Searched for: person:kaufmh06 or norcll01 or palmaj02
The Clinical Autonomic Research journal 2021 and onward [Editorial]
Kaufmann, Horacio; Jordan, Jens
PMCID:8727978
PMID: 34985586
ISSN: 1619-1560
CID: 5107152
Stress and the baroreflex
Norcliffe-Kaufmann, Lucy
The stress response to emotions elicits the release of glucocorticoids from the adrenal cortex, epinephrine from the adrenal medulla, and norepinephrine from the sympathetic nerves. The baroreflex adapts to buffer these responses to ensure that perfusion to the organs meets the demands while maintaining blood pressure within a within a narrow range. While stressor-evoked autonomic cardiovascular responses may be adaptive for the short-term, the recurrent exaggerated cardiovascular stress reactions can be maladaptive in the long-term. Prolonged stress or loss of the baroreflex's buffering capacity can predispose episodes of heightened sympathetic activity during stress leading to hypertension, tachycardia, and ventricular wall motion abnormalities. This review discusses 1) how the baroreflex responds to acute and chronic stressors, 2) how lesions in the neuronal pathways of the baroreflex alter the ability to respond or counteract the stress response, and 3) the techniques to assess baroreflex sensitivity and stress responses. Evidence suggests that loss of baroreflex sensitivity may predispose heightened autonomic responses to stress and at least in part explain the association between stress, mortality and cardiovascular diseases.
PMID: 35086020
ISSN: 1872-7484
CID: 5137072
Novel disease-modifying treatments for synucleinopathies
Chapter by: Singer, Wolfgang; Palma, Jose Alberto; Kaufmann, Horacio; Low, Phillip A.
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 825-830
ISBN: 9780323854931
CID: 5447132
Myocardial stunning and takotsubo cardiomyopathy
Chapter by: Norcliffe-Kaufmann, Lucy
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 489-494
ISBN: 9780323854931
CID: 5447122
Midodrine
Chapter by: Palma, Jose Alberto; Kaufmann, Horacio
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 717-720
ISBN: 9780323854931
CID: 5447102
Pure autonomic failure
Chapter by: Kaufmann, Horacio; Goldstein, David S.
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 559-561
ISBN: 9780323854931
CID: 5447082
Droxidopa
Chapter by: Palma, Jose Alberto; Kaufmann, Horacio
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 721-727
ISBN: 9780323854931
CID: 5447142
Familial dysautonomia (Riley-Day syndrome)
Chapter by: Norcliffe-Kaufmann, Lucy; Kaufmann, Horacio
in: Primer on the Autonomic Nervous System, Fourth Edition by
[S.l.] : Elsevier, 2022
pp. 527-531
ISBN: 9780323854931
CID: 5447152
Glia Imaging Differentiates Multiple System Atrophy from Parkinson's Disease: A Positron Emission Tomography Study with [11 C]PBR28 and Machine Learning Analysis
Jucaite, Aurelija; Cselényi, Zsolt; Kreisl, William C; Rabiner, Eugenii A; Varrone, Andrea; Carson, Richard E; Rinne, Juha O; Savage, Alicia; Schou, Magnus; Johnström, Peter; Svenningsson, Per; Rascol, Olivier; Meissner, Wassilios G; Barone, Paolo; Seppi, Klaus; Kaufmann, Horacio; Wenning, Gregor K; Poewe, Werner; Farde, Lars
BACKGROUND:The clinical diagnosis of multiple system atrophy (MSA) is challenged by overlapping features with Parkinson's disease (PD) and late-onset ataxias. Additional biomarkers are needed to confirm MSA and to advance the understanding of pathophysiology. Positron emission tomography (PET) imaging of the translocator protein (TSPO), expressed by glia cells, has shown elevations in MSA. OBJECTIVE:In this multicenter PET study, we assess the performance of TSPO imaging as a diagnostic marker for MSA. METHODS:C]PBR28 binding to TSPO using imaging data of 66 patients with MSA and 24 patients with PD. Group comparisons were based on regional analysis of parametric images. The diagnostic readout included visual reading of PET images against clinical diagnosis and machine learning analyses. Sensitivity, specificity, and receiver operating curves were used to discriminate MSA from PD and cerebellar from parkinsonian variant MSA. RESULTS:C]PBR28 binding to TSPO in MSA as compared with PD, with "hotspots" in the lentiform nucleus and cerebellar white matter. Visual reading discriminated MSA from PD with 100% specificity and 83% sensitivity. The machine learning approach improved sensitivity to 96%. We identified MSA subtype-specific TSPO binding patterns. CONCLUSIONS:We found a pattern of significantly increased regional glial TSPO binding in patients with MSA. Intriguingly, our data are in line with severe neuroinflammation in MSA. Glia imaging may have potential to support clinical MSA diagnosis and patient stratification in clinical trials on novel drug therapies for an α-synucleinopathy that remains strikingly incurable. © 2021 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
PMID: 34609758
ISSN: 1531-8257
CID: 5067692
Don Quijote and Cervantes's knowledge of neurological disorders
Chapter by: Palma, Jose-Alberto; Palma, Fermin; Simon, Julien Jacques
in: Cervantes and the early modern mind by Jaen, Isabel [Ed]; Simon, Julien Jacques [Ed]
New York, NY, US: Routledge/Taylor & Francis Group, 2022
pp. 197-215
ISBN: 9780415785471
CID: 5436772