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Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_777_Библиотеки_им_академика_М_И_Перельмана

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Vascular Malformations
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LucianaMarzella andPierodi Giuseppe
22
Abstract
Vascular malformations (VMs) are a complex and multifactorial conditions that can involve any area of the body for which diagnosis and treatment often require a multidisciplinary approach. VMs are congenital anomalies that are subdivided into numerous categories grouped into arterious, venous, capillary lesions or a combination of all of these. There is much confusion surrounding these little known malformations; this is due mainly to the presence of numerous and varied classi­cations. Misclassications or incorrect diag­noses are common and are usually due to the limited experience of clinicians or radiologists involved in the diagnosis and management of vascular malformations; recognizing a vascu­lar malformation and appropriately classify­ing it are essential for optimal patient care and require solid knowledge and experience. The origin of vascular malformations is a genetic defect that, in many associated syndromes, is inherited in an autosomal recessive manner, while in the non-inherited forms, it is a ran­dom genetic defect.
L. Marzella (*) Hand Surgery Unit, IRCCS Galeazzi-Sant’Ambrogio GSD, Milan, Italy
P. di Giuseppe Columbus Clinic Center, Milan, Italy e-mail: chirurgiadellamano@fastwebnet.it
Although embolization and sclerotherapy are helpful in other districts, they should be avoided in the hand because of the high failure rate and sequela; that is why surgical treat­ment is the best choice for the hand.
Keywords
Vascular malformations · Sclerotherapy · Embolization · Arteriovenous · Haemangioma
22.1 Introduction
Congenital Vascular Malformation is a malformed vessel that results from developmental arrest dur­ing embryogenesis and presents at birth as an inborn vascular defect and continues to grow at a rate that is proportional to the growth rate of the body, regardless of its type [1].
Vascular malformations (VMs) are a complex
and multifactorial conditions that can involve any area of the body for which diagnosis and treat­ment often require a multidisciplinary approach [2].
VM can involve any vessel in any organ or tis-
sue, in a non-schaematic manner. This character­istic explains the need for accurate diagnosis in order to plan appropriate treatment based on the type of malformation, site (supercial or deep, localized or inltrating) and extension (limited or extended), tissue involvement and, lastly, the haemodynamic effects of the VM [3].
© Springer Nature Switzerland AG 2023 G. Pajardi (ed.), Pediatric Hand Surgery, https://doi.org/10.1007/978-3-031-30984-7_22
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22.2 Epidemiology
Confusion in terminology and classication has inuenced epidemiologic data. Haemangioma is still confused with some venous malformations and syndromic or mixed vascular malformations which are reported as distinctly different entities in the literature.
VMs are rare anomalies that can involve all areas of the body; the upper limb accounts for 30–60% of cases [2, 46]. Fifty percent of lesions are diagnosed within the rst 2 years from birth, but minor forms, although present at birth, often go unnoticed until adolescence or adulthood when trauma or hormonal alteration stimulates cellular proliferation, causing the lesions to become more evident [2, 79].
In our personal experience, based on more than 220 cases of surgically treated VMs of the hand, the distribution was different because VMs represented 49% of cases, arterovenous malfor­mations (AVMs) 36%, while lymphatic malfor­mations (LMs) and combined lymphovenous malformations (LVMs) 13.20% and others
2.40%.
22.3 Classications
Vascular malformations (VMs) are congenital anomalies that are subdivided into numerous categories [4, 7, 8] grouped into arterious, venous, capillary lesions or a combination of all of these. There is much confusion surrounding these little known malformations; this is due mainly to the presence of numerous and varied classications [2].
The rst classication was presented in 1863 by Rudolph Virchow, who divided angiomas into three categories: angioma “symplex”, angioma “cavernosum” and angioma “racemosus” [2, 10]. In 1964, Malan and Puglionisi proposed dividing vascular malformations into two large groups of congenital malformations: dysplasia (normal for­mation with structural deviations) and hamar-
toma (abnormal development of normal tissue in a determined area of the body) [2, 7, 8]. The rst real classication of congenital vascular malfor­mations to achieve general consensus was the Mulliken’s classication of 1982 [2, 11]. For the rst time, a clear distinction was made between vascular tumours, the most representative of which is haemangioma, and real vascular malfor­mations. This classication supplied the frame­work for all classications to follow: the Hamburg classication of 1988 [3], modied in 1993 [2,
12], and the ISSVA (International Society for the
Study of Vascular Anomalies) classication of 1996 [2, 13], further modied in 2014 [2]. This is an articulated classication made up of various appendixes simplied into a table (Table22.1).
