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AAA AIOD aortoiliac occlusive disease (AIOD) bypass Commentary EndoRE EVAR imaging kidney transplant remote endarterectromy techniques

When both iliac systems are occluded below an abdominal aortic aneurysm: hybrid techniques on the cutting edge

preop CTA EVAR-ENDORE.jpg
AAA with iliac arterial occlusion -arrows point to right external iliac and left common iliac arterial occlusions

The patient is an 70 year old man referred for evaluation of claudication that occurred at under a block of walking. He reported no rest pain or tissue loss. He smoked heavily up to a pack a day, with congestive heart failure with an ejection fraction of 40%, prior history of myocardial infarction treated with PTCA, and pacemaker, and moderate dyspnea on exertion.

On examination, patient had a flaccid abdomen through which the AAA could be palpated, and he had no palpable femoral artery pulse bilaterally, nor anything below. He had a cardiac murmur and moderate bilateral edema. Preoperative risk evaluation placed him in the high risk category because of his heart failure, coronary artery disease, and his mild to moderate pulmonary disease.
CTA (pictured above and below) showed a 5.1cm infrarenal AAA with an hourglass shaped neck with moderate atherosclerosis in the neck, an occluded left common iliac artery with external iliac artery reconstitution via internal iliac artery collaterals, and a right external iliac artery occlusion with common femoral artery reconstitution. There was calcified right common femoral artery plaque.

Preop left and right centerlines EVAR-ENDORE.jpg

Treatment options included open surgical aortobifemoral bypass with exclusion of the AAA, total endovascular repair with some form of endo-conduit revascularization of the occluded segments of iliac artery, or a hybrid repair.

Open aortic repair in patients with heart failure and moderate COPD can be performed safely (ref 1). Dr. Hollier et al, in the golden age of open repair, reported a 5.7% mortality rate operating on 106 patients with severe category of heart, lung, kidney, or liver disease.

Typically, the hybrid repair involves sewing in a conduit to deliver the main body of a bifurcated or unibody stent graft when endovascular access is not possible. Despite techniques to stay minimally invasive -largely by staying retroperitoneal, this is not a benign procedure (ref 2). Nzara et al reviewed 15,082 patients from the NSQIP database breaking out 1% of patients who had conduit or direct puncture access.

Matched analyses of comorbidities revealed that patients requiring [conduit or direct access] had higher perioperative mortality (6.8% vs. 2.3%, P = 0.008), cardiac (4.8% vs. 1%, P = 0.004), pulmonary (8.8% vs. 3.4%, P = 0.006), and bleeding complications (10.2% vs. 4.6%, P = 0.016).

Despite these risks, I have performed AUI-FEM-FEM with good results with the modification of deploying the terminus of the stent graft across an end to end anastomosis of the conduit graft to the iliac artery (below), resulting in seal and avoiding the problems of bleeding from the usually heavily diseased artery

AUI fem fem.jpg
Aorto-uni-iliac stent graft across end to end conduit anastomosis to fem-fem bypass

The iliac limbs of some stent graft systems will have proximal flares and can be used in a telescoping manner to create an aorto-uni-iliac (AUI) configuration in occlusive disease. The Cook RENU converter has a 22mm tall sealing zone designed for deployment inside another stent graft and would conform poorly to this kind of neck as a primary  AUI endograft which this was not designed to act as. The Endurant II AUI converter has a suprarenal stent which I preferred to avoid in this patient as the juxtarenal neck likely was aneurysmal and might require future interventions

I chose to perform a right sided common femoral cutdown and from that exposure, perform an iliofemoral remote endarterectomy of the right external iliac to common femoral artery. This in my experience is a well tolerated and highly durable procedure (personal data). Kavanagh et al (ref 3) presented their experience with iliofemoral EndoRE and shared their techniques. This would create the lumenal diameter necessary to pass an 18F sheath to deliver an endograft. I chose the Gore Excluder which would achieve seal in the hourglass shaped neck and allow for future visceral segment intervention if necessary without having a suprarenal stent in the way. I planned on managing the left common iliac artery via a percutaneous recanalization.

