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Biomechanics And Modeling In Mechanobiology

Biomechanics And Modeling In MechanobiologySCIE

國際簡稱:BIOMECH MODEL MECHAN  參考譯名:機械生物學中的生物力學和建模

  • 中科院分區(qū)

    3區(qū)

  • CiteScore分區(qū)

    Q1

  • JCR分區(qū)

    Q2

基本信息:
ISSN:1617-7959
E-ISSN:1617-7940
是否OA:未開放
是否預警:否
TOP期刊:否
出版信息:
出版地區(qū):GERMANY
出版商:Springer Berlin Heidelberg
出版語言:English
出版周期:Quarterly
出版年份:2002
研究方向:工程技術-工程:生物醫(yī)學
評價信息:
影響因子:3
H-index:58
CiteScore指數(shù):7.1
SJR指數(shù):0.793
SNIP指數(shù):1.259
發(fā)文數(shù)據(jù):
Gold OA文章占比:40.37%
研究類文章占比:96.58%
年發(fā)文量:117
自引率:0.0857...
開源占比:0.3034
出版撤稿占比:0
出版國人文章占比:0.09
OA被引用占比:0.2135...
英文簡介 期刊介紹 CiteScore數(shù)據(jù) 中科院SCI分區(qū) JCR分區(qū) 發(fā)文數(shù)據(jù) 常見問題

英文簡介Biomechanics And Modeling In Mechanobiology期刊介紹

Mechanics regulates biological processes at the molecular, cellular, tissue, organ, and organism levels. A goal of this journal is to promote basic and applied research that integrates the expanding knowledge-bases in the allied fields of biomechanics and mechanobiology. Approaches may be experimental, theoretical, or computational; they may address phenomena at the nano, micro, or macrolevels. Of particular interest are investigations that

(1) quantify the mechanical environment in which cells and matrix function in health, disease, or injury,

(2) identify and quantify mechanosensitive responses and their mechanisms,

(3) detail inter-relations between mechanics and biological processes such as growth, remodeling, adaptation, and repair, and

(4) report discoveries that advance therapeutic and diagnostic procedures.

Especially encouraged are analytical and computational models based on solid mechanics, fluid mechanics, or thermomechanics, and their interactions; also encouraged are reports of new experimental methods that expand measurement capabilities and new mathematical methods that facilitate analysis.

期刊簡介Biomechanics And Modeling In Mechanobiology期刊介紹

《Biomechanics And Modeling In Mechanobiology》自2002出版以來,是一本醫(yī)學優(yōu)秀雜志。致力于發(fā)表原創(chuàng)科學研究結果,并為醫(yī)學各個領域的原創(chuàng)研究提供一個展示平臺,以促進醫(yī)學領域的的進步。該刊鼓勵先進的、清晰的闡述,從廣泛的視角提供當前感興趣的研究主題的新見解,或審查多年來某個重要領域的所有重要發(fā)展。該期刊特色在于及時報道醫(yī)學領域的最新進展和新發(fā)現(xiàn)新突破等。該刊近一年未被列入預警期刊名單,目前已被權威數(shù)據(jù)庫SCIE收錄,得到了廣泛的認可。

該期刊投稿重要關注點:

Cite Score數(shù)據(jù)(2024年最新版)Biomechanics And Modeling In Mechanobiology Cite Score數(shù)據(jù)

  • CiteScore:7.1
  • SJR:0.793
  • SNIP:1.259
學科類別 分區(qū) 排名 百分位
大類:Mathematics 小類:Modeling and Simulation Q1 30 / 324

90%

大類:Mathematics 小類:Mechanical Engineering Q1 110 / 672

83%

大類:Mathematics 小類:Biotechnology Q2 88 / 311

71%

CiteScore 是由Elsevier(愛思唯爾)推出的另一種評價期刊影響力的文獻計量指標。反映出一家期刊近期發(fā)表論文的年篇均引用次數(shù)。CiteScore以Scopus數(shù)據(jù)庫中收集的引文為基礎,針對的是前四年發(fā)表的論文的引文。CiteScore的意義在于,它可以為學術界提供一種新的、更全面、更客觀地評價期刊影響力的方法,而不僅僅是通過影響因子(IF)這一單一指標來評價。

歷年Cite Score趨勢圖

中科院SCI分區(qū)Biomechanics And Modeling In Mechanobiology 中科院分區(qū)

中科院 2023年12月升級版 綜述期刊:否 Top期刊:否
大類學科 分區(qū) 小類學科 分區(qū)
醫(yī)學 3區(qū) BIOPHYSICS 生物物理 ENGINEERING, BIOMEDICAL 工程:生物醫(yī)學 2區(qū) 3區(qū)

中科院分區(qū)表 是以客觀數(shù)據(jù)為基礎,運用科學計量學方法對國際、國內學術期刊依據(jù)影響力進行等級劃分的期刊評價標準。它為我國科研、教育機構的管理人員、科研工作者提供了一份評價國際學術期刊影響力的參考數(shù)據(jù),得到了全國各地高校、科研機構的廣泛認可。

