtering to deposit copper atoms at the needle-chunk interface, creating a strong, low-contamination bond. This innovation has enabled robust cryo-lift-out workflows and paved the way for serial lift-out, in which multiple consecutive lamellae are prepared from a single tissue chunk, substantially increasing throughput and enabling volumetric imaging. Despite these advances, several technical challenges remain. Curtaining effects caused by uneven chunk surfaces can introduce artifacts into tomograms, requiring careful optimization of milling parameters and protective coating. The cryo-adhesion step still demands precise control of beam angle, needle positioning, and milling depth, making the process highly operator-dependent. Additionally, the choice of grid geometry is critical. Custom-designed grids with double-sided attachment improves stability and offer better compatibility with cryo-ET tilt series. Automation, which has greatly improved room-temperature lift-out, has not yet been achieved for cryo-lift-out due to the complexity of handling heterogeneous biological tissues and the need for real-time adaptation. Future progress will likely focus on integrating cryo-lift-out with volume electron microscopy to correlate ultrastructure across scales, developing intelligent control systems to reduce user intervention, and extending the technology to challenging samples such as plant tissues and some material science samples for interface study. A systematic analysis of the cryo-lift-out technique clarifies the key limiting factors for its large-scale application and lays a foundation for methodological refinement and technological innovation. By consolidating recent advances and identifying remaining bottlenecks, this review aims to support the broader adoption of cryo-lift-out and accelerate the development of tissue-scale in situ structural biology.
5.Mechanisms of Tongmai Yangxin Pills and Tongxinluo Capsules in Treating Myocardial No-reflow Based on Treating Same Disease with Different Methods
Siqi LIU ; Wenqing YANG ; Ting CHEN ; Yan TANG ; Ju WANG ; Yaxuan PENG ; Haoxue QIN ; Lanyue DENG ; Jialu GONG ; Ning XU ; Shuying ZHANG ; Wei ZHANG ; Ting CHEN
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(17):125-133
ObjectiveTo investigate the mechanisms of Tongmai Yangxin pills (TMYX) and Tongxinluo capsules (TXL) in treating no-reflow (NR) after myocardial ischemia and reperfusion following the concept of treating the same disease with different methods, based on integrative pharmacology and experimental validation. MethodsEighty 8-week-old SPF-grade SD rats were randomly assigned into four groups (n=20): sham operation, NR, TMYX (4 g·kg-1), and TXL (2 mg·kg-1). A rat model of myocardial ischemia-reperfusion no-reflow was established by in-situ ligation of the left anterior descending coronary artery. Gastric gavage was first performed 4 h after the operation, and samples were collected on day 7. Thioflavin S staining was used to observe the NR area in rat myocardium. Echocardiography was performed to examine the cardiac function. Hematoxylin-eosin (HE) staining was conducted to observe the pathological changes of the myocardial tissue. An automatic biochemical analyzer was adopted to measure myocardial enzyme activity. Then, integrated pharmacology was applied for Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis. Finally, Western blot was employed to quantify the protein levels of key targets in the myocardial tissue, including soluble guanylyl cyclase (sGC), cyclic guanosine monophosphate (cGMP)/dependent protein kinase (PKG), phosphorylated phosphatidylinositol 3-kinase (p-PI3K), phosphorylated protein kinase B (p-Akt), and hypoxia-inducible factor-1α (HIF-1α). ResultsCompared with the sham operation group, the NR group showed increased NR area of myocardium, decreased left ventricular ejection fraction (EF), left ventricular fractional shortening (FS), left ventricular outflow tract peak velocity (LVOT Peak), and left ventricular stroke volume (LVSV) (P<0.01), fractured and disordered myocardial fibers as well as inflammatory cell infiltration in the myocardial tissue, enhanced activities of creatine kinase (CK), creatine kinase isoenzyme (CK-MB), and lactate dehydrogenase (LDH) in the myocardial tissue (P<0.01), and downregulated protein levels of sGC, PKG, phosphorylated (p)-PI3K (Tyr458), and p-Akt (Tyr315) in the myocardial tissue (P<0.05, P<0.01). The expression level of HIF-1α protein showed a downward trend. Compared with the NR group, the TMYX group and TXL group exhibited a decreasing trend in myocardial NR area, EF, FS, and LVOT Peak significantly increased (P<0.05, P<0.01), LVSV showed an upward trend, ameliorated myocardial pathological morphology and inflammatory infiltration, reductions in CK, CK-MB, and LDH activities (P<0.05, P<0.01), and upregulated protein levels of sGC, PKG, p-PI3K (Tyr458) in myocardial tissue (P<0.05, P<0.01), the protein expressions of p-Akt (Tyr315) and HIF-1α showed an upward trend. A comparison of the therapeutic effects between the two compound prescriptions showed that TMYX tended to exert a better effect in restoring cardiac function and protecting cardiac structure in NR rats, whereas TXL was more effective in reducing myocardial NR area and lowering myocardial enzyme activities in NR rats. Integrative pharmacology analysis combined with experimental verification demonstrated that both TMYX and TXL could alleviate NR through the following mechanisms: activating the cyclic cGMP/PKG signaling pathway to regulate vascular tone, activating the PI3K/Akt signaling pathway to dilate blood vessels, and activating the HIF-1 signaling pathway to inhibit oxidative stress. However, TMYX had an advantage in activating the cGMP/PKG pathway, while TXL was superior in activating the PI3K/Akt pathway. The two compound prescriptions exerted comparable effects on the HIF-1 signaling pathway, which might serve as their common therapeutic pathway. ConclusionBoth TMYX and TXL could alleviate NR damage. TMYX exerts its protective effect against NR mainly by activating the cGMP/PKG signaling pathway, while TXL exerts its effect mainly through the PI3K/Akt pathway. The HIF-1α signaling pathway may be a common pathway for the two compound prescriptions to exert their protective effects against NR. This study reveals the similarities and differences between TMYX and TXL in the treatment effect and mechanism for NR, providing an experimental basis and a theoretical basis for better clinical application of the two compound prescriptions.
