1.Development and application of conversion adapter for ventilator's gas source
Yu CHEN ; Changning SHI ; Chongjian ZHANG
Chinese Medical Equipment Journal 2004;0(07):-
Objective : To realize unifying gas source adapter's standards for different ventilators while the one be connected to different terminal units of central gas source.The ventilators can be used at every clinical department of hospital normally.Methods: A conversion adapter for terminal units of ventilators and central gas source was designed and developed.After experiments on airtightness,the conversion adapter was used and connected into different terminal units for unified format and universality.Results: The conversion adapter for ventilator's gas source was universally adapted to ventilators in all hospital's clinical departments.
2.Effects of Transfection of Mash-1 Gene on Neural Differentiation of Embryonic Stem Cell in Spinal Cord Injury Mice
Leqin XU ; Xiaofeng LI ; Qi SHI ; Yongjun WANG ; Chongjian ZHOU
Chinese Journal of Rehabilitation Theory and Practice 2016;22(1):46-52
Objective To investigate the effects of overexpression of Mash-1 gene on functional recovery and neural differentiation of embryonic stem cells in spinal cord injury mice. Methods CE3 cell line with overexpression of Mash-1 gene was generated with murine stem cell virus. Spinal cord injury model was established with forceps compression in 4-week-old KM mice. Normal saline (model group, n=12), CE3 cells with or without overexpression Mash-1 gene (CE3-Mash-1 and CE3 groups, n=12 respectively) were transplanted into the ar-eas of injury 3 days after injury. They were assessed with the Basso Mouse Scale (BMS) 1, 7, 14, 21, and 28 days after injury. 6 mice from each group were sacrificed 14 and 28 days after injury respectively. The spinal cord area remained were observed with HE stained, and the expression of Oct3/4, nestin,β-tubulin III and glial fibrillary acidic protein (GFAP) were detected with immunofluorescence in the injured spinal cord in the CE3 and CE3-Mash-1 groups. Results The score of BMS significantly improved in CE3 and CE3-Mash-1 groups com-pared with that of the model group (F>84.471, P<0.05), with the more area of spinal cord remained (F>49.990, P<0.05). There were less Oct3/4 positive cells in the CE3-Mash-1 group than CE3 group (t=5.439, P<0.001), with more nestin (t=-7.536, P<0.001) andβ-tubulin III (t=-9.941, P<0.001) positive cells. However, there was no significant difference in GFAP positive cells between CE3-Mash-1 and CE3 groups (t=1.701, P>0.05). Conclusion Overexpression of Mash-1 gene promotes CE3 cells to differentiate into neurons in spinal cord injury mice, and improve the motor function recovery.
3.Discussion on the fixation of medical equipment in the health service train
Yu CHEN ; Hanjun SUN ; Changning SHI ; Chongjian ZHANG
Chinese Medical Equipment Journal 1989;0(01):-
It's important to find good ways to fix medical equipment in the train when designing and re-constructing a healthy se rvice train for modern war.This article points out some methods for references.
4.Research progress on pharmacological activities of the available compositions in Chinese medicinal herb Ligusticum chuanxiong
Bing SHU ; Chongjian ZHOU ; Yinghui MA ; Yongjun WANG ; Qi SHI
Chinese Pharmacological Bulletin 2003;0(09):-
Ligusticum chuanxiong is a Common Chinese medicinal herb which is widely used in clinical treatment. Modern research has shown that the ingredients of Ligusticum chuanxiong such as tetramethylpyrazine and ferulic acid have multiple effects of scavenging oxygen free radicals,calcium-antagonism,vasodilating,inhibiting platelet aggregation and thrombosis and so on. This article reviews the research progress in pharmacological activities of the available compositions in ligusticum chuanxiong in the past several years.
5.Clinical study of the effect of two kinds of analgisia ways on induced abortion
Lijuan ZHANG ; Chongjian SHI ; Zhenhai WANG ; Jinsong LIU ; Dianchen WANG
Clinical Medicine of China 2008;24(9):876-878
Objective To compare the effect of artianterior sacralia foramina block and sacral block on induced abortion.Mathods 263 women for induced abortion were randomly devided into three groups:the group for anteriora sacralia foramina block (n=95),the group for sacral block (n=90),the control group (n=78).Parameters before and after abortion measured include anesthesia area,skin of both legs and anus tempreture,blood pressure,pulse rate,resperatory rate,heart rate,clinical effect and VAS score.Results At 15 minutes after the anteriora sacralia foramina blocking,the anesthesia area involved distribution of medii clunium nerve,glacens nerve,puden-dus nerve,posterior femoris cutaneus nerve,ischiadicus nerve.The skin temperatures of both legs increased significantly (P<0.01).Blood pressure,pulse rate,resperatory rate,and heart rate didn't vary markedly.The analgisia effect of anteriora sacralia foramina block was superior to sacral block.Conclusion The anteriora sacralia foramina block is simple,safe,effective,practical and can become a new approach for analgisia in induced abortion.
