Striatal networks for tinnitus treatment targeting

耳鸣 心理学 神经科学 听觉皮层 尾状核 壳核 基底神经节 神经调节 医学 耳蜗背核 听力学 静息状态功能磁共振成像 刺激 耳蜗核 中枢神经系统 脑干
作者
Leighton B. Hinkley,Paul Larson,Jennifer Henderson Sabes,Danielle Mizuiri,Carly Demopoulos,Meredith E. Adams,Thomas C. Neylan,Christopher P. Hess,Leighton B. Hinkley,Steven W. Cheung
出处
期刊:Human Brain Mapping [Wiley]
卷期号:43 (2): 633-646 被引量:12
标识
DOI:10.1002/hbm.25676
摘要

Neuromodulation treatment effect size for bothersome tinnitus may be larger and more predictable by adopting a target selection approach guided by personalized striatal networks or functional connectivity maps. Several corticostriatal mechanisms are likely to play a role in tinnitus, including the dorsal/ventral striatum and the putamen. We examined whether significant tinnitus treatment response by deep brain stimulation (DBS) of the caudate nucleus may be related to striatal network increased functional connectivity with tinnitus networks that involve the auditory cortex or ventral cerebellum. The first study was a cross-sectional 2-by-2 factorial design (tinnitus, no tinnitus; hearing loss, normal hearing, n = 68) to define cohort level abnormal functional connectivity maps using high-field 7.0 T resting-state fMRI. The second study was a pilot case-control series (n = 2) to examine whether tinnitus modulation response to caudate tail subdivision stimulation would be contingent on individual level striatal connectivity map relationships with tinnitus networks. Resting-state fMRI identified five caudate subdivisions with abnormal cohort level functional connectivity maps. Of those, two connectivity maps exhibited increased connectivity with tinnitus networks-dorsal caudate head with Heschl's gyrus and caudate tail with the ventral cerebellum. DBS of the caudate tail in the case-series responder resulted in dramatic reductions in tinnitus severity and loudness, in contrast to the nonresponder who showed no tinnitus modulation. The individual level connectivity map of the responder was in alignment with the cohort expectation connectivity map, where the caudate tail exhibited increased connectivity with tinnitus networks, whereas the nonresponder individual level connectivity map did not.

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