Contact us
You are currently on the Australian website
Welcome to Furnware — If you are outside of Australia, we recommend changing your region below for the most suitable content.
or
Change region
-
Students learning together in a classroom furnished with colourful tables and ergonomic seating

Bodyfurn research: the evidence about movement

Students don’t sit still to learn.

Understanding what that movement means, and how classroom furniture can better support it, has been the subject of Furnware research for two decades.

From early University of Waikato classroom observations to a completed master’s study and current doctoral research in Psychology, each stage has helped us ask better questions about movement, comfort and behaviour in the classroom.

The latest findings are currently undergoing peer review. And we’re still asking questions.

Research that keeps evolving

Our research story isn’t based on one study or one moment.

It has developed over time, moving from observation to experimental research, and from looking at how much students move to understanding the difference between natural movement and movement that disrupts learning.

 

2006

Starting with observation

The University of Waikato’s Wilf Malcolm Institute of Educational Research conducts an exploratory classroom video study comparing Bodyfurn with existing furniture. The findings are mixed and tentative, but the work establishes questions for further research.

2021

Putting Bodyfurn to the test

University of Waikato researcher Isaac Martin completes a master’s thesis experimentally evaluating Bodyfurn and students’ on-task and disruptive behaviour.

2025

Bodyfurn.Flex doctoral research

Isaac Martin’s PhD thesis is available to read below. Articles arising from the research are undergoing peer review and will be linked here when published.

2006: Starting with observation

The Wilf Malcolm Institute of Educational Research at the University of Waikato conducted an exploratory video study comparing students using Bodyfurn with their existing classroom furniture.

Eleven one-hour classroom observations across Years 9, 11 and 12 were analysed for behaviours including movement, fidgeting, comfortable sitting and on-task activity.

The study found some potentially useful patterns, but also mixed results. Different students, activities and camera positions made direct comparison difficult, and the researchers concluded that the findings were tentative rather than conclusive.

For Furnware, its value was as a starting point. It showed how much there was still to understand about the relationship between seating, movement and classroom behaviour.

About the 2006 research

 

2021: Putting Bodyfurn to the test

In 2021, University of Waikato researcher Isaac Martin experimentally evaluated Bodyfurn chairs and student behaviour as part of his master’s thesis.

The study followed three groups of five primary students. Bodyfurn chairs were introduced after baseline observations using regular classroom chairs.

Two of the three groups showed noticeable increases in on-task behaviour after Bodyfurn was introduced, while disruptive behaviour decreased across all three groups. Thirteen of the 15 students said they preferred Bodyfurn, citing comfort, easier position changes and, for some, reduced back pain.

The study was small, relatively short, and conducted in breakout rooms with groups of five rather than a typical full classroom. Its findings were promising, but their generalisability was limited.

They also created a clear next question: would the effect hold up under more rigorous research in everyday classroom settings?

Students using Bodyfurn chairs and desks during a classroom lesson

About the 2021 research

 

2025: Bodyfurn.Flex doctoral research

Isaac Martin’s doctoral research moved the investigation into more rigorous classroom studies of Bodyfurn.Flex. The research asked not only whether students moved, but how they moved, what happened to their behaviour, and what students themselves thought about the chairs.

The findings below are drawn from Isaac Martin’s PhD thesis, which is available to download on this page. A paper presenting findings from the research is currently under peer review and has not yet been published in a journal.

Student using a Bodyfurn chair in forward, upright and reclined sitting positions to demonstrate natural movement while learning.
Not just more movement, better movement.
3
studies conducted as part of the doctoral research
60
students across the two Study 1 classrooms
172
students with test-grade data in Study 3

What the research indicates

More on-task. Less disruption.

Study 1 recorded significant increases in on-task behaviour when students used Bodyfurn.Flex.

It also recorded lower mean disruptive behaviour, including sizeable reductions in chair tipping and out-of-seat behaviour. The reduction in disruptive behaviour reached statistical significance in one of the two groups.

More movement while seated.

Students moved more while seated in Bodyfurn.Flex.

In-chair and overall movement increased in both groups, with the strongest statistically significant change recorded in one group.

Further analysis found that more frequent in-chair movement was positively associated with on-task behaviour and negatively associated with chair tipping and out-of-seat behaviour.

These findings suggest that movement itself is not necessarily the problem. Students naturally shift, lean and adjust as they work. Dynamic seating may help accommodate this movement while reducing forms of movement that interrupt learning.

