dr. Aniruddha Paul
Electronic Components, Technology and Materials (ECTM), Department of Microelectronics Themes: Health and Wellbeing
Biography
Aniruddha joined the ECTM group at TU Delft as a Postdoctoral researcher in August 2026 under the supervision of Dr. Massimo Mastrangeli. His research focuses on microfabrication and packaging strategies for microfluidic and organ‑on‑chip applications.
He earned his Ph.D. from the University of Twente in 2026, where he developed modular and standardized microfluidic organ‑on‑chip platforms as part of the SMART OoC consortium. During his doctoral studies, he also completed a research internship at UpNano GmbH in Austria, where he worked on the fabrication of 2PP-enabled organ‑on‑chip models.
He holds a Master’s degree in Nanotechnology from KTH Royal Institute of Technology, Sweden (2021) and a Bachelor’s degree in Mechatronics Engineering from Manipal Institute of Technology, India (2017). His Master’s thesis at Chalmers University focused on graphene–carbon nanotube hybrid structures. He also worked on ultrasound‑actuated microrobots during his Erasmus internship at the University of Twente.
Publications
- Micropumping chip module for enhanced modularity in organ-on-chip platforms
J.-J. Yeh; A. Paul; M. Jouybar; J. Jäger; S. Gibbs; M. Odijk; M. Mastrangeli; J. M.J. den Toonder;
In MPS World Summit,
2025. - Integrated microfluidic tissue barrier sensor module for a standardized and modular organ-on-chip platform
J.-J. Yeh; P. Tawade; H. Aydogmus; A. Paul; G. Aalderink; H. Bouwmeester; M. Odijk; J. den Toonder; M. Mastrangeli;
In 23rd Intl. Conf. on Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS),
2025. DOI: 10.1109/Transducers61432.2025.11110020 - In-line biocompatible micropumping chip module for a standardized and modular organ-on-chip platform
J.-J. Yeh; M. Jouybar; A. Paul; M. Mastrangeli; M. Odijk; J. M. J. den Toonder;
In 12th World Biomaterial Congress (WBC 2024),
2024. - Micropumping chip module for a standardized and modular Organ-on-Chip platform
J.-J. Yeh; A. Paul; M. Mastrangeli; M. Odijk; J. M. J. den Toonder;
In MPS World Summit 2023,
26-30 June 2023. - Applications and Potentials of Intelligent Swarms for magnetospheric studies
Raj Thilak Rajan; Shoshana Ben-Maor; Shaziana Kaderali; Calum Turner; Mohammed Milhim; Catrina Melograna; Dawn Haken; Gary Paul; Vedant; V. Sreekumar; Johannes Weppler; Yosephine Gumulya; Riccardo Bunt; Asia Bulgarini; Maurice Marnat; Kadri Bussov; Frederick Pringle; Jusha Ma; Rushanka Amrutkar; Miguel Coto; Jiang He; Zijian Shi; Shahd Hayder; Dina Saad Fayez Jaber; Junchao Zuo; Mohammad Alsukour; Cécile Renaud; Matthew Chris;
Acta Astronautica,
2021. DOI: https://doi.org/10.1016/j.actaastro.2021.07.046
Keywords: ...
Satellite swarms, Intelligent swarms, Heliophysics, Magnetosphere, Cubesats, Next generation space systems.
Abstract: ...
Earth’s magnetosphere is vital for today’s technologically dependent society. To date, numerous design studies have been conducted and over a dozen science missions have flown to study the magnetosphere. However, a majority of these solutions relied on large monolithic satellites, which limited the spatial resolution of these investigations, as did the technological limitations of the past. To counter these limitations, we propose the use of a satellite swarm carrying numerous and distributed payloads for magnetospheric measurements. Our mission is named APIS — Applications and Potentials of Intelligent Swarms. The APIS mission aims to characterize fundamental plasma processes in the Earth’s magnetosphere and measure the effect of the solar wind on our magnetosphere. We propose a swarm of 40 CubeSats in two highly-elliptical orbits around the Earth, which perform radio tomography in the magnetotail at 8–12 Earth Radii (RE) downstream, and the subsolar magnetosphere at 8–12 RE upstream. These maps will be made at both low-resolutions (at 0.5 RE, 5 s cadence) and high-resolutions (at 0.025 RE, 2 s cadence). In addition, in-situ measurements of the magnetic and electric fields, plasma density will be performed by on-board instruments. In this article, we present an outline of previous missions and designs for magnetospheric studies, along with the science drivers and motivation for the APIS mission. Furthermore, preliminary design results are included to show the feasibility of such a mission. The science requirements drive the APIS mission design, the mission operation and the system requirements. In addition to the various science payloads, critical subsystems of the satellites are investigated e.g., navigation, communication, processing and power systems. Our preliminary investigation on the mass, power and link budgets indicate that the mission could be realized using Commercial Off-the-Shelf (COTS) technologies and with homogeneous CubeSats, each with a 12U form factor. We summarize our findings, along with the potential next steps to strengthen our design study.
document - Identification of Novel Regulators of Developmental Hematopoiesis Using Endoglin Regulatory Elements as Molecular Probes
Rabab Nasrallah; Eva M. Fast; Parham Solaimani; Kathy Knezevic; Alexia Eliades; Rahima Patel; Roshana Thambyrajah; Ashwin Unnikrishnan; Julie Thoms; Dominik Beck; Chris S. Vink; Aileen Smith; Jason Wong; Mairi Shepherd; David Kent; Rahul Roychoudhuri; Fabian Paul; Julia Klippert; Annette Hammes; Thomas Willnow; Bertie Gottgens; Elaine Dzierzak; Leonard I. Zon; George Lacaud; Valerie Kouskoff; John E. Pimanda;
Blood,
Volume 128, Issue 15, pp. 1928--1939, October 2016. DOI: 10.1182/blood-2016-02-697870
document - Eddy current probes based on magnetoresistive array sensors as receivers
Sergeeva-Chollet, Natalia; Pelkner, Matthias M; Erthner, Thomas M; Kreutzbruck, Marc M; Fermon, Claude M; Decitre, Jean-Marc M; Paul, Johannes; Cardoso, Filipe Arroyo; Cardoso, Susana; Freitas, Paulo M; others;
In 19 th World Conference on Non-Destructive Testing 2016,
2013. - Micro-fabricated channel with ultra-thin yet ultra-strong windows enables electron microscopy under 4-bar pressure
T. Alan; T. Yokosawa; J. Gaspar; G. Pandraud; O. Paul; F. Creemer; P.M. Sarro; H.W. Zandbergen;
Applied Physics Letters,
Volume 100, pp. 1-4, 2012. DOI 10.1063/1.3688490. - Characterization of ultrathin membranes to enable TEM observation of gas reaction at high pressures
Alan; T; Gaspar; J; Paul; O; H.W. Zandbergen; J.F. Creemer; P.M. Sarro;
In Proceedings of the ASME 2009 International Mechanical Engineering Congress & Exposition,
Lake Buena Vista, Florida, USA: American Society of Mechanical Engineers (ASME), pp. 1-5, 2009. - Determination of mechanical properties of piezoelectric ZnO films
S. Koller; V.Ziebart; O. Paul; O. Brand; H. Baltes; P.M. Sarro; M.J. Vellekoop;
In Proc. SPIE Smart Electronics and MEMS Symposium,
San Diego, USA, SPIE, pp. 102-109, Mar. 1998.
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Last updated: 24 Aug 2026
Aniruddha Paul
- A.Paul-2@tudelft.nl
- Room: LB 01.430
- List of publications