ISSN 1340>+ 6590 Â å ª ½ Ü å ¢4 6Û BIOENGINEERING NEWS · 2018. 9. 2. · O Z>* Q } b6ä &...

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BIOENGINEERING NEWS 㸯㸬㒊㛛㛗 ࡘࡉ࠸࠶Ᏻ㐩Ὀ㸦ி㒔Ꮫ㸧… 2 㸰㸬ࢽࢪࡢࢢ⏕య㛵⠇₶࣓ࢬࢽㅖㄝ ⸨Ụ⿱㐨㸦㤳㒔Ꮫᮾி㸧… 3 㸱㸬≉㞟グ ┤❧㊊Ṍ⾜㐍ࡓࡋᝎᬛ 㛗ᑿග㞝㸦᪥ᮏᏛ㸧 … 6 ࢽࢪ㒊㛛ⱝᡭㅮ₇ὶ⤊ ᳃ಇᏹ㸦ᮾᏛ㸧Ặཎὒ㸦ᕝᓮ་⛉Ꮫ㸧 ᒣ⏣ᝅ㸦ᾏ㐨Ꮫ㸧… 9 㸲㸬㒊㛛ሗ 㸲㸬㸯 ㅮ₇ෆ ᪥ᮏᶵᲔᏛ 2018 ᖺᗘᖺḟ㸦2018/9/09-12㸪㛵すᏛ㸧 …12 29 ㅮ₇㸦2018/10/24-25㸪༓ⴥᏛ㸧 …12 31 ࢽࢪㅮ₇㸦2018/12/14-15㸪㒆ᒣᕷ❧୰ኸබẸ㤋ປ㟷ᑡᖺ㸪බᇽ㸧 …13 㸲㸬㸰 ㅮ₇ሗ࿌ 28 ㅮ₇⤊ ᯇᮏᚿ㸦ᚨᓥᏛ㸧…13 30 ࢽࢪㅮ₇⤊ Ᏻ㐩Ὀ㸦ி㒔Ꮫ㸧…14 㸲㸬㸱 㒊㛛㈹ ຌ⦼㈹㈹ చ㔝 ⱱ㸦ภ㤋ᕤᴗ㧗➼ᑓ㛛Ꮫ㸧…15 ᴗ⦼㈹㈹ ⏣ᡂ⏕㸦㜰Ꮫ㸧…16 ℩㈹㈹ Ặཎὒ㸦ᕝᓮ་⛉Ꮫ㸧டᑿ㈗㸦ி㒔Ꮫ㸧…16 ㈹㈹ ዟ⏣ஓ㸦᪩✄⏣Ꮫ㸧㡲⸨ኴ㸦᪩✄⏣Ꮫ㸧…17 2017 ᖺᗘ᪥ᮏᶵᲔᏛ㈹㈹⪅ぴ㸦ࢽࢪ㒊㛛㛵㐃ศ㸧 …18 2018 ᖺᗘࢽࢪ㒊㛛㸺ຌ⦼㈹㸪ᴗ⦼㈹㸪℩㈹㸼ೃ⿵⪅ເ㞟 …18 㸲㸬㸲⏬ጤဨ 㛗ᒣு㸦ⲈᇛᏛ㸧ᆏඖᑦဢ㸦㤳㒔Ꮫᮾி㸧…19 㸲㸬㸳ᅜ㝿ጤဨ ฟ┿ḟ㸦㜰Ꮫ㸧㝧㸦㜰Ꮫ㸧…20 㸲㸬㸴ᅜ㝿ⱥ Ᏻ㐩Ὀ㸦ி㒔Ꮫ㸧ᶫಇ㸦ᾏ㐨Ꮫ㸧▼ᕝᣅ㸦ᮾᏛ㸧 ᆤ⏣㸦༓ⴥᏛ㸧㡲⸨ ு㸦᠕⩏ሿᏛ㸧…21 