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13 Reconstruction ofFinger Joint Defects
preserve the necessary blood supplying artery and soft tissue that would prevent the ischemia of the nger. Measure the length of the bone and joint defect, joint position, and required length of the tendons, blood vessels, and nerves.
13.3.2 The Cutting oftheToe
Design the proximal interphalangeal joint of the second toe according to the length of the bone joint needed for the defect. Mark the level of dissociation on the skin surface, and the second toe is cut in the same way as the conventional method. When dissociating the dorsal and plantar digitorum arteries of one side of the toe, attention should be paid to the protection of the joint capsule branch entering the interpha­langeal joint, and the condylar branch and metaphyseal branch supplying the proximal phalangeal bone, middle pha­langeal bone, and epiphysis.
13.3.3 Transplantation
Cross wire internal xation or Kirschner wire xation can be used for osteoarticular operation. Then suture the tendons. Then, under the microscope, the dorsal and plantar digito­rum arteries and nerves are anastomosed with the corre­sponding digital arteries and nerves, respectively, and the dorsal digitorum vein is anastomosed with the dorsal digital vein.
13.3.4 Postoperative Treatment
(a) Intensive nursing and heat preservation should be per­formed routinely after the operation; (b) “three anti” therapy should be performed after the operation; (c) the blood supply of the ap should be observed regularly after the operation. If there is vascular crisis, timely treatment or exploration should be conducted.
13.5 Announcements
(a) Bone xation should not only be rm and reliable, but also conducive to early functional exercise after the opera­tion. Cross wire xation is recommended; (b) Since the con­dylar and metaphyseal branches that supply the proximal phalanges and the distal phalanges are all distributed within the distance of 0.5cm from the joint, the distance of 0.5cm from the donor joint should be avoided when the joint is removed, so as to avoid damaging these branches; (c) When bone defect in the recipient site is relatively larger and longer phalangeal bone is needed, special attention should be paid to prevent the separation of skin and bone joints during the operation to avoid affecting the blood supply; (d) Intraoperative movements should be gentle and delicate to prevent vascular pulling and damage; (e) The peripheral blood supply of the transplanted tissue and the affected n­ger should be observed while the occurrence of vascular cri­sis should be dealt within time after the operation; (f) Pay attention to early rehabilitation exercise which is helpful for improving joint function.
13.6 Case Description
Case 1 A 45-year-old male patient was admitted to hospital for more than 7 months due to bone exposure of the right index nger with movement limitation. Physical examina­tion: He was in good general condition, with stable vital signs, about 1.0 × 0.8cm soft tissue defect on the dorsal side of the proximal interphalangeal joint of the index nger with bone exposure. The proximal interphalangeal joint was reconstructed by the interphalangeal joint of the second toe of the left foot combined with composite ap under general anesthesia selectively, and the donor site was sutured directly. The operation was successful, and he returned to the ward safely. Routine reconstruction treatment was given after the operation, and the reconstructed joint survived successfully and the donor site healed in the rst stage. The efcacy was satisfactory (Fig.13.1).
13.4 Operation Characteristics
(a) To repair the interphalangeal joint of the ngers by the interphalangeal joint of the toes transplantation; (b) the cut­ting of the toe did not involve the metatarsophalangeal joint and the transverse ligament as far as possible; (c) the blood supply of the nger should be carefully evaluated before operation, and the blood supply of the distal part of the nger must be retained intraoperatively to prevent the distal necrosis.
Case 2 A 22-year-old female patient was admitted to hospi­tal in emergency for 1.5 h due to pain and bleeding of the left index nger defect caused by punch injury. Physical exami­nation: She was in good general condition, with stable vital signs, composite tissue defect of the index nger, irregular skin of the stump, exposed bone, and active bleeding. And the other ngers were normal. After admission, routine pre­operative preparation for reconstruction was given, and sur­gical contraindications were excluded. After complete debridement, the index nger was reconstructed by the inter-
13.6 Case Description
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a b c
207
d
Fig. 13.1 Reconstruction of the interphalangeal joint defect of the right index nger by the interphalangeal joint of the second toe trans­plantation. (a) Preoperative condition of the defect. (b) Exposure of the interphalangeal joint of the nger. (c) Dissociation of the interphalan-
e
phalangeal joint of the second toe of the right foot combined with composite tissue ap and bular ap of the great toe under general anesthesia in emergency, and the donor site was covered by transposition of the lateral tarsal ap. The operation was successful. After the tourniquet was relaxed, the reconstructed ngers were ruddy with moderate tension, wrapped with the sterile cotton, bulked and stuffed with the broken cotton gauze around, and she returned to the ward safely. Routine reconstruction treatment was given after the operation. Fourteen days after the operation, the recon­structed nger survived successfully. Regular follow-up was conducted to guide functional exercise. The appearance and function of the reconstructed nger were satisfactory. The donor site healed in the rst stage, and the patient was satis­ed with the appearance and function (Fig.13.2).
