Dramatic decrease in intraocular pressure following topical administration of cycloplegics in an aphakic child.
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Biomedical subjects
Publications and source records attributed to Gohar A Salam.
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The hand can be anesthetized effectively with blocks of the median, ulnar, or radial nerve. Each digit is supplied by four digital nerves, which can be blocked with injections on each side of the digit. Anterior or posterior ankle blocks can be used for regional anesthesia for the foot. The anterior ankle block, which is used for procedures on the dorsum of the foot, involves blocking the saphenous nerve, and superficial and deep peroneal nerves. The posterior ankle block, which is used to anesthetize the sole of the foot, involves blocking the sural and posterior tibial nerves. Paracervical block is used for procedures on the cervix, such as loop electrocauterization or conization. Dorsal penile block has been the most commonly recommended anesthetic technique for neonatal circumcision. A safe and effective alternative is the application of anesthetic cream over the skin to be circumcised.
Although local anesthesia usually is used in surgical procedures, field or nerve blocks can provide more effective anesthesia in some situations. In a field block, local anesthetic is infiltrated around the border of the surgical field, leaving the operative area undisturbed. In field blocks, epinephrine may be added to the anesthetic to enhance vasoconstriction and prolong the duration of anesthesia. In a nerve block, anesthetic is injected directly adjacent to the nerve supplying the surgical field. A review of regional anatomy and the location of nerves and other important structures is essential before administering the injection. Systemic toxicity is rare with regional anesthesia and can be prevented by using the smallest dose possible and aspirating before the injection. Supraorbital, supratrochlear, infraorbital, and mental nerve blocks can provide adequate anesthesia in procedures on parts of the face. Field block also may be considered when operating on the ear or lips.
OBJECTIVE: To describe the results of lens-sparing vitrectomy in infants with progressive, fovea-threatening, tractional retinal detachments associated with stage 4A retinopathy of prematurity. METHODS: In a retrospective, interventional, consecutive clinical case series, the records of patients with stage 4A retinopathy of prematurity who underwent lens-sparing vitrectomy for progressive retinal detachments were reviewed. Retinal attachment status, reversed or arrested retinal dragging, and visual acuity were assessed after the procedure. RESULTS: Thirty-two eyes of 29 patients underwent lens-sparing vitrectomy at a mean postconceptional age of 43 weeks. Thirty (94%) of 32 eyes had complete retinal reattachment and arrest or reversal of retinal dragging after 1 lens-sparing vitrectomy. Visual acuity of at least central, steady, and unmaintained was observed in 17 (81%) of the 21 eyes in which it was tested and at least central, steady, and maintained vision was measured in 13 (62%) of 21 eyes, with 1 eye achieving 20/40 visual acuity. CONCLUSIONS: Lens-sparing vitrectomy is a safe and effective procedure for the treatment of fovea-threatening retinal detachments in patients with stage 4A retinopathy of prematurity.
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Splinter injuries are common, but larger and deeper splinters are often difficult and painful to remove at home. These splinters often present as a foreign body embedded in the superficial or subcutaneous soft tissues. Whenever possible, reactive objects like wood, thorns, spines, and vegetative material should be removed immediately, before inflammation or infection occurs. Superficial horizontal splinters are generally visible on inspection or easily palpated. A horizontal splinter is exposed completely by incising the skin over the length of the long axis of the splinter, and removed by lifting it out with forceps. A subungual splinter may be removed by cutting out a V-shaped piece of the nail. The point of the V is at the proximal tip of the splinter, which is grasped and removed, taking particular care not to push the splinter further into the nail bed. Removal of an elusive splinter can be challenging and may require the use of imaging modalities for better localization. Deeper splinters, especially those close to important structures such as nerves, tendons, blood vessels, or vital organs, should be referred for removal.
Z-plasty is a plastic surgery technique that is used to improve the functional and cosmetic appearance of scars. With this technique, it is possible to redirect a scar into better alignment with a natural skin fold or the lines of least skin tension. Contracted scars may be lengthened with this technique. Z-plasty involves the creation of two triangular flaps of equal dimension that are then transposed. Basic z-plasty flaps are created using an angle of 60 degrees on each side, which can lengthen a scar by 50 to 70 percent and reorient the direction of the central wound by 90 degrees. Keeping the length and angle of each flap precisely the same is key to avoiding mismatched flaps that may be difficult to close. Some possible complications of z-plasty include flap necrosis, hematoma formation under the flaps, wound infection, trapdoor effect, and sloughing of the flap caused by high wound tension.
