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Toshie Hirai

Publications and source records attributed to Toshie Hirai.

12 recordsLinked to original sources

Novel mutations in the OPA1 gene and associated clinical features in Japanese patients with optic atrophy.

PURPOSE: Autosomal dominant optic atrophy (ADOA) is characterized by symmetrical bilateral optic atrophy associated with reduced corrected visual acuity (VA), central or centrocecal scotoma, and color vision disturbances. The disease is genetically heterogeneous, and the OPA1 gene has been identified as the only causative gene. The aims of this study were to identify and report mutations in the OPA1 gene in Japanese patients with ADOA and to describe the clinical features associated with the mutations. DESIGN: Molecular genetic study and observational case reports. PARTICIPANTS: Nine unrelated Japanese families with optic atrophy and 8 isolated cases of optic atrophy. METHODS: Genomic DNA was extracted from peripheral leukocytes, and all exons containing the open reading frame of the OPA1 gene and the flanking intron splice sites were sequenced directly. Complete ophthalmologic examinations were performed. MAIN OUTCOME MEASURES: Direct sequencing of the OPA1 gene and clinical evaluations including VA, visual field, color vision, and disc appearance. RESULTS: Ten different heterozygous mutations, including 6 novel mutations, were detected in the OPA1 gene. The identified mutations included 5 deletions/insertions (c.2061delA, c.2098_2103delCTTAAA, c.2538insT, c.2591insC, and c.2708_2711delTTAG), 4 nonsense mutations (c.112C>T [p.R38X], c.181C>T [p.Q61X], c.946A>T [p.R316X], and c.2713C>T [p.R905X]), and 1 missense mutation (c.1635C>A [p.S545R]). The most common mutation in Caucasians (c.2708_2711delTTAG) was found in 3 unrelated families, suggesting that it is a mutational hot spot. We detected an OPA1 mutation in 8 of 9 familial cases of optic atrophy and in 4 of 8 cases that were initially considered to be sporadic from the patients' family histories. Examinations of family members of 2 sporadic probands revealed the existence of other family members with the OPA1 mutations whose phenotype was very mild or within normal limits. This indicates that patients with ADOA sometimes seem to be sporadic because of the extensive variation in the phenotype or, alternatively, a low penetrance of ADOA. CONCLUSIONS: OPA1 gene mutations are causative in most familial cases of ADOA in Japanese. Sporadic cases of optic atrophy frequently may be caused by OPA1 mutations in the Japanese population. Molecular genetic examinations are useful in determining the hereditary patterns in some cases of optic atrophy.

Adult↗

Physiological function of S-cone system is not enhanced in rd7 mice.

The rd7mouse is a mutant mouse with a relatively late development of retinal degeneration. Earlier studies have shown that rd7 mice have a distinctive pattern of retinal dysplasia with an increased number of cone cells, particularly those with S (short wavelength)-opsin immunoreactivity. These alterations of the rd7 retina are caused by a mutation in the photoreceptor cell-specific nuclear receptor gene, Nr2e3, which is involved in the signaling pathway regulating photoreceptor cell differentiation, cell maintenance, and cell-cell interactions. The purpose of this study was to determine the physiological properties of the rd7 retina using electroretinographic (ERG) techniques. We found that the maximal a-wave amplitude of the ERG in rd7 mice was already reduced to half of the congenic controls at 6 weeks of age with normal phototransduction sensitivity. The photopic ERGs of rd7 mice were not supernormal, and the amplitudes of the S-cone ERGs were not significantly different from those recorded in controls. These results suggested that even though the number of cones expressing S-opsin is increased, the physiological function of the S-cone system is not enhanced in rd7 mice.

Animals↗

Bagolini striated glasses test and lesions of the optic chiasm.

PURPOSE: To examine the usefulness of the Bagolini Striated Glasses Test to identify patients with a lesion of the optic chiasm. SUBJECTS AND METHODS: Twelve patients who were diagnosed with a lesion of the optic chiasm by MRI were examined with the Bagolini Striated Glasses Test. Discrepancies of the test between monocular and binocular conditions were analyzed. Visual acuity, visual field and stereo tests were also administered and assessed. RESULTS: Nine out of 12 cases (75%) showed conflicting results with the Bagolini Striated Glasses Test between monocular and binocular conditions. With monocular testing, essentially normal stripes were observed in each eye. In binocular testing, stripes which were projected upon nasal retina were suppressed bilaterally (bitemporal hemianopia pattern) ("mountain pattern") or monocularly (monocular temporal hemianopia pattern). CONCLUSION: The Bagolini Striated Glasses Test can be used as a simple differential diagnostic test for lesions of the optic chiasm. The "mountain pattern" seen binocularly on this test may be pathognomonic for such lesions, which may otherwise be asymptomatic and/or overlooked.

