# Pumpless microfluidic system driven by hydrostatic pressure induces and maintains mouse spermatogenesis in vitro

**Type:** Papers  
**Canonical URL:** https://scholariq.org/papers/pumpless-microfluidic-system-driven-by-hydrostatic-pressure-induces-and/

## Facts

| Field | Value |
| --- | --- |
| Author Names | Mitsuru Komeya,K Hayashi,Hiroko Nakamura,Hiroyuki Yamanaka,Hiroyuki Sanjo,Kazuaki Kojima,Takuya Sato,Masahiro Yao,Hiroshi Kimura,Teruo Fujii,Takehiko Ogawa |
| Citations | 120 |
| DOI | 10.1038/s41598-017-15799-3 |
| Fields | Engineering |
| Open Access | true |
| OA Status | gold |
| OA URL | https://www.nature.com/articles/s41598-017-15799-3.pdf |
| OpenAlex ID | https://openalex.org/W2767801811 |
| PMID | 29133858 |
| Type | article |
| Year | 2017 |

## Paper authors

- [Hiroyuki Yamanaka](https://scholariq.org/researchers/hiroyuki-yamanaka/)

## Paper journal

- [Scientific Reports](https://scholariq.org/journals/scientific-reports/)

## Paper primary topic

- [3D Printing in Biomedical Research](https://scholariq.org/topics/3d-printing-in-biomedical-research/)

## Paper topics

- [3D Printing in Biomedical Research](https://scholariq.org/topics/3d-printing-in-biomedical-research/)
- [Microfluidic and Bio-sensing Technologies](https://scholariq.org/topics/microfluidic-and-bio-sensing-technologies/)
- [Innovative Microfluidic and Catalytic Techniques Innovation](https://scholariq.org/topics/innovative-microfluidic-and-catalytic-techniques-innovation/)

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Source: ScholarIQ — public research metadata, principally OpenAlex. See https://scholariq.org/sources/ for provenance and https://scholariq.org/methodology/ for what these figures mean.
