J Neurol Surg A Cent Eur Neurosurg
DOI: 10.1055/a-2235-8556
Original Article

Interaction between Neurogenic Pulmonary Edema and Thoracic 3 DRG Degeneration Following Spinal Subarachnoid Hemorrhage: First Experimental Study

Deniz Sirinoglu
1   Department of Neurosurgery, Ok Meydani Education and Research Hospital, Istanbul, Turkey
,
Buse Sarigul
2   Department of Neurosurgery, Tuzla Government Hospital, Tuzla Istanbul, Turkey
,
3   Department of Neurosurgery, Recep Tayyip Erdogan University, Medical Faculty, Rize, Turkey
,
Mehmet Dumlu Aydin
4   Department of Neurosurgery, Ataturk University Medical Faculty, Erzurum, Turkey
,
Rabia Demirtas
5   Department of Pathology, Ataturk University Medical Faculty, Erzurum, Turkey
› Author Affiliations
Funding None.

Abstract

Background Neurogenic pulmonary edema (NPE) following subarachnoid hemorrhage (SAH) is still one of the most catastrophic complications with high morbidity and mortality rates. Systemic sympathetic hyperactivity has been considered in the pathogenesis, but it has not been clarified. In this study, we investigate the relationship between the degeneration of the T3 dorsal root ganglion (DRG) and the development of NPE following spinal SAH.

Methods The study was conducted on 23 rabbits. Five rabbits were used as the control group, 5 as the sham group (n = 5), and 13 as the study group. The correlation between the degenerated neuronal densities of the T3 nerve axons and neurons in the DRG and NPE scores was analyzed statistically.

Results A correlation between the neuronal degeneration of the T3 nerve, its DRG, and high NPE scores was found in the study group and the sham group. Massive NPE was detected in the study group along with neural degeneration of T3 axons and ganglia.

Conclusion The present study indicates that NPE and pulmonary artery vasospasm can be prevented by reducing T3 DRG degeneration.



Publication History

Received: 13 March 2023

Accepted: 20 December 2023

Accepted Manuscript online:
28 December 2023

Article published online:
15 April 2024

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