㸲㸬㸵ⱝᡭḟୡ௦ᡓ␎ጤဨ ᳃ಇᏹ㸦ᮾᏛ㸧Ặཎὒ㸦ᕝᓮ་⛉Ꮫ㸧…22 㸳㸬ศ⛉◊✲άሗ࿌ ไᚚሗ㸫⏕యᛂ⏝◊✲ ᪩℩ᩄᖾ㸦ᮾᏛ㸧ᑠụ༟㸦㟁Ẽ㏻ಙᏛ㸧…23 ィ ຊᏛ㸫⏕యᛂ⏝㸫◊✲ ᶫಇ㸦ᾏ㐨Ꮫ㸧ᮾ⸨ṇᾈ㸦ᾏ㐨Ꮫ㸧…24 ⏕యᶵ⬟ࡢࡑᛂ⏝㛵◊✲ ୰ᮧᚨ㸦ᒇᕤᴗᏛ㸧ᮡ⏣ಟၨ㸦ᒇᕤᴗᏛ㸧…25 ⏕యࢸࢫࢩᢏ⾡◊✲ 㧘ᯇ ὒ㸦ᕞᏛ㸧⃝Ụ⩏㸦ᕞᏛ㸧…25 ⏕≀ᶵᲔࢸࢫࢩ◊✲ ฟ┿ḟ㸦㜰Ꮫ㸧ᾴᏊ㸦㛵すᏛ㸧…26 യᐖ࣓✲◊ࢫࢡࢽ ᮡṇோ㸦㈡་⛉Ꮫ㸧ᯇ㟹ᾈ㸦㏻Ᏻ⎔ቃ◊✲ᡤ㸧 ᚭ㞝㸦ᮾி㒔ᕷᏛ)ᮅ᪥㱟㸦ࢲࢶᰴᘧ♫)…26 ࡢࢫࢡࢽィ ホ౯◊✲ బ㛫 ῟㸦ி㒔ᕤⱁ⧄⥔Ꮫ㸧బኊ㸦㜰ᕷ❧Ꮫ㸧…27 㢌㒊እയゎᯒ◊✲ ୰ᴙᾈᗣ㸦ಙᕞᏛ㸧ᯇ㟹ᾈ㸦㏻Ᏻ⎔ቃ◊✲ᡤ㸧 ᡂே㸦රᗜ⅏ᐖ་⒪㸧ᙇ ᭶⍅㸦㟷ᒣᏛ㝔Ꮫ㸧…27 ⬻⚄⤒⾑⟶ෆ⒪㛵་ᕤᏛ㐃ᦠ◊✲ ኴ⏣ ಙ㸦ᮾᏛ㸧㧗ᔱ㸫Ⓩ㸦ᕞᕤᴗᏛ㸧…28 㸴㸬◊✲ᐊ⤂ 㟁Ẽ㏻ಙᏛ Ꮫ㝔ሗ⌮ᕤᏛ◊✲⛉ ᶵᲔ▱⬟ࢸࢫࢩᏛᑓᨷ ṇᮏ◊✲ᐊ ṇᮏே㸦㟁Ẽ㏻ಙᏛ㸧…29 㸵㸬ᾏእ ⏕✲◊ࢫάグ ᯇỌᶞ㸦University of Oxford…30 㸶㸬ဨᢞ✏グ ᒀὶ㔞 ᐃᢏ⾡⚾㛵ಀ ᒣᓮὒᘧ㸦TOTO ᘧ♫㸧…31 㸷㸬㒊㛛⤌⧊ …33 https://www.jsme.or.jp/bio/ ࢺࢫ[email protected] ISSN 13406590 ࢽࢪ 㒊㛛ሗ No. 47 Autumn, September 1, 2018 ᪥ᮏᶵᲔᏛ

Transcript of ISSN 1340>+ 6590 Â å ª ½ Ü å ¢4 6Û BIOENGINEERING NEWS · 2018. 9. 2. · O Z>* Q } b6ä &...

