| Literature DB >> 28103890 |
Dagmar Fuchs1, Pepijn P Dupon2,3, Laura A Schaap3, Richard Draijer2.
Abstract
BACKGROUND/Entities:
Keywords: Laser Doppler flowmetry; Laser speckle contrast imaging; Microcirculation; Morphology; Skin perfusion; Vasodilation
Mesh:
Year: 2017 PMID: 28103890 PMCID: PMC5244618 DOI: 10.1186/s12933-016-0487-1
Source DB: PubMed Journal: Cardiovasc Diabetol ISSN: 1475-2840 Impact factor: 9.951
Fig. 1Flowchart of study selection
Participant characteristics of studies included in meta-analysis on LTH
| First author and year; Ref. no | Group type | N | DM type (N) | Gender | Age (years) | BMI | Duration of DM (years) | HbA1c (%) | BP (mmHg) | Quality score**** |
|---|---|---|---|---|---|---|---|---|---|---|
| Petrofsky et al. [ | Diabetes | 10 | NA | NA | 65 | 30.9 | NA | 7.9 ± 2.1 | NA | 8 |
| Control | 10 | – | NA | 55 | 30.3 | – | – | NA | ||
| Aellen et al. [ | Diabetes + hypertension | 1 | 2 | 13/8 | 61 | 31.5 | NA | 6.7 ± 0.8 | 132 ± 16/81 ± 10*** | 12 |
| Normotensive control | 21 | – | 10/11 | 53 | 23.3 | – | – | 120 ± 10/78 ± 7*** | ||
| Brugler et al. [ | (a) Diabetic dermopathy | 25 | 1 | 19/6 | 51 | NA | 28 ± 15 | 7.5 ± 1.5 | NA | 7.5 |
| (b) Diabetic control | 58 | 1 | 27/31 | 41 | NA | 23 ± 15.2 | 8.1 ± 1.5 | NA | ||
| Control | 67 | – | 47/20 | 47 | NA | – | – | NA | ||
| Petrofsky et al. [ | Diabetes | 10 | NA | NA | 61 | 33.9 | 2 to 13 | 7.4 ± 1.3 | NA | 6 |
| Control | 10 | – | NA | 60 | 27.1 | – | – | NA | ||
| Matheus et al. [ | Diabetes | 57 | 1 | 24/33 | 33* | 23.7 | 13* (8–20)** | 9.5* (7.5–10.8)** | 11 HT | 13 |
| Control | 53 | – | 24/29 | 27* | 23.8 | – | 5.3* (5.0–5.6)** | 0 HT | ||
| Gomes et al. [ | Diabetes | 50 | 1 | 21/29 | 33 | NA | 15 ± 9.19 | NA | NA | 9 |
| Control | 46 | – | 22/24 | Matched ± 5 years | Matched | – | NA | NA | ||
| Ngo et al. [ | (a) Diabetic dermopathy | 18 | 1 (7), 2 (11) | 4/14 | 57 | NA | 17 ± 12.7 | 8.4 ± 1.7 | NA | 6.5 |
| (b) Diabetic control | 24 | 1 (21), 2 (3) | 3/22 | 42 | NA | 23 ± 9.8 | 8.1 ± 2.0 | NA | ||
| Control | 48 | – | 4/44 | 44 | NA | – | – | NA | ||
| Forst et al. [ | Diabetes | 13 | 1 (6), 2 (7) | 7/6 | 46 | NA | 4.8 ± 4.9 | 6.5 ± 1.1 | NA | 8 |
| Control | 7 | – | 5/2 | 38 | NA | – | – | NA | ||
| Wigington et al. [ | Diabetes | 61 | 1 and 2 | 52/9 | 58 | NA | 15 ± 7.8 | 8.3 ± 1.6 | NA | 4.5 |
| Control | 41 | – | 30/11 | 53 | NA | – | – | NA | ||
| Škrha et al. [ | (a) Microangiopathic diabetes | 24 | 1 | 12/12 | 44 | 24.2 | 26 ± 9 | 7.9 ± 1.3 | 126 ± 14/81 ± 7 | 10 |
| (b) Non-microangiopathic diabetes | 20 | 1 | 9/10 | 32 | 23.1 | 12 ± 8 | 7.6 ± 1.1 | 120 ± 12/78 ± 8 | ||
| Control | 25 | – | 12/13 | 39 | 23.6 | – | 4.7 ± 0.3 | 122 ± 6/77 ± 6 | ||
| Arora et al. [ | (a) Neuropathic diabetes | 15 | 1 (5), 2 (10) | 9/6 | 55 | 27.2 | 18.9 (2–35) | NA | NA | 9 |
| (b) Non-neuropathic diabetes | 14 | 1 (4), 2 (10) | 8/6 | 49 | 27.4 | 18.3 (1–44) | NA | NA | ||
| Control | 15 | – | 8/7 | 48 | 26.1 | – | – | NA | ||
| Morris et al. [ | Diabetes | 14 | 2 | 14/0 | 59 | 25.9 | 9.1 ± 7.1 | 6.5 ± 0.7 | 89 ± 11.2 (MAP) | 9 |
| Control | 14 | – | 14/0 | 59 | 26.2 | – | 4.8 ± 0.4 | 95 ± 7.5 (MAP) | ||
| Rendell et al. [ | Diabetes | 35 | 1 | 18/17 | 33 | NA | 14 ± 5.9 | 11.3 ± 3.5 | NA | 7 |
| Control | 30 | – | 14/16 | 31 | NA | – | – | NA |
If publications only presented the SEM, the SD was calculated by multiplying SEM with the square root of the sample size. NA means not available in publication, HT hypertensive patients, MAP mean arterial pressure
* Mean ± SD or median
** Values between brackets represent the range or interquartile range
*** Mean of visit 1 and 2
**** The maximal quality score that could be obtained was 17
Fig. 2Forest plot of pooled overall effect of microvascular function in diabetic patients versus control subjects based on a random effects model. Studies containing subgroups (for instance Arora 1998a and Arora 1998b) were studies presenting two different diabetes groups. The a-subgroups contained diabetic patients with additional complications and the b-subgroups diabetic patients without complications
Fig. 3Forest plot of subgroup analysis for microvascular function according to type of diabetes
Fig. 4Forest plot of subgroup analysis for microvascular function according to location of measurement