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The Journal of Physiology

JournalCitation impact & published research

The Journal of Physiology is a journal indexed in ScholarIQ from OpenAlex. ScholarIQ records 46,341 works, 2,691,432 citations, an h-index of 484 and an APC (USD) of 4,940.

46,341
Works
2,691,432
Citations
484
h-index
4,940
APC (USD)

What are the most-cited papers on The Journal of Physiology?

ScholarIQmost cited works
On the Regulation of the Blood‐supply of the Brain
C. Roy, Catherine Sherrington
The Journal of Physiology. 18901,810 CitationsOPEN ACCESS
Flexion‐reflex of the limb, crossed extension‐reflex, and reflex stepping and standing
Catherine Sherrington
The Journal of Physiology. 19101,321 CitationsOPEN ACCESS
Kinetic and pharmacological properties distinguishing three types of calcium currents in chick sensory neurones.
A P Fox, Martha C. Nowycky, Richard W. Tsien
The Journal of Physiology. 19871,265 CitationsOPEN ACCESS
The influence of heart rate on augmentation index and central arterial pressure in humans
Ian B. Wilkinson, Helen MacCallum, Laura Flint, John R. Cockcroft, David E. Newby, David J. Webb
The Journal of Physiology. 20001,089 CitationsOPEN ACCESS
A mechanism for increased contractile strength of human pennate muscle in response to strength training: changes in muscle architecture
Per Aagaard, Jesper L. Andersen, Poul Dyhre‐Poulsen, Anne‐Mette Leffers, Aase Wagner, S. Peter Magnusson, J Halkjær-Kristensen, Erik B. Simonsen
The Journal of Physiology. 2001740 CitationsOPEN ACCESS

Related on ScholarIQ

On the Regulation of the Blood‐supply of the Brain
Paper
Flexion‐reflex of the limb, crossed extension‐reflex, and reflex stepping and standing
Paper
Kinetic and pharmacological properties distinguishing three types of calcium currents in chick sensory neurones.
Paper
The influence of heart rate on augmentation index and central arterial pressure in humans
Paper
A mechanism for increased contractile strength of human pennate muscle in response to strength training: changes in muscle architecture
Paper
Resistance exercise increases AMPK activity and reduces 4E‐BP1 phosphorylation and protein synthesis in human skeletal muscle
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470M+ articles · free account