1.Technique and Application of Deep Learning-based EEG Denoising
Bao-Lian SHAN ; Hai-Qing YU ; Yong-Zhi HUANG ; Jia-Yuan MENG ; Min-Peng XU ; Tzyy-Ping JUNG ; Dong MING
Progress in Biochemistry and Biophysics 2026;53(8):2147-2160
Electroencephalography (EEG) is a non-invasive neurophysiological monitoring technique. It records the electrical activity of the cerebral cortex using electrodes placed on the scalp surface. Owing to its high safety, portability, and millisecond-level temporal resolution, EEG has been widely utilized in a variety of fields, including clinical diagnosis, brain-computer interfaces (BCIs), and cognitive neuroscience research. However, due to its microvolt-level amplitude, EEG is highly susceptible to various artifacts, including electrooculographic (EOG), electrocardiographic (ECG), electromyographic (EMG), and power line interference (PLI). These artifacts can obscure genuine neural activity and introduce spurious electrophysiological features. Consequently, they may compromise EEG signal quality, thereby reducing the reliability of downstream analyses. To address this issue, numerous EEG artifact removal methods have been developed, including both traditional denoising techniques and deep learning-based approaches. Traditional EEG denoising methods have long served as the primary solutions for artifact removal. Representative approaches include filtering, regression, and blind source separation. Although these methods have demonstrated effectiveness in specific scenarios, they suffer from several inherent limitations. Filtering assumes that artifacts and EEG signals can be separated in the frequency domain, but many artifacts, such as EOG and EMG, overlap with EEG spectra, which may lead to the loss of valuable neural information. Regression methods require high-quality artifact references to estimate and subtract contaminations, limiting their effectiveness in reference-free scenarios. Blind source separation can remove artifacts without external references, but it typically requires the number of EEG channels to exceed the number of sources, restricting its application in single- or low-channel EEG recordings. Deep learning-based EEG denoising methods address these limitations effectively. First, they learn the nonlinear mapping between contaminated and clean EEG directly from data in an end-to-end manner. This approach does not rely on assumptions about spectral separability, thereby preserving neural activity more completely. Second, the reference information is incorporated during the training phase, allowing the trained model to perform artifact removal independently without external references. Third, deep learning models can be flexibly designed to accommodate various recording setups, achieving robust denoising for both high-density and single-channel EEG. Collectively, these advantages enable deep learning-based methods to overcome the main challenges of traditional approaches, providing more accurate and reliable EEG signal recovery. The superior denoising performance of deep learning-based EEG denoising methods has attracted increasing attention in EEG artifact removal research. As a result, many deep learning-based denoising methods have been developed and successfully applied in neural engineering areas. However, a systematic review of the techniques and applications in this field is still lacking. To address this gap, this paper reviews recent advances in deep learning-based EEG denoising from four perspectives: technical principle, benchmark dataset, denoising model, and evaluation method. Representative applications in neural signal analysis and BCI decoding are also summarized. Furthermore, the advantage, existing challenge, and future research direction of deep learning-based EEG denoising are discussed. This review aims to provide valuable theoretical insights and technical guidance for researchers. It is also expected to promote further advances and broader applications of deep learning-based EEG denoising techniques.