Case 3 A 41-year-old male patient was admitted to hospital in emergency for 1.5 h due to pain and bleeding of the right rst to third ngers caused by punch injury. Physical exami­nation: He was in good general condition, with stable vital signs, soft tissue defect on the dorsal side of the rst and second nger webs, metacarpophalangeal joint of the index nger defect, exposed bone, irregular skin of the stump, and seriously polluted. After admission, routine preoperative preparation for reconstruction was given, and surgical con­traindications were excluded. After complete debridement, the index nger and soft tissue defect of the thumb were
f
geal joint of the second toe. (d) X-ray after the operation. (e) Appearance of the reconstructed joint 8 months after the operation. (f) Function of the reconstructed joint 8 months after the operation
reconstructed by the metacarpophalangeal joint of the sec­ond toe of the right foot combined with composite tissue ap and dorsal metatarsal ap under general anesthesia in emer­gency, and the donor site was covered by free skin graft. The operation was successful. After the tourniquet was relaxed, the reconstructed ngers were ruddy with moderate tension, wrapped with the sterile cotton, bulked and stuffed with the broken cotton gauze around, and he returned to the ward safely. Routine reconstruction treatment was given after the operation, and the reconstructed nger survived successfully. The efcacy was satisfactory (Fig.13.3).
Case 4 A 47-year-old male patient was admitted to hospital in emergency for 1.5 h due to pain and bleeding of the left thumb defect caused by milling machine injury. Physical examination: He was in good general condition, with stable vital signs, soft tissue and interphalangeal joint defect of the thumb, exposed bone and articular surface, irregular wound, and seriously polluted. After admission, routine preoperative preparation for reconstruction was given, and surgical con­traindications were excluded. After complete debridement, the thumb was reconstructed by the interphalangeal joint of the great toe of the right foot combined with composite tis­sue ap under general anesthesia in emergency, and the donor site was shortened and closed. The operation was suc­cessful. After the tourniquet was relaxed, the reconstructed ngers were ruddy with moderate tension, wrapped with the
208
kl
13 Reconstruction ofFinger Joint Defects
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gh i
j
m
Fig. 13.2 Reconstruction of joint defect of the left index nger by the interphalangeal joint of the second toe and composite tissue ap trans­plantation. (a) Preoperative palmar condition of the defect. (b) Preoperative dorsal condition of the defect. (c) Preoperative X-ray. (d) Preoperative design. (e) Dissociation of the toe. (f) Dissociation of the ap. (g) Situation of the donor site after the operation. (h) Dorsal situa-
tion of the reconstructed nger after operation. (i) Palmar situation of the reconstructed nger after operation. (j) Postoperative X-ray. (k) Donor and recipient site 14 days after the operation. (l) Dorsal appear­ance of the reconstructed nger 14 months after the operation. (m) Palmar appearance of the reconstructed nger 14 months after the operation
13.6 Case Description
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abc
209
d
g
j
e
h i
k
f
l
mn
Fig. 13.3 Reconstruction of the joint defect of the index nger by the metatarsophalangeal joint of the second toe and composite tissue ap transplantation. (a) Preoperative dorsal condition of the hand defect. (b) Preoperative palmar condition of the hand defect. (c) Preoperative X-ray. (d) Preoperative design. (e) Remove the metatarsophalangeal joint. (f) Dissociation of the ap. (g) Reconstructed nger after the operation. (h) First nger web after the operation. (i) X-ray of the
reconstructed nger after the operation. (j) X-ray of the donor site after the operation. (k) Extensor function of the reconstructed nger 30 months after the operation. (l) Flexor function of the reconstructed n­ger 30 months after the operation. (m) Comparison of the left index nger and the reconstructed nger 30 months after the operation. (n) Appearance of the donor site 30 months after the operation
210
abc
d e f
ghi
13 Reconstruction ofFinger Joint Defects
j k l
Fig. 13.4 Reconstruction of the joint defect of the thumb by the inter­phalangeal joint of the great toe combined with composite tissue ap transplantation. (a) Preoperative dorsal condition of the nger defect. (b) Preoperative palmar condition of the nger defect. (c) Preoperative X-ray. (d) Preoperative design. (e) Dissociation of the blood vessels and nerves. (f) Dissociation of the composite tissue ap. (g) Dorsal view of
sterile cotton, bulked and stuffed with the broken cotton gauze around, and he returned to the ward safely. Routine reconstruction treatment was given after the operation, and the reconstructed nger survived successfully. The efcacy was satisfactory (Fig.13.4).