Page 1: ISSN 1340>+ 6590 Â å ª ½ Ü å ¢4 6Û BIOENGINEERING NEWS · 2018. 9. 2. · O Z>* Q } b6ä & g  x z m _ X 8 Z1 1= 4 u Z/ C £ [ M>, µ d Û b ö&O Û/¡ (5 Ë î « \ K Z>*

BIOENGINEERING NEWS

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2018 2018/9/09-12 …12 29 2018/10/24-25 …12 31 2018/12/14-15 …13

28 …13 30 …14

…15 …16 …16

…17 2017 …18 2018 …18

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University of Oxford …30

TOTO …31

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https://www.jsme.or.jp/bio/ [email protected]

ISSN 1340 6590

No. 47 Autumn, September 1, 2018

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1987

30

10

2,500 1 5

30 34 4055

30

30

30

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Bio-tribology1972 Dowson

1886 Reynolds (1)

hydrodynamic lubrication

---- This plays an important part in certain machines, as in the steam engine, and is as fundamental to animal mechanics as the lubricating action ---

VUUx

hxhUU

zph

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12)(6)(6

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2121

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y Vp

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(2)

cm/s

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elastohydrodynamic lubrication, EHL(3, 4) Fein

Dowson Jin

0.5 15 m(5, 6)

(6) McCutchen

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boosted lubrication (8)

(9)

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boundary lubrication 1960

Charnley(10)

Charnley 40

Holm

(11)

adhesion Cambridge Bowden

AR

W

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mpWF 2)

pm

Charnley

(10)

Charnley

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Charnley

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100%(12)

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biphasic lubrication

(14)

hydrodynamic lubricationhydrostatic lubrication

dynamic

(15-17)

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2000 Surface gel hydration lubrication

(18)

(19)

Walker1 m (20) 10 m

(21)

6 m(22)

(18) (19) Graindorge

(23)

(24)

(1) O. Reynolds: On the Theory of Lubrication and Its Application to Mr. Beauchamp Tower's Experiments, Including an Experimental Determination of the Viscosity of Olive Oil, Phil. Trans. Roy. Soc., 177 (1886) 157. (2) M.A. MacConail: The Friction of Intra-Articular Fibrocartilages, with Special Reference to the Knee and Inferior Radio-Ulnar Joints, J Anatomy, 66 (1932) 210. (3) D. Dowson: Lubrication and Wear in Living and Artificial Joints: A Symposium, Proc. Inst.Mech. Engrs. (Pt 3J), 181 (1967) 45. (4) R.S. Fein: Are Synovial Joints Squeeze Film Lubricated? Lubrication and Wear in Living and Artificial Human Joints, Proc. Inst.Mech. Engrs. (Pt. 3J), 181 (1966-67) 125. (5) T. Sasada, K. Mabuchi: Elastohydrodynamic Lubrication in Living and Artificial Joints, Proc. The 1975 Symposium on Biomaterials, (1975) 63. (6) D. Dowson, Z.M. Jin, Micro-Elastohydrodynamic Lubrication of Synovial Joints. Engineering in Medicine, 15 (1986) 63. (7) C.W. McCutchen: The Frictional Properties of Animal

Joints, Wear, 5 (1962) 1. (8) P.S. Walker, et al: Boosted Lubrication in Synovial Joints by Fluid Entrapment and Enrichment, Ann. Rhem. Dis., 27 (1968) 512. (9) , , :

, (C ), 53 (1989) 2123. (10) J. Charnley: The Lubrication of Animal Joints in Relation to Surgical Reconstruction by Arthroplasty, Ann. Rhem. Dis., 19 (1960) 10. (11) R. Holm: Contact Resistance Especially at Carbon Contact, Z. Tech. Phys., 3 (1922) 299, 320. (12) , , :

