1.Optimal Stimulation Sites and Long-Term Efficacy of Pallidal Deep-Brain Stimulation for Patients With Tardive Dystonia
Taku NONAKA ; Shiro HORISAWA ; Kilsoo KIM ; Masato MURAKAMI ; Masahiko NISHITANI ; Takakazu KAWAMATA ; Takaomi TAIRA
Journal of Movement Disorders 2026;19(1):49-57
Objective:
Globus pallidus internus deep brain stimulation (GPi-DBS) is an established treatment for dystonia, but its specific efficacy for tardive dystonia (TD) remains insufficiently documented. To evaluate the long-term clinical outcomes of GPi-DBS and to identify optimal stimulation sites in patients with medically refractory TD.
Methods:
We retrospectively analyzed data from 26 patients with TD who underwent bilateral GPi-DBS. Clinical outcomes were assessed using the Burke–Fahn–Marsden Dystonia Rating Scale (BFMDRS). Optimal stimulation sites were identified using voxelwise sweet spot analysis.
Results:
At an average follow-up time of 42 months (range 12–4 months), the mean BFMDRS score improvement was 81.5%. The optimal stimulation sites were located in the posteroventral region of the GPi. Two patients experienced sustained symptom remission after DBS cessation. Complications included device-related infection (n=2), dysarthria (n=4), and gait imbalance (n= 1); no severe permanent complications occurred.
Conclusion
GPi-DBS is effective and safe for patients with medically refractory TD, providing significant long-term symptom relief. The optimal stimulation sites were located in the posteroventral GPi, which is consistent with those reported for patients with other dystonia types.
2.Reduced Intravenous Fluorescein Dose for Upper and Lower Gastrointestinal Tract Probe-Based Confocal Laser Endomicroscopy
Kazuya INOKI ; Seiichiro ABE ; Yusaku TANAKA ; Koji YAMAMOTO ; Daisuke HIHARA ; Ryoji ICHIJIMA ; Yukihiro NAKATANI ; HsinYu CHEN ; Hiroyuki TAKAMARU ; Masau SEKIGUCHI ; Masayoshi YAMADA ; Taku SAKAMOTO ; Satoru NONAKA ; Haruhisa SUZUKI ; Shigetaka YOSHINAGA ; Ichiro ODA ; Takahisa MATSUDA ; Yutaka SAITO
Clinical Endoscopy 2021;54(3):363-370
Background/Aims:
Probe-based confocal laser endomicroscopy (pCLE) requires the administration of intravenous (IV) fluorescein. This study aimed to determine the optimal dose of IV fluorescein for both upper and lower gastrointestinal (GI) tract pCLE.
Methods:
Patients 20 to 79 years old with gastric high-grade dysplasia (HGD) or colorectal neoplasms (CRNs) were enrolled in the study. The dose de-escalation method was employed with five levels. The primary endpoint of the study was the determination of the optimal dose of IV fluorescein for pCLE of the GI tract. The reduced dose was determined based on off-line reviews by three endoscopists. An insufficient dose of fluorescein was defined as the dose of fluorescein with which the pCLE images were not deemed to be visible. If all three endoscopists determined that the tissue structure was visible, the doses were de-escalated.
Results:
A total of 12 patients with gastric HGD and 12 patients with CRNs were enrolled in the study. Doses were de-escalated to 0.5 mg/kg of fluorescein for both non-neoplastic duodenal and colorectal mucosa. All gastric HGD or CRNs were visible with pCLE with IV fluorescein at 0.5 mg/kg.
Conclusions
In the present study, pCLE with IV fluorescein 0.5 mg/kg was adequate to visualize the magnified structure of both the upper and lower GI tract.
3.Reduced Intravenous Fluorescein Dose for Upper and Lower Gastrointestinal Tract Probe-Based Confocal Laser Endomicroscopy
Kazuya INOKI ; Seiichiro ABE ; Yusaku TANAKA ; Koji YAMAMOTO ; Daisuke HIHARA ; Ryoji ICHIJIMA ; Yukihiro NAKATANI ; HsinYu CHEN ; Hiroyuki TAKAMARU ; Masau SEKIGUCHI ; Masayoshi YAMADA ; Taku SAKAMOTO ; Satoru NONAKA ; Haruhisa SUZUKI ; Shigetaka YOSHINAGA ; Ichiro ODA ; Takahisa MATSUDA ; Yutaka SAITO
Clinical Endoscopy 2021;54(3):363-370
Background/Aims:
Probe-based confocal laser endomicroscopy (pCLE) requires the administration of intravenous (IV) fluorescein. This study aimed to determine the optimal dose of IV fluorescein for both upper and lower gastrointestinal (GI) tract pCLE.
Methods:
Patients 20 to 79 years old with gastric high-grade dysplasia (HGD) or colorectal neoplasms (CRNs) were enrolled in the study. The dose de-escalation method was employed with five levels. The primary endpoint of the study was the determination of the optimal dose of IV fluorescein for pCLE of the GI tract. The reduced dose was determined based on off-line reviews by three endoscopists. An insufficient dose of fluorescein was defined as the dose of fluorescein with which the pCLE images were not deemed to be visible. If all three endoscopists determined that the tissue structure was visible, the doses were de-escalated.
Results:
A total of 12 patients with gastric HGD and 12 patients with CRNs were enrolled in the study. Doses were de-escalated to 0.5 mg/kg of fluorescein for both non-neoplastic duodenal and colorectal mucosa. All gastric HGD or CRNs were visible with pCLE with IV fluorescein at 0.5 mg/kg.
Conclusions
In the present study, pCLE with IV fluorescein 0.5 mg/kg was adequate to visualize the magnified structure of both the upper and lower GI tract.
4.Efficacy of Current Traction Techniques for Endoscopic Submucosal Dissection
Seiichiro ABE ; Shih Yea SYLVIA WU ; Mai EGO ; Hiroyuki TAKAMARU ; Masau SEKIGUCHI ; Masayoshi YAMADA ; Satoru NONAKA ; Taku SAKAMOTO ; Haruhisa SUZUKI ; Shigetaka YOSHINAGA ; Takahisa MATSUDA ; Ichiro ODA ; Yutaka SAITO
Gut and Liver 2020;14(6):673-684
This systematic review aimed to assess the efficacy of the current approach to tissue traction during the endoscopic submucosal dissection (ESD) of superficial esophageal cancer, early gastric cancer, and colorectal neoplasms.We performed a systematic electronic literature search of articles published in PubMed and selected comparative studies to investigate the treatment outcomes of tractionassisted versus conventional ESD. Using the keywords, we retrieved 381 articles, including five eligible articles on the esophagus, 13 on the stomach, and 12 on the colorectum. A total of seven randomized controlled tri-als and 23 retrospective studies were identified. Clip line traction and submucosal tunneling were effective in re-ducing the procedural time during esophageal ESD. The efficacy of traction methods in gastric ESD varied in terms of the devices and strategies used depending on the le-sion location and degree of submucosal fibrosis. Several prospective and retrospective studies utilized traction de-vices without the need to reinsert the colonoscope. When pocket creation is included, the traction devices and methods effectively shorten the procedural time during colorectal ESD. Although the efficacy is dependent on the organ and tumor locations, several traction techniques have been demonstrated to be efficacious in facilitating ESD by maintaining satisfactory traction during dissection.

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