scholarly journals Moyamoya Disease Superficial Temporal Artery-to-Middle Cerebral Artery Onlay: 2-Dimensional Operative Video

2020 ◽  
Vol 18 (6) ◽  
pp. E229-E229
Author(s):  
Benjamin K Hendricks ◽  
Robert F Spetzler

Abstract The most frequently performed low-flow bypass procedure is the superficial temporal artery (STA) to middle cerebral artery (MCA) bypass. If available, a suitable M2 or M3 cortical branch is anastomosed to the donor vessel. This patient had severe moyamoya disease with an ipsilateral perfusion deficit and transient ischemic attacks. Given the need for revascularization, an STA-to-MCA bypass was performed. There was no suitable recipient M3 branch for direct anastomosis, and therefore an indirect bypass was performed by onlaying the STA onto the cortical surface and suturing the adventitia of the STA to the arachnoid of the underlying cortex. The dural leaflets were then inverted to potentiate further revascularization of the underlying cortex. The patient remained at their neurological baseline and demonstrated an enhanced perfusion of the ipsilateral MCA territory on follow-up evaluation. The patient gave informed consent for surgery and video recording. Institutional review board approval was deemed unnecessary. Used with permission from Barrow Neurological Institute, Phoenix, Arizona.

2019 ◽  
Vol 17 (5) ◽  
pp. E201-E202 ◽  
Author(s):  
Benjamin K Hendricks ◽  
Robert F Spetzler

Abstract A bonnet bypass is a long interposition graft bypass used for extracranial to intracranial revascularization, which is useful in patients who do not have a suitable ipsilateral donor or in whom the ipsilateral donor must be sacrificed. This interposition graft is commonly the radial artery or saphenous vein. The only practical difference in this technique for revascularization is that an interposition graft must pass through the subgaleal space to the contralateral scalp to allow for reimplantation at the desired contralateral point of anastomosis. This patient underwent a bonnet bypass for revascularization of the middle cerebral artery (MCA) perfusion territory utilizing the contralateral superficial temporal artery (STA). A saphenous vein was used as the interposition graft, which was anastomosed to an M2 segment bifurcation. The graft was then temporarily occluded and passed within a calvarial trough to the contralateral frontoparietal region. The graft was then anastomosed to the contralateral STA at a bifurcation to accommodate the graft size mismatch. The patient tolerated the bypass procedure well and demonstrated bypass patency on postoperative angiographic imaging. The patient gave informed consent for surgery and video recording. Institutional review board approval was deemed unnecessary. Used with permission from Barrow Neurological Institute, Phoenix, Arizona.


2020 ◽  
pp. 1-8
Author(s):  
Ryosuke Tashiro ◽  
Miki Fujimura ◽  
Masahito Katsuki ◽  
Taketo Nishizawa ◽  
Yasutake Tomata ◽  
...  

OBJECTIVESuperficial temporal artery–middle cerebral artery (STA-MCA) anastomosis is the standard surgical management for moyamoya disease (MMD), whereas cerebral hyperperfusion (CHP) is one of the potential complications of this procedure that can result in delayed intracerebral hemorrhage and/or neurological deterioration. Recent advances in perioperative management in the early postoperative period have significantly reduced the risk of CHP syndrome, but delayed intracerebral hemorrhage and prolonged/delayed CHP are still major clinical issues. The clinical implication of RNF213 gene polymorphism c.14576G>A (rs112735431), a susceptibility variant for MMD, includes early disease onset and a more severe form of MMD, but its significance in perioperative pathology is unknown. Thus, the authors investigated the role of RNF213 polymorphism in perioperative hemodynamics after STA-MCA anastomosis for MMD.METHODSAmong 96 consecutive adult patients with MMD comprising 105 hemispheres who underwent serial quantitative cerebral blood flow (CBF) analysis by N-isopropyl-p-[123I]iodoamphetamine SPECT after STA-MCA anastomosis, 66 patients consented to genetic analysis of RNF213. Patients were routinely maintained under strict blood pressure control during and after surgery. The local CBF values were quantified at the vascular territory supplied by the bypass on postoperative days (PODs) 1 and 7. The authors defined the radiological CHP phenomenon as a local CBF increase of more than 150% compared with the preoperative values, and then they investigated the correlation between RNF213 polymorphism and the development of CHP.RESULTSCHP at POD 1 was observed in 23 hemispheres (23/73 hemispheres [31.5%]), and its incidence was not statistically different between groups (15/41 [36.6%] in RNF213-mutant group vs 8/32 [25.0%] in RNF213–wild type (WT) group; p = 0.321). CHP on POD 7, which is a relatively late period of the CHP phenomenon in MMD, was evident in 9 patients (9/73 hemispheres [12.3%]) after STA-MCA anastomosis. This prolonged/delayed CHP was exclusively observed in the RNF213-mutant group (9/41 [22.0%] in the RNF213-mutant group vs 0/32 [0.0%] in the RNF213-WT group; p = 0.004). Multivariate analysis revealed that RNF213 polymorphism was significantly associated with CBF increase on POD 7 (OR 5.47, 95% CI 1.06–28.35; p = 0.043).CONCLUSIONSProlonged/delayed CHP after revascularization surgery was exclusively found in the RNF213-mutant group. Although the exact mechanism underlying the contribution of RNF213 polymorphism to the prolonged/delayed CBF increase in patients with MMD is unclear, the current study suggests that genetic analysis of RNF213 is useful for predicting the perioperative pathology of patients with MMD.