2.Role of the PTTG3P/miR-146a-3p/PTTG1 pathway in castration-resistant progression of prostate cancer
Shengquan HUANG ; Min JIA ; Chun ZHOU ; Yi ZHI ; Weibing LI
Chongqing Medicine 2025;54(11):2544-2551
Objective To investigate the role of the pituitary tumor-transforming gene 3(PTTG3P)/microRNA-146a-3p(miR-146a-3p)/pituitary tumor-transforming gene 1(PTTG1)pathway in the castration-resistant transformation of prostate cancer(PCa).Methods Real-time quantitative PCR(qPCR)was used to detect the differences in PTTG3P mRNA expression between androgen-dependent PCa cells LNCaP and cas-tration-resistant PCa(CRPC)cells PC3 and DU145,as well as between primary PCa tissues and CRPC tis-sues.PTTG3P overexpression vectors and PTTG1 interference vectors(shPTTG1)were constructed and transfected into LNCaP cells.The cells were divided into the LNCaP group(control),LNCaP/PTTG3P group(transfected with PTTG3P overexpression vector),and LNCaP/PTTG3P/shPTTG group(transfected with PTTG3P overexpression vector and shPTTG).Under castrated conditions,qPCR was used to detect the ex-pression levels of PTTG3P mRNA and miR-146a-3p in each group of LNCaP cells.Cell viability assays in vitro were conducted to assess the growth status of each group of LNCaP cells,colony formation assays were performed to evaluate the tumorigenic ability of each group of LNCaP cells,and Western blotting was used to detect PTTG1 protein expression levels in each group of LNCaP cells.To investigate the role of miR-146a-3p in the PTTG3P/PTTG1 pathway,LNCaP cells were transfected with a miR-146a-3p mimic to establish a miR-146a-3p mimic cell line,and then transfected with the PTTG3P overexpression plasmid to create a miR-146a-3p mimic+PTTG3P cell line.A luciferase reporter assay was conducted to verify the relationship between miR-146a-3p and PTTG1.Results Compared with androgen-dependent PCa cells LNCaP and treatment-naive PCa tissues,PTTG3P mRNA expression was higher in CRPC cells PC3,DU145,and tissues(P<0.05).Un-der castration conditions,the cell viability and colony formation ability of the LNCaP/PTTG3P group were higher than those of the LNCaP group(P<0.05);cell viability and colony formation ability in the LNCaP/PTTG3P/shPTTG group were lower than those in the LNCaP/PTTG3P group(P<0.05);miR-146a-3p ex-pression was lower in CRPC than in treatment-naive PCa tissues(P<0.05).Overexpression of miR-146a-3p inhibited PTTG1 expression in LNCaP cells,and overexpression of PTTG3P reversed this effect(P<0.05).Conclusion Overexpression of PTTG3P promotes the progression of PCa to CRPC through the miR-146a-3p/PTTG1 pathway.The mechanism may involve PTTG3P competitively binding to miR-146a-3p,thereby upreg-ulating PTTG1 expression.
3.Comparative study on the predictive abilities of multiple inflammatory markers for the poor outcome of intracerebral hemorrhage
Qin HUANG ; Ziwei SONG ; Hongla KUANG ; Zhi ZHANG ; Yuping ZHU ; Lin WU ; Daojun HONG ; Jing LIN ; Min ZHU
Chinese Journal of Nervous and Mental Diseases 2025;51(2):103-108
Objective This study aimed to investigate the relationship between multiple inflammatory markers and poor outcome in patients with intracerebral hemorrhage,and to compare their predictive abilities.Methods We retrospectively analyzed the patients with intracerebral hemorrhage admitted to the Department of Neurology of the First Affiliated Hospital of Nanchang University from January 1,2015 to March 31,2023.According to the Modified Rankin Scale at 90 days after onset,the patients were divided into good outcome(mRS≤2 points)and poor outcome(mRS score≥3 points).Clinical information,laboratory examinations and follow-up data were compared between the two groups.Inflammatory markers include neutrophil to lymphocyte ratio(NLR),platelet to lymphocyte ratio(PLR),monocyte to high-density lipoprotein ratio(MHR),systemic inflammatory response index(SIRI),systemic immune-inflammation index(SII),white blood cell count to mean platelet volume ratio(WMR),lymphocyte to monocyte ratio(LMR),and systemic coagulation-inflammation index(SCI).Univariate and multivariate logistic regression analysis were used to analyze the predictors of poor prognosis after intracerebral hemorrhage,and receiver operating characteristic curve(ROC)was constructed to compare their predictive ability.Results A total of 510 patients with intracerebral hemorrhage were included.Of those,297(58.2%)had good outcome,and 213(41.8%)had poor outcome.Comparison of baseline characteristics demonstrated that patients with poor prognosis had higher levels of white blood cells,neutrophils,high-density lipoprotein,fibrinogen,NLR,PLR,SIRI,SII,WMR at admission,larger baseline hematoma volume and baseline perihematomal edema volume,a higher proportion of lobar hemorrhage,older age,and lower levels of platelets,lymphocytes,LMR,and SCI(P<0.05).Multivariate regression analysis showed that NLR(OR:1.081,95%CI:1.032~1.1131,P=0.001),SIRI(OR:1.089,95%CI:1.014~1.169,P=0.019),SII(OR:1.000,95%CI:1.000~1.001,P=0.011),WMR(OR:2.627,95%CI:1.267~5.445,P=0.009)were independently associated with poor prognosis in patients with ICH.In ROC analysis,the area under the curve of NLR(0.729,95%CI:0.685~0.774)was higher than SIRI(0.692,95%CI:0.645~0.738),SII(0.688,95%CI:0.641~0.735)and WMR(0.65,95%CI:0.602~0.698)for predicting poor outcomes.Conclusion NLR,SIRI,SII and WMR at admission are independently associated with poor outcomes in patients with intracerebral hemorrhage,and NLR has the strongest predictive ability.
