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Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_629_Библиотеки_им_академика_М_И_Перельмана

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PLATE
151
V A, P P, I J V
INDICATIONS  e most common indication is for the administration
of chemotherapy or long-term parenteral nutritional support. For these purposes, a port is usually used. For short-term therapies, alternatives include a tunneled central venous catheter or a peripherally inserted cen­tral catheter (PICC).
PREOPERATIVE PREPARATION  e procedure is usually performed as
an outpatient. Electrolytes and clotting studies should be checked prior to the procedure. If the patient has had previous central catheters, a careful history should be obtained, as this will help with site selection. Transcuta­neous ultrasound can assist with vein localization. A single dose of preop­erative antibiotics provides for prophylaxis.
ANESTHESIA Moderate sedation and local anesthesia is preferred.
POSITION  e patient is placed in the supine position. Fluoroscopy should
be available.  e arms are tucked at each side.
OPERATIVE PREPARATION  e hair is removed with clippers.  e cho-
sen side of the neck/upper thorax are prepped and draped using the maxi­mum sterile barrier technique.
DETAILS OF PROCEDURE
INTERNAL JUGULAR VEIN ACCESS  e internal jugular vein may be
safer than subclavian venous access.  e internal jugular vein is located posterior to the sternocleidomastoid mastoid muscle (figure 1). It is usu­ally accessed by a percutaneous route.  e plate demonstrates a right inter­nal jugular cannulation.
Preliminary ultrasound of the right side of the neck is done in order to document the patency of the internal jugular vein. With real-time ultra­sound guidance and employing a modi ed Seldinger technique, a small incision is made in the skin of the neck with a  blade and the internal jugular vein is cannulated with a small diameter needle (figure 2a). A er removing the syringe, the surgeon places a  exible guidewire (figure 2b).  e needle is removed, and over this wire, a -French dilator is placed to create a track (figure 3). A - to -cm transverse incision is made on the upper right thorax two  ngerbreadths below the clavicle and a hemostat is passed to create a tunnel between the two incisions (figure 4). Blunt dissection is done to create a subcutaneous pocket on top of the pectoralis muscle fascia for the reservoir (figure 4).  e Silastic catheter is advanced
through the subcutaneous tissues from the upper thoracic subcutaneous pocket to the neck incision (figure 4).  e -French dilator is exchanged over a wire for an introducer with a peel-away sheath (figure 5).  e dilator and wire are removed from the introducer.  e Silastic catheter is advanced through the peel-away sheath (figure 6) and is positioned under  uoroscopy with its tip in the right atrium (figure 7). Keeping the catheter in place with a forceps (figure 6), the sheath is “peeled away” by pulling it apart laterally until it is completely split and out.  e catheter is cut to length at the pocket and the slide-on boot is placed over the cath­eter.  e catheter is pushed onto the chamber hubs (figure 8a), and the boot is slid down over the catheter in order to secure its attachment to the hub (figure 8b). Immediately following placement, each of the ports is aspirated and  ushed to verify patency. If any resistance is encountered, then obstruction of the catheter in the vein insertion site, the tunnel, or at the junction of the catheter with the reservoir should be suspected.  ese sites should be inspected.  e position of the catheter with its tip in the right atrium should be veri ed by  uoroscopy.  e reservoir is then secured with nonabsorbable mono lament suture to the pectoralis fascia.  e subcutaneous tissues of the reservoir pocket are closed using inter­rupted - absorbable suture.  e port must be easily palpable, and in very obese patients, the subcutaneous fat may need to thinned directly above the port.  e skin edges are approximated using a continuous subcuticular - absorbable suture.  e neck incision is closed using a single subcuticu­lar - absorbable suture and the port is checked for  ow in both infusion and aspiration a er which it is loaded with a dilute heparin solution.  e  nal con guration is shown in figure 9 and all personnel who access the port must remember to use the special needles that do not cut or core out a segment of the Silastic access dome as they are inserted into the port.