The patient’s right common femoral artery was exposed in the usual manner. Wire access across the occluded external iliac artery was achieved from a puncture of the common femoral artery. Remote endarterectomy (EndoRE) was performed over a wire from the common femoral artery to the external iliac artery origin (pictures below).

File Mar 31, 13 41 31.jpeg
External iliac to common femoral artery plaque removed with Moll ring cutter (LeMaitre Vascular) over a wire

The 18F sheath went up with minimal resistance, and the EVAR was performed in the usual manner. The left common iliac artery occlusion was managed percutaneously from a left brachial access. The stent graft on the left was terminated above the iliac bifurcation and a self expanding stent was used to extend across the iliac bifurcation which had a persistent stenosis after recanalization.

The patient recovered well and was sent home several days postprocedure. He returned a month later with healed wounds and palpable peripheral pulses. He no longer had claudication and CTA showed the aneurysm sac to have no endoleak (figures below).

post CTA EVAR-ENDORE

postop centerline EVAR-ENDORE
Composite imaging showing normal appearing right iliofemoral segment (EIA + CFA) and patent left common iliac artery.

Discussion
I have previously posted on using EndoRE (remote endarterectomy) for both occlusive disease and as an adjunct in EVAR. Iliofemoral EndoRE has excellent patency in the short and midterm, and in my experience has superior patency compared to the femoropopliteal segment where EndoRE is traditionally used. This case illustrates both scenarios. While the common iliac artery occlusions can be expected to have acceptable patencies with percutaneous interventions, the external iliac lesions typically fail when managed percutaneously especially when the stents are extended across the inguinal ligament. The external iliac artery is quite mobile and biologically, in my opinon, behaves much as the popliteal artery and not like the common iliac. Also, the common femoral arterial plaque is contiguous with the external iliac plaque, making in my mind, imperative to clear out all the plaque rather than what can just be seen through a groin exposure.

On microscopy, the external iliac artery is restored to a normal patent artery -I have sent arterial biopsies several months after endarterectomy and the artery felt and sewed like a normal artery and had normal structure on pathology. This implies that the external iliac can be restored to a near normal status and patients that are turned down for living related donor transplantation of kidneys can become excellent recipients. In this case, this hybrid approach effectively treated his claudication but also sealed off his moderate sized AAA while not precluding future visceral segment surgery or intervention with a large suprarenal stent.

 

Reference

  1. Hollier LH et al. J Vasc Surg 1986; 3:712-7.
  2. Nzara R et al. Ann Vasc Surg. 2015 Nov;29(8):1548-53
  3. Kavanagh CM et al. J Vasc Surg 2016;64:1327-34
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AIOD aortoiliac occlusive disease (AIOD) CTA EndoRE PAD remote endarterectromy techniques

EndoRE-ABF -an alternative to the EndoABF which is in turn an alternative to the ABF.

  
The patient is 70 year old woman with prior history of smoking who developed severe claudication and near rest pain. She was unable to walk more than 50 feet before having to stop due to severe leg pain. On exam, neither femoral artery pulses were palpable. PVR’s (pulse volume recordings) and ABI’s (ankle brachial index) are shown below.

PVR pre2

PVR’s demonstrate the presence of severe inflow (aortoiliac occlusive disease or AIOD). CTA was acquired and the findings were consistent with the PVR’s.

preop centerline CTA composite

There was diffuse bilateral iliac atherosclerotic plaque with occlusion of the right common femoral artery and left common and external iliac artery. The 3DVR (three dimensional virtual reality) reconstruction image below shows this as well as the abdominal and pelvic wall collaterals feeding the legs around the occluded iliofemoral system.

