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1.
Chinese Journal of Ultrasonography ; (12): 318-324, 2022.
Article in Chinese | WPRIM | ID: wpr-932406

ABSTRACT

Objective:To explore the repeatability of ultrasound shear wave elastography (SWE) in evaluating the Young′s modulus (E) of the lumbar multifidus (LM) and the difference in E of the bilateral LM, and to analyze the E′s change ratio of LM and its impact factors at upright and 90° forward bend positions.Methods:A total of 60 healthy volunteers, selected from interns, standardized training residents and refresher doctors in department of diagnostic ultrasound of Sir Run Run Shaw Hospital of Zhejiang University School of Medicine from July to December in 2020, were examined twice by SWE to estimate the E value of LM at prone, upright and 90° flexion positions, respectively. Firstly, the intraclass correlation coefficient (ICC) was applied to test the reliability between the two repeated measurements.Secondly, the differences in E of the bilateral LM were discussed. The discrepancies in the E value of male and female volunteers at prone, upright and 90° flexion positions and the change ratio of the E value at upright and 90° forward bend positions were also discussed, respectively. Finally, Spearman correlation coefficient was utilized to evaluate the correlations of E and its change ratio with gender, age, BMI and activity level at upright and 90° forward bend positions, respectively.Results:The ICC value in LM measured by SWE was in the range of 0.691 to 0.951. No obvious change in bilateral E values of the same posture was observed for an individual(all P>0.05). The change ratios of E at upright and 90° flexion positions were approximate to 2 and 7, respectively. Moreover, at prone position, the E value exhibited negative correlation with age and activity level of self-assessment ( rs=-0.300, P=0.020; rs=-0.383, P=0.002). The E in female was higher compared with that in male. At active states the change ratio in E was positively correlated with age and activity level ( rs=0.278, P=0.031; rs=0.495, P<0.001), and the E′s change ratio in male was higher than that in female. Conclusions:SWE possesses excellent repeatability in evaluating the E value of LM with no significant difference in E of bilateral LM. The E′s change ratio in LM varies with different contraction strategies and changes with age, sex and self-reported activity level.

2.
Chinese Pharmacological Bulletin ; (12): 129-136, 2018.
Article in Chinese | WPRIM | ID: wpr-664570

ABSTRACT

Aim To investigate pro-angiogenic effect of SEHM formula on HUVEC cells in vitro and Zebrafish in vivo and the related action mechanism .Methods VEGFR tyrosine kinase inhibitor II ( VRI)-induced ze-brafish intersegmental vessels ( ISVs ) damaged model was established to observe the protective effect of SE-HM formula on ISVs under fluorescence microscope . The pro-angiogenic effect on subintestinal vessels ( SIVs ) of water decoction of SEHM formula in ze-brafish was observed and the mRNA level of VEGFRs , including flt-1, kdr, kdrl, was measured by real-time PCR.The experimental models of the HUVEC cells were set up and the toxicity and promoting proliferation effect of water decoction of SEHM formula in HUVEC cells were assessed by cell viability assay (MTT), and then the levels of Akt, p38, p-p38, p44/42, p-p44/42, VEGFR-1 were detected by Western blot at 6, 12 and 24 h.Results SEHM formula treatment groups could significantly protect VRI-induced zebrafish ISVs loss(P<0.01) and presented pro-angiogenic effect on zebrafish SIVs obviously(P<0.01).The mRNA level of VEGFRs, including flt-1, kdr, kdrl.was up-regula-ted by SEHM formula treatment group significantly (P<0.05) compared with VRI group.Compared with control group , and SEHM formula treatment group could apparently promote proliferation in HUVEC cells and up-regulate the level of Akt, p38, p-p38, p44/42, p-p44/42, VEGFR-1.Conclusions Water de-coction of SEHM formula could present pro-angiogenic effect on SIVs in zebrafish and promote proliferation of HUVEC cells significantly , and its action mechanism may be related to up-regulating the expression of VEG-FR.

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