Based on angiographic features, vascular malformations are distinguished as high or low ow depending on the presence or absence of a haemodynamically signicant arterial axle [2,
14]. The existence of so many classications
that fail to meet with universal agreement clearly shows vascular malformations to be a complex subject for which a multifactorial approach is needed that takes into account the site of the anomaly [2]. Misclassications or incorrect diagnoses are common and are usually due to the limited experience of clinicians or radiologists involved in the diagnosis and man­agement of vascular malformations. The use of an inappropriate imaging modality (e.g. CT instead of MRI) and poor image quality can also contribute to this clinical dilemma [13]. The most common misdiagnosis or misconception is the use of the term haemangioma to mean venous malformations. This misconception can easily lead to incorrect triaging and mistreat­ment. For example, patients are commonly treated with steroids because of the interpreta­tion of a haemangioma lesion on the imaging study [13]. Another common mistake is calling the malformation an AVM although all clinical and radiologic ndings are characteristic of a low-ow vascular anomaly. Therefore, recog­nizing a vascular malformation and appropri-
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Table 22.1 ISSVA classication of vascular anomalies ©2014 International Society for the Study of Vascular Anomalies available at “issva.org/classication” accessed 29th October 2017
Vascular tumours Vascular malformations Benign Locally aggressive Malignant Simple Combined Infantile
haemangioma Congenital haemangioma
Tufted haemangioma
Spindle-cell haemangioma
Epithelioid haemangioma Pyogenic granuloma
Kaposiform haemangioendothelioma Retiform haemangioendothelioma Epithelioid
PILA (papillary intralymphatic angioendothelioma) and Dabska tumour Composite haemangioendothelioma
Kaposi sarcoma Arteriovenous
Angiosarcoma Capillary
malformation (C) Lymphatic
haemangioendothelioma
malformation (LM) Venous malformation (VM) Arteriovenous malformation (AVM)
stula
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CVM and CLM LVM and CLVM
CAVM
CLAVM
ately classifying it are essential for optimal patient care and require solid knowledge and experience [13].
22.4 Aetiology andEmbryology
Poor knowledge still today leads the population to consider vascular malformations something caused by a mother’s unsatised cravings during pregnancy. In fact, they are known as birthmark. Several factors have been identied, some proven and others strongly involved: genetic and chro­mosomal abnormalities, mother’s age, damaging chemical compound and infections (cytomegalic inclusion disease, herpes virus and toxoplasmo­sis). Thalidomide and other drugs, as well as alcohol, tobacco and cocaine abuse, have all been identied as causes of birth defects [15]. Some maternal diseases and exposures have also been associated with birth defects. These include endemic goitre, diabetes, thyroid disease, tuber­culosis and hypoxia [1518].
Vascular malformations have an incidence of
1.2% [13] and can involve all areas of the body with upper limb incidence between 30% and 60% [46]. Fifty percent of lesions are identied within the rst 2 years of life, but minor forms, although present at birth, often go unnoticed until adolescence or adulthood when trauma or hor-
monal alteration stimulate cellular proliferation, causing them to be more evident [79]. In fact, a 2012 study revealed the presence of androgen, oestrogen and growth hormone receptors in the malformations [19].
The origin of vascular malformations is a genetic defect that, in many associated syn­dromes, is inherited in an autosomal recessive manner, while in the non-inherited forms, it is a random genetic defect. Gene mutations of some vascular malformations have been iden­tified, thatis, lymphatic mutations concern PIK3CA [20]. Somatic activating mutations in GNAQ and GNA11 are associated with con­genital haemangioma [21]. Endothelial cells in capillary malformations are enriched for somatic GNAQ mutations [22]. Somatic muta­tions in MAP2K1 are a common cause of extracranial arteriovenous shunting malforma­tion (AVM) [23].
The mutation of these genes results from developmental errors during embryogenesis. Angiogenesis takes place in two stages [15] as follows:
1. Reticular stage: angioblasts and primitive vas-
cular cells evolve by forming a primitive vas­cular network.