Adenoma↗

Similar etiologies of functional visual loss observed in children and adults.

BACKGROUND AND PURPOSE: To describe four cases of functional visual loss which challenge the theory that its causes are different in children and adults (i.e., that financial gain is the primary cause in adults while in children it is an involuntary response to psychosocial problems). Rather, we will show a similar etiology of functional visual loss in children and adults. We also describe diagnostic testing and therapeutic approaches that are useful in both children and adults with functional visual loss. SUBJECTS AND METHODS: Two children (5 and 15 years old) and two adults (54 and 73 years old) with presumed functional visual loss and whose visual functions were assessed with verbal assurance, Starlight Test, Flicker Test, and trial glasses or contact lenses. RESULTS: Normal visual function was elicited in all four cases. In both pediatric patients we were able to elicit normal vision using verbal assurance and trial glasses or contact lenses. In both adult patients, we elicited dramatic improvements in vision with verbal assurance and discussion of the patients' psychosocial situation. CONCLUSION: Children and adults present with similar etiologies (psychosocial problems) of functional visual loss. In these cases we believe the children were motivated by their desire to wear glasses or contacts and the adults were involuntarily responding to psychosocial problems. These cases show that we cannot, as has been proposed, clearly categorize patients with functional visual loss based upon age.

Adolescent↗

The remnants of crossed fixation observed in teenaged children with esotropia.

PURPOSE: To report 2 cases of teenage children with esotropia from a much earlier age, displaying remnants of crossed fixation with special reference to Helmholtz's theory that each eye is controlled independently and Hering's Law of equal innervation. CASE REPORTS: Case 1 had paretic and partially accommodative esotropia that was first observed at 11 months of age; and Case 2 had accommodative esotropia with an onset at age 3 years. Both cases had hypermetropia and good corrected visual acuity in both eyes. They were able to fixate independently with each eye but the dominant eye always controls their fixation and they believe they are using only their dominant eye; however, their non-dominant eye was used to viewing objects in the opposite field (crossed fixation). Both cases maintained good binocular alignment at distance with either surgery and glasses (Case 1) or glasses alone (Case 2). However, their esotropia increased through the early teenage years leading both patients to undergo surgery at this later age: Case 1 at 17 years of age and Case 2 at 19 years of age. Post-surgical Starlight testing showed that their binocular visual fields improved. CONCLUSION: Crossed fixation exists in esotropia (even in acquired accommodative esotropia) and as the patient ages, one eye becomes dominant leaving the non-dominant eye to fix only in crossed gaze. These cases support Helmholtz's theory that each eye is controlled independently and that binocular coordination is learned.

Accommodation, Ocular↗

Dynamic aniseikonia measurement: prismatic effect appears on the hess chart.

PURPOSE: To determine if aniseikonia appears on the Hess [Screen] Chart and if it can be measured thereby; and to compare such measurement to the standard Awaya New Aniseikonia Test in both artificial and pathologic aniseikonia. SUBJECTS AND METHODS: Twenty normal subjects with 20% artificial induced aniseikonia (Group 1) and 21 patients with pathologic aniseikonia (Group 2) were examined with the New Aniseikonia Test (NAT) and the Hess Chart. Group 2 was divided into three subgroups: Group 2-1, 13 patients with aphakia, whose operated eyes were more hypermetropic that their better eyes; Group 2-2, 3 patients with myopic anisometropia more than 5 diopters; and Group 2-3, 5 patients who had received macular translocation surgery (MTS). RESULTS: In normals, measurement of the 20% artificial aniseikonia ranged from 10% to 21% (mean 15%) using the NAT, and from 16% to 39% (mean 27.1% vertically and 24.6% horizontally) using the Hess Chart. In the 21 patients with pathologic aniseikonia, the NAT measurements ranged from 0% to 24% (upper limit of the NAT) and the Hess Chart measurements ranged from 0% to 65%. A large amount of the aniseikonia that appeared on the Hess Chart disappeared or was significantly reduced by changing the spectacle correction to a contact lens or intraocular lens. CONCLUSION: The aniseikonia that appeared on the Hess Chart was dynamic aniseikonia, due to rotational magnification inherent and unavoidable in the execution of the aniseikonia measurement on the Hess Chart. Aniseikonia, not due to refractive errors brought on by retinal surgery such as MTS, is difficult to correct with iseikonic lenses or other optical means.

