Copyright: ©Author(s) 2026.
World J Psychiatry. Sep 19, 2026; 16(9): 123600
Published online Sep 19, 2026. doi: 10.5498/wjp.123600
Published online Sep 19, 2026. doi: 10.5498/wjp.123600
Table 1 Study characteristics
| Ref. | Country | Design | Comparison | Sample size (n) | Mean age (years, mean) | Sleep assessment | Sleep dimension | Disease activity criteria | Main findings |
| Barnes et al[33], 2024 | Australia | Cross-sectional | IBD active vs IBD inactive | CD = 17, UC = 3 | Total sample = 41 (median) | PSG | Duration, efficiency | CD: HBI (active > 4, remission ≤ 4); UC: SCCAI (remission ≤ 2, active ≥ 3) | Active IBD: Shorter TST (466.8 minutes vs 489.0 minutes, P < 0.05), lower SE (79.0% vs 87.9%, P < 0.05) |
| Ananthakrishnan et al[23], 2014 | United States | Cohort | IBD vs controls | Controls = 151450, CD = 191, UC = 230 | NR | Questionnaire | Duration | - | Short sleep (< 6 hours/day): UC, HR = 1.51 (1.10-2.09); > 9 hours/day, HR = 2.05 (1.44-2.92) (all P < 0.05); no CD association (all P > 0.05) |
| Bazin et al[24], 2020 | France | Cross-sectional | CD active vs CD inactive | CD active = 14, CD inactive = 20 | CD active = 41, CD inactive = 35 (median) | Wrist actigraphy, PSQI, ESS | Duration, efficiency, alertness | HBI (remission ≤ 4, active ≥ 5), CDAI (remission < 150) | Active CD: Lower SE (85.0% vs 90.5%, P < 0.01), shorter subjective sleep (6.43 hours vs 7.97 hours, P < 0.01), higher ESS (11.1 vs 6.8, P < 0.05) |
| Chakradeo et al[44], 2018 | United States | Cross-sectional | IBD vs controls | Controls = 76, IBD = 115 | Controls = 34.13, IBD = 41.40 | MEQ, MCTQ, PSQI | Timing | - | IBD: Greater social jetlag (1.32 hours vs 1.05 hours, P < 0.05); CD: Higher rate of social jetlag > 2 hours (40% vs 16%, P < 0.05) |
| Chrobak et al[43], 2018 | Poland | Cross-sectional | CD vs controls UC vs controls | Controls = 57, CD = 34, UC = 38 | Controls = 41.4, CD = 35.8, UC = 42.6 | CSM | Timing | - | CD: Lower CSM (36.00 vs 39.54, P < 0.05) |
| Conley et al[34], 2021 | United States | Cross-sectional | IBD active vs IBD inactive | CD = 18, UC = 19 | Total sample = 38 | Wrist actigraphy | Duration, efficiency, regularity | Physician global assessment | No significant differences (all P > 0.05) |
| Hirten et al[35], 2026 | United States | Cohort | IBD active vs IBD inactive | CD = 63, UC = 38 | Total sample = 41.45 | Wearable devices | Duration, efficiency | PRO-2; FC > 150/CRP > 5/ESR > 30 | No significant differences (all P > 0.05) |
| Iskandar et al[36], 2020 | United States | Cross-sectional | CD vs controls CD active vs CD inactive | Controls = 60, CD = 61 | Controls = 32, CD = 31 (median) | Wrist actigraphy, ESS | Duration, efficiency, timing | HBI (active > 4, remission ≤ 4) | No significant differences in TST or SE; active CD: Higher daytime sleepiness (45.5% vs 19.2%, P < 0.05) |
| Salwen-Deremer et al[37], 2023 | United States | Cross-sectional | IBD vs controls | Controls = 8, CD = 9, UC = 5 | Total sample = 43.65 | PSG | Duration, efficiency, alertness | - | No significant differences (all P > 0.05) |
| Kani et al[50], 2020 | Turkey | Cross-sectional | IBD vs controls | Controls = 168, CD = 72, UC = 64 | Controls = 36.54, CD = 37.13, UC = 41.70 | ESS | Alertness | - | IBD: Lower ESS than controls (3.14 vs 6.99, P < 0.001) |
| Keefer et al[25], 2006 | United States | Cross-sectional | IBD vs controls | Controls = 7, CD = 8, UC = 8 | Controls = 34.29, IBD = 41.44 | PSG, wrist actigraphy, PSQI, ESS | Duration, efficiency, alertness | - | No significant differences in SE, TST, or ESS (all P > 0.05) |
| Kamp et al[26], 2023 | United States | Cross-sectional | IBD active vs IBD inactive | CD = 21, UC = 7 | Total sample = 33.4 | Wrist actigraphy, PSQI | Duration, efficiency | CD: SES-CD (0-2 remission, 3-6 mild, 7-15 moderate, > 15 severe), HBI (remission ≤ 4, active > 4), UC: Mayo endoscopic score (0-1 remission, 2-3 active), SCCAI (remission ≤ 2, active ≥ 3) | No significant differences in TST or SE (all P > 0.05) |
