World's Best Scientists 2026 revealed!

D-Index & Metrics

Neuroscience

D-Index
61
Citations
10454
World Ranking
3736
National Ranking
101

Biology and Biochemistry

D-Index
61
Citations
10449
World Ranking
11584
National Ranking
318

Overview

Andrew M. Allen is affiliated with the University of Melbourne in Australia. Their research primarily spans the fields of neuroscience and medicine, with a significant focus on endocrine and autonomic systems, cardiology and cardiovascular medicine, and social psychology. Within these fields, their work engages with subfields such as molecular biology and cellular and molecular neuroscience.

Their research topics include:

  • Neuroscience of respiration and sleep
  • Neuroendocrine regulation and behavior
  • Heart rate variability and autonomic control
  • Immunotherapy and immune responses
  • Olfactory and sensory function studies
  • Biochemical analysis and sensing techniques
  • Vagus nerve stimulation research

Andrew M. Allen has contributed to scientific literature through numerous recent papers, including:

  • "Individualized, heterologous chimpanzee adenovirus and self-amplifying mRNA neoantigen vaccine for advanced metastatic solid tumors: phase 1 trial interim results" (2022, Nature Medicine)
  • "PreBötzinger complex neurons drive respiratory modulation of blood pressure and heart rate" (2020, eLife)
  • "A shared neoantigen vaccine combined with immune checkpoint blockade for advanced metastatic solid tumors: phase 1 trial interim results" (2024, Nature Medicine)
  • "Advancing respiratory-cardiovascular physiology with the working heart-brainstem preparation over 25 years" (2022, The Journal of Physiology)
  • "Analysis of the distribution of vagal afferent projections from different peripheral organs to the nucleus of the solitary tract in rats" (2022, The Journal of Comparative Neurology)

Their frequent collaborators include:

  • Angela A. Connelly
  • Jaspreet K. Bassi
  • Stuart J. McDougall
  • Mariana Melo
  • Clément Menuet

Andrew M. Allen's works have been regularly published in several venues, notable among them:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Nature Medicine
  • eLife
  • The Journal of Comparative Neurology
  • The Journal of Physiology

Best Publications

  • The brain renin-angiotensin system: location and physiological roles

    Michael J McKinley;Anthony L Albiston;Andrew M Allen;M L Mathai

  • Localization and function of angiotensin AT1 receptors

    Andrew M Allen;Jialong Zhuo;Frederick A.O Mendelsohn

  • Leptin Mediates the Increase in Blood Pressure Associated with Obesity

    Stephanie E. Simonds;Jack T. Pryor;Eric Ravussin;Frank L. Greenway

  • Mapping of angiotensin II receptor subtype heterogeneity in rat brain

    Keifu Song;Andrew M. Allen;George Paxinos;Frederick A. O. Mendelsohn

  • Inhibition of the Hypothalamic Paraventricular Nucleus in Spontaneously Hypertensive Rats Dramatically Reduces Sympathetic Vasomotor Tone

    Andrew M. Allen

  • Angiotensin receptors in the nervous system.

    A.M. Allen;I. Moeller;T.A. Jenkins;J. Zhuo

  • AT1A Angiotensin Receptors in the Renal Proximal Tubule Regulate Blood Pressure

    Susan B. Gurley;Anne D.M. Riquier-Brison;Jurgen Schnermann;Matthew A. Sparks

  • Localization of angiotensin converting enzyme in rat heart.

    H Yamada;Bruno Fabris;A M Allen;B Jackson

  • CIRCUMVENTRICULAR ORGANS - NEUROENDOCRINE INTERFACES BETWEEN THE BRAIN AND THE HEMAL MILIEU

    M. J. McKinley;R. M. McAllen;Frederick A O Mendelsohn;A. M. Allen

  • Amplified respiratory-sympathetic coupling in the spontaneously hypertensive rat: does it contribute to hypertension?

    Annabel E. Simms;Julian F. R. Paton;Anthony E. Pickering;Andrew M. Allen

  • Mapping tissue angiotensin-converting enzyme and angiotensin AT1, AT2 and AT4 receptors.

    Jialong Zhuo;Ingrid Moeller;Trisha Jenkins;Siew Yeen Chai

  • Effect of I.C.V. injection of AT4 receptor ligands, NLE1-angiotensin IV and LVV-hemorphin 7, on spatial learning in rats

    J Lee;A.L Albiston;A.M Allen;F.A.O Mendelsohn

  • Interaction of circulating hormones with the brain: the roles of the subfornical organ and the organum vasculosum of the lamina terminalis

    M J McKinley;A M Allen;P Burns;L M Colvill

  • Localization of angiotensin II receptor binding in rabbit brain by in vitro autoradiography

    Frederick Ao Mendelsohn;A M Allen;J Clevers;D A Denton

  • Localization and characterization of angiotensin II receptor binding and angiotensin converting enzyme in the human medulla oblongata.

    Andrew M. Allen;Siew Yeen Chai;Jenni Clevers;Michael J. McKinley

  • Angiotensin AT1 receptor-mediated excitation of rat carotid body chemoreceptor afferent activity.

    A. M. Allen

  • Localization of angiotensin AT1 and AT2 receptors

    A. M. Allen;Jialong Zhuo;F. A. O. Mendelsohn

  • Angiotensin II receptor subtypes in the human central nervous system

    Duncan P. MacGregor;Carmel Murone;Keifu Song;Andrew M. Allen

  • Potentiation of cholinergic transmission in the rat hippocampus by angiotensin IV and LVV-hemorphin-7.

    Joohyung Lee;Siew Yeen Chai;Frederick A O Mendelsohn;Margaret J. Morris

  • Ciliary neurotrophic factor suppresses hypothalamic AMP-kinase signaling in leptin-resistant obese mice

    Gregory R R Steinberg;Matthew] James Watt;Barbara C Fam;Joseph Proietto

Frequent Co-Authors

Frederick A.O. Mendelsohn
Frederick A.O. Mendelsohn University of Melbourne
Michael J. McKinley
Michael J. McKinley Florey Institute of Neuroscience and Mental Health
Brian J. Oldfield
Brian J. Oldfield Monash University
Walter G. Thomas
Walter G. Thomas University of Queensland
George Paxinos
George Paxinos Neuroscience Research Australia
Siew Yeen Chai
Siew Yeen Chai Monash University
Robin M. McAllen
Robin M. McAllen University of Melbourne
Ann K. Goodchild
Ann K. Goodchild Macquarie University
Charles D. Pusey
Charles D. Pusey Imperial College London
Thomas M. Coffman
Thomas M. Coffman Duke University

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