PURPOSE: To study the characteristics and management of macular holes that develop after prior rhegmatogenous retinal detachment (RD) repair. DESIGN: Retrospective, interventional, consecutive case series. METHODS: The setting was a clinical practice. The case records of all of our patients (n = 12) who developed a new full-thickness macular hole after prior RD repair over an 8-year period were examined. Patients who developed a macular hole after prior RD repair were offered either surgical repair of the macular hole or continued observation. For eyes that underwent macular hole repair, main outcome measures included macular attachment status and postoperative visual acuity. RESULTS: Twelve full-thickness macular holes were detected in a series of 2,380 eyes (0.5% prevalence), which had undergone surgery for prior primary RD. Ten macular holes developed after scleral buckling surgery, two after pneumatic retinopexy, and none were seen after primary vitrectomy. The fovea had been detached in 11 of the 12 eyes at the time of RD. The median time to macular hole diagnosis after RD repair was 3.4 months (range, 0.3-161 months). Eight of the eight eyes (100%) undergoing surgical repair achieved macular reattachment with a median of 3.5 lines of visual improvement at a median of 14.8 months of follow-up. Seven of these eight eyes had an improvement in visual acuity of at least 3 Snellen lines, and four of the eight had at least 20/40 visual acuity postoperatively. Four eyes with macular holes were observed. CONCLUSIONS: Macular holes developed in less than 1% of eyes that had previously undergone repair of rhegmatogenous RD. In our series, these atypical holes were seen predominantly after macula-off detachments, most commonly occurring after scleral buckling procedures. They were effectively repaired using conventional pars plana vitrectomy with long-acting gas tamponade and a variety of adjuvant therapies. A good visual outcome is possible with this approach.
Lipomas are adipose tumors that are often located in the subcutaneous tissues of the head, neck, shoulders, and back. Lipomas have been identified in all age groups but usually first appear between 40 and 60 years of age. These slow-growing, nearly always benign, tumors usually present as nonpainful, round, mobile masses with a characteristic soft, doughy feel. Rarely, lipomas can be associated with syndromes such as hereditary multiple lipomatosis, adiposis dolorosa, Gardner's syndrome, and Madelung's disease. There are also variants such as angiolipomas, neomorphic lipomas, spindle cell lipomas, and adenolipomas. Most lipomas are best left alone, but rapidly growing or painful lipomas can be treated with a variety of procedures ranging from steroid injections to excision of the tumor. Lipomas must be distinguished from liposarcoma, which can have a similar appearance.
PURPOSE: To evaluate the incidence and effect on visual acuity of complicating factors such as retinal tears (RTs) and rhegmatogenous retinal detachment (RRD) in eyes with posteriorly dislocated lens fragments after cataract extraction. METHODS: Retrospective consecutive series of patients presenting at a referral vitreoretinal practice with posteriorly dislocated lens material after cataract extraction over a period of 8 years. The presence of RT, RRD, endophthalmitis, and choroidal hemorrhage was noted, and their effect on visual outcome was studied. RESULTS: A total of 307 eyes with posteriorly dislocated lens material after cataract extraction were identified. Fifty-eight eyes (19%) were managed medically (Group I), whereas the other 249 eyes (81%) underwent pars plana vitrectomy for removal of the lens material (Group II). Indications for surgical management included uncontrolled inflammation, elevated intraocular pressure, and large lens fragments. No eyes in Group I developed RT or RRD. Of the 249 Group II eyes, 13 (5%) were found to have RT, and 25 (10%) developed RRD. In Group II, choroidal hemorrhage and endophthalmitis were noted in 12 (5%) and 4 (2%) eyes, respectively. Fifty-one (88%) of 58 eyes in Group I and 138 (55%) of 249 eyes in Group II achieved a final visual acuity of 20/40 or better. Seven (54%) of the 13 eyes with RT and 9 (36%) of the 25 eyes with RRD achieved a final visual acuity of 20/40 or better. In the RRD group, 9 (56%) of the 16 macula-on eyes achieved a final visual acuity of 20/40 or better, whereas none of the 9 macula-off eyes had a final visual acuity of 20/40 or better. None of the 4 eyes with endophthalmitis and only 1 (8%) of the 12 eyes with choroidal hemorrhage had a final visual acuity of 20/40 or better. Five (62%) of eight eyes with retinal detachment treated with pneumatic retinopexy needed further treatment with scleral buckle to achieve anatomical reattachment. CONCLUSION: A good visual outcome (20/40 or better) is possible in eyes with posteriorly dislocated lens fragments after cataract extraction, even when retinal tears or macula-on retinal detachment is present. The presence of a macula-off retinal detachment, however, has a significant adverse effect on the visual outcome. Pneumatic retinopexy is not associated with retinal reattachment in many cases and is not preferred.