4.A qualitative study of the information needs and experiences of primary caregivers of patients in the emergency resuscitation room
Zhi DA ; Li ZHANG ; Xihua HUANG ; Min GAO ; Cairong LIU ; Bin HE
Chinese Journal of Practical Nursing 2025;41(5):348-354
Objective:To understand the information needs and experiences of primary caregivers of patients in the emergency resuscitation room of the emergency department, and to provide a reference for clinical staff to meet caregivers′ information needs as well as to develop targeted and effective health information support for doctors and patients.Methods:A descriptive phenomenological research method was used to conduct semi-structured interviews with primary caregivers of 14 patients in the emergency resuscitation room of the First Affiliated Hospital of Nanjing Medical University from November 2023 to February 2024 through purposive sampling, and the Colaizzi 7-step analysis method was applied to summarize and analyze the interview data and refine the themes.Results:Totally 14 respondents aged 28-66, including 6 males and 8 females. Four themes were refined including diverse information needs, information access dilemma, integration of doctor-patient information for joint decision-making and communication, and desire for information and emotional support.Conclusions:The information needs of primary caregivers of patients in the emergency department were diverse, and caregivers were eager to seek patient-related information and crave emotional support and communication when faced with the onset of a patient's illness. Healthcare professionals should strengthen the assistance of caregivers′ information needs to improve the experience of patients and caregivers in medical consultation services and realize the sustainable development of the doctor-patient relationship.
5.Construction and In Vitro Testing of Genipin Cross-linked Hemerythrin Nanoparticles
Zhi-Hua HUANG ; Xie SU ; Hui-Min ZHAO
Journal of Experimental Hematology 2025;33(6):1739-1744
Objective:To explore the feasibility of modifying hemerythrin molecules with natural cross-linker genipin,and evaluate its efficacy and safety.Methods:Hemerythrin was isolated and purified from sipunculid worms using tangential flow ultrafiltration.Subsequently,genipin cross-linked hemerythrin nanoparticles(GHrNPs)were constructed by adding 20%w/w genipin under mildly acidic conditions,and glutaraldehyde cross-linked hemerythrin nanoparticles(GAHrNPs)were constructed by adding 10%w/w glutaraldehyde under mildly alkaline conditions.The diameter,dispersity index,zeta potential,functional group structure,P50,and Hill coefficient of the two nanoparticle groups were measured.The two nanoparticle groups at different concentrations were co-cultured with vascular endothelial cells for 24 hours,then the cell viability and NO concentration in the culture medium were measured.Results:After glutaraldehyde/genipin molecular cross-linking,infrared spectra showed the continuous presence of amide bands Ⅰ and Ⅱ.The hydrated particle sizes of hemerythrin,GHrNP and GAHrNP were(93.14±2.11),(109.53±3.54),and(115.65±2.65)nm,dispersity indexes were 0.30±0.06,0.27±0.05,and 0.25±0.03,zeta potentials were(-24.00±1.54),(-19.52±1.31),and(-18.90±1.25)mV,P50 values were(9.28±0.22),(8.50±0.54),and(5.75±0.90)mmHg,and Hill coefficients were 1.61±0.14,1.58±0.17,and 1.41±0.22,respectively.The average hydrated particle size increased after cross-linking with hemerythrin,the negative value of the zeta potential decreased(both P<0.05).The P50 value of GAHrNP was significantly decreased than that of hemerythrin and GHrNP(P<0.05).The viability of vascular endothelial cells in the GHrNP group was higher than that in the GAHrNP group at different mass concentrations(P<0.05).The NO concentration in the culture medium of vascular endothelial cells in the GHrNP group was higher than that in the GAHrNP group only at 2.0 mg/ml(P<0.05).Conclusion:Hemerythrin molecules cross-linked by genipin can form stable nanoparticles with good oxygen-carrying activity and lower cytotoxicity compared to glutaraldehyde.