6.A Behavior and Event-Related Potentials Study on the of the Effects of Long-Term Emotional Disturbance and Liver Failing to Govern Conveyance and Dispersion on Prospective Memory in Middle-Aged and Elderly People in the Community
Zhongpeng QIN ; Xianghong ZHAN ; Yong LIU ; Junlin HOU ; Ning LI ; Ziwei ZHAO ; Huanghong ZHAO ; Lei HUO ; Yan ZHANG
World Science and Technology-Modernization of Traditional Chinese Medicine 2025;27(3):739-751
Objective To explore the neuroelectrophysiological mechanism of the decline of overall cognitive function and prospective memory,the syndrome manifestation of liver failing to govern conveyance and dispersion of the middle-aged and elderly people in the community with long-term emotional disturbance were evaluated.Methods Eysenck personality questionnaire(EPQ)and general condition questionnaire were used to screen the middle-aged and elderly people from 46 to 65 years old in the community who met the high and low neuroticism criteria,which were included in the long-term emotional disturbance group and the control group.According to the principle of matching sex,age(±2 years)and years of education(±2 years),60 subjects in each group were included.The scores of livers meridian syndrome,anxiety factor,depression factor and the total scores of three factors in the two groups were detected with the emotion rating scale for Ganzangxiang of traditional Chinese medicine.The overall cognitive function,the overall level of prospective memory and the dual-task paradigm of event-related memory were evaluated and event-related potential components were detected.Results Compared to the control group,the total scores of emotion rating scale for Ganzangxiang of traditional Chinese medicine and the scores of liver meridian syndrome factor,anxiety factor and depression factor all increased in the long-term emotional disturbance group significantly(P<0.05).The total scores of MoCA scale(after correction)and the level scores of visual space and executive function,attention and delayed recall decreased significantly(P<0.05),and the total scores of prospective memory questionnaire decreased significantly(P<0.05).The correct rates of ongoing tasks and prospective memory tasks in the event-based prospective memory dual task paradigm were decreased,and the reaction time was prolonged in the long-term emotional disorder group significantly(P<0.05).The amplitude of P200 of ongoing task and prospective memory task were increased in the long-term emotional disorder group(0.05
7.A Comparative Study on the Survival Prognosis Model of Immune-related Genes in Patients with Lung Adenocarcinoma based on Deep Learning
Chinese Journal of Health Statistics 2025;42(1):56-61
Objective To explore the prognostic value of different deep learning models constructed using multi-omics data and immune-related genes in patients with lung adenocarcinoma and compare their predictive performance.Methods DeepOmix,Nnet-survival,Cox-nnet and Deepsurv prognosis prediction models were constructed from the TCGA database lung adenocarcinoma multi-omics data after extracting immune genes using original data and the data after dimensionality reduction by single-factor Cox regression,variance and elastic net(EN)method,respectively.C-index and time-dependent ROC were used to evaluate the predictive effect of the models.Results The results of comparing the C-index,3-year AUC and 5-year AUC values of the multi-omics models showed that the DeepOmix model combined with biological signaling pathway information using different dimensionality reduction methods to construct prognosis prediction models for lung adenocarcinoma had the best prediction performance compared with the DeepOmix,Nnet-survival,Cox-nnet and Deepsurv models(C-index was above 0.83,3-year AUC was above 0.89 and 5-year AUC was above 0.94).In screening variables to construct prognosis prediction models,EN had good predictive accuracy in the majority of cases.The DeepOmix model significantly distinguished between patients in the high-risk and low-risk groups,and the prognosis was worse in the high-risk group(P<0.001).Conclusion The DeepOmix model combined with biological signaling pathway and EN dimension reduction can analyze high-dimensional low sample size data,and construct a prognosis prediction model for lung adenocarcinoma with high predictive performance compared with other models.