Movement itself isn’t the problem
Students naturally shift, lean and adjust as they work. The research suggests that dynamic seating can support that movement while reducing forms of movement that interrupt learning.

Students noticed the difference too

Most students in Study 1 preferred Bodyfurn.Flex to the regular classroom chairs. In Class A, 71.4% preferred Bodyfurn.Flex; in Class B, 80.7% did.

Just over 57% in each class said it was easier to complete their schoolwork in Bodyfurn.Flex, commonly linking this to comfort, flexibility and being able to adjust position for the task.

In Study 3 focus groups, 14 of 18 students said Bodyfurn.Flex had a positive effect on their schoolwork. Students commonly linked this to comfort, reduced need to leave their seat, less fidgeting and fewer distractions.

What about academic achievement?

The doctoral research also tested whether Bodyfurn.Flex improved mathematics assessment results.

It found no significant difference in test grades between students using Bodyfurn.Flex and those using regular classroom chairs.

Students reported greater comfort and satisfaction, and many felt the chairs helped them work more effectively.

The research does not establish that Bodyfurn.Flex improves academic achievement.

Further, longer-term research using assessment methods designed to measure progress over time is recommended.

About the 2025 doctoral research

 

What the evidence supports

Taken together, the completed 2021 master’s research and the current doctoral research provide evidence relating to on-task behaviour, classroom disruption, active sitting, comfort and student preference.

The doctoral findings are documented in Isaac Martin’s PhD thesis. An article presenting findings from the research is still undergoing peer review. Neither research project establishes that Bodyfurn improves academic achievement.

The research also reinforces an important Furnware design principle: movement is a natural part of learning, and seating can be designed to support it.

We still learn by watching

University research helps us test what our furniture does. Our own design research helps us understand what we should investigate and design next.

Furnware designers spend time in learning environments observing how students behave in relation to one another, their furniture and the space around them.

Classroom observation research showing students using different sitting positions while learning and working together.

From observation to design

What we observe

Primary students tend to shift position and change posture more frequently than teenagers.

Younger students also interact physically with furniture, touching frames and surfaces in ways that can reveal useful design cues.

Collaboration, personal space, devices, bags and the layout of the room all influence how students sit and move.

How it informs design

These observations don’t prove product performance.

They give our designers real-world insight into the behaviours, constraints and needs a product has to accommodate.

We combine that insight with ergonomics, standards, specialist input, prototyping and user testing.

Every day’s still a school day

Our current Research for Design programme looks beyond individual products to understand how teaching, learning and learning environments are changing across the markets we work in.

We review policy and emerging education trends, then test those ideas through conversations with educators and direct observation in schools. That distinction matters because policy can change quickly, while classroom practice and the physical environment often change more gradually.

Recent work has looked at the move towards more explicit teaching in New Zealand and Australia, the different trajectories of markets such as Singapore, Japan and Malaysia, and what those changes could mean for furniture and learning-space design.

The aim is simple: understand the learning environment first, then design for what schools actually need.

Students reading and working together in an Elmwood Normal School students in classroom with ergonomic Bodyfurn chairs.

Research sources

The research presented here spans almost two decades of collaboration with the University of Waikato.

The 2006 On-Task Video Analysis Project was an exploratory classroom study that helped shape the questions Furnware continued to investigate. Its findings were mixed, and the researchers noted limitations in the study design. We therefore treat it as an early step in the research journey rather than proof of product performance.

Isaac Martin’s doctoral research builds on his 2021 master’s research, investigating Bodyfurn.Flex in relation to student behaviour, movement, perceptions and academic achievement. The research recorded increased on-task behaviour and reductions in some disruptive behaviours, while finding no significant improvement in academic test results.

Isaac Martin’s PhD thesis is available below. Articles arising from the research will be linked when they are published.

The doctoral research received funding from Callaghan Innovation, with research support from Resero, Furnware’s parent company, including Bodyfurn.Flex chairs and research equipment.

2006 | Bodyfurn exploratory study
PDF • 1 MB
Download PDF
2021 | Bodyfurn master’s research
PDF • 819 KB
Download PDF
2025 | Bodyfurn.Flex PhD thesis
PDF • 2 MB
Download PDF

Research shapes what we design next

Bodyfurn is one outcome of a much bigger habit: watching how students use learning spaces, testing what we think we know, and designing from what we learn.