6.Present situation of sensors applied to monitoring of spinal morphology and motion
Shi-yu ZHOU ; Ya-qin LI ; Yang-xi HUANG ; Xiao CHEN ; Jing WANG ; Zhi-min LIANG ; Yu-chen GUO ; Xue YANG ; Ling-li LI
Chinese Medical Equipment Journal 2025;46(6):105-110
The application of sensors to the monitoring of spinal morphology and motion was reviewed in terms of the research object and monitoring index.The present situation of the application of sensors was introduced,such as inertial sensor,stretchable strain sensor and electromagnetic sensor.The deficiencies of sensors applied to the monitoring of spinal morphology and motion were analyzed,and the future directions of the application were pointed out.[Chinese Medical Equipment Journal,2025,46(6):105-110]
7.Present situation of sensors applied to monitoring of spinal morphology and motion
Shi-yu ZHOU ; Ya-qin LI ; Yang-xi HUANG ; Xiao CHEN ; Jing WANG ; Zhi-min LIANG ; Yu-chen GUO ; Xue YANG ; Ling-li LI
Chinese Medical Equipment Journal 2025;46(6):105-110
The application of sensors to the monitoring of spinal morphology and motion was reviewed in terms of the research object and monitoring index.The present situation of the application of sensors was introduced,such as inertial sensor,stretchable strain sensor and electromagnetic sensor.The deficiencies of sensors applied to the monitoring of spinal morphology and motion were analyzed,and the future directions of the application were pointed out.[Chinese Medical Equipment Journal,2025,46(6):105-110]
8.Research on software development and smart manufacturing platform incorporating near-infrared spectroscopy for measuring traditional Chinese medicine manufacturing process.
Yan-Fei WU ; Hui XU ; Kai-Yi WANG ; Hui-Min FENG ; Xiao-Yi LIU ; Nan LI ; Zhi-Jian ZHONG ; Ze-Xiu ZHANG ; Zhi-Sheng WU
China Journal of Chinese Materia Medica 2025;50(9):2324-2333
Process analytical technology(PAT) is a key means for digital transformation and upgrading of the traditional Chinese medicine(TCM) manufacturing process, serving as an important guarantee for consistent and controllable TCM product quality. Near-infrared(NIR) spectroscopy has become the core technology for measuring the TCM manufacturing process. By incorporating NIR spectroscopy into PAT and starting from the construction of a smart platform for the TCM manufacturing process, this paper systematically described the development history and innovative application of the combination of NIR spectroscopy with chemometrics in measuring the TCM manufacturing process by the research team over the past two decades. Additionally, it explored the application of a validation method based on accuracy profile(AP) in the practice of NIR spectroscopy. Furthermore, the software development progress driven by NIR spectroscopy supported by modeling technology was analyzed, and the prospect of integrating NIR spectroscopy in smart factory control platforms was exemplified with the construction practices of related platforms. By integrating with the smart platform, NIR spectroscopy could improve production efficiency and guarantee product quality. Finally, the prospect of the smart platform application in measuring the TCM manufacturing process was projected. It is believed that the software development for NIR spectroscopy and the smart manufacturing platform will provide strong technical support for TCM digitalization and industrialization.