the reconstructed nger. (h) Palmar view of the reconstructed nger. (i) Palmar view of the reconstructed nger 3 months after the operation. (j) Nail appearance and extensor function of the reconstructed nger 15 months after the operation. (k) Flexor function of the reconstructed n­ger 15 months after the operation. (l) Situation of the donor site 15 months after the operation
and little ngers defect caused by punch injury. Physical examination: He was in good general condition, with stable vital signs, the ring nger defect from the middle plane of the proximal segment, exposed bone and articular surface, trans­verse wound at the proximal palmar print of the little nger,
straight deformity, irregular wound, and seriously polluted. Case 5 A 35-year-old male patient was admitted to hospital in emergency for 2 h due to pain and bleeding of the left ring
After admission, routine preoperative preparation for recon-
struction was given, and surgical contraindications were
13.6 Case Description
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211
a
d
b
e
c
f
gh
Fig. 13.5 Reconstruction of joint defect of the ring nger by the meta­tarsophalangeal joint of the second toe combined with composite tissue ap transplantation. (a) Preoperative condition of the nger defect. (b) Preoperative design. (c) Dissociation of the toe. (d) Palmar view of the reconstructed joint 1 week after the operation. (e) Dorsal view of the
excluded. After complete debridement, the ring nger was reconstructed by the metatarsophalangeal joint of the second toe of the right foot combined with composite tissue ap under general anesthesia in emergency, and the donor site was closed by stump repair. The operation was successful. After the tourniquet was relaxed, the reconstructed ngers were ruddy with moderate tension, wrapped with the sterile cotton, bulked and stuffed with the broken cotton gauze around, and he returned to the ward safely. Routine recon­struction treatment was given after the operation, and the reconstructed nger survived successfully. The efcacy was satisfactory (Fig.13.5).
Case 6 A 27-year-old male patient was admitted to hospi­tal in emergency for 2.5 h due to composite tissue defect, pain and bleeding of the right middle nger caused by punch injury. Physical examination: He was in good gen-
reconstructed joint 1 week after the operation. (f) Palmar view of the
reconstructed joint 40 months after the operation. (g) Dorsal view of the
reconstructed joint 40 months after the operation. (h) Dorsal view of the
reconstructed joint 40 months after the operation
eral condition, with stable vital signs, composite tissue
defect of the middle nger, exposed bone and articular sur-
face, irregular wound, and seriously polluted. After admis-
sion, routine preoperative preparation for reconstruction
was given, and surgical contraindications were excluded.
After complete debridement, the middle nger was recon-
structed by the interphalangeal joint of the second toe of
the right foot combined with composite tissue ap under
general anesthesia in emergency, and the donor site was
closed by stump repair. The operation was successful. After
the tourniquet was relaxed, the reconstructed ngers were
ruddy with moderate tension, wrapped with the sterile cot-
ton, bulked and stuffed with the broken cotton gauze
around, and he returned to the ward safely. Routine recon-
struction treatment was given after the operation, and the
reconstructed nger survived successfully. The efcacy
was satisfactory (Fig.13.6).