2. Truncular stage: certain areas of the primitive
capillary network regress while others evolve into mature vessels.
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Genetic anomalies can involve both the stages
so we can have the following:
1. Reticular vascular malformations (true vascu­lar malformations): primitive vascular regres­sion defect, areas of multiple dysplastic vessels of small and medium calibre localized anywhere in the body, can be extensive and inltrate tissue.
2. Truncular vascular malformations (vascular anomalies): a defect of main vessels, aplasia, hypoplasia, dilatations, hyperplasia, aneu­risms and stulas.
22.5 Diagnosis
VMs are present at birth, may be visible or become evident later, may be supercial and localized to one small area or represent an exten­sive malformation of the deep tissue.
VMs may involve any vessel and any tissue. This fundamental characteristic explains why the clinical prole can vary, especially for extratrun­cular VM.
Vascular malformations may appear either as a predominant lesion (e.g. VM, LM, AVM) or as a mixed anomaly comprising various VMs [24].
Truncular malformations of the upper limb are quite rare, while extratruncular malformations are more common.
A medical examination is sufcient in most cases to establish diagnosis. Nevertheless, instru­mental investigations are necessary to better dene extension, tissue involvement and charac­teristics, especially in combined vascular malformations.
VMs may present as solitary or multiple lesions, either supercial and localized or deep and extensively inltrative. VMs can cause pain, and when the lesions involve the muscle, nerve or bone, they may be complicated by specic sec­ondary symptoms (Fig.22.1).
VMs in the upper extremities are easily col­lapsed when the arm is elevated to allow venous drainage.
LMs are generally asymptomatic, until com­plications develop (e.g. lymphatic leakage, intra­lesional bleeding, infection) or functional impairment occurs.
Local hyperthermia, a thrill and bruit that are the hallmarks of AVM often match visibly dilated veins. Ischaemic changes and ulceration of the skin can develop distal to the shunt, often with intractable pain and intermittent bleeding. Distal gangrene is likely if arterial insufciency is severe. Combined or syndromic VMs are less common in the hand and appear as a particular picture that associates aspects of the various components of the malformation.
Fig. 22.1 AV vascular malformation inltrating the thenar muscles, showing dilated drainage veins and ischaemic distal phalanx. X-ray shows bone involvement
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22.6 Haemangioma
The term haemangioma is often used erroneously. Mulliken published an article in 2011 showing that out of 320 papers examined, 71.3% (228) errone­ously used the word haemangioma. Patients whose lesions were mislabelled were more likely to receive improper treatment (20.6%) compared with those whose lesions were designated using the International Society for the Study of Vascular Anomalies terminology [25]. The article con­cluded with the afrmation: “Haemangioma con­tinues to be commonly misused to describe any type of vascular anomaly, and terminological imprecision is prevalent among both medical and surgical elds. Inaccurate designation of the vas­cular anomaly is associated with an increased risk of erroneous management”. Haemangiomas are among the most common benign tumours in chil­dren, appearing in 7–10% of infants [26, 27]. Approximately, 30% of haemangiomas are pres­ent at birth, with the remainder becoming evident within the rst 4 weeks of life [27, 28]. Clinically, they are characterized by a period of rapid growth followed by a static period and, eventually, slow involution. Histologically, haemangiomas show endothelial cell proliferation, which is accelerated during the rapid growth phase [27]. Patients with congenital haemangioma are surgically treated in cases of abnormal growth with signs of nerve or joint compression which could cause permanent damage during growth or in the presence of ulcer­ation (Fig.22.2).
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Fig. 22.2 Haemangioma in a 4-year-old child
22.7 Imaging
Radiography, ultrasonography (US), CT (com­puted tomography) and MRI (magnetic reso­nance imaging) are usually performed to conrm the suspected diagnosis, to determine the extent of the vascular anomaly and to search for associ­ated abnormalities [29, 30].
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22.7.1 Echo-Doppler
The rst exam is echography associated with a Doppler, which enables to diagnose richly vascu­larized formations. In this way, it is possible to identify the presence or absence of ow within the detected mass and therefore classify the mal­formation as low or high ow. The absence of ow can point us towards the presence of vascu­lar deciencies or lymphatic forms.