中科院分區(qū)表 將所有期刊按照一定指標劃分為1區(qū)、2區(qū)、3區(qū)、4區(qū)四個層次,類似于“優(yōu)、良、及格”等。最開始,這個分區(qū)只是為了方便圖書管理及圖書情報領域的研究和期刊評估。之后中科院分區(qū)逐步發(fā)展成為了一種評價學術期刊質量的重要工具。

歷年中科院分區(qū)趨勢圖

JCR分區(qū)Biomechanics And Modeling In Mechanobiology JCR分區(qū)

2023-2024 年最新版
按JIF指標學科分區(qū) 收錄子集 分區(qū) 排名 百分位
學科:BIOPHYSICS SCIE Q2 26 / 77

66.9%

學科:ENGINEERING, BIOMEDICAL SCIE Q3 62 / 122

49.6%

按JCI指標學科分區(qū) 收錄子集 分區(qū) 排名 百分位
學科:BIOPHYSICS SCIE Q2 22 / 77

72.08%

學科:ENGINEERING, BIOMEDICAL SCIE Q2 51 / 122

58.61%

JCR分區(qū)的優(yōu)勢在于它可以幫助讀者對學術文獻質量進行評估。不同學科的文章引用量可能存在較大的差異,此時單獨依靠影響因子(IF)評價期刊的質量可能是存在一定問題的。因此,JCR將期刊按照學科門類和影響因子分為不同的分區(qū),這樣讀者可以根據(jù)自己的研究領域和需求選擇合適的期刊。

歷年影響因子趨勢圖

發(fā)文數(shù)據(jù)

2023-2024 年國家/地區(qū)發(fā)文量統(tǒng)計
  • 國家/地區(qū)數(shù)量
  • USA164
  • CHINA MAINLAND62
  • England56
  • France38
  • Australia34
  • GERMANY (FED REP GER)29
  • Italy23
  • Israel19
  • Netherlands19
  • Spain19

本刊中國學者近年發(fā)表論文

  • 1、Impact of cyclic bending on coronary hemodynamics

    Author: Wang, Jiaqiu; Fang, Runxin; Wu, Hao; Xiang, Yuqiao; Mendieta, Jessica Benitez; Paritala, Phani Kumari; Fan, Zhenya; Anbananthan, Haveena; Catano, Jorge Alberto Amaya; Raffel, Owen Christopher; Li, Zhiyong

    Journal: BIOMECHANICS AND MODELING IN MECHANOBIOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1007/s10237-022-01677-z

  • 2、Porous metal block based on topology optimization to treat distal femoral bone defect in total knee revision

    Author: Zhang, Jiangbo; Zhang, Aobo; Han, Qing; Liu, Yang; Chen, Hao; Ma, Mingyue; Li, Yongyue; Chen, Bingpeng; Wang, Jincheng

    Journal: BIOMECHANICS AND MODELING IN MECHANOBIOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1007/s10237-023-01692-8

  • 3、The analytical solution to the migration of an epithelial monolayer with a circular spreading front and its implications in the gap closure process

    Author: Zhao, Tiankai; Yuan, Hongyan

    Journal: BIOMECHANICS AND MODELING IN MECHANOBIOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1007/s10237-023-01723-4

  • 4、Characterization of middle ear soft tissue damping and its role in sound transmission

    Author: Shi, Huibin; Xiang, Shuyi; Wang, Liang; Sun, Yongtao; Wang, Jie; Liu, Zhanli

    Journal: BIOMECHANICS AND MODELING IN MECHANOBIOLOGY. 2023; Vol. 22, Issue 3, pp. 1003-1018. DOI: 10.1007/s10237-023-01696-4

  • 5、Tortuosity of the superficial femoral artery and its influence on blood flow patterns and risk of atherosclerosis

    Author: Xuanyu Li, Xiaosheng Liu, Xiao Li, Lijian Xu, Xin Chen, Fuyou Liang

    Journal: Biomechanics and Modeling in Mechanobiology, 2019, Vol., , DOI:10.1007/s10237-019-01118-4

  • 6、Can the sheep model fully represent the human model for the functional evaluation of cervical interbody fusion cages?

    Author: Ling Wang, Yingying Wang, Lei Shi, Peng Liu, Jianfeng Kang, Jiankang He, Yaxiong Liu, Dichen Li

    Journal: Biomechanics and Modeling in Mechanobiology, 2018, Vol., , DOI:10.1007/s10237-018-1104-x

  • 7、On the representation of effective stress for computing hemolysis

    Author: P. Wu, Q. Gao, P.-L. Hsu

    Journal: Biomechanics and Modeling in Mechanobiology, 2019, Vol., , DOI:10.1007/s10237-018-01108-y

  • 8、Modeling of $$hbox {TRPV}_{4}hbox {-C}_{1}$$-mediated calcium signaling in vascular endothelial cells induced by fluid shear stress and ATP

    Author: Long-Fei Li, Cheng Xiang, Kai-Rong Qin

    Journal: Biomechanics and Modeling in Mechanobiology, 2015, Vol.14, 979-993, DOI:10.1007/s10237-015-0647-3

投稿常見問題

通訊方式:SPRINGER HEIDELBERG, TIERGARTENSTRASSE 17, HEIDELBERG, GERMANY, D-69121。