6.Effects of Yiqi Huayu Recipe on neural cell adhesion molecule in rats with lumbar nerve root compression
Chongjian ZHOU ; Yinghui MA ; Bing SHU ; Yongjun WANG ; Qi SHI
Journal of Integrative Medicine 2006;4(2):175-80
OBJECTIVE: To study the effects of Yiqi Huayu Recipe on neural cell adhesion molecule (N-CAM) in neuromuscular junctions during nerve regeneration in rats with lumbar nerve root compression. METHODS: The rats with lumbar nerve root compression were given Yiqi Huayu Recipe for 10, 20 and 30 days respectively. The distribution of N-CAM in neuromuscular junctions of soleus muscle in rats was examined with immunohistochemical method and confocal laser scanning microscopy technique. The acetylcholine receptor (AChR) was visualized with fluorescein-conjugated alpha-bungarotoxin (alpha-BTX). The overlap areas of N-CAM and AChR sites were measured with NIH image technique. RESULTS: The aggregates, sprouts and extensions of N-CAM in the neuromuscular junctions and the overlap areas of N-CAM and AChR sites in the Yiqi Huayu Recipe-treated group were all better improved than those in the untreated group. CONCLUSION: The expression of N-CAM is regulated according to the state of innervation for muscles. Yiqi Huayu Recipe may accelerate this nerve regeneration process.
7.Effect of Yiqi Huayu Recipe on regeneration process after L5 nerve root compression in rats
Chongjian ZHOU ; Yongjun WANG ; Qi SHI ; Baoxing HOU ; Mei LIU
Journal of Integrative Medicine 2003;1(4):277-80
OBJECTIVE: To study the effect of Yiqi Huayu Recipe on neurons in neuromuscular junction after L5 nerve root compression in rats. METHODS: By using immunohistochemistry, confocal laser scanning techniques and protein gene product 9.5 as a neuronal marker, the motor endplates were visualized with fluorescein-conjugated alpha-BTX. The effect of Yiqi Huayu Recipe on nerve terminals of neuromuscular junction at 10, 20, 30, 60 days after L5 nerve root compression was observed in rat soleus muscles during regeneration. The overlap areas of terminals and endplates were measured with NIH image technique. RESULTS: As for the aggregates, sprouts, extension of nerve terminal during regeneration, the connecting speed and range of nerve terminal with endplates, as well as the reformation of neuromuscular junctions during regeneration, Yiqi Huayu Recipe group was better than that of the control group. CONCLUSION: Yiqi Huayu Recipe can promote the hyperplasia of neurons and enhance the regeneration function. It also can accelerate the neuromuscular junction reformation and shorten the process of regeneration.
8.An in vitro natural degeneration model of chondrocytes derived from endplate of intervertebral discs of rats
Jixiang SHI ; Yongjun WANG ; Qi SHI ; Quan ZHOU ; Peng SUN ; Qin BIAN ; Chongjian ZHOU
Journal of Integrative Medicine 2006;4(3):293-7
OBJECTIVE: To set up a natural degeneration model of chondrocytes derived from endplate of intervertebral discs of rats in order to offer an appropriate carrier for the study on mechanism of intervertebral disc degeneration. METHODS: The method of enzyme digestion combined with natural subculture was used to set up the in vitro natural degeneration model of chondrocytes derived from the endplate of intervertebral disc of rats. The morphological appearances and microstructures of the chondrocytes of different generations were observed. The expression of collagen II in chondrocytes was detected by immunocytochemical method. RESULTS: The chondrocytes derived from the endplate of intervertebral disc expressed collagen II. After 13 days of culture, the chondrocytes of generation III showed that the ability of cell division descended, the nucleoli became unclear, the cells deformed obviously, fusiform shape with weak optical activity appeared, and the intercellular space was enlarged. There were vacuoles and lipid droplets in cytoplasm. The synthesis of collagen II, as well as the cell proliferation rate, descended notably. All results showed the natural degeneration process of the chondrocytes. CONCLUSION: The in vitro natural degeneration model of chondrocytes derived from endplate of intervertebral discs of rats was successfully established. This can offer the cytological basis for study on the mechanism of intervertebral disc degeneration.
9.Intervertebral disc degeneration in hypoxia-inducible factor 1 alpha-knockout mice and treatment of Yiqihuayu Prescription
Jing WANG ; Fangfang DONG ; Xiaofeng LI ; Jinhai XU ; Bing SHU ; Qi SHI ; Yongjun WANG ; Chongjian ZHOU
Chinese Journal of Tissue Engineering Research 2013;(24):4481-4487
10.3969/j.issn.2095-4344.2013.24.016
10.Effects of Yiqi Huayu Decoction on brain-derived neurotrophic factor expression in rats with lumbar nerve root injury.
Bing SHU ; Xiaofeng LI ; Leqin XU ; Yongjun WANG ; Qi SHI ; Chongjian ZHOU
Journal of Integrative Medicine 2010;8(3):280-6
To observe the effects of Yiqi Huayu Decoction, a compound traditional Chinese herbal medicine, on brain-derived neurotrophic factor (BDNF) expression in lumbar nerve root and soleus of rats after lumbar nerve root compression injury.