ALTERNATIVELY  e central venous system may be accessed via the sub-
clavian vein as shown in Plate . In this operation the subclavian skin entrance site is opened a few millimeters and a tunnel is created with a small hemostat to the port site pocket.  e subcutaneous fat at the entrance may require some spreading so as to allow the Silastic catheter to round this corner without an obstructing angulation.  e remainder of the procedure is the same except for the need to close this skin incision with a few absorb­able subcuticular sutures followed by adhesive skin strips.  e port is then aspirated, checked for free  ow in both directions, and  nally loaded with a dilute heparin solution.
324
325
PLATE
152
V A, C V C, S V
INDICATIONS  e most common indication is for the short-term ( to
 days) administration of  uids, electrolytes, antibiotics, or other con­centrated parenteral medications that are not well tolerated in peripheral veins. Absence of suitable peripheral veins and patient comfort are alterna­tive indications, as is the inability to place a peripherally inserted central catheter (PICC).
PREOPERATIVE PREPARATION  e procedure may be performed at the
bedside, in the operating room, or in an outpatient ambulatory setting. Electrolytes and clotting studies should be checked prior to the procedure. If the patient has had previous central catheters, a careful history should be obtained, as this will help with site selection. Transcutaneous ultrasound can assist with vein localization.
ANESTHESIA Moderate sedation and local anesthesia is preferred.
POSITION  e patient is placed in the supine position, and the arms are
tucked at each side. Fluoroscopy should be available.
OPERATIVE PREPARATION  e hair is removed with clippers.  e cho-
sen side of the neck and upper thorax are prepped and draped using the maximum sterile barrier technique.
DETAILS OF PROCEDURE figures 1 and 2 show the relevant anatomy of
the subclavian vein. It may be cannulated on the right or the le side.  e plate shows cannulation on the right side. On the right, the subclavian vein
courses behind the medial third of the clavicle and joins the internal jug­ular vein to drain into the superior vena cava. It lies anterior and inferior to the subclavian artery.  e dome of the right lung lies behind the vessels. Ultrasound is used to con rm the patency of the vein and location.  e same modi ed Seldinger technique is used as described in Plate .  e patient is placed in a supine position. A rolled towel or sheet is placed in the interscapu­lar area to allow the shoulder to drop to the side away from the infraclavicular site (figure 1).  e patient is placed in a -degree Trendelenburg position (head down) in order to minimize the risk of air embolism and increase the size of the vein.  e head is turned slightly to the opposite side. A er instal­lation of local anesthetic to include the periosteum of the clavicle, the subcla­vian vein is cannulated with a small caliber needle (figure 3). Ultrasound guidance may be used to provide assistance. A key landmark is the point one  ngerbreadth lateral to the junction of the middle and medial thirds of the clavicle.  e needle is inserted at this point and passed along a straight line toward the sternoclavicular joint on a plane parallel to the chest wall. A  ex­ible guidewire is inserted into the needle (figure 4), and if any arrhythmia is noted, the wire is withdrawn until the electrocardiogram returns to its usual pattern.  e position of the wire is  uoroscopically veri ed.  e triple lumen catheter is thread over the guidewire (figure 5). Topical antiseptic and a dry sterile dressing are placed over the entrance site.  e catheter hub and wings are secured to the chest skin with  ne nonabsorbable sutures (figure 6). A chest x-ray is obtained to verify the position of the catheter and exclude com­plications such as a pneumothorax.
326
327
PLATE
153
INDICATIONS Aneurysms of the abdominal aorta occurring below the
renal vessels should, in general, be replaced.  is is particularly true if they are enlarging and producing pain or if there is evidence of impending or actual rupture. In poor-risk patients with small aneurysms less than  cm in diameter, observation may be the better course. Many aneurysms are corrected by endovascular techniques, but an open operative approach is acceptable and sometime necessary alternative. Although the operation is of considerable magnitude, anticipated mortality associated with spontane­ous rupture and exsanguination from an aneurysm is such as to warrant the risk of surgery in the great majority of patients. Emergency operations may o er the only chance of a patient’s survival if there is evidence of leakage or rupture of the aneurysm. A past history of coronary artery disease is not a contraindication to surgery.