| Şahbaz and Keskin[27], 2020 | Turkey | Cross-sectional | IBD vs controls IBD active vs IBD inactive | Controls = 44, CD = 41, UC = 49 | Controls = 40.3, CD = 33.7, UC = 40 (median) | MEQ, PSQI | Duration, efficiency, timing | NR | No significant differences in TST or SE (all P > 0.05); IBD: Higher eveningness prevalence (CD 12.2%, UC 18.4% vs controls 0%, P < 0.001) |
| Mokros et al[42], 2021 | Poland | Cross-sectional | CD active vs CD inactive UC active vs UC inactive | CD = 47, UC = 37 | CD = 37.3, UC = 46.0 | CQ | Timing | CD: CDAI (< 150 remission, ≥ 150 active); UC: Mayo Score (≤ 2 remission, ≥ 3 active) | No significant correlation between chronotype and disease activity (all P > 0.05) |
| Paixão et al[38], 2019 | Brazil | Cross-sectional | IBD active vs IBD inactive | CD = 9, UC = 11 | CD = 30.89, UC = 46.36 | PSG | Duration, efficiency | CDAI (≤ 150 remission, > 150 active) | No significant differences in TST or SE (all P > 0.05) |
| Qualqili et al[28], 2021 | Jordan | Case control | IBD vs controls | Controls = 150, CD = 85, UC = 100 | Controls = 41.4, CD = 41.2, UC = 39.8 | Questionnaire | Duration | - | IBD patients had higher proportion of moderate sleep (6-8 hours) (P < 0.001) |
| Qazi et al[39], 2019 | United States | Cross-sectional | CD active vs CD inactive | CD active = 44, CD inactive = 28 | CD active = 34.5, CD inactive = 38 (median) | Wrist actigraphy, ESS | Duration, efficiency, alertness | HBI (remission ≤ 4) | Remission CD: Higher SE (89.9% vs 86.6%, P < 0.05) |
| Swanson et al[48], 2021 | United States | Cross-sectional | IBD active vs IBD inactive vs controls | Controls = 10, CD active = 12, CD inactive = 8, UC active = 10, UC inactive = 12 | Controls = 34.7, CD active = 33.5, CD inactive = 40.7, UC active = 38.3, UC inactive = 41.0 | Wrist actigraphy | Regularity | HBI (remission ≤ 4) | Aggressive IBD: Lower IS (0.39 ± 0.15 vs 0.51 ± 0.10 non-aggressive and 0.55 ± 0.09 controls, P < 0.05); higher IV (vs non-aggressive, P < 0.05) |
| Chaemsupaphan et al[40], 2025 | Thailand | Cohort | IBD active vs IBD inactive | CD = 48, UC = 50 | Total sample = 46.2 | Wrist actigraphy | Duration, efficiency | CD: HBI (remission ≤ 4, active > 4), SES-CD (0-2 remission); UC: Mayo score (≤ 2 remission, ≥ 3 active), MES (0-1 remission) | No significant differences in TST or SE (all P > 0.05) |
| Wu et al[29], 2020 | China | Case control | CD vs controls UC vs controls | Controls = 671, CD = 380, UC = 188 | Controls = 32, CD = 32, UC = 37 (median) | Questionnaire | Duration | - | CD: No significant differences in TST (P > 0.05), UC: Shorter weekend sleep (7 hours vs 8 hours, P = 0.05) |
| Yuan et al[30], 2023 | China | Cohort | IBD vs controls | Controls = 485722, CD = 806, UC = 1798 | Controls = 56.5, CD = 57.1, UC = 57.4 | Questionnaire | Duration | - | Short sleep (≤ 5 hours/day): IBD, HR = 1.36 (1.17-1.59); CD, HR = 1.53 (1.17-2.00); UC, HR = 1.29 (1.07-1.56). 6 hours/day: IBD, HR = 1.17 (1.05-1.30); CD, HR = 1.23 (1.02-1.48); UC, HR = 1.14 (1.01-1.30) (all P < 0.05) |
| Zhang et al[31], 2019 | China | Cross-sectional | IBD vs controls IBD active vs IBD inactive | Controls = 120, CD = 39, UC = 81 | Controls = 36.28, IBD = 36.01 | PSG, PSQI | Duration, efficiency | CD: HBI (≤ 4 remission, > 4 active); UC: Mayo endoscopic score (0-1 remission, 2-3 active) | IBD: Lower TST and SE (378 minutes vs 431 minutes; 76.45% vs 85.45%, P < 0.001); active IBD: Lower SE (64.88% vs 73.20%, P < 0.001) |
| Zhang et al[32], 2022 | China | Cross-sectional | IBD vs controls | Controls = 4300, IBD = 56 | Controls = 44.0, IBD = 51.8 | Questionnaire | Duration | - | IBD: Shorter sleep (6.3 hours vs 6.8 hours, P < 0.01) |
- Citation: Chen LJ, Li JX, Li JX, Huang ZQ, Jiang H, Rao XJ, Huang GD, Su XL, Zhang T, Wei W. Associations between multidimensional sleep health and inflammatory bowel disease onset and activity: A systematic review of the RU-SATED framework. World J Psychiatry 2026; 16(9): 123600
- URL: https://www.wjgnet.com/2220-3206/full/v16/i9/123600.htm
- DOI: https://dx.doi.org/10.5498/wjp.123600