Adolescent↗

Strabological findings after macular translocation surgery with 360 degrees retinotomy.

PURPOSE: To examine the strabological findings after macular translocation surgery with a 360 degrees retinotomy. METHODS: Thirty-two patients who underwent macular translocation surgery were divided into three groups based on their responses to the Bagolini striated lenses test: fusion, ignoring the image, and diplopia. The relevant factors affecting binocularity were compared among the three groups. RESULTS: Five patients had peripheral fusion and three of these had gross stereopsis. Fifteen patients ignored the second image, and 12 patients had diplopia. The objective angle of macular rotation was smaller in the patients with peripheral fusion (15.0 +/- 6.1 degrees) than in those with diplopia (32.7 +/- 11.7 degrees). The subjective angle of cyclotorsion in those with peripheral fusion (6.0 +/- 4.2 degrees) was smaller than in those who ignored the image ("ignoring" group; 20.5 +/- 9.19 degrees) and the diplopia group (30.7 +/- 12.8 degrees). The amount of torsional sensory compensation in patients with diplopia (2.08 +/- 3.83 degrees) was significantly smaller than in those with peripheral fusion (9.00 +/- 7.42 degrees) and in the ignoring group (6.73 +/- 3.86 degrees). Patients with peripheral fusion were significantly younger (54.2 +/- 14.3 years) than those in the ignoring group (67.7 +/- 10.0 years) and those with diplopia (68.0 +/- 5.4 years). CONCLUSIONS: Adaptive mechanisms are activated to reduce the surgically induced objective angle of cyclotorsion, and a cyclodeviation of 15 degrees was the critical angle separating those who had peripheral fusion from those who did not. This value corresponds to the cyclofusional amplitude in normal adults.

Activities of Daily Living↗

Stereopsis in idiopathic macular hole with special reference to the size of the hole and its effect on stereoacuity.

PURPOSE: To identify the characteristics of binocular vision in unilateral idiopathic macular hole (MH) regarding the size of the hole and its effect on stereopsis. SUBJECTS AND METHODS: Twelve patients with idiopathic MH were tested using the Amsler Grid, Bagolini Striated Glasses, Starlight Test, Titmus Stereotest (the Titmus) and Lang Stereotest (the Lang). The results were analyzed with reference to two parameters: visual acuity and the size of the MH. RESULTS: The size of the MH in 12 subjects ranged from 0.67 degrees to 2.13 degrees (mean, 1.29 degrees). The MHs caused distorted central vision under binocular conditions. Visual acuities ranged from 0.3 to 0.06. Nine out of the 12 patients (75%) failed the 800 seconds of arc (") with the Titmus, but all 12 patients (100%) demonstrated stereoacuity of 550" to 600" with the Lang. CONCLUSION: The discrepancy of measured stereoacuity between the Titmus and the Lang was hypothesized to be due to the different size of the test charts and their targets and the pattern of the visual deficit. The pass rate of 92% (550") with the Lang is better than rates for other patients with higher visual acuities, such as children with amblyopia (62-70%) or adults undergoing visual screening (67%). In cases of MH, intact overlapped visual field beyond the central 0-2 degrees played an important role in maintaining stereoscopic vision.

Aged↗

Loss of stereopsis with optic chiasmal lesions and stereoscopic tests as a differential test.

