The primary objective of this study is to evaluate the clinical efficacy of moderate-dose transcranial photobiomodulation (t-PBM) at different frequencies (10 Hz and 40 Hz) in patients with treatment-resistant depression (TRD). It further aims to explore the differential efficacy across various symptom subtypes, with a particular focus on the somatic symptom-dominant subtype. Additionally, this study will collect paired-pulse neurophysiological parameters (e.g., the ratio of cortical inhibition to excitation) to preliminarily explore the neural mechanisms underlying the modulation of cortical excitability by t-PBM intervention, and to analyze their correlation with the magnitude of clinical symptom improvement. The specific aims of this study are as follows: To evaluate the differential efficacy of t-PBM at varying frequencies (10 Hz vs. 40 Hz) in improving clinical depressive symptoms (as measured by scales such as HAM-D and MADRS). To investigate the therapeutic response to t-PBM in patients with the somatic symptom-dominant depression subtype, analyzing its potential suitability for targeting specific symptoms. To explore the changes in paired-pulse TMS parameters (e.g., SICI, ICF, and LICI) before and after t-PBM treatment, gaining preliminary insights into the potential association between its cortical modulatory effects and clinical outcomes.
This study aims to investigate the potential efficacy of transcranial photobiomodulation (tPBM) as an adjunctive antidepressant treatment in patients with treatment-resistant depression (TRD), with a specific focus on the subtype predominantly presenting with somatic symptoms. tPBM is a non-invasive neuromodulation technique that utilizes near-infrared light to stimulate the prefrontal cortex. It potentially improves energy metabolism and neural function while offering advantages such as high safety and minimal side effects. Although preliminary studies support its antidepressant potential, evidence regarding the relationship between treatment parameters, stimulation frequencies, and subtype-specific efficacy remains limited. This prospective, randomized controlled trial expects to enroll 40 TRD subjects, who will be randomly assigned to either a 10 Hz or a 40 Hz group. Both groups will receive tPBM treatment twice a week for four consecutive weeks. Pre- and post-treatment clinical assessments will evaluate depressive symptoms (HDRS-17, MADRS), somatic symptoms (PHQ-15, DSSS), sleep quality, and overall functioning. Additionally, paired-pulse transcranial magnetic stimulation (TMS) will be utilized to record neurophysiological changes, specifically assessing alterations in cortical excitability and inhibition. This study expects to clarify the differences in efficacy between distinct tPBM frequencies in TRD patients, particularly those with somatic symptom-dominant subtypes. Furthermore, it aims to establish a preliminary link among tPBM treatment parameters, neurophysiological markers, and clinical symptom changes, providing a scientific basis and empirical evidence for future precision neuromodulation therapies.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
40
Participants will receive active transcranial photobiomodulation (tPBM) stimulation at a frequency of 10 Hz. The device delivers near-infrared light targeting the prefrontal cortex. Each treatment session lasts for 20 minutes, administered twice a week for four consecutive weeks (totaling 8 sessions).
Taipei Veterans General Hospital
Taipei, Taiwan
RECRUITINGChange in the 17-item Hamilton Depression Rating Scale (HDRS-17) Total Score
The 17-item Hamilton Depression Rating Scale (HDRS-17 or HAM-D) is a clinician-administered tool used to assess depression severity, with scores typically ranging from 0-52. Typical HDRS-17 Scoring Interpretation: 0-7: Normal or remission (no depression) 8-13: Mild depression 14-18: Moderate depression 19-22: Severe depression 23: Very severe depression
Time frame: Baseline, Week 4 (Post-treatment), and Week 8 (1-month follow-up after treatment)
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