scholarly journals Surgical management of Helveston syndrome (Triad exotropia)

Author(s):  
Xiaoqin Jin ◽  
Yi Peng ◽  
Samer Abdo Al-wesabi ◽  
Jun Deng ◽  
Yue Ming ◽  
...  

Abstract Purpose To evaluate and compare different surgical approaches for the treatment of Helveston syndrome and provide further information for preoperative planning. Methods From February 2008 to December 2018, data of 52 patients with Helveston syndrome were retrospectively reviewed. Different surgical approaches were selected based on the extent of A-pattern exotropia, dissociated vertical deviation (DVD), and both superior oblique muscle overaction (SOOA) with fundus photograph intorsion. Eye position, A-pattern, DVD, superior oblique muscle function, and binocular vision function were evaluated pre- and postoperatively. The average follow-up duration was 20.5 months. Results Nine cases underwent simultaneous horizontal deviation correction with bilateral superior rectus recession, 24 underwent simultaneous horizontal deviation correction with bilateral superior oblique muscle lengthening, and 19 underwent two stages of horizontal deviation correction with superior oblique muscle lengthening, and later bilateral superior rectus recession. A-pattern, DVD, SOOA, and fundus intorsion were all collapsed in all patients postoperatively. Forty-five patients had an orthophoric eye position with considerably aligned ocular movements postoperatively. The total success rate was 86.5%. Postoperatively, eight of the 10 patients with diplopia experienced a recovery of binocular single vision and three had a recovery of rudimentary stereopsis (Titmus 3000–400 s of arc). The compensatory head posture of patients improved significantly postoperatively. Conclusions The surgical planning of Helveston syndrome should be designed based on the degree of the A-pattern, SOOA, DVD, and the intorsion in fundus photographs, and the appropriate approach should be selected to improve patient satisfaction.

1983 ◽  
Vol 11 (2) ◽  
pp. 119-122 ◽  
Author(s):  
ANNE M. V. BROOKS MB ◽  
W. BRIAN ESSEX MB ◽  
ROBERT H. WEST FRACO

Author(s):  
Stacy L. Pineles ◽  
Federico G. Velez ◽  
Richard L. Elliot ◽  
Arthur L. Rosenbaum

2021 ◽  
pp. 112067212110451
Author(s):  
Amar Pujari ◽  
Vaishali Rakheja ◽  
Sujeeth Modaboyina ◽  
Deep Das ◽  
Manasi Tripathi ◽  
...  

Purpose: To describe the possibility of complex strabismus surgical simulation on goat eyes. Methods: The goat eyes were procured from local slaughterhouse with retained extra ocular muscle tissues. The obtained eyes were inspected for globe integrity, muscle quality, muscle length, and the surrounding teno-conjunctival layers. The included eyes were then segregated for surgical simulation based on their insertion and orientation (as oblique or recti), and they were mounted on a mannequin head, with a fixation suture at free end to simulate the resting tension. Additionally, as per necessary, extra muscles were also transplanted along desired sites to simulate human extra ocular muscle anatomy. Results: The inferior oblique, superior oblique, and all other four recti were successfully simulated in varying proportions in more than 50 eyes. Primarily, by simulating the lateral rectus, inferior rectus, and the inferior oblique muscle, staged weakening procedures of inferior oblique were successfully practiced (Fink’s recession, Park’s recession, Elliot and Nankin procedure, total anterior positioning, and antero-nasal trans-position or Stager’s procedure). Similarly, by simulating superior rectus, inferior rectus, lateral rectus, and the medial rectus muscles, half width transposition, full width transposition, and other complex procedures were practiced (Knapp’s procedure, augmented Knapp’s, Nishida’s procedure, Faden operation, and Y splitting procedure). Furthermore, by simulating superior oblique and the superior rectus muscles, superior oblique tuck, posterior tenectomy, loop tenotomy, and Harada Ito procedures were successfully practiced. Conclusions: On goat eyes, the complex strabismus surgical procedures can be successfully simulated and practiced after re-organizing the existing muscles in different patterns.


Orbit ◽  
1983 ◽  
Vol 2 (2) ◽  
pp. 91-98 ◽  
Author(s):  
S. Auch Roy-Mainguy ◽  
C. Merlier ◽  
B. Arnaud ◽  
J. M. Fuentes

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