OBJECTIVE: To identify and characterize the loss of stereopsis observed in patients with lesions of the optic chiasm. STUDY DESIGN: Cross-sectional study. PARTICIPANTS: Forty-three patients who had good visual acuity with orthophoria and without strabismologic histories were divided into two groups. Group 1 consisted of 13 patients with lesions involving the optic chiasm (regardless of their visual field loss) diagnosed by magnetic resonance imaging findings. Group 2 (control group) consisted of 30 patients who had large absolute visual field defects as a result of other causes, including 11 intracranial disorders other than optic chiasmal lesions, 11 cases of open-angle glaucoma, and 8 patients with lesions of the retina. METHODS: The stereoacuity and visual field in each case in group 1 (before and after surgery) and group 2 were assessed, and the results were compared. MAIN OUTCOME MEASURES: Stereoacuity was assessed by the Titmus stereo test (normal value for circle, 6/9; 80 seconds of arc) and by Lang-stereotest (normal value for circle, 3/3; 350 seconds of arc). Visual field was evaluated by Goldmann and Humphrey perimetry (conventional perimetry), the starlight test (binocular visual field test), and scanning laser ophthalmoscopic microperimetry (microperimetry). RESULTS: Before surgery, 11 of 13 cases (85%) in group 1 failed stereo tests, and after surgery, 5 of 13 cases (38%) in group 1 failed stereo tests. Before surgery, four patients who failed stereo tests showed no absolute scotoma by Humphrey or Goldmann analysis; after surgery, one patient who failed stereo tests showed no absolute scotoma by Humphrey or Goldmann analysis. However, starlight testing showed complete bitemporal hemianopsia only under binocular conditions, and microperimetry demonstrated a relative bitemporal hemianopsia at the fixating point. No patient failed in the Titmus circle test, but one patient in group 2 failed the Lang test (3%). The patients with chiasmal lesions significantly lost the ability of stereopsis compared with other diseases (group 1 [before or after surgery] vs. group 2, P < 0.001, Fisher's exact test). Conventional perimetry was unable to measure scotomas within 3 degrees of the fixation point, which is the key area for acute foveal stereopsis, because of an attached observational mirror. CONCLUSIONS: The difficulty with stereopsis in patients with lesions of the optic chiasm is most likely caused by the compression of the decussating optic nerve fibers resulting in the loss of an overlapping visual field at the fixation point. Stereo tests were demonstrated to be simple and effective adjunctive tests for suspected chiasmal compression.

Adolescent↗

Development of stereoscopic acuity: longitudinal study using a computer-based random-dot stereo test.

PURPOSE: To investigate the development of stereoscopic acuity (stereoacuity) in children longitudinally. METHODS: Seven full-term normal infants whose age at the beginning of the study was between 12 and 23 weeks were studied. A computer-based random-dot test of stereoscopic vision (TV-Random Dot Stereo Test) was used to measure stereoacuity. The test was repeated at 2- to 3-month intervals until the children reached 2 years of age, and then every 6 to 12 months until they reached 5 years of age. RESULTS: All of the infants were found to have a stereoacuity of 2480 seconds of arc (2480'') with this test by 26 weeks of age. The first reliable measurement of stereoacuity was obtained from a 16-week-old infant. Stereoacuity did not improve significantly between 6 and 12 months, but it improved rapidly after 12 months. All children had a stereoacuity of 100'' with the Titmus Stereo Tests at 5 years of age, but the best stereoacuity with the TV-Random Dot Stereo Test was 229'' at 28.9 months. CONCLUSIONS: The development of stereoacuity studied longitudinally was similar to that obtained by cross-sectional studies. The TV-Random Dot Stereo Test is a useful program for measuring stereopsis in preverbal children.

Child Development↗

Interexaminer differences in the traction test of the superior oblique tendon.

PURPOSE: The traction test of the superior oblique tendon is used for the manual evaluation of the looseness or tightness of the tendon. Because of the subjective nature of this test, knowledge of other clinical findings may lead to a bias in its interpretation. We studied interexaminer differences in the results of the test to assess the reliability of this traction test. METHODS: Examiner A examined all of the patients and collected all clinical findings, including the results of magnetic resonance imaging. Each of the nine noninformed examiners participated in one or more traction tests without prior information regarding the clinical findings of the patient. The traction tests were performed on 31 patients under general anesthesia. The examiners performed the traction test alternately with examiner A and evaluated the laxity and tightness in the tendon based on a nine-step scale (-4 to +4). The results were recorded in a masked manner, and later a comparison between the evaluation results of examiner A and those of the other examiners was made. RESULTS: Examiner A and the other examiners were in agreement within one grading step on 27 of the 31 (87.1%) traction tests. CONCLUSIONS: We demonstrated that the interexaminer differences in the interpretations of the traction test were acceptable, and that after the noninformed examiners had performed the test several times, their interpretations became closer to those of examiner A.

Diagnostic Techniques, Ophthalmological↗