1.Research Progress and Prospect Analysis of Vascular Interventional Surgical Robot.
Peifeng GUAN ; Shihan WEN ; Rongqian YANG
Chinese Journal of Medical Instrumentation 2023;47(6):638-644
Vascular interventional surgery is an important means to treat cardiovascular and cerebrovascular diseases, but the particularity of its working environment will bring greater radiation threat to doctors. Vascular interventional surgery robots can effectively improve the working environment of doctors and can provide more stable operations, improve the success rate of surgery. This study mainly introduces the current research status, key technologies, and future application of vascular interventional surgical robots.
Robotics
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Vascular Surgical Procedures/methods*
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Heart
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Technology
2.Development of endovascular surgery.
Chinese Journal of Surgery 2007;45(23):1585-1586
3.Future of robotics in vascular surgery.
Celia RIGA ; Nicholas CHESHIRE
Chinese Medical Journal 2013;126(3):550-553
4.Vascular surgery and diabetic foot revascularization.
Chinese Medical Journal 2010;123(15):2116-2119
5.Professor LIN Guo-hua's experience in the clinical application of "Dayingxiang".
Qing-E XIAO ; Yong-Zheng WEI ; Shi-Yu LIN ; Guo-Hua LIN
Chinese Acupuncture & Moxibustion 2022;42(11):1294-1296
The paper introduces professor LIN Guo-hua's experience in treatment with acupuncture-moxibustion at "Dayingxiang". Based on the application of Neiyingxiang (internal LI 20), professor LIN defines the entire nasal cavity and its adjacent nasopharynx as "Dayingxiang", of which, "Neiyingxiang" and "Biyandian" (nasopharynx point) are commonly stimulated with acupuncture-moxibustion. "Dayingxiang" may regulate lung qi and promote the circulation of the marrow sea in treatment of the disorders of lung system and the marrow. Fire needling with twirling or burning-scallion technique is predominated in manipulation. "Neiyingxiang" is stimulated for the shallow-located disorders, while, "Biyandian" is for the deep-located ones. These two points are optioned alternatively or in combination to enhance the therapeutic effect.
Moxibustion
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Acupuncture Therapy/methods*
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Acupuncture
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Vascular Surgical Procedures
6.A novel method of defective vascular reconstruction using 2-octyl-cyanoacrylate and homemade prosthetic component.
Xiangdang LIANG ; Hongfei CAI ; Geng SUN ; Zihao LIU ; Wen CHEN ; Peifu TANG
Chinese Medical Journal 2014;127(5):882-886
BACKGROUNDCurrently, adhesive technique is popular in vascular repair but not widely used for defective vessels. This study aimed to determine the feasibility and effectiveness of repairing defective vessels with 2-octyl-cyanoacrylate and a homemade prosthetic component.
METHODSHomemade prosthetic component consisting of expanded polytetrofluoroethylene (ePTFE), terylene film, and homemade soluble hollow stent mixed with adhesive can replace autologous graft and suture in repairing defective vessels, can fix vessels better using the stent without occlusive bleeding. Forty male mongrel dogs were used, 20 for biomechanical tests and 20 for animal experiments. In the biomechanical test, dogs were randomly divided into two groups (n = 10 each), one group repaired on the two sides of the carotid arteries with 2-octyl-cyanoacrylate and homemade component and another group repaired with suture and ePTFE. Of the 40 specimens, 10 were used for adhesive and 10 for suture specimens for tension strength test, whereas the remaining specimens were used for bursting pressure test. In animal experiments, dogs were also divided into adhesive and suture groups (n = 10), only of the left carotid artery. Recording the operational time, bleeding or not. Vessels were tested using color Doppler ultrasound, the inner diameter was measured, and the degree of stenosis at 8 weeks was evaluated digital subtraction angiography (DSA) were also performed. Specimens were then analyzed histologically.