8.Mechanistic study on the male flower of Eucommia ulmoides-Sanchi flower herb pair for improving glucose and lipid metabolism in type 2 diabetes mellitus model mice
Ning WANG ; Congyi LIU ; Ying DING ; Xinyu ZHONG ; Zimeng HUANG ; Na ZHENG ; Qiu'e ZHANG ; Ruifeng YANG ; Lili WU ; Lingling QIN ; Tonghua LIU
Journal of Beijing University of Traditional Chinese Medicine 2025;48(10):1390-1403
Objective Based on the traditional Chinese medicine theory of"simultaneous regulation of the liver and kidney,"this study integrated network pharmacology prediction,molecular docking,and animal experimental validation to analyze the multi-target regulatory network of Duzhong Xionghua(the male flower of Eucommia ulmoides)-Sanqi Hua(Sanchi flower)herb pair(hereinafter called"herb pair")in modulating glucolipid metabolic disorders in type 2 diabetes mellitus(T2DM),thereby elucidating its underlying molecular mechanism.Methods Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform,China National Knowledge Infrastructure,VIP Database for Chinese Technical Periodicals,and Wanfang Data were used to obtain the active ingredients of the male flower of Eucommia ulmoides and Sanchi flower.PubChem Compound,SwissTargetPrediction,and SuperPred were used to screen and predict the targets of the drugs;The Human Gene Database,The Online Mendelian Inheritance in Man,and Therapeutic Target Database were used to screen the key gene targets of T2DM.A"component-target-pathway"network diagram was constructed using Cytoscape software,and Gene Ontology functional annotation and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis were employed to identify the functions of the relevant target genes and pathways.Molecular docking was used to verify the binding activities of the core components and the key targets.For animal experiments,spontaneous T2DM model mice were used,in which the normal group consisted of six mice(wild type)from the same litter,and the 24 successfully modeled mice were randomly divided into model,metformin(0.26 g/kg),high-dose herb pair(2.6 g/kg),and low-dose herb pair groups(1.3 g/kg)according to the blood glucose levels and body weights,with six mice per group.The drugs were administered by gavage daily for six consecutive weeks.The body weight and fasting blood glucose(FBG)levels were measured weekly,and an oral glucose tolerance test was performed in the fifth week.At the end of drug administration,body weight,naso-anal length,liver and bilateral epididymal adipose mass were measured;pathological changes in the liver were observed using HE staining;serum levels of aspartate transaminase(AST),alanine amino-transferase(ALT),total cholesterol(TC),triglyceride(TG),low-density lipoprotein cholesterol(LDL-C),and high-density lipoprotein cholesterol(HDL-C)were detected using colorimetric assay;and liver tissue phosphoinositide 3-kinase(PI3K)/protein kinase B(AKT)/glycogen synthase kinase-3β(GSK-3β)signaling pathway protein expressions were determined using Western blotting.Results Network pharmacology screening identified 38 active components and 669 potential targets of the herb pair.Intersection analysis with 1,275 T2DM-related targets yielded 185 common targets.Protein-protein interaction network analysis and pathway enrichment revealed the PI3K/AKT signaling pathway as a key mechanism.Molecular docking confirmed the strong binding affinity of the core components to key targets such as AKT1,suggesting that the herb pair may activate the PI3K/AKT pathway and inhibit GSK-3β activity via beta-sitosterol etc.Animal experiments demonstrated that,compared with the model group,the metformin group exhibited reduced FBG,AST,and ALT levels(P<0.01),but failed to improve body weight,Lee's index,or epididymal fat coefficient.Both herb pair doses significantly lowered Lee's index,hepatic index,and the epididymal fat coefficient(P<0.01),with the low-dose herb pair group showing attenuated body weight gain in mice.In contrast,the high-dose herb pair group exhibited decreased FBG,improved glucose tolerance,reduced TC,TG,and LDL-C levels,and increased HDL-C level(all P<0.01).HE staining revealed that all metformin and the herb pair markedly restored hepatic structure and alleviated steatosis in model mice,with more pronounced effects in the high-dose group than in the low-dose group.Western blotting result indicated that in the low-dose herb pair group,phospho-PI3K(p-PI3K),AKT,and phospho-GSK-3β(p-GSK-3β)protein expressions significantly increased(P<0.05 or P<0.01),whereas GSK-3β decreased(P<0.05).The high-dose group exhibited enhanced PI3K,p-PI3K,AKT,phospho-AKT,and p-GSK-3β protein expressions(all P<0.01),accompanied by reduced GSK-3β expression(P<0.01).Conclusion The male flower of Eucommia ulmoides-Sanchi flower herb pair may ameliorate T2DM-related glucolipid metabolic disorders by modulating the PI3K/AKT/GSK-3β pathway.
