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Page 1: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

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Page 2: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

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Page 3: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

& 1

1 5 27 14:30 16:30

1K01 Blacktrace Japan 1K02 1K03 1K04

1P01

1, 1, 2

1. , 2.

1P02

β 1, 1, 2

1. , 2.

1P03

β 1,3, 2, 3, 3, 3, 3, 1,

2, 2 1. , 2. , 3.

1P04

1, 2, 1, 2, 1

1. ,

Page 4: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

1P05

1,2, 3, 3, 1, 1, 1 1. , 2. , 3.

1P06

1, 2, 2,3, 2

1. , 2. , 3.

1P07

1, 1, 1, 1

1.

1P08 Inkjet Printing 1 step

1, 2, 1, 1, 1 1. , 2.

1P09 fL

1, 1,2, 1, 1 1. , 2.

1P10

1, 1, 1

1.

1P11 1

1, 1, 1,2 1. , 2. JST

Page 5: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

1P12

1,2, 1, 2, 2, 1 1. , 2.

1P13

1, 1, 1

1.

1P14

TiO2/

1, 1, 1, 1, 1, 1, 1,2 1. , 2. JST

1P15

1, 1, 1, 1, 1, 1, 1, 2,

2 1. NTT , 2.

1P16 DNA

1, 1, 1 1.

1P17

organ-on-a-chip 1, 2,3, 2,4, 5,1, 4,6, 3, 3

1. , 2. , 3. , 4. , 5. AIMR, 6.

Page 6: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

1P18

1, 1, 1, 1,2 1. , 2.

1P19

1, 2, 2,3

1. , 2. , 3.

1P20

1,2, 2, 2, 1, 1

1. , 2.

1P21

1, 1, 1

1.

1P22

1, 1,2, 2, 3, 4, 4, 3,

3, 3 1. , 2. , 3.

, 4.

1P23

1, 1, 1

1.

Page 7: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

1P24 TNT

1, Abiral Tamang2, 1, Kevin Critchley2, Stephen Evans2, 1 1. , 2. University of Leeds, School of Physics and Astronomy

1P25

1, 1, 1, 1

1.

1P26

β 1, 1, 1, 1, 1

1.

1P27

β 1

1.

1P28

102nm 1, 1

1.

1P29

- 1, 1, 1, 1

1.

1P30

1, 1, 1

1.

Page 8: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

1P31 DLC

1, 1 1.

1P32

β 1, 1, 1, 1,2

1. , 2.

1P33

1,2, 1, 1, 2, 2

1. , 2.

1P34

Page 9: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

& 2

2 5 28 9:00 11:00

2PS01

1

1.

2PS02

1

1.

2PS03

1, 1, 1

1.

2PS04

1

1.

2PS05

1,5, 1,5, 2,5, 3,5, 4,5, 4,5

1. , 2. , 3. , 4. , 5.

Page 10: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

2P01

1,2, 1, Mun Hong Loo1, 1, 1, Dwi Larasati Setyaningrum1, Jee-Woong Park1, 1, 1, 1, Dino Di Carlo3, 1,3,4,5 1. , 2. , 3. UCLA, 4. JST, 5.

2P02

DNA DNA 1, 1, 1, 1, 1

1.

2P03 Wash- and amplification-free digital protein detection system based on nano-particle motion analysis

1, 1, 1, 1, Jain Krupari1, 1, 2, 2 1. , 2.

2P04 1 aL

1, 1, 1, 2, 3 1. , 2. JST , 3. NanoSquare

2P05

β ELISA 1, 1, 1, 1

1.

2P06 Emergence of collective motion of microtubules assisted by spatial arrangements of kinesin-1

Tamanna Ishrat Farhana1, Taikopaul Kaneko1, Ryuji Yokokawa1

1. Department of Micro Engineering, Graduate School of Engineering, Kyoto University 2P07

β 1, 1,2, 1

1. , 2

Page 11: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

2P08 X

1, 1, 1, 2, 1, 2, 1 1. , 2.

2P09 BOYCOTT

1, 1,2, 2 1. , 2

2P10

β 1 1, 1, 1

1.

2P11

1, 1, 1

1.

2P12

β 1, 1, 1, 1, 1

1.

2P13

1,2, 1

1. , 2

Page 12: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level localization precision

Hang Zhou1, Kosuke Naka1, Taviare L. Hawkins2, Jennifer L. Ross3, Ryuji Yokokawa1

1. Kyoto University, 2. University of Wisconsin - La Crosse, 3. University of Massachusetts - Amherst 2P15

1, 1, 2,3, 2,3

1. 2. 3.

2P16

β 1 DNA 1, 1, 1, 1,2,3

1. , 2. JST , 3. NanoSquare

2P17

1, 1, , , , , 1,2

1. , 2.

2P18 SiN

1, 1 1.

2P19 Surface Enhanced Raman Spectroscopy for Understanding the Interaction between RNA and Arginine-rich Peptides

Chen Chen1, Peiying Li1, Koishihara Nao1, Kazunori Motai1, Tomoko Ohnishi1,

Kohsuke Kanekura2, Yuhei Hayamizu1 1. Tokyo Institute of Technology, 2. Tokyo Medical University

Page 13: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

2P20 SiN α

1, 1 1.

2P21

microRNA 1, 1,2,3, 4, 1,2,5

1. , 2. , 3. PRESTO JST, 4. , 5

2P22

1, 1, 1, 2, 3, 4, 1

1. , 2. , 3. , 4.

2P23

β 1, 1, 1, 1,2

1. , 2.

2P24

1, 2, 3, 3, 2, 2, 3, 2

1. , 2. , 3.