RESULTSIn the adhesive and suture groups, the specimens could afford atension strength of (23.80 ± 1.51) N versus (24.60 ± 1.08) N (P > 0.05), the bursting pressure was (52.03 ± 2.43) kPa versus (50.04 ± 3.51) kPa (P > 0.05), and the mean time of anastomosis was (15.20 ± 0.55) minutes versus (25.97 ± 0.58) minutes (P < 0.05). One dog in the adhesive group was bleeding from the suture. One dog from each group presented with thrombosis at 1 week. After measuring using ultrasound, the stenosis degree of all dogs were no more than 30% except the two thromboses. DSA and histological observation showed no obvious difference between the two groups.
CONCLUSIONDefective vascular anastomosis with 2-octyl-cyanoacrylate and our homemade prosthetic component is feasible, effective, timesaving, and easy to master.
Anastomosis, Surgical ; methods ; Animals ; Carotid Arteries ; surgery ; Cyanoacrylates ; therapeutic use ; Dogs ; Male ; Reconstructive Surgical Procedures ; methods ; Vascular Surgical Procedures ; methods
7.The development and application of an encapsulated aneurysm clip with biomembrane graft across the vessels.
Songtao QI ; Wenqing ZHANG ; Wenfeng FENG ; Guofeng XU ; Lijin HUANG ; Jun FAN ; Zhuang CHEN
Journal of Biomedical Engineering 2008;25(3):699-702
The external wrapping of intracranial aneurysm is the definitive treatment of choice for surgical clipping or endovascular occlusion, yet there may exist considerable difficulties and risks because so far neither ideal wrapping techniques nor ideal wrapping materials have been obtained. An encapsulated aneurysm clip with biomembrane graft across the vessels is introduced in this article. By clipping the neck and wrapping the sack of aneurysm simultaneously, this clip successfully solves the problems of unreasonable encapsulated materials and techniques; it has been proved to be an effective method for treating intracranial refractory aneurysms.
Equipment Design
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Humans
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Intracranial Aneurysm
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surgery
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Ligation
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instrumentation
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Neurosurgical Procedures
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instrumentation
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Vascular Surgical Procedures
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instrumentation
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methods
9.Overview of the vascular interventional surgery robot.
Shenglin LI ; Jie SHEN ; Yonghua YAN ; Daguo CHEN
Chinese Journal of Medical Instrumentation 2013;37(2):119-122
In vascular invasive surgery procedures, because doctors suffered from a large number of X-ray radiation, and it is difficult to manipulate catheter, so vascular interventional robot has been rapidly developed. On the basis of analysis of vascular surgical intervention process, key technologies of vascular interventional surgical robots are provided. The image navigation system, the mechanical structure, control systems and force feedback are also analyzed.
Equipment Design
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Robotics
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instrumentation
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methods
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Surgery, Computer-Assisted
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instrumentation
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methods
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Vascular Surgical Procedures
10.Thoraco-abdominal aorta revascularization through a retroperitoneal approach.
Zheng YUE-HONG ; Yu KUN ; Zhang JIE-FENG ; Choi NIM ; Deng HONG-RU ; Rui FURTADO
Chinese Medical Sciences Journal 2010;25(4):233-236
OBJECTIVETo investigate the application of the retroperitoneal approach in aortic surgery.
METHODSWe collected and analyzed data of 7 patients in Macau who presented with aortic diseases from 2007 to 2008 and were treated with aorta repair through retroperitoneal approach. Demographic features as well as intraoperative and postoperative data were analyzed. One case of thoracoabdominal aneurysm and 4 cases of abdominal aneurysm received artificial graft, among which hybrid iliac artery reconstruction with Zenith stent covering the ostium of the left subclavian artery was performed in 2 cases of infrarenal abdominal aneurysm. Aortic-iliac artery bypass was performed in 2 cases of aortoiliac occlusion.
RESULTSNo operative or early postoperative death was observed. No perioperative intestinal adhesion or ureteral obstruction was found. One case reported delayed paraplegia and graft infection as postoperative complications. The complications were partially removed 3 months later after rehabilitation.
CONCLUSIONRetroperitoneal approach is a safe and feasible technique, which associated with a low incidence of postoperative pulmonary complications.
Aged ; Aorta ; surgery ; Humans ; Myocardial Revascularization ; methods ; Peritoneal Cavity ; Treatment Outcome ; Vascular Surgical Procedures ; methods