, (1988) 70. (13) V.C. Mow, et al: Biphasic Creep and Stress Relaxation of Articular Cartilage in Compression: Theory and Experiment, J. Biomech. Eng. (ASME), 102 (1980) 73. (14) G.A. Ateshian: The Role of Interstitial Fluid Pressurization in Articular Cartilage Lubrication, J. Biomech., 42 (2009) 1163. (15) LP Li, et al: Nonlinear Analysis of Cartilage in Unconfined Ramp Compression using a Fibril Reinforced Poroelastic Model, Clin. Biomech., 14 (1999) 673. (16) N Sakai, et al: Analysis of Biphasic Lubrication of Articular Cartilage Loaded by Cylindrical Indenter, Tribol. Int. 46 (2011) 12. (17) H. Fujie, K. Imade: Effects of Low Tangential Permeability in the Superficial Layer on the Frictional Property of Articular Cartilage, Biosurface and Biotribology, 1 (2015) 124. (18) : EHL

: , 21 (2000) 17. (19) K. Ikeuchi, H. Yoshida, et al: Aqueous Lubrication with Hydrated Macromolecules Attaching to Tissue Surface, Proc. 4th Int. Biotribology Forum, Fukuoka, (2003) 72. (20) P.S. Walker: Human Joints and Their Artificial Replacement, Charles C Thomas (1977) 219. (21) :

52 (2007) 573. (22) , ,

, 41, (2014) 156.

(23) S. Graindorge S, et al: Biphasic Surface Amorphous Layer Lubrication of Articular Cartilage. Medical Engineering & Physics, 27 (2005) 836. (24) T. Murakami, et al: Adaptive Multimode Lubrication Mechanism in Articular Cartilage and Artificial Hydrogel Cartilage, Proc. The Int. Conf. Biotribology (2012) 27.

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(1)

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-

(1) Morimoto N., Nakatsukasa M., et. al, Femoral ontogeny

in humans and great apes and its implications for their last common ancestor, Scientific Reports, 8, 1930, 2018, DOI:10.1038/s41598-018-20410-4.

(2) L ovejoy, C. O., Suwa, G., et. al, The great divides: Ardipithecus ramidus reveals the postcrania of our last common ancestors with african apes, Science, Vol.326 (2009), pp.100-106.

(3) , , , Vol.12(2011),

pp.23-26. (4) WHO(World Health Organization), WHO

, (2007), pp.15-17. (5) ,

, 61(2017).

(6) , 2016 , (2016).

(7) , Sarcopenia & Frailty, , Vol.46.No.4(2009),

pp.279-285. (8)

,

(2012). (9) ,

Frailty - Frailty , CLINICAL CALCIUM, Vol.22, No.42(2012), pp.27-33.

(10) , No.5754689 , 2015, (WO2011 / 096419, 2011).

(11) , , ,

, Vol.17, No.11(2015), pp.50-54. (12) Nagao M., Konno S., et. al, Frequency Response in

Bone Joint Acoustic Sensor Development, Tech.& H., C., Vol.6, No.23(2015), pp.715-727.

(13) , , 2, BJAS, LIFE2017(2017), 3E1-7.

(14) , , 3, BJAS OA, 2017

(2017), B02.

2018 7 22 ( ) 23 ( )

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A possible common physical principle that underlies animal vocalization: theoretical considerations with an unsteady airflow-structure interaction model Journal of Biomechanical Science and Engineering 11 4 2016 12 16-00414.