2P25 Glomerulus-on-a-Chip hiPSC

1, Ramin Banan Sadeghian1, 2, 2, 2, 3, 2,

3, 1 1. , 2. (BDR), 3. iPS

Page 14: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

2P26

1, 1, 1, 1, 1 1.

2P27 UV

1,2, 2, 2, 2 1. , 2.

2P28 Nitrogen-mustard coated microbeads for isolation and detection of DNAs

Benediktus Nixon Hapsianto1, 2, 2, 3, 1 1,4 1. , 2. , 3. , 4. JST

2P29

1, 1

1.

2P30

1,2, 1, 1,2, 1,2, 3, 4,5, 6,

4, 4, 5, 5, 1,2,7 1. , 2. , 3. , 4. , 5. , 6. , 7.

2P31

Gaurav Pandey1, 1, Rohit Bhardwaj1, 1, 1, 1 1.

Page 15: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

2P32

1, 2, 2, 2, 1,2 1. , 2.

2P33

β 1, 1, 1, 1, 1

1.

2P34 DNA microRNA

1, 1, 1, 1 1.

Page 16: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

& 3

2 5 28 13:50 15:50

3P01

1, 1, 1, 1, 1

1.

3P02 1 kinesin-1 ncd

1, 1, 2, 2, 3, 3, 1 1. , 2. (NICT), 3.

3P03

1, 1

1.

3P04

1, 1, 2, 1, 1

1. , 2.

3P05

α 1,2, 1,3, 1,3, 1, 4, 4, 4,

Dino Di Carlo5, 6, 1, 1, 1,3,5,7 1. , 2. , 3. JST, 4. , 5. UCLA, 6. , 7.

Page 17: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

3P06 Glass-Capillary-based Acoustic Cell Focusing for Raman Flow Cytometry

Mika Hayashi1, Akihiro Isozaki1,2, Kotaro Hiramatsu1,3, Keisuke Goda1,4,5

1. Univ. of Tokyo, 2. Kanagawa Institute of Industrial Science and Technology, 3. PRESTO, JST, 4. UCLA, 5. Wuhan Univ. 3P07

1, 2,5, 3,4, 5, 5, 2, 2, 5,

2 1. , 2. , 3. , 4. , 5.

3P08

1, 1, 2, 1

1. , 2. BEX

3P09

β 1, 1, 1,2

1. , 2.

3P10

1, 1, 1

1.

3P11

iPS

1, 1, 1, 1 1.

Page 18: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

3P12

1, 1, Tammana Ishratfarhana1, 1 1.

3P13

1, 2, 3, 4, 3, 3, 1,4

1. , 2. , 3. , 4.

3P14 Method development of heavy metal detection in environmental samples by electrodeposition coupled with LEP-OES

Prasongporn Ruengpirasiri1, Phan Trong Tue2, Yuzuru Takamura1

1. School of Materials Science, Japan Advanced Institute of Science and Technology, 2. Laboratory for Materials and Structures, Institute of Innovative Research, Tokyo Institute of Technology 3P15

in vitro 3 1, 2, 3, 1, 1

1. , 2. , 3.

3P16 Development of automated competitive ELISA paper-based analytical device for Aflatoxin B1 detection using dissolvable valve and laser cutting

Sumamal Charernchai1, Miyuki Chikae1, Wanida Wonsawat2, Hirose Daisuke1, Phan Trong Tue3,

Yuzuru Takamura1 1. School of Materials Science, Japan Advanced Institute of Science and Technology, 2. Faculty of Science and Technology, Suan Sunandha Rajabhat University, 3. Laboratory for Materials and Structures, Institute of Innovative Research, Tokyo Institute of Technology

Page 19: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

3P17 Water-in-Oil Droplet (WODL) β

1, 2, 1, 1, 3, 1, 1, 2, 2, 1

1. , 2. , 3.

3P18

β 1, 1, 1, 1

1.

3P19

1, Phan Trong Tue2, 1, 1

1. , 2.

3P20

1, 1, 1, 1,2, 1, 1

1. , 2.

3P21

pL 1, 1, 2, 2, 1, 1

1. 2.

3P22 Microdroplet array for the size-triggered release

Piangrawee Santivongskul1, Mao Fukuyama1,2, Akihide Hibara1

1. Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, 2. PRESTO ,JST

Page 20: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

3P23

Du Zhao1, Wang Yingzhe2, 2, 1 1. , 2.

3P24

Active Matrix TFT 1, Phan Trong Tue2, 1, 1, 1

1. , 2.

3P25

SHIN JUNG CHAN1, 1, 1

1.

3P26 Optical Surface Tension Measurement of Sessile Drop for Ambient Organic Molecules Analysis

Derrick Mott1, Mao Fukuyama1, Akihide Hibara1

1. Institute of Multidisciplinary Research for Advanced Material (IMRAM), Tohoku University 3P27 Forming of micro-magnetic beads barrier for solid-liquid separation on paper analysis chip

JUNG JINHEE1, SHIN JUNG CHAN1, 1, 1 1.

3P28

1, 1, , 1

1.

3P29 DLC β

1, 1, 1, 1, 1, 1 1.

Page 21: KA 031748/:c . /micro-nano.chips.jp/39/wp-content/uploads/cheminas39...2P14 The influence of 2N4R tau isoform on the flexural rigidity of microtubule revealed through nanometer-level

3P30 α 1, 1, 1,2

1. , 2.

3P31

β , DNA 1, 1, 1

1.

3P32

1,2, 3, 3, 3, 1,2, 1,2, 3,

3, 3, 3, 3, 3, 1,2,4 1. , 2. , 3. , 4.

3P33

- 1, 2, 1, 1, 1,2

1. , 2.

3P34

α 2D 1, 1, 1, 1, 1, 1, 1, 1,2

1. , 2. JST