212
abc
def
ghi
13 Reconstruction ofFinger Joint Defects
Fig. 13.6 Reconstruction of interphalangeal joint defect of the middle nger by the interphalangeal joint of the second toe combined with composite tissue ap transplantation. (a) Preoperative palmar condition of the nger defect. (b) Preoperative dorsal condition of the nger defect. (c) Preoperative design (dorsal side). (d) Preoperative design
(plantar side). (e) Dissociation of the blood vessels and nerves. (f)
Palmar view of the reconstructed joint after the operation. (g) Dorsal
view of the reconstructed joint after the operation. (h) Palmar view of
the reconstructed joint 3 weeks after the operation. (i) Dorsal view of
the reconstructed joint 3 weeks after the operation
Reconstruction ofNail Defects
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14
Abstract
The tip of the nger is exposed to the farthest end of the limb, which is the most vulnerable to injury in labor and life. The traditional method is nger amputation, which often results in type I or type II defect; Such as the use of local ap, the length of nger body is retained, but the nger end is dry, the ap has no feeling, the dorsum of the nger is without ngernails that would cause a certain degree of disability. Because the function of the hand is special, in addition to labor and life, it is also an important organ of social activities and mutual communication just like the face. Therefore, the standard of the repair and reconstruction of thumb and nger defects should be improved correspondingly. Instead of simply repairing the wound surface, anatomical and physiological repair with consistent function and appearance should be pur­sued. In 1980, Morrison etal rst applied the great toenail ap graft to repair the skin sleeve avulsion of the thumb successfully, and it has been widely used because it reap­pears the complete shape of the thumb.
Traditionally, ngernail defect has no obvious effect on nger function that doesn’t need to be reconstructed. However, with the development of microsurgical technol­ogy, there is no problem with the technique of toenail transplantation to reconstruct the ngernail, and its surgi­cal method and difculty are similar to that of the nger­tip reconstruction. Therefore, nail reconstruction is feasible for nail defect patients with high demand for n­ger aesthetics. The commonly used methods for nail defect reconstruction include: great toenail ap transplan­tation, half great toenail ap transplantation, second toe­nail ap transplantation, and other toenail ap transplantation. Generally speaking, great toenail ap is large, which has a great inuence on great toe; The sec­ond toenail ap is small and the shape is poor after recon­struction. Half great toenail ap has relatively high technical requirements, better shape, and less injury. Specic plan should be selected according to the size of ngernail bed, soft tissue defect, and bone defect.
Keywords
Finger reconstruction · Nail defect
14.1 Reconstruction ofNail Defect by Split-Thickness Toenail Bed Transplantation
The ngernail bed defect is very common in clinic, and the reasons are various. The types and defect sizes caused by different causes are different, so it is necessary to select the appropriate surgical method according to the actual condi­tions of the injuries. In the past, due to the limitations of medical conditions, the nail bed defect was often repaired by shortening the phalanx or scarring. The former caused the incomplete end of the nger, which had a great impact on the function and appearance of the nger. The latter is prone to wound infection and residual nail deformity due to the long­time of dressing change after the operation. Later, skin ap transplantation was also used to treat nail bed defects, and the length of the nger body was effectively preserved, but the problem of missing nails still failed to be solved. With the development of microsurgical technology, nail reconstruc­tion was realized.
Before the toenail ap was used to repair the nail bed defect, some scholars proposed to directly transplant the nail bed to repair the damaged nail bed, but the regenerated nails were not smooth and had growth deformity after the opera­tion. On this basis, Shepard proposed to remove the full thick nail bed and then transplant the nails, postoperative follow­ up showed good growth and no deformity. Subsequently, some scholars used the split-thickness nail bed transplanta­tion for the treatment of post-traumatic nail deformity, which also achieved good clinical effects. After that, the full­thickness nail bed transplantation was gradually eliminated in clinical practice, and the split-thickness nail bed trans­plantation has become a common surgical method to repair the ngernail bed defect.
© Springer Nature Singapore Pte Ltd. 2023 J. Lin et al., Atlas of Finger Reconstruction, https://doi.org/10.1007/978-981-19-9612-2_14
213
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14 Reconstruction ofNail Defects
14.1.1 Indications
(a) Patients who are with partial nail defect; (b) The germinal layer of the nail root is not damaged; (c) Patients who have a strong desire for reconstruction; (d) Patients who don’t have dermatophytosis or other nail-related disease.
14.1.2 Surgical Design
The recipient site: according to the patient’s ngernail condi­tion, the wound is circularly cut to the normal nail bed mar­gin (Fig.14.1).