PREOPERATIVE PREPARATION CT scan best de nes the size and con-
tour of these aneurysms. Transabdominal ultrasound is a good screening tool, but CT best de nes size and proximal and distal extent. Aortography is carried out if there is a question about the extent of the aneurysm, if distal occlusive disease is present, and when renal vascular disease or mesenteric insu ciency is suspected. A thorough cardiac evaluation with an electro­cardiogram, echocardiogram, and imaging stress test is performed.
In elective resection of an aneurysm, the preoperative preparation con­sists of emptying the large intestine by administering a mild cathartic. A  uid load of “crystalloid” is given at approximately  to  mL per hour beginning the evening before operation. Intravenous antibiotic coverage is started on call to the operating room. A nasogastric tube is inserted, and constant bladder drainage is initiated to follow accurately the hourly output of urine, especially during the immediate postoperative period. Catheters are placed for central venous and arterial monitoring, while a Swan-Ganz catheter may be useful in complex cardiac cases.
ANESTHESIA General anesthesia with endotracheal intubation is rou-
tine.  e arterial line permits instantaneous evaluation of blood pressure changes, and blood gas sampling can be done when required. Several large­bore (-gauge) catheters should be placed intravenously for adequate con­trol of  uid and blood replacement.
POSITION  e patient is placed in a slight head-down position to aid
in natural retraction of the small intestine from the region of the lower
R  A A A
abdomen. Intravenous catheters are secured in place in both arms and ade­quately protected from dislodgement.  e urethral catheter is connected to a constant bladder drainage bottle. Since the presence of pulsations of the dorsalis pedis must be veri ed a er the prosthesis has been inserted, some type of low support should be provided over the feet and lower third of the legs to assist in evaluating the presence of arterial pulsations.
INCISION AND EXPOSURE A long midline incision is made from xiphoid to
pubis (figure 1). Many surgeons use a large open ring retractor for exposure.  is retractor is secured to the side rail of the operating table and allows for the placement of multiple individual curved or angled adjustable retractors.
DETAILS OF PROCEDURE A er rapid palpation and visualization of the
aorta and con rmation of the diagnosis of aneurysm, steps are taken to empty the abdominal cavity of small intestine. Unless the abdominal wall is quite thick, the greater portion of the small intestine can be retracted upward and to the right and inserted into a plastic bag, the mouth of which can be partly constricted by a tape (figure 2). Saline is added to the plastic bag to keep the intestine moist. A sterile gauze pad is inserted into the neck of the plastic bag to avoid undue constriction and prevent the escape of the small intestine from the bag. It may be advisable (if the aneurysm is siz­able and involves the right common iliac) to mobilize the appendix, termi­nal ileum, and cecum and to retract the right colon upward.  e small and large bowels are retracted laterally and superiorly using multiple adjustable retractors. Additional exposure can be gained by dividing the peritoneum about the ligament of Treitz to permit further retraction of the small intes­tine upward and to the right (figure 2). What at  rst may appear to be an inoperable aneurysm eventually may prove to be rather easily resectable, since the aneurysm tends to bulge anteriorly and seems to extend up so high as to suggest involvement of the renal vessels (figure 3).  e bulk of the aneurysm tends to come forward from under the le renal vein.  e incised peritoneum over the anterior surface of the aneurysm is re ected by blunt and sharp dissection until the le renal vein is visualized. Blunt and sharp dissection frees the le renal vein from the underlying aorta (figure 4).  e le renal vein is retracted upward with a retractor (figure 5) to gain addi­tional space for the application of the occluding clamp to the aorta above the aneurysm.  e le renal vein can be divided, if necessary, to gain the  nal exposure. It does not need to be reanastomosed if the adrenal and gonadal vessel veins are intact.