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Division Spring Conference

31 2018 1214, 15

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Asian-Pacific Association for Biomechanics, APAB APAB

President 2018 8th World

Congress of Biomechanics Yamaguchi MedalAPAB

2019APAB

Asian Pacific Conference on Biomechanics 10AP Biomech 2019 2019 11 1 3

[email protected] [email protected] [email protected]

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JBSE (Journal of Biomechanical Science and Engineering) 2006

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KSB, and TSB 10 No. 2: Showcase of researches from JSME,

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JBSE

Asian-Pacific Association for Biomechanics (APAB)

Korean Society of Biomechanics (KSB) Taiwanese Society of Biomechanics (TSB)

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2017 JSME KSB TSB

3 society joint issueShowcase of researches from JSME, KSB, and

TSB Thai Society of Mechanical Engineers Bioengineering Division

JBSE HP http://www.jbse.org/HP http://www.jsme.or.jp/bio/

JBSE 2010 Papers of the Year

Graphics of the Year 2017Papers of the Year 4

Yu NAKAMICHI, Souichi SAEKI, Takafumi HIRO, Masunori

MATSUZAKI, In vivo tomographically diagnosing technique of early cancer using 2-color optical coherence dosigraphy, Vol.12, No.2, Paper No. 16-00591 (2017).

Shinji DEGUCHI, Akira C. SAITO, Tsubasa S. MATSUI, Wenjing HUANG, Masaaki SATO, The opposite mechano-response of paxillin phosphorylation between subcellular and whole-cell levels is explained by a minimal model of cell-substrate adhesions, Vol.12, No.2, Paper No. 16-00670 (2017).

Hiromi MIYOSHI, Miki NISHIMURA, Yutaka YAMAGATA, Hao LIU, Yasuyoshi WATANABE, Michiko SUGAWARA, Cell migration guided by a groove with branches, Vol.12, No.1, Paper No. 16-00613 (2017).

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Satoshi YAMAKAWA, Richard E. DEBSKI, Hiromichi FUJIE, Strain distribution in the anterior cruciate ligament in response to anterior drawer force to the knee, Vol.12, No.1, Paper No. 16-00582 (2017).

2017 Graphics of the Year 3

Daichi SUZUKI, Kenichi FUNAMOTO, Shin-ichiro

SUGIYAMA, Toshiyuki HAYASE, Suguru MIYAUCHI, Teiji TOMINAGA, Effects of upstream bifurcation and bend on the blood flow in a cerebral aneurysm, Vol.12, No.4, Paper No. 17-00189 (2017).

Hiromi MIYOSHI, Miki NISHIMURA, Yutaka YAMAGATA,

Hao LIU, Yasuyoshi WATANABE, Michiko SUGAWARA, Cell migration guided by a groove with branches, Vol.12, No.1, Paper No. 16-00613 (2017).

Akira TSUKAMOTO, Katie R. RYAN, Yusuke MITSUOKA,

Katsuko S. FURUKAWA, Takashi USHIDA, Cellular traction forces increase during consecutive mechanical stretching following traction force attenuation, Vol.12, No.3, Paper No. 17-00118 (2017).

2018 (Vol. 13) No. 1JSME, KSB TSB Associate

Editor 1

JBSE

[email protected]

[email protected] [email protected] [email protected]

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201838

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20174

1

2017 3 16 15:00 16:30

COE 3F 30

Luca Brandt (Professor, KTH Mechanics, Sweden) "Numerical studies of particle suspensions in the laminar regime: inertial and deformability effects"

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2

2017 3 23 13:30 14:30

30

Bastien Chopard (Professor, Computer Science Department, University of Geneva, Switzerland

A physical description of platelets deposition”

3

2017 9 1 13:00 14:00

30

KHALID M. SAQR (

RCCNB

Intracranial Aneurysm Hemodynamics: The Challenge of Turbulence and its Modeling”

4

2018 1 15 14:00 15:00

COE 3F 30

Allya P. Koesoema (Biomedical Engineering Program, School of Electrical Engineering and Informatics, Institut Teknologi Bandung)

eHealth for Humanitarian Purposes in Indonesia: Current Projects, Challenges and Opportunities”

980-8577 2-1-1 & FAX: 022-217-5253

E-mail:[email protected], www: http://reynolds.ifs.tohoku.ac.jp

2017 5

54

2017 4 13 11:00 12:00

A1-17 13 8

- -

18

JCHO

55

2017 4 14 11:00 12:00

A1-17 13 8

- -

15

Membrane Innovation in Micro, Mini and Macro Systems King Lun Yeung (Professor, The Hong Kong University of Science and Technology, Hong Kong)