The donor site: the incision should be designed according
to the defect of nail bed after debridement.
14.1.3 Surgical Method
The anesthesia methods are brachial plexus block combined with epidural anesthesia or general anesthesia. The tourni­quet of the affected limb is raised to stop the bleeding. The wound is debrided completely according to the injury of the affected nger, and then the nail bed area of the donor site should be designed and cut according to the defect area of the nail bed after debridement (Fig.14.2).
The lower limb is lift to inate the, the nail plate should be removed, and the toenail bed is cut according to the defect area and shape of the nail bed and the thickness is about 0.6–0.8mm (about 1/2–1/3 of the full thickness of the nail bed (Fig.14.3).
Loosen the tourniquet, transplant the free toenail bed to the recipient site, adjust the position, and prune appropri­ately according to the size of the wound in the recipient site, then suture it without tension (Fig.14.4).
Fig. 14.1 Patial defect of the nail
Fig. 14.2 The design for the donor nail
Fig. 14.3 The dissection of the nail bed
14.2 Reconstruction ofNail Defect by Supercial Dermal Fascia Composite Tissue Transplantation
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14.1.6 Announcements
(a) During debridement, the periosteum of the exposed
bone should be kept as far as possible to ensure the blood supply to the base of the transplanted nail bed, so as to improve the survival rate.
(b) If the distal edge of the nail bed defect is the lower edge
of the nail, the distal edge of the nail plate should be slightly higher than the lateral edge of the lower nail skin when suturing to avoid pain symptoms during future nail plate growth.
(c) The operation should be performed under a magnifying
glass or microscope to reduce suture tension in the nail bed and avoid rupture.
(d) Choose the right donor toe and the range of removed
toe nail should be accurate. The most commonly used donor toe is the great toe. The thickness of the nail bed is generally about 2.0 mm, and the thickness of the transplanted nail bed is 0.6–0.8mm (1/2 of the thick­ness of the nail bed in the donor site). The size of the donor nail should be slightly larger than the edge of the defect area by 1.0 mm to facilitate tension-free suture.
(e) For patients combined with phalanx fracture, the frac-
ture can be reduced and xed rst, and then to repair the nail bed. In patients with bone defects and deformities,
Fig. 14.4 Transplantation and suture
bone grafts are used to support the nail bed.
215
14.1.4 Postoperative Treatment
(a) Intensive nursing, heat preservation should be performed routinely after the operation; (b) Three-anti therapy should be performed after the operation; (c) The blood supply of the ap should be observed regularly after the operation. If there is vascular crisis, timely treatment or exploration should be conducted.
14.1.5 Operation Characteristics
(a) Free toenail bed transplantation which is without anasto-
mosis of blood vessels and nerves, simple operation, with less postoperative complications.
(b) The survival rate is high. Compared with full-thickness
nail bed transplantation, it is thinner and easier to survive.
(c) The injury of the donor site is small, because only the
split-thickness nail bed is taken, and the whole toenail can still grow after the operation, which does not affect the donor site.
(d) The appearance of the nail is not as good as that of toe-
nail ap transplantation.
(e) The thickness is different from the original nail bed
which would affect the adhesion of the new nail.
14.2 Reconstruction ofNail Defect by
Supercial Dermal Fascia Composite Tissue Transplantation
Nail (also known as the nail plate) belongs to the attached tissue of the nger and has the barrier function, which can defend the nger from trauma damage, protect and main­tain the stability of the nger pulp, enhance the tactile sen­sitivity of the nger pulp, and help the nger to do grasping, pinching, pressing and other actions. The nailbed is rich in nutrient blood supply, which can regulate the body tem­perature, the blood supply to the extremities, and the func­tion of the nutrient nail plate. Once the nail bed is traumatized, the function and appearance of the nger may be seriously affected. With the great improvement of mate­rial life, people pay more and more attention to their own external beauty and have higher and higher requirements for the repair effect of nail defects. Clinically, we have been looking for a ngernail reconstruction method that can not only cover the wound and grow the nail, but also reduce the damage to the donor site and do not increase the burden of the patient. Reverse-free transplantation of supercial dermal fascia composite tissue for ngernail reconstruction has a satisfactory effect and has been widely used.