Results
Out of 1.274 trials that were analyzed with full-text analysis a total of 78 trials contained outcomes with cardiovascular parameters.
The number of trial participants, gender, age, type of intervention and assessment method for cardiovascular parameter are summarized in Table 2 with the overview of the included studies.
Overview of included studies.
Studies with (*) were included in meta-analysis. NR, not reported; Aapres, auricular acupressure; Aapunc, auricular acupuncture; tVNS, transauricular vagus nerve stimulation; CES, cranial electrotherapy stimulation; ABVN, auricular branch of vagus nerve; GAN, great auricular nerve; ATN, auriculotemporal nerve.
The analysis of study quality was performed for the included studies in the meta-analysis. The overall study quality was moderate (see Figures 2 , 3 ). Missing data did not bias the review findings in general.
Risk of bias assessment for each study included in the meta-analysis.
Risk of bias graph across all included studies.
In total 3,777 patients were included in the systematic review of cardiovascular parameters. 55,5% were female. Four studies reported no information of the sex of the included population ( Taylor and Lee, 1992 ; Strong et al., 2016 ; Abdi et al., 2017 ; Dellovo et al., 2019 ). The age of the patients ranged between 4 days and 86 years, with a median of 30 years. One study did not provide information about age ( Strong et al., 2016 ).
We identified several trial designs. Sixty studies used a two-arm design ( Ceccherelli et al., 1981 ; Allison et al., 1995 ; Killeen et al., 2002 ; Wang et al., 2004 , 2009 ; Usichenko et al., 2005 , 2006 , 2007 ; Barker et al., 2006 ; Lin et al., 2011 ; Wetzel et al., 2011 ; Lu et al., 2012 ; Napadow et al., 2012 ; Arai et al., 2013 ; Busch et al., 2013 ; Hein et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Capone et al., 2015 , 2017 ; Hasan et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Steenbergen et al., 2015 ; Yeh et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Kuo et al., 2016 ; Luo et al., 2016 ; Chen et al., 2017 ; de Couck et al., 2017 ; Yu et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Wagenseil et al., 2018 ; Borges et al., 2019 , 2020 ; Bretherton et al., 2019 ; Dellovo et al., 2019 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Villani et al., 2019 ; Gan et al., 2020 ; Giraudier et al., 2020 ; Hendawy and Abuelnaga, 2020 ; Kovacic et al., 2020 ; Ricci et al., 2020 ; Staley et al., 2020 ; Vosseler et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ), 12 studies had three arms ( Wang and Kain, 2001 ; Black et al., 2011 ; Taylor et al., 2013 ; Yeo et al., 2014 ; Széchenyi et al., 2015 ; Klausenitz et al., 2016 ; Strong et al., 2016 ; Antonino et al., 2017 ; Sabino-Carvalho et al., 2017 ; Gauthey et al., 2020 ; Usichenko et al., 2020 ; Borges et al., 2021 ) and 4 studies performed a four arm trial ( Johnson et al., 1991 ; Karst et al., 2007 ; la Marca et al., 2010 ; Abdi et al., 2017 ), and 2 studies compared five arms ( Taylor and Lee, 1992 ; Nakahara et al., 2019 ). 40 studies were conducted in healthy volunteers in an experimental setting ( Johnson et al., 1991 ; Taylor and Lee, 1992 ; Wang and Kain, 2001 ; la Marca et al., 2010 ; Lin et al., 2011 ; Busch et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Capone et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Steenbergen et al., 2015 ; Széchenyi et al., 2015 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Klausenitz et al., 2016 ; Antonino et al., 2017 ; de Couck et al., 2017 ; Sabino-Carvalho et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Wagenseil et al., 2018 ; Borges et al., 2019 , 2020 , 2021 ; Bretherton et al., 2019 ; Keute et al., 2019 ; Nakahara et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Villani et al., 2019 ; Gauthey et al., 2020 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Usichenko et al., 2020 ; Vosseler et al., 2020 ), while 38 evaluated AS in patients in a clinical setting ( Ceccherelli et al., 1981 ; Allison et al., 1995 ; Killeen et al., 2002 ; Wang et al., 2004 , 2009 ; Usichenko et al., 2005 , 2006 , 2007 ; Barker et al., 2006 ; Karst et al., 2007 ; Black et al., 2011 ; Wetzel et al., 2011 ; Lu et al., 2012 ; Napadow et al., 2012 ; Arai et al., 2013 ; Hein et al., 2013 ; Taylor et al., 2013 ; Yeo et al., 2014 ; Hasan et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Yeh et al., 2015 ; Bauer et al., 2016 ; Kuo et al., 2016 ; Luo et al., 2016 ; Strong et al., 2016 ; Abdi et al., 2017 ; Capone et al., 2017 ; Chen et al., 2017 ; Yu et al., 2017 ; Dellovo et al., 2019 ; Gan et al., 2020 ; Hendawy and Abuelnaga, 2020 ; Kovacic et al., 2020 ; Staley et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ).
