A place for sympathectomy in arteriosclerotic occlusive disease.
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Biomedical subjects
Publications and source records attributed to H B Shumacker.
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On March 19, 1962, prior to the availability of Starr-Edwards ball-valve prostheses for aortic substitution, a mitral valve turned upside down was implanted for marked calcific aortic stenosis. It worked well and the patient was in good health for 15 years. Late annular calcification and loosening of sutures with marked perivalvular regurgitation made valve replacement necessary 16 years after operation. The original valve was perfectly preserved.
The stenotic internal carotid can be managed in a variety of ways and number of tests can be utilized for assessing the collateral blood flow. Except in unusual situations, carotid thromboendarterectomy with or without a patch graft is generally employed. Although some surgeons use no protective shunt at all, or only upon specific indications, intraluminal shunting is utilized extensively. Our preference is to employ the customary Javid shunt technic except in unusual circumstances that suggest that added safety may be assured by shortening to a matter of seconds the period of interruption of carotid flow. In such cases, we believe the temporary axillary-internal carotid intraluminal shunt is of considerable value. Although mediastinal and thoracic procedures and bypass grafts delivering blood from the ascending aorta are not needed nearly as often as they were formerly, they are essential in certain cases. They yield excellent results and carry small risk. Carotid-subclavian grafts have proved quite valuable in restoring pulsatile flow to the subclavian and carotid systems. Our preference, however, because of technical simplicity, is the carotid-axillary bypass procedure. Subclavian-subclavian and axillary-axillary grafts have been employed successfully. When a carotid-axillary bypass is feasible, we would choose this method instead and reserve the others for unusual anatomic-pathologic situations.
Sixty-eight patients with tricuspid atresia were seen at Indiana University during the past 30 years. Long term survivors treated without operation emerged from our review. In these, there was a combination of tricuspid atresia and transposition of the great vessels.
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The first case of successful diagnosis and operative removal of a vena caval umbrella which had become detached and migrated to the right ventricle is reported. Complications from the employment of this device are discussed. In all cases of umbrella embolization to the right heart and pulmonary arterial tree, immediate operative removal is indicated. Precautions regarding umbrella insertion which minimize the likelihood of dislodgment and embolization are also mentioned.
A method has been developed which entails the introduction of the larger end of a Javid shunt tube in the axillary artery and the other in the internal carotid with only momentary interruption of blood flow. The method of closing the incision after the thromboendarterectomy almost entirely eliminates a second period of carotid occlusion. This procedure may be useful in unusual instances in which it is believed advantageous to avoid even the relatively short occlusion periods usually necessary when using the standard intraluminal shunt technique.
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A patient had an occlusion of the left subclavian artery just proximal to the takeoff of a previously placed subclavian-carotid graft. This caused reversal of flow in the graft and a symptomatic steal of blood via to the intracranial arteries. An axilloaxillary graft restored forward flow. In a second patient, a steal occurred from the right carotid and vertebral systems into the distal carotid system of the left side that has been isolated by a proximal carotide artery occlusion from arteriosclerosis. A saphenous vein, used as a bypass from the subclavian to the carotid artery, restored normal flow. Thus, the carotide system may be the low-pressure area responsible for the steal, although this is rarer than the subclavian.
The present study of 33 operatively treated patients, 88 per cent of whom survived the procedure, is concerned with an important problem associated with acute thoracic aortic dissection, the stenotic and obstructive lesions of the aorta and its branches. Their variety and nature are described, as are the additional operative procedures deemed necessary at the time of the operation, immediately thereafter, or later on. Much has been learned about these difficulties from clinical and autopsy observations and especially from careful arteriographic surveys. They seem to be generally well withstood following resectional and grafting procedures upon the affected segment of the thoracic aorta. Occasionally, additional operative manipulations may be necessary at the same time, for example, interpolation of grafts between the ascending aortic graft and a coronary when the origin of the latter is sheared off by the dissection, and distal arterial manipulations when the patient still has ischemic lower extremities immediately after the primary procedure. Later operations must sometimes be performed because of persistence of complaints such as intermittent claudication. It is extremely rare that immediate reoperation is advisable because of indications of intra-abdominal ischemia. Much more can be learned from careful pre- and postoperative arteriographic study.
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