2019 ◽  
Vol 12 ◽  
pp. 175628641987834 ◽  
Author(s):  
Jin Yu ◽  
Miao Hu ◽  
Lei Yi ◽  
Keyao Zhou ◽  
Jianjian Zhang ◽  
...  

Superficial temporal artery–middle cerebral artery anastomosis is generally considered as an effective method in improving damage associated with intracerebral occlusions in moyamoya disease. Hemodynamic changes caused by revascularization are the cause of many postoperative complications. Of the 186 consecutive surgeries for moyamoya disease at our hospital from 2015, we herein presented one case of adult-onset moyamoya disease that manifested symptomatic local cerebral edema and local hypoperfusion caused by the ‘watershed shift’. A 67-year-old woman presented with limb numbness on the right side and underwent superficial temporal artery–middle cerebral artery anastomosis, resulting in neurological dysfunction and the formation of a reversible high-signal lesion at left frontotemporal lobes on T2-weighted images along with a decrease in perfusion values on 123I N-isopropyl-p-iodoamphetamine single-photon emission computed tomography, while the anastomotic vessel was patent on magnetic resonance angiography. This phenomenon of hypoperfusion area (left frontotemporal lobe) remote to anastomotic site (left temporal lobe area) led to the diagnosis of the ‘watershed shift’ phenomenon. In light of the hypoperfusion induced by ‘watershed shift’, the patient was treated with fluid replacement. With the gradual recovery of perfusion, the patient presented significantly improvement both on the magnetic resonance imaging findings and neurological symptoms. In conclusion, regional cerebral edema with hypoperfusion, possibly due to cerebral ischemia and the ‘watershed shift’ phenomenon, may be another novel entity that needs to be considered as a potential complication after extracranial–intracranial bypass for moyamoya disease.


2008 ◽  
Vol 24 (2) ◽  
pp. E2 ◽  
Author(s):  
Marcelo D. Vilela ◽  
David W. Newell

Object The aim of this study was to review the historical developments and current status of superficial temporal artery (STA) to middle cerebral artery (MCA) bypass. Method A literature review was performed to review the origins and current uses of the STA bypass procedure in neurosurgery. Results The idea of providing additional blood supply to the brain to prevent stroke and maintain neurological function has been present in the mind of neurosurgeons for many decades. In 1967 the first STA–MCA bypass was done by M. G. Yaşargil, and an enormous step was made into the field of microneurosurgery and cerebral revascularization. During the decades that followed, this technique was used as an adjuvant or a definitive surgical treatment for occlusive disease of the extracranial and intracranial cerebral vessels, skull base tumors, aneurysms, carotid–cavernous fistulas, cerebral vasospasm, acute cerebral ischemia, and moyamoya disease. With the results of the first randomized extracranial–intracranial (EC–IC) bypass trial and the development of endovascular techniques such as angioplasty for intracranial atherosclerotic disease and cerebral vasospasm, the indications for STA–MCA bypass became limited. Neurosurgeons continued to perform EC–IC bypasses as an adjuvant to clipping of aneurysms and in the treatment of skull base tumors and moyamoya disease; the procedure is less commonly used for atherosclerotic carotid artery occlusion (CAO) with definite evidence of hemodynamic insufficiency. The evidence that patients with symptomatic CAO and “misery perfusion” have an increased stroke risk has prompted a second trial for evaluating EC–IC bypass for stroke prevention. The Carotid Occlusion Surgery Study is a new trial designed to determine whether STA–MCA bypass can reduce the incidence of stroke in these patients. New trials will also reveal the role of the STA–MCA bypass in the prevention of hemorrhages in moyamoya disease. Conclusions The role of STA–MCA bypass in the management of cerebrovascular disease continues to be refined and evaluated using advanced imaging techniques and by performing randomized trials for specific purposes, including symptomatic CAO.


Sign in / Sign up

Export Citation Format

Share Document