CONTINUES
328
1
Incision
Aneurysm
2
Ligament of Treitz
Duodenum
Left renal vein
3
Inferior mesenteric artery
Aneurysm
Blood clot
Lumen
Lumbar arteries
5
Left
4
renal vein
Inferior vena cava
Aorta
Aneurysm
Inferior mesenteric artery
Aneurysm
Right common iliac artery
329
PLATE
154
DETAILS OF PROCEDURE  e inferior mesenteric artery
is clamped (figure 6).  e aortic side may be divided and ligated from without or, conversely, oversewn from within a er the aneurysm is opened. Usually, this vessel is small and sclerotic, in which case its sacri ce is of little consequence. In some instances, it is large and serves as a major contribu­tor to the le colon blood supply, especially if internal iliac and mesenteric occlusive disease is present. In such cases the vessel will be patent but will not exhibit back bleeding. Reimplantation of this vessel into the aortic gra may be required to protect the colon.
 e common iliac arteries then are exposed on their anterior, lateral, and medial surfaces in preparation for clamp placement. It is not necessary to encircle these vessels completely, and dissection posteriorly can result in troublesome hemorrhage from the underlying iliac veins. During the iliac artery exposure the ureters are identi ed and protected from injury throughout the procedure (figure 6).
In the past, certain gra s required preclotting; however, this is not nec­essary with woven gra s, knitted gra s sealed with collagen or gelatin, or expanded polytetra uoroethylene gra s.
R  A A A
Heparin is then injected systemically or directly into the aneurysm to provide protective anticoagulation for the extremities during aortic clamping.
Angled vascular clamps are applied to the distal common iliac arteries. An aortic clamp is used to occlude the aorta proximal to the aneurysm and distal to the renal arteries. A careful identi cation of the position of the renal arteries is mandatory before clamp application.  e aneurysm is then opened through a linear arteriotomy (figure 7).  e mural throm- bus is extracted (figure 8). Bleeding from the paired lumbar arteries is controlled with full-thickness mattress or  gure-of-eight nonabsorbable suture ligatures (figure 9).  e aortic cu is next prepared by dividing all but the posterior wall. Leaving this portion attached prevents trouble­some bleeding from lumbar veins o en found in this area (figure 10).  e iliac arteries are prepared in similar fashion; the posterior wall is undisturbed to protect the iliac veins (figure 10). Alternatively, some surgeons prefer to completely transect the proximal aorta and the distal iliac arteries so as to provide free circumferential cu s for gra anasto­moses.
CONTINUES
330
6
Right ureter
Inferior mesenteric artery
Right common iliac artery
Aneurysm
7
Inferior mesenteric
Incision
artery
8
10
Ligated lumbar arteries
Clotted blood
Aneurysm
Aorta
9
331
Common iliac arteries
PLATE
155
DETAILS OF PROCEDURE A gra of appropriate size is then
stretched and tailored to  t the aortic defect (figure 11). Suturing of the gra begins in the midline posteriorly with a double-arm swedged  or  nonabsorbable suture usually made of mono lament nylon or poly­propylene.  e initial stitch begins by passing both needles from outside inward on the gra and from inside outward on the aorta.  is suture is then tied (figure 12). Over-and-over suturing is then carried from the midline position, proceeding from outside the gra to inside the aorta. At the midline anteriorly, this suture is again tied (figure 13).
R  A A A
Vascular clamps are temporarily applied to the iliac limbs of the gra , and the aortic clamp is momentarily released to check the proximal suture line for hemostasis and the preclotting of the gra . Should leaks be noted in the anastomosis, they can be controlled by individual mattress sutures.
 e iliac anastomoses are done in the same manner as that of the aorta (figure 14). Just before completion of the anastomosis, the aortic clamp is opened momentarily to  ush any clots that may have accumulated in the aorta or gra (figure 15).  is  ushing out greatly lessens the incidence of subsequent throm­bosis in either extremity and justi es a considerable loss of blood.
CONTINUES
332