Pre CTA

Plans were made to perform a hybrid common femoral and profunda femoral endarterectomy, remote external iliac artery endarterectomy (EndoRE), and common iliac artery stenting. The specific challenges to this case was getting into and staying in the true lumen. Typically, this is easiest to achieve from a left arm access with wires being pushed antegrade, but in a smaller person, particularly woman, this increases the chances for access site complications. My plan was to expose both common femoral arteries and get control of the external iliac arteries at the inguinal ligament and the profunda femoral arteries at the point the proximal plaque dissipated -typically at the second branch point, and then get micropuncture access of the right iliac system by accessing from the common femoral plaque. This would give me true lumen access, and with a sheath and curved catheter (VCF in this case, but a similarly shaped OMNI Flush catheter would do as well), wire access up and across the occluded left iliac system could be achieved and the wire retrieved from the left common femoral artery. This up and over access with the wire allows for control of the aortic bifurcation and both iliac systems.

I perform EndoRE over this wire -this allows for quick access if the artery is ruptured. To minimize blood loss, I gain control of the common femoral artery in the following fashion -a 4cm segment of common femoral artery is left intact and looped above the inferior epigastrics -this loop is brought out in the lateral lower quadrant of the abdomen so that the loop doesn’t travel distally over the arteriotomy. The second loop adjacent to the arteriotomy is sent through periadventitial tissues behind the artery to keep the loop migrating over the arteriotomy. The arteriotomy is created from the distal CFA (common femoral artery) onto the profunda femoral artery (PFA) where the endarterectomy is started. A separate arteriotomy on the superficial femoral artery (SFA) allows me to divide the plaque and mobilize the proximal segment up to the SFA origin, freeing the CFA plaque in this manner. It also gives me the option to perform EndoRE of the SFA if warranted. The dissected plaque and system of loops which I call the blood lock is shown below:

  
The yellow loops are major control points (the blood lock loop is drawn in the picture above) and the red loops are around smaller branch arteries. At this point, micropuncture access through the plaque core was achieved into the true lumen of the yet patent EIA (external iliac artery, picture below).

 
The right EIA plaque was mobilized with a Vollmer ring dissector, and cut with a Moll ring cutter (LeMaitre).

 

This allowed for cutting and removal of the plaque. 

  
Up and over access and control of the wire from the contralateral (left) arteriotomy allowed for EndoRE on the other side. The occluded left common iliac plaque was ballooned and wire access into the aorta from the left was achieved. 

  

Kissing balloon angioplasty was performed with revascularization of the aortoiliac bifurcation and common iliac arteries. 

  

The stents were extended across the dissected end points of the external iliac artery origins. The arteriotomies were closed with bovine pericardial patches. Because the PFA were of small caliber, to avoid narrowing the distal end of the patch, the patches were sewn over Argyll shunts which also allowed perfusion of the legs during the suturing of the patches. The loops made this a straighforward maneuver. 

The completed CFA to PFA patch on the left is shown below:

  

Closure involved reapproximating the Scarpa’s type investing fascia of the femoral triangle and a running dermal layer of absorbable monofilament, dressed with a surgical glue. No drains were used, but if needed, they would be exited through the counter incisions created for the EIA loops. 

The patient recovered well. I always use cell salvage -sometimes, profundaplasties can be bloody, particularly if they are in reoperative fields. The ABI’s and PVR’s at the ankles improved significantly.

  The postoperative CTA shows good results as well. Below is the composite right and left centerline from aorta to the PFA’s. 

  
The 3DVR reconstruction images are shown below, with the comparison to preop shown in the first image of this blog entry:

  
The pre and postoperative images of the centerlines (composited) are shown below:

  
EndoABF is an established hybrid procedure involving an open endarterectomy of the common femoral and PFA/SFA with iliac balloon angioplasty and stenting, often taking the stents distally into the CFA and the patch to deal with complex distal EIA plaque. This procedure, which would be an EndoRE ABF, offers some advantages in eliminating the need for EIA stents which are often placed across the inguinal ligament and into the patch during EndoABF. In my experience, the EIA EndoRE performed as an extension of a CFA endarterectomy is safe, and made even safer by performing the EndoRE over a wire. Published results from Europe shows for TASC C and D disease, EIA EndoRE has excellent patency, and I would expect the same here. EndoRE and Endo ABF both offer advantages over traditional ABF, particularly in patients with medical comorbidities.