22.7.2 Magnetic Resonance Angiography (MRA)
MRA is an indirect, noninvasive, operator­dependent exam. Results are inuenced by the number of scans, exposure time and thickness and extension of eld, as well as the experience
Fig. 22.3 Venous malformation in the palm of an 18-year-old woman, detected with a MRI in the presence of a unclear clinical picture
of the radiologist. MRA supplies images of the malformation, site and extension in tissue and represents the elective exam for the venous and lymphovenous vascular malformations, as seen in Fig.22.3.
22.7.3 Angiography
Angiography is a direct, invasive exam with pos­sible complications (infection, vessel breakage, ischaemic pain, intolerance to contrast medium, shock). It requires hospital or day hospital admis­sion that affects overall costs. Angiography helps to focalize the vascular malformation nidus inside an arteriovenous malformation.
The evolution of angiography is the video­digital- angiography, elective for complex hidden arteriovenous malformations (Fig.22.4).
ab
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Fig. 22.4 VM in a 26-year-old woman: (a) AngioMRI and (b) arteriography
22.7.4 Lymphoscintigraphy
This is an elective exam for lymphatic forms, enabling identication of site and spread. It is invasive because of the radioactive contrast medium so its use is limited.
22.8 Treatment Principles
For compressible lesions, such as lymphatic and venous VM, tailored compressive dressings can be worn to provide symptomatic relief and allevi­ate pain, heaviness and dragging secondary to limb distension [31]. In some patients, this also provides some improvement in aesthetic appear­ance. Sclerotherapy and embolization, which are very common in other districts, should be avoided in the hand, because of the high failure rate and sequelae, and should be limited in supercial proximal forms performed by a skilled radiolo­gist [32]. Commonly used sclerosing agents include alcohol or sodium tetradecyl sulphate, ethanol and ethibloc ([Johnson and Johnson] a
combination of amino acids, ethanol and contrast agents) [10, 31, 33]. Some surgeons prefer sodium tetradecyl sulphate for small supercial lesions; 100% ethanol is used for larger and deeper VMs [10]. Administration of ethanol directly into the lesion can be very painful; there­fore most procedures are performed under gen­eral anaesthesia. Potential complications include necrosis of the overlying skin and nerve injury due to extravasation. In rare cases, post­inammatory hyper-pigmentation and infection can occur in the presence of ulceration [33].
Arterious embolization can be considered dur­ing angiography for arteriovenous malformations (AVMs), but this procedure can be extremely risky especially for distal portions of the hand due to the high risk of ischaemia; it is therefore used as a rst step treatment to reduce the mass to prepare it for surgery [15] (Fig.22.5).
Indications for surgical treatment are pain, intralesional thrombosis, bleeding, nerve com­pression, recurrent infection, functional disabil­ity, overgrowth and compartment syndrome. Incomplete resection and diffuse lesions can
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Fig. 22.5 Arterovenous malformation limited to the distal palm of a 23-year-old man. Signs of previous proximal embolization are evident in the angiography image
L. Marzella and P. di Giuseppe
cause recurrence [34]. In cases of massive lesions, limb amputation or ray resection may be indicated [27, 35]. Of all the vascular malformations, high­ow-type lesions exhibit the poorest prognosis. Following some authors despite early and aggres­sive multistaged excision and microvascular reconstruction, 90% of patients require major amputation to alleviate pain and chronic ulcer­ation [35].
The surgeon should avoid performing intra­neural dissection as rst approach [27] and cap­sulectomies when excising the lesion. Bleeding, pain, oedema, CRPS (complex regional pain syn­drome), wound dehiscence and, of course, recur­rence are possible complications.
22.9 Surgical Treatment
Radical surgical excision remains the only deni­tive cure for certain vascular malformations, but it can be associated with high morbidity. On the other hand, incomplete resection of the mal­formed tissue often results in a high risk of recur­rence. Recurrence following treatment remains a signicant problem for all embryologically immature extratruncular lesions, and the poten-
tial for recurrence should never be underesti­mated [24].
Particularly when dealing with the hand, the challenge is to obtain a good equilibrium between radical excision and prevention of recurrence, complications and functional impairment. This is the approach that we call “functionally radical excision”.
We follow the indications of conservative sur­gery proposed by Belov [24] and a diagnostic and therapeutic programme tailored for each patient (Fig.22.6).