We identified different control groups. Most studies (62 in total) were sham controlled trials ( Johnson et al., 1991 ; Taylor and Lee, 1992 ; Wang and Kain, 2001 ; Wang et al., 2004 ; Usichenko et al., 2005 , 2006 , 2007 ; Barker et al., 2006 ; Karst et al., 2007 ; la Marca et al., 2010 ; Black et al., 2011 ; Lin et al., 2011 ; Wetzel et al., 2011 ; Napadow et al., 2012 ; Busch et al., 2013 ; Hein et al., 2013 ; Taylor et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Yeo et al., 2014 ; Capone et al., 2015 , 2017 ; Hasan et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Steenbergen et al., 2015 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Klausenitz et al., 2016 ; Luo et al., 2016 ; Strong et al., 2016 ; Abdi et al., 2017 ; Antonino et al., 2017 ; Chen et al., 2017 ; de Couck et al., 2017 ; Sabino-Carvalho et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Wagenseil et al., 2018 ; Borges et al., 2019 , 2020 , 2021 ; Bretherton et al., 2019 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Villani et al., 2019 ; Gan et al., 2020 ; Gauthey et al., 2020 ; Giraudier et al., 2020 ; Kovacic et al., 2020 ; Ricci et al., 2020 ; Staley et al., 2020 ; Vosseler et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ). Sham interventions were electrodes without currents, or tVNS at parts of the auricle without vagal innervation, acupuncture or acupressure at selected points with another function, or empty acupressure without the pressing bead. Other trials had active controls ( Taylor and Lee, 1992 ; Wang and Kain, 2001 ; la Marca et al., 2010 ; Yeo et al., 2014 ; Bauer et al., 2016 ; Klausenitz et al., 2016 ; Badran et al., 2018 ; Hendawy and Abuelnaga, 2020 ; Usichenko et al., 2020 ), no intervention ( Ceccherelli et al., 1981 ; Johnson et al., 1991 ; Taylor and Lee, 1992 ; la Marca et al., 2010 ; Arai et al., 2013 ; Nakahara et al., 2019 ; Tobaldini et al., 2019 ), or routine care control ( Ceccherelli et al., 1981 ; Karst et al., 2007 ; Lu et al., 2012 ; Yeh et al., 2015 ; Kuo et al., 2016 ; Strong et al., 2016 ; Dellovo et al., 2019 ).
Forty-five studies used noninvasive electrostimulation devices, among them 42 tVNS ( Johnson et al., 1991 ; Busch et al., 2013 ; Hein et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Capone et al., 2015 , 2017 ; Hasan et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Steenbergen et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Antonino et al., 2017 ; de Couck et al., 2017 ; Sabino-Carvalho et al., 2017 ; Yu et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Borges et al., 2019 , 2020 , 2021 ; Bretherton et al., 2019 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Villani et al., 2019 ; Gauthey et al., 2020 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Staley et al., 2020 ; Vosseler et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ) and 3 studies used CES ( Taylor and Lee, 1992 ; Taylor et al., 2013 ; Wagenseil et al., 2018 ). 14 studies used auricular acupressure ( Allison et al., 1995 ; Barker et al., 2006 ; WANG et al., 2009 ; Lin et al., 2011 ; Lu et al., 2012 ; Yeh et al., 2015 ; Kuo et al., 2016 ; Luo et al., 2016 ; Strong et al., 2016 ; Abdi et al., 2017 ; Chen et al., 2017 ; Dellovo et al., 2019 ; Gan et al., 2020 ; Hendawy and Abuelnaga, 2020 ) and 20 studies investigated auricular acupuncture ( Ceccherelli et al., 1981 ; Wang and Kain, 2001 ; Killeen et al., 2002 ; Wang et al., 2004 ; Usichenko et al., 2005 , 2006 , 2007 , 2020 ; Karst et al., 2007 ; la Marca et al., 2010 ; Black et al., 2011 ; Wetzel et al., 2011 ; Napadow et al., 2012 ; Arai et al., 2013 ; Yeo et al., 2014 ; Széchenyi et al., 2015 ; Klausenitz et al., 2016 ; Nakahara et al., 2019 ; Hendawy and Abuelnaga, 2020 ; Kovacic et al., 2020 ). Three research groups used additional electrostimulation with the auricular acupuncture ( la Marca et al., 2010 ; Napadow et al., 2012 ; Kovacic et al., 2020 ). In terms of methodology, the included studies also varied in the choice of stimulation modality. 