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. 2020 Jun 2;9(6):1689. doi: 10.3390/jcm9061689

Table 7.

Summary of studies examining functional and physiological factors (n = 32). (a): Summary of human studies examining functional and physiological factors (n = 20). (b): Summary of animal studies examining functional and physiological factors (n = 12).

(a)
Autdor (Year) Cohort Exercise Intervention Duration Outcome Measures Results
Human studies
[11] Mereles et al. (2006) human (n = 30) combined training + RMT 15 weeks echocardiography
6 MWD
CPET
= RVH (No SS),
↑ 6 MWD by 111 m (p < 0.001)
↑ VO2 peak (p < 0.05)
↑ workload at AT (p < 0.05)
[89] Man et al. (2009) human (n = 19) combined training 12 weeks 6 MWD
CPET
= 6 MWD (No SS)
↑ workload at AT (p = 0.003)
[76] Shoemaker et al. (2009) human (n = 2) cycling 6 weeks 6 MWD
CPET
↑ 6 MWD by 90 m and 102 m
↑ VO2 peak by 4% and 14%
↑ workload at AT 46% and 53%
[90] Mainguy et al. (2010) human (n = 5) combined training 12 weeks 6 MWD ↑ 6 MWD by 58 m (p = 0.01)
[90] Martínez-Quintana et al. (2010) human (n = 8) combined training 12 weeks 6 MWD = 6 MWD (No SS)
[92] Fox et al. (2011) human (n = 22) combined training 2 × 6 weeks 6 MWD
CPET
↑ 6 MWD by 58 m (p = 0.003)
↑ VO2 peak (p = 0.02)
[37] Grünig et al. (2011) human (n = 58) combined training + RMT 15 weeks 6 MWD
CPET
↑ 6 MWD by 87 m (p < 0.001)
↑ VO2 peak (p < 0.001)
↑ workload at AT (p < 0.001)
[53] Ganderton et al. (2011) human (n = 10) combined training 2 × 12 weeks 6 MWD

CPET
↑ 6 MWD by 69 m Week 12 (No SS)
↓ 6 MWD by 14 m Week 24 (No SS)
↑ VO2 peak (No SS)
↑ workload at AT Week 12 (p < 0.032) (No SS at Week 24)
[12] Grünig et al. (2012a) human (n = 183) combined training + RMT 15 weeks 6 MWD
CPET
↑ 6 MWD by 68 m at Week 3 and 78 m at Week 15 (p < 0.001)
↑ VO2 peak (p < 0.001)
[93] Grünig et al. (2012b) human (n = 21) combined training + RMT 15 weeks 6 MWD
CPET
↑ 6 MWD by 64 m at Week 3 and 71m at Week 15 (p < 0.003)
↑ VO2 peak (p < 0.008)
[36] Becker-Grünig et al. (2013) human (n = 20) combined training + RMT 15 weeks 6 MWD
CPET
↑ 6 MWD by 63 m at Week 3 and 67 m at Week 15 (p ≤ 0.001)
↑ VO2 peak (p < 0.01)
[69] Chan et al. (2013) human (n = 23) running 10 weeks 6 MWD
CPET
↑ 6 MWD by 56 m (p = 0.002)
= VO2 peak (No SS)
[94] Ley et al. (2013) human (n = 20) combined training + RMT 3 weeks 6 MWD ↑ 6 MWD by 91 m (p = 0.008)
[88] Weinstein et al. (2013) human (n = 24) running 10 weeks 6 MWD ↑ 6 MWD by 53 m (p = 0.003)
[95] Kabitz et al. (2014) human (n = 7) combined training + RMT 15 weeks 6 MWD ↑ 6 MWD by 92 m at Week 3 and 81m at Week 15 (p < 0.001)
[96] Ehlken et al. (2016) human (n = 87) combined training + RMT 15 weeks echocardiography
6 MWD
CPET
= RVH (No SS)