A multidisciplinary approach is a well-dened surgical plan in a delimited area, under tourni­quet control, with step-by-step procedures, and when possible, avoid returning to the same opera­tive eld unless absolutely necessary, in which case wait sufciently for tissue to stabilize and avoid intraneural or articular procedures.
In VM of the hand, tissue involvement is the most important feature because of the presence of highly functional, complex components con­ned to a small space [36].
In VM, skin is thinned by compression while fat tissue is extensively involved. This allows a subdermal dissection to preserve skin aps and reduce bleeding (skin sparing technique). In
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a b
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c d
Fig. 22.6 (a) Clinical picture of a venous malformations in a 20-year-old woman. (b) X-ray shows bone compression deformity. (c) MRI shows expansive mass. (d) Operative aspect of venous malformed tissue
AVMs, subcutaneous tissue is involved and skin is damaged by ischaemia or direct invasion [24,
36].
Three points have been noted in our experi-
ence regarding skin as follows:
– As skin has a “passive motor function” and
scars can hamper movements, the choice of skin incisions is a very important point in sur­gical planning. Mapping the lesions and draw­ing incisions help to avoid scar contracture.
– When not damaged, aps undermined at the
subdermal plane survive and allow good cov­erage avoiding grafts or distant aps.
– In LVM, skin can be excised following some
patterns together with the malformed tissue [36].
Other than the skin, the involvement of nerves and bones is the greatest challenge in this kind of surgery:
Bone can be affected in low- (venous) or high­(arteriovenous) ow malformations. Radiography and haemodynamic evaluation help to decide on treating with surgery alone or a combined sclero­therapy and surgical approach.
Joint instability can be due to direct bone or ligament involvement. In case of severe PIP (proximal interphalangeal) or DIP (distal inter­phalangeal) joint instability, temporary immobi­lization with K wires is recommended [36].
Nerves: Here the choice is to limit surgery to surrounding malformed vessels, thus avoiding entering the nerve. Pain and impaired nerve func­tion are the main complaints, and external decom­pression is the rst procedure used to reduce symptoms [35, 36].
The use of a microscope permits a more pre­cise dissection and avoids lesions to the epineu­rium. Internal neurolysis is a risky procedure and
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abc
Fig. 22.7 (a) Intraoperative image of a VM involving all tissues in the wrist; (b) no evidence of tendon involvement during surgery; (c) complete excision of the VM
may result in nerve resection and grafting. In our experience such a procedure has never been performed.
In case of nerve damage, repair by suture or
graft should be performed immediately.
Tendons are never affected while synovia is
commonly involved.
In some cases, we observed involvement of tendon sheets just like in rheumatoid arthritis while tendons were almost completely undam­aged (Fig. 22.7). Synovectomy is a safe and effective operation and permits to remove mal­formed tissue around tendons [36].
Muscles are widely and frequently involved, and their partial or total excision is often the only way to obtain signicant reduction of the VM mass.
In cases in which it is necessary to resect groups of muscles, it is possible to perform sec­ondary palliative procedures.
When a single expendable distal muscle is involved, total resection is the procedure of choice. When an important muscle or group of muscles are inltrated, partial resection should be considered. Here also it is possible to combine sclerotherapy prior to surgery, to reduce the mal­formed mass in AVMs.
Multiple forearm muscles are often inltrated or present sclerosis following previous operations or other treatments. In such cases, an individual
analysis of residual function and healthy muscles, considering symptoms and haemodynamic nd­ings, can provide guidelines for surgery. Excision of exor carpi ulnaris if palmaris longus and exor carpi radialis are preserved, or resection of a mass inside exor digitorum supercialis, thus weaken­ing its function, if exor digitorum profundus is spared, can be proposed [36].
22.10 Complications
Distal ischaemia and skin necrosis or nerve dam­age are the main complications that Belov’s prin­ciples of functionally radical surgery aim to prevent.
Haematomas and partial skin necrosis are generally minor sequelae and do not affect the nal result. The use of tourniquet, drains and appropriate postoperative dressing reduce these risks.
Our surgical approach is conservative, but sometimes, in the presence of massive AVMs, amputation is unavoidable.
Extensive tissue involvement and damage sec­ondary to treatments, particularly in children, can induce muscle retraction, progressive bone defor­mation and joint stiffness that require secondary surgery.