DMT
  • Products
    • Muscle Strip Systems >
      • Tissue Puller System - 560TP
      • MyoDynamics Muscle Strip System - 840MD
    • Organ Bath System >
      • Organ Bath System - 751MT
      • Organ Bath System - 752eT
      • Organ Bath System | 820MO
    • Pressure Myograph Systems >
      • Pressure Myograph System - 110PXL
      • Pressure Pulsation Myograph System - 112PP
      • Pressure Myograph System - 114P
      • Pressure Myograph System - 114PB
      • Pressure Myograph System - 114PN
      • Pressure Myograph System - 120CP
    • Wire Myograph Systems >
      • Single Wire Myograph System - 320A
      • Confocal Wire Myograph System - 360CW
      • Dual Wire Myograph System - 420A
      • Multi Wire Myograph System - 620M
      • Automated Multi Myograph System - 630MA
    • Myograph Software >
      • MyoNORM
      • MyoDAQ Acquisition
      • MyoVIEW 5
      • MyoPULSE
    • Accessories & Parts >
      • Buffer Filler System
      • FlowMeter - 162FM
      • Stimulators >
        • Stimulator - CS4+
        • Stimulator - CS8
  • Resources
    • DMT Academy >
      • Product Videos
      • Practical Guides
      • Protocols & Articles
    • Guides & Manuals
    • Training/Installation
    • System Maintenance
    • Software Downloads
  • DMT Insights
    • Latest News
    • Lab Spotlight
    • Installation Stories
  • About us
  • Contact
DMT Insights · Lab Spotlight
Researcher perspective

Advancing Vascular Science Through Human Arteries, Sex Differences and Even Giraffes

With more than four decades of experience studying the smallest and often most overlooked blood vessels in the body, Professor Christian Aalkjær has built a career around one central belief... to truly understand vascular disease, we must study real human vessels. As a long-time DMT customer and a pioneer in resistance artery research, his work continues to shape how scientists think about vascular structure, function, and sex-specific disease mechanisms.

Professor Christian Aalkjær Human resistance arteries Vascular science
Read the story View all Lab Spotlights
Research focus Human resistance arteries and vascular physiology.
Scientific perspective Structure, function and biological sex.
DMT application Myograph-based vascular research.
Professor Christian Aalkjær
Professor Christian Aalkjær Lab Spotlight
Professor Christian Aalkjær Lab Spotlight: Professor Christian Aalkjær.

A Lifelong Focus on Small Arteries

Professor Aalkjær’s research centers on small arteries, the resistance vessels that play a critical role in regulating blood pressure and tissue perfusion. His journey into this field was heavily influenced by his mentor, Professor Mulvany - one of the founding figures in modern myograph-based vascular research.

Over the years, Professor Aalkjær became particularly intrigued by sex differences in vascular structure. What began as a curiosity quickly became a defining theme of his work. One of the most striking findings was that male and female vessels are both structurally and functionally different. These differences are not merely anatomical, they help explain why certain vascular diseases are more prevalent in one sex than the other.

To study these questions properly, his lab relies on human tissue. Before experiments can even begin, ethical approval is required, and patients voluntarily donate small biopsies often taken from the gluteal region to advance scientific understanding. “It’s critical that we study human vessels,” he emphasizes. “Animal models are valuable, but they don’t tell the whole story.”

It’s critical that we study human vessels. Animal models are valuable, but they don’t tell the whole story.

Unexpected Insights into Sex-Specific Disease

One of the most surprising realizations from Professor Aalkjær’s research is just how differently vascular disease can manifest between males and females. Some diseases occur almost exclusively in women, while others disproportionately affect men. His work aims to uncover why examining how structural and functional differences in blood vessels may predispose each sex to specific conditions.

This line of research continues to challenge long-held assumptions in vascular physiology and highlights the importance of designing experiments that account for biological sex, rather than treating it as a secondary variable.

From the Lab to the Savannah: The Giraffe Experiments

Among Professor Aalkjær’s most well-known and memorable experiments is one that began with an unlikely source of inspiration... giraffes.

Inspired by Professor Folkow, whom he describes as one of his scientific heros, Professor Aalkjær became fascinated by how giraffes manage an extreme blood pressure. Adult giraffes have a mean arterial pressure of around 200 mmHg, roughly double that of humans. How their vessels withstand such pressure without constant vascular damage posed a compelling physiological puzzle.

Professor Christian Aalkjær during giraffe research
Professor Christian Aalkjær.

This curiosity led to an ambitious expedition to South Africa, where his team worked with specialized veterinarians from Denmark and South Africa to study anesthetized giraffes in quarantine facilities. Using advanced instrumentation, they placed flow and pressure sensors and carefully extracted small arteries from different regions of the body including the brain, neck and hooves.

The findings were remarkable. Brain vessels operate under relatively low pressure, while the vessels in the hooves endure extremely high pressures, revealing dramatic regional adaptations within the same animal. These insights have had lasting implications for understanding pressure regulation and vascular remodeling.