↑ 6 MWD by 41m (p = 0.001)
↑ VO2 peak (p < 0.001)
[97] Bussotti et al. (2017) human (n = 15) combined training + RMT 4 weeks 6 MWD
CPET
↑ 6 MWD by 32 m (p < 0.001)
↑ VO2 peak (p < 0.001)
[73] Gerhardt et al. (2017) human (n = 22) WBV 4 weeks echocardiography
6 MWD
CPET
= RVH (No SS)
↑ 6 MWD by 39.8 m (p = 0.004)
↑ VO2 peak (p < 0.005)
[98] González-Saiz et al. (2017) human (n = 40) combined training + RMT 8 weeks 6 MWD
CPET
↑ 6 MWD by 27 m (p =0.01)
↑ VO2 peak (p < 0.001)
[77] Brown et al. (2018) human (n = 12) walking 12 weeks 6 MWD
CPET
↑ 6 MWD by 40 m (p = 0.01)
↑ VO2 peak (p = 0.02)
(b)
Author (year) Cohort Exercise intervention Duration Outcome Measures Results
animal studies
[79] Souza-Rabbo et al. (2008) animal (n = 32) running 5 weeks RV autopsy ↓ RVH at Week 3 in MCT + ET vs. MCT + SED (p < 0.05)
[80] Handoko et al. (2009) animal (n = 56) running 4 weeks RV autopsy = RVH (No SS)
[81] Colombo et al. (2013) animal (n = 60) running 3 weeks RV autopsy = RVH (No SS)
[82] Colombo et al. (2015) animal (n = 30) running 3 weeks RV autopsy = RVH (No SS)
[83] Moreira-Gonçalves et al. (2015) animal (n = 180) early vs. late running 4 vs. 2 weeks RV autopsy ↓ RV collagen deposition in MCT + earlyET (p < 0.001) and MCT +late ET (No SS) vs. MCT + SED
↓ RVH in MCT + early ET and MCT + late ET vs. MCT + SED (p < 0.01)
[75] Natali et al. (2015) animal (n = 36) voluntary running 4 weeks RV autopsy ↓ RVH in MCT + ET vs. MCT + SED (No SS)
[84] Colombo et al. (2016) animal (n = 32) running 3 weeks RV autopsy = RVH (No SS)
[85] Nogueira-Ferreira et al. (2016) animal (n = 50) running 4 weeks RV autopsy ↓ RVH in MCT + ET vs. MCT + SED (p < 0.01)
[86] Pacagnelli et al. (2016) animal (n = 32) running 11 weeks RV autopsy ↓ RVH by 21% in MCT + ET vs. MCT + SED (p = 0.0001)
[42] Brown et al. (2017) animal (n = 42) HIIT vs. continuous running 6 weeks RV autopsy

CPET
↓ RVH in MCT + HIIT vs. MCT + SED and MCT + ET (p < 0.05)
less ↓ in VO2 peak in MCT + HIIT vs. MCT + SED (p < 0.01) and MCT + ET vs. MCT + SED (p < 0.05)
[74] Enache et al. (2017) animal (n = 40) eccentric running 4 weeks RV autopsy ↑ RVH in MCT + ET vs. MCT + SED (p < 0.05)
[45] Zimmer et al. (2017) animal (n = 24) running 3 weeks RV autopsy = RVH (No SS)

(a): 6 MWD, 6-min walking distance; AT, anaerobic threshold; CPET, cardiopulmonary exercise testing; ET, exercise training; HIIT, high intensity interval training; RMT, respiratory muscle training; RV, right ventricle; RVH, right ventricular hypertrophy; SED, sedentary; SS, statistical significance; VO2, volume of oxygen uptake; WBV, whole-body vibration. (b): 6 MWD, 6-min walking distance; AT, anaerobic threshold; CPET, cardiopulmonary exercise testing; ET, exercise training; HIIT, high intensity interval training; MCT, monocrotaline; RMT, respiratory muscle training; RV, right ventricle; RVH, right ventricular hypertrophy; SED, sedentary; SS, statistical significance; VO2, volume of oxygen uptake; WBV, whole-body vibration.