56 2017 7 7 16:30 18:00

A1-17 13 8

- -

18 Mechanical Responses of Cultured Endothelial Cells in View

of Spatial Shear Stress Gradient Masaaki Sato (Professor, Tohoku University, Japan)

Bioengineering Strategies to Minimize Damage of Vulnerable Skin Tissue Dan Bader (Professor, University of Southampton, UK)

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57 2017 9 25 11:00 12:00

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Computational model of large-scale cell migration and proliferation under mechanical control and biochemical regulation: Cell motility, tissue patterning and wound healing Jie Liang (Professor, The University of Illinois at Chicago, USA)

58 2017 11 14 15:00 16:00

A1-17 13 8

- -30

Mechanics of aortic valve: from tissues to cells Ankush Aggarwal (Research Fellow, Swansea University, UK)

060-8628 13 8 TEL&FAX: 011-706-6424 E-mail: [email protected]

2017 Institute of Computational Science, Lugano, Switzerland Igor V. Pivkin

Pivkin

42 2018 3 18 15 30 17 00

Titel: Cell biomechanics via particle-based methods”

Speaker: Dr. Igor V. Pivkin Associate Professor of Computational Science Institute of Computational Science, Lugano, Switzerland Abstract: Particle-based methods provide an efficient framework for modeling of cells in flow. We will present Dissipative Particle Dynamics (DPD) based models suitable for large-scale simulations in complex flow domains. Red blood cell and cancer cell models and their applications will be discussed.

466-8555

TEL FAX 052-735-7125 E-mail [email protected]

The 6th Joint Conference of Research Center for Advanced Biomechanics & Japan Institute of Electronics Packaging Kyushu Branch 2018 3 2

MEMS

6

Vincent Lee Enabling Technologies for Wearable Electronics and Future Bioelectronics

4 21

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Inference of the stress field of a cell sheet Philippe Marcq (Centre de Recherche, Institut Curie, France)

49 2018 2 20 13:00~15:00

1 1-3 1. Numerical analysis of the rheology of suspension of red

blood cells Naoki Takeishi (Graduate School of Engineering Sci-ence, Osaka University)

2. Load-denpendent contractile properties of actin stress fibers

Tsubasa S. Matsui (Graduate School of Engineering Science, Osaka University) 3. Computational beam model and applications for

bio-medical engineering Tomohiro Otani (Graduate School of Engineering Sci-ence, Osaka University) 4. Molecular biomechanics and cellular mechanotrans-duction

in health and disease Mohammad R. K. Mofrad (Departments of Bioengi-neering and Mechanical Engineering, University of California Berkeley)

564-8680

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33

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( )

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BE 2018 LIFE

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LIFE LIFE

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BE BE

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Advisory Board

Senior Advisory Board

N.C.I.P. Foundation

Editor-in-Chief Emeritus

( )

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( )

Japan- Taiwan Bilateral Meeting Asian Pacific Association for

Biomechanics Summer Biomechanics,

Bioengineering, and Biotransport Conference (SB3C)

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Newsletter No.47

2018 7 1

HP

Bioengineering News No. 47 2018 9 1

[email protected]

[email protected]

[email protected]

160-0016 35 5 Tel: 03-5360-3500 Fax: 03-5360-3508

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MECHANICAL FINDER は骨を3次元構造物としてとらえ、これに有限要素法による構造解析を適用することで骨強度を評価するソフトウェアです

MECHANICAL FINDER は骨を3次元構造物としてとらえ、これに有限要素法による構造解析を適用することで骨強度を評価するソフトウェアです

MECHANICAL FINDER は骨を3次元構造物としてとらえ、これに有限要素法による構造解析を適用することで骨強度を評価するソフトウェアです