Challenges Behind the Science

Like most long-term research programs, Professor Aalkjær’s work has not been without challenges. Securing funding remains a constant hurdle, particularly when grant committees struggle to fully engage with complex study designs. Building and maintaining a strong lab team is another ongoing effort selecting researchers who are not only technically skilled but resilient in the face of failure.

“Many experiments won’t work,” he says candidly. “You have to be prepared for frustration.”

Many experiments won’t work. You have to be prepared for frustration.

His approach to overcoming these challenges is rooted in collaboration and perspective supporting former students, helping colleagues troubleshoot experiments, and celebrating successes whenever they come.

Why DMT Equipment Matters

DMT systems have played a key role in enabling Professor Aalkjær’s research, particularly their versatility and precision. His lab uses a specially modified myograph system that allows electrical stimulation of the tissue, and in this way investigates how nerves in the vessel wall can control the activity of the smooth muscle cells in the arterial wall.

This capability is essential for studying neurovascular interactions and preserving physiological relevance something Professor Aalkjær considers indispensable when working with delicate human arteries.

A Lasting Impact

When asked what he is most proud of, his answer is simple but powerful... 'bringing human arteries into the lab' By prioritizing human tissue and physiological relevance, Professor Aalkjær has helped move vascular science closer to the conditions that actually matter for patients.

Advice for the Next Generation

For aspiring researchers, his advice is refreshingly honest: “Be prepared for many frustrations.” Experiments will fail. Data will be messy. Progress will be slow. But success when it comes is worth celebrating. Just as importantly, he encourages young scientists to support one another and recognize good work when they see it.

After more than 40 years in the field, Professor Christian Aalkjær’s work continues to exemplify curiosity, rigor, and a deep commitment to advancing vascular science one small artery at a time.

Professor Christian Aalkjær Lab Spotlight
Lab Spotlight: Professor Christian Aalkjær.

Research at a glance

Researcher Professor Christian Aalkjær
Research focus Human arteries and vascular science
Preparation Human resistance arteries
Scientific themes Vascular structure, function and sex differences
DMT systems DMT myograph systems
Article focus

Human arteries, sex differences and physiological relevance

A researcher perspective on human arteries, sex-specific vascular disease mechanisms, and the importance of physiological relevance in vascular science.

Human vessels Resistance artery research Sex differences DMT myograph systems
Related DMT resources

Continue exploring DMT systems

Continue exploring DMT systems, product videos and practical support resources.

DMT systems

Wire Myograph Systems

Explore DMT systems for isometric force measurements in vascular and small tissue preparations.

View systems →
Learning resources

DMT Academy

Product videos, how-to content, articles and practical learning resources.

Open Academy →
System guidance

Contact DMT

Ask DMT for help choosing systems, software, training or support.

Contact DMT →
Explore more research stories

Meet more researchers from the DMT community

Explore additional Lab Spotlights covering vascular physiology, pharmacology, cardiovascular research, tissue mechanics and smooth muscle function.

View all Lab Spotlights Contact DMT

Products

  • Wire Myographs
  • Pressure Myographs
  • Organ Bath Systems
  • Muscle Strip Systems

Resources

  • DMT Academy
  • Product Videos
  • How-to Videos
  • Protocols & Articles
  • Software Downloads

Support

  • Guides & Manuals
  • Training
  • System Maintenance
  • Ask for Advice

Company

  • About DMT
  • Contact
  • Terms & Conditions
  • Software License
  • Privacy Policy
  • Warranty

Contact

  • Contact DMT Denmark
  • Contact DMT USA
  • Regional contacts

© 2026 Danish Myo Technology A/S

  • Products
    • Muscle Strip Systems >
      • Tissue Puller System - 560TP
      • MyoDynamics Muscle Strip System - 840MD
    • Organ Bath System >
      • Organ Bath System - 751MT
      • Organ Bath System - 752eT
      • Organ Bath System | 820MO
    • Pressure Myograph Systems >
      • Pressure Myograph System - 110PXL
      • Pressure Pulsation Myograph System - 112PP
      • Pressure Myograph System - 114P
      • Pressure Myograph System - 114PB
      • Pressure Myograph System - 114PN
      • Pressure Myograph System - 120CP
    • Wire Myograph Systems >
      • Single Wire Myograph System - 320A
      • Confocal Wire Myograph System - 360CW
      • Dual Wire Myograph System - 420A
      • Multi Wire Myograph System - 620M
      • Automated Multi Myograph System - 630MA
    • Myograph Software >
      • MyoNORM
      • MyoDAQ Acquisition
      • MyoVIEW 5
      • MyoPULSE
    • Accessories & Parts >
      • Buffer Filler System
      • FlowMeter - 162FM
      • Stimulators >
        • Stimulator - CS4+
        • Stimulator - CS8
  • Resources
    • DMT Academy >
      • Product Videos
      • Practical Guides
      • Protocols & Articles
    • Guides & Manuals
    • Training/Installation
    • System Maintenance
    • Software Downloads
  • DMT Insights
    • Latest News
    • Lab Spotlight
    • Installation Stories
  • About us
  • Contact