9.An investigation of diagnostic X-ray resources in Jinan in 2023
Guoying NING ; Yujiang GU ; Aihua ZHAI ; Jiangbo XIN ; Yiwen QIN
Chinese Journal of Radiological Medicine and Protection 2025;45(4):341-345
Objective:To investigate the current status of diagnostic X-ray resources in Jinan in order to provide theoretical basis for continuously optimizing the allocation of diagnostic resources and strengthening the management of radiological health and radiation protection.Methods:In accordance with the 2023 Jinan radiation protection monitoring program of medical and health institutions, a survey was carried out for medical institutions involved in diagnostic X-ray examinations (excluding military hospitals and dental clinics) in Jinan by using uniform questionnaires. The survey included the basic situation of diagnostic X-ray institutions, the allocation of diagnostic X-ray equipment, the number of diagnostic staff, and the frequency of diagnositic X-ray examinations.Results:In 2023, there were 298 diagnostic X-ray institutions in Jinan, with 3 494 diagnostic workers and 1 387 items of diagnostic X-ray equipment. The included were 41 tertiary hospitals, 57 secondary hospitals, 110 primary hospitals and 90 unrated hospitals. The tertiary hospitals possessed the largest number of the diagnostic workers and equipment, accounting for 60.99% and 45.35% of the total, respectively. Among all the items of diagnostic X-ray equipment, the number of items of digital radiography equipment ranked top (34.37%), followed by CT machines (24.44%). There were 147.32 items of diagnostic X-ray equipment per million population on average. A total of 8 180 363 individuals received various types of diagnostic X-ray examinations, with CT diagnosis accounting for 46.93% and X-ray for 34.41%. The frequency of diagnostic X-ray examinations was 868.86/1 000 population, including the frequency of CT examinations of 407.76 per 1 000 population.Conclusions:The per capita possession of medical X-ray equipment in Jinan is at a high level. The frequency of medical exposure has increased significantly, especially CT examinations. There is a big gap in diagnostic X-ray resource allocation between different levels of hospitals, so it is necessary to control the resource allocation and strengthen the protection of CT examination on the scientific basis.
10.Analysis of CT imaging characteristics of high altitude pulmonary edema
Li-na YUE ; Gang CHEN ; Juan-qin NIU ; Ning-xia MU ; Yu-feng BAI ; Kang LIU
Chinese Medical Equipment Journal 2025;46(11):57-61
Objective To analyze the CT manifestations of high altitude pulmonary edema(HAPE)to provide radiological evidence for its early and accurate diagnosis.Methods Totally 200 HAPE patients clinically confirmed at some hospital from April 2021 to April 2024 were enrolled into a study group,and 56 individuals undergoing health examinations at the hospital's physical examination center between January and June 2023 were included into a control group.Examinations were carried out with a United Imaging uCT528 40-slice spiral CT scanner.The patients in the study group were observed in terms of HAPE staging,the extent of pulmonary involvement,CT manifestations of different stages including location,distribution,density and morphology of pulmonary lesion.The diameters of the main pulmonary arteries and ascending aortas of the subjects in the two groups were measured,and the ratios of the two diameters were calculated.SPSS 25.0 software was used for statistical analysis.Results In the study group,there were 26 cases(13.0%)at early stage,105 ones at progression stage(52.5%),32 ones at critical outbreak stage(16.0%)and 37 ones at resolution and absorption stage(18.5%),and there were 35.5%with unilateral lung involvement and 64.5%with bilateral involvement.At early stage,HAPE chest CT manifestations included increased and thickened bilateral bronchovascular bundles,widened main pulmonary artery lumen and faint ground-glass opacity in lungs;at progression stage,HAPE chest CT manifestations revealed multiple cloud-like or patchy areas of increased density within lungs;at critical outbreak stage,CT scanning indicated diffuse patchy opacities and consolidation in lungs,white lung-like changes could be found in some severe cases,and bronchial air signs were shown within affected segments in some ones with severer signs in the right lung than in the left lung;at resolution and absorption stage the CT manifestations were similar to those at early stage,with lesions completely resolving after treatment.The study group had the diameters of the main pulmonary arteries greater while the diameters of the ascending aortas less than those of the control group,and the ratios of the diameters of the two diameters in the study group were higher than those in the control group,with the differences being statistically significant(all P<0.05).Conclusion Chest CT is an important examination method for the early diagnosis of HAPE and clarification of its clinical staging,which directly reflects the pulmonary pathological changes in HAPE patients and helps doctors fully understand the disease progression.

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