Spectroscopy, Near-Infrared/methods*
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Drugs, Chinese Herbal/analysis*
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Software
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Medicine, Chinese Traditional
;
Quality Control
9.Regulatory effect of neutrophils in microglial polarization after permanent ischemic stroke
Min-Hua HUANG ; Xin-Yan YE ; Si-Yu WU ; Shao-Tong LUO ; Zhi-Shan WU ; Yuan CHEN ; Su-Ning PING
Acta Anatomica Sinica 2025;56(2):136-142
Objective To investigate the effects of peripheral blood neutrophil infiltration on the polarization regulation of cerebral resident microglia under a permanent ischemic stroke model.Methods Fifty-eight C57BL/6 mice were divided into two groups.One group was sham group,and the other group of mice was subjected to permanent middle cerebral artery occlusion surgery.Mice were euthanized 48 hours,7 days,14 days,and 30 days after surgery for tissue collection.Western blotting was used to detect expression levels of M1 microglia markers CD 16,M2 microglia marker arginase 1(Arg1),inflammatory cytokine interleukin-1 β(IL-1β),and neutrophil marker myeloperoxidase(MPO)in brain tissue.Immunofluorescence histochemical staining was used to assess neutrophil infiltration and M2 microglial distribution around the infarct area in brain sections.In vitro,purified neutrophils were co-cultured with BV2 microglial cells.After lipopolysaccharide stimulation,the phagocytosis of neutrophils by BV2 cells was observed,and the expression levels of CD16 and Arg1 proteins in BV2 cells were detected.Results Western blotting showed that the levels of CD16(P<0.05),IL-1β(P<0.001),and MPO(P<0.05)in brain tissue increased significantly 48 hours and 7 days after surgery,then decreased,with MPO expression returning to normal levels 30 days after surgery.Immunofluorescence showed a significant increase of MPO-positive cells around the infarct area of the mouse cerebral cortex 48 hours after surgery(P<0.001),followed by a decrease(P<0.05).The number of ionized calcium binding adapter molecule 1(Iba1)and MPO double-positive cells gradually increased after surgery,and reached their peak at 14 days(P<0.05).Iba1 and Arg1 double-positive cells also increased significantly 7 days(P<0.05)and 14 days(P<0.01)after surgery.In vitro,co-culture experiments showed that after BV2 phagocytosing neutrophils,CD 16(P<0.05)significantly decreased and Arg1 significantly upregulated(P<0.05).Conclusion In a permanent ischemic stroke model,microglia transition from M1 to M2 type after phagocytosing neutrophils,and the injured brain area changes from pro-inflammatory state to anti-inflammatory state.
10.Therapeutic potential of ion channel modulation in Alzheimer's disease.
Bing HUANG ; Cheng-Min YANG ; Zhi-Cheng LU ; Li-Na TANG ; Sheng-Long MO ; Chong-Dong JIAN ; Jing-Wei SHANG
Acta Physiologica Sinica 2025;77(2):327-344
Alzheimer's disease (AD), a prototypical neurodegenerative disorder, encompasses multifaceted pathological processes. As pivotal cellular structures within the central nervous system, ion channels play critical roles in regulating neuronal excitability, synaptic transmission, and neurotransmitter release. Extensive research has revealed significant alterations in the expression and function of ion channels in AD, implicating an important role of ion channels in the pathogenesis of abnormal Aβ deposition, neuroinflammation, oxidative stress, and disruptions in calcium homeostasis and neural network functionality. This review systematically summarizes the crucial roles and underlying mechanisms of ion channels in the onset and progression of AD, highlighting how these channel abnormalities contribute to AD pathophysiology. We also discuss the therapeutic potential of ion channel modulation in AD treatment, emphasizing the importance of addressing multifactorial nature and heterogeneity of AD. The development of multi-target drugs and precision therapies is proposed as a future direction of scientific research.
Alzheimer Disease/therapy*
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Humans
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Ion Channels/physiology*
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Oxidative Stress
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Animals
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Amyloid beta-Peptides/metabolism*
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Synaptic Transmission
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Calcium/metabolism*

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