Manlio Tassieri (ORCID: 0000-0002-6807-0385)

About Manlio Tassieri (ORCID: 0000-0002-6807-0385)

Manlio Tassieri (ORCID: 0000-0002-6807-0385), With an exceptional h-index of 28 and a recent h-index of 24 (since 2020), a distinguished researcher at University of Glasgow, specializes in the field of Rheology, microrheology, soft-matter physics, biophysics, metrology.

His recent articles reflect a diverse array of research interests and contributions to the field:

i-Rheo-optical assay: Measuring the viscoelastic properties of multicellular spheroids

Mind the viscous modulus: The mechanotransductive response to the viscous nature of isoelastic matrices regulates stem cell chondrogenesis

i-Rheo-AFM

Fully angularly resolved 3D microrheology with optical tweezers

Fluorescence lifetime Hong-Ou-Mandel sensing

The role of elastic instability on the self-assembly of particle chains in simple shear flow

A second glass transition observed in single-component homogeneous liquids due to intramolecular vitrification

Sensible heat thermal energy storage performance of mono and blended nanofluids in a free convective-radiation inclined system

Manlio Tassieri (ORCID: 0000-0002-6807-0385) Information

University

Position

Division of Biomedical Engineering James Watt School of Engineering

Citations(all)

2466

Citations(since 2020)

1408

Cited By

1557

hIndex(all)

28

hIndex(since 2020)

24

i10Index(all)

40

i10Index(since 2020)

35

Email

University Profile Page

Google Scholar

Manlio Tassieri (ORCID: 0000-0002-6807-0385) Skills & Research Interests

Rheology

microrheology

soft-matter physics

biophysics

metrology

Top articles of Manlio Tassieri (ORCID: 0000-0002-6807-0385)

Title

Journal

Author(s)

Publication Date

i-Rheo-optical assay: Measuring the viscoelastic properties of multicellular spheroids

Materials Today Bio

Rosalia Ferraro

Stefano Guido

Sergio Caserta

Manlio Tassieri

2024/4/20

Mind the viscous modulus: The mechanotransductive response to the viscous nature of isoelastic matrices regulates stem cell chondrogenesis

Advanced Healthcare Materials

Matthew Walker

Eonan William Pringle

Giuseppe Ciccone

Lluís Oliver‐Cervelló

Manlio Tassieri

...

2023/11/28

i-Rheo-AFM

Yazan Haidar

Manlio Tassieri

2024/3/4

Fully angularly resolved 3D microrheology with optical tweezers

Rheologica Acta

Andrew B Matheson

Tania Mendonca

Matthew G Smith

Ben Sutcliffe

Andrea Jannina Fernandez

...

2024/2/8

Fluorescence lifetime Hong-Ou-Mandel sensing

Nature Communications

Ashley Lyons

Vytautas Zickus

Raúl Álvarez-Mendoza

Danilo Triggiani

Vincenzo Tamma

...

2023/12/4

The role of elastic instability on the self-assembly of particle chains in simple shear flow

Physics of Fluids

Matthew G Smith

Graham M Gibson

Andreas Link

Anand Raghavan

Andrew Clarke

...

2023/12/1

A second glass transition observed in single-component homogeneous liquids due to intramolecular vitrification

Journal of the American Chemical Society

Ben A Russell

Mario González-Jiménez

Nikita V Tukachev

Laure-Anne Hayes

Tajrian Chowdhury

...

2023/11/18

Sensible heat thermal energy storage performance of mono and blended nanofluids in a free convective-radiation inclined system

Case Studies in Thermal Engineering

Oguzhan Kazaz

Rosalia Ferraro

Manlio Tassieri

Shanmugam Kumar

Gioia Falcone

...

2023/11/1

Machine Learning for Fast Statistical Sensing

Jack Radford

Matthew G Smith

Philip Binner

Ilya Starshynov

Manlio Tassieri

...

2023/8/14

Fluorescence Lifetime Sensing with Two-Photon Interferometry

Ashley Lyons

Vytautas Zickus

Raul Alvarez-Mendoza

Danilo Triggiani

Vincenzo Tamma

...

2023/8/14

Living cells as a biological analog of optical tweezers–a non-invasive microrheology approach

Acta Biomaterialia

William Hardiman

Matt Clark

Claire Friel

Alan Huett

Fernando Pérez-Cota

...

2023/8/1

Machine learning opens a doorway for microrheology with optical tweezers in living systems

AIP Advances

Matthew G Smith

Jack Radford

Eky Febrianto

Jorge Ramírez

Helen O’Mahony

...

2023/7/1

OptoRheo: Simultaneous in situ micro-mechanical sensing and imaging of live 3D biological systems

Communications Biology

Tania Mendonca

Katarzyna Lis-Slimak

Andrew B Matheson

Matthew G Smith

Akosua B Anane-Adjei

...

2023/4/28

Optical tweezers with integrated multiplane microscopy

Lynn Paterson

Andrew B Matheson

Amanda J Wright

Tania Mendonca

Manlio Tassieri

...

2023/4/24

Microrheological properties and local structure of ι-carrageenan gels probed by using optical tweezers

Food Hydrocolloids

Lester C Geonzon

Motoyoshi Kobayashi

Manlio Tassieri

Rommel G Bacabac

Yasuhisa Adachi

...

2023/4/1

Compressional stress stiffening & softening of soft hydrogels–how to avoid artefacts in their rheological characterisation

Soft Matter

Rosalia Ferraro

Stefano Guido

Sergio Caserta

Manlio Tassieri

2023

3D printing and rapid replication of advanced numerically generated rough surface topographies in numerous polymers

Advanced Engineering Materials

Jack Perris

Charchit Kumar

Yang Xu

Manlio Tassieri

Mehmet E Kartal

...

2023/1

Exploring the mechanical properties of soft materials at multiple length scales

Frontiers in Physics

Marco Laurati

Manlio Tassieri

Gabriel Espinosa

Mónica SN Oliveira

Pierre Joseph

2022/12/13

An analytical framework for 3D microrheology measurements using an optical trap

Andrew B Matheson

Tania Mendonca

Matthew Smith

Ben Sutcliffe

Lynn Paterson

...

2022/10/19

Investigation into the Acoustic Transparency of Reconstituted Mucus

Mihnea V Turcanu

Manlio Tassieri

Maya Thanou

Inke Näthke

Sandy Cochran

2022/10/10

See List of Professors in Manlio Tassieri (ORCID: 0000-0002-6807-0385) University(University of Glasgow)

Co-Authors

academic-engine