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Causal Relationship between Celiac Stenosis and Pancreaticoduodenal Artery Aneurysm: Interpretation by Simulation
Hye Jeong Yoon1, Jeong Sik Choi1, Woo Young Shin1
1Department of Surgery, Inha University School of Medicine, Incheon 22332, Republic of Korea.
Insights
Celiac artery (CA) stenosis and pancreaticoduodenal artery (PDA) aneurysm can occur together. This study simulated splanchnic circulation, finding either condition can precede and cause the other, challenging prior beliefs.
Area of Science:
- Cardiovascular Medicine
- Vascular Surgery
- Medical Simulation
Background:
- Pancreaticoduodenal artery (PDA) aneurysms and celiac artery (CA) stenosis are rare vascular conditions.
- Concurrent occurrence of PDA aneurysms and CA stenosis is noted, with CA stenosis hypothesized as the primary cause.
- Understanding the causal relationship between these co-occurring diseases is clinically significant.
Purpose of the Study:
- To investigate the causal relationship between celiac artery (CA) stenosis and pancreaticoduodenal artery (PDA) aneurysm.
- To simulate splanchnic circulation using an electric circuit model to analyze disease progression.
- To test the 'stenosis-first' versus 'aneurysm-first' scenarios in concurrent CA stenosis and PDA aneurysm.
Main Methods:
- A patient case with concurrent PDA aneurysms and CA stenosis was analyzed.
- Splanchnic circulation was simulated using an electric circuit model via Simulink® software and physical breadboard construction.
- Two causal scenarios (stenosis-first and aneurysm-first) were evaluated for their impact on blood flow dynamics.
Main Results:
- The 'stenosis-first' simulation indicated progressive CA stenosis increases PDA blood flow, promoting aneurysm or collateral development.
- The 'aneurysm-first' simulation showed that initial aneurysm or collateral formation can divert blood flow, potentially causing CA collapse.
- Both simulated scenarios demonstrated that either CA stenosis or PDA aneurysm can be the initiating condition.
Conclusions:
- Contrary to prevailing theories, either celiac artery stenosis or pancreaticoduodenal artery aneurysm can initiate the other in concurrent cases.
- Electric circuit simulation of splanchnic blood flow is a valuable tool for studying rare vascular pathologies.
- This study provides new insights into the complex interplay between CA stenosis and PDA aneurysms.
Abstract:
Pancreaticoduodenal artery (PDA) aneurysm and celiac artery (CA) stenosis are rare diseases in themselves. Interestingly, however, there are more cases documented in the literature in which these two disease entities occurred together than could be coincidental, and CA stenosis has been suggested as the provocative condition in developing PDA aneurysm. This study is aimed at examining the causal relationship between CA stenosis and PDA aneurysm by simulating the splanchnic circulation with an electric circuit. A patient with multiple PDA aneurysms and collaterals with CA stenosis was treated in our institution using hybrid techniques. The patient's pre- and postoperative status was simulated using an electric circuit, and the two possible scenarios were tested for compatibility: the stenosis-first scenario vs. the aneurysm-first scenario. The simulation was performed in two ways: using Simulink® software (MATLAB® Release 2018b) and actual circuit construction on a breadboard. The stenosis-first scenario showed that as the CA stenosis progresses, the blood flow through PDA increases, favoring the development of an aneurysm and/or collaterals if the artery was already compromised by a weakening condition. On the other hand, the aneurysm-first scenario also showed that if the aneurysm or collaterals developed first, the aneurysm will steal the blood flow through the CA, causing it to collapse if the artery was already compromised by increased wall tension. Contrary to the common belief, this study showed that in patients suffering from concurrent CA stenosis and PDA aneurysm, either condition could develop first and predispose the development of the other. The simulation of splanchnic blood flow with an electric circuit provides a useful tool for analyzing rare vascular diseases that are difficult to provoke in clinical and animal studies.
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