46 study groups performed unilateral stimulation of the ear. 20 study groups performed stimulation on both ears ( Ceccherelli et al., 1981 ; Taylor and Lee, 1992 ; Wang and Kain, 2001 ; Barker et al., 2006 ; Black et al., 2011 ; Lin et al., 2011 ; Arai et al., 2013 ; Hein et al., 2013 ; Taylor et al., 2013 ; Klausenitz et al., 2016 ; Luo et al., 2016 ; Antonino et al., 2017 ; Chen et al., 2017 ; Sabino-Carvalho et al., 2017 ; Wagenseil et al., 2018 ; Gan et al., 2020 ; Usichenko et al., 2020 ; Zhu et al., 2021 )la ( Laqua et al., 2014 ; Strong et al., 2016 ). 4 studies performed alternating stimulation of both ears ( Lu et al., 2012 ; Yeo et al., 2014 ; Abdi et al., 2017 ; Dellovo et al., 2019 ). 6 studies did not provide information on stimulation ( WANG et al., 2009 ; Yeh et al., 2015 ; Kuo et al., 2016 ; Bretherton et al., 2019 ; Hendawy and Abuelnaga, 2020 ; Kovacic et al., 2020 ).
The 48 studies that conducted electrical stimulation provided information on the used frequency ( Johnson et al., 1991 ; Taylor and Lee, 1992 ; la Marca et al., 2010 ; Napadow et al., 2012 ; Busch et al., 2013 ; Hein et al., 2013 ; Taylor et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Capone et al., 2015 , 2017 ; Hasan et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Steenbergen et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Antonino et al., 2017 ; de Couck et al., 2017 ; Sabino-Carvalho et al., 2017 ; Yu et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Wagenseil et al., 2018 ; Borges et al., 2019 , 2020 , 2021 ; Bretherton et al., 2019 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Villani et al., 2019 ; Gauthey et al., 2020 ; Giraudier et al., 2020 ; Hendawy and Abuelnaga, 2020 ; Ricci et al., 2020 ; Staley et al., 2020 ; Vosseler et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ). Median frequency was 25 Hz ranging between 0,5 Hz and 100 Hz. In 36 trials that presented information on the current ( Taylor and Lee, 1992 ; Napadow et al., 2012 ; Busch et al., 2013 ; Hein et al., 2013 ; Taylor et al., 2013 ; Clancy et al., 2014 ; Capone et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Steenbergen et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Antonino et al., 2017 ; de Couck et al., 2017 ; Sabino-Carvalho et al., 2017 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Wagenseil et al., 2018 ; Borges et al., 2019 , 2020 , 2021 ; Bretherton et al., 2019 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Gauthey et al., 2020 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Stavrakis et al., 2020 ; Vosseler et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ), the median was 1,15 mA, with a range between 0,1 mA and 45 mA. Concerning pulse width 41 studies reported information ( la Marca et al., 2010 ; Napadow et al., 2012 ; Busch et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Capone et al., 2015 , 2017 ; Hasan et al., 2015 ; Jacobs et al., 2015 ; Sellaro et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Steenbergen et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2017 , 2018 , 2019 ; Antonino et al., 2017 ; de Couck et al., 2017 ; Sabino-Carvalho et al., 2017 ; Yu et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Borges et al., 2019 , 2020 , 2021 ; Bretherton et al., 2019 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Villani et al., 2019 ; Gauthey et al., 2020 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Staley et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ), the median pulse width was 250 μs ranging between 200 μs and 500 μs. Regarding the duty cycle 25 studies provided information ( Johnson et al., 1991 ; Napadow et al., 2012 ; Capone et al., 2015 , 2017 ; Hasan et al., 2015 ; Sellaro et al., 2015 ; Steenbergen et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2018 , 2019 ; de Couck et al., 2017 ; Yu et al., 2017 ; Colzato et al., 2018 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Borges et al., 2019 , 2020 ; Keute et al., 2019 ; Sclocco et al., 2019 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Vosseler et al., 2020 ; Wu et al., 2020 ; Koenig et al., 2021 ; Zhu et al., 2021 ), the median duty cycle was 30s with a range of 0,5 s to 300 s. Two trials performed continuous stimulation ( Bretherton et al., 2019 ; Borges et al., 2021 ). In contrast only 2 studies stated information about the used voltage with 265 mV ( la Marca et al., 2010 ) and 800 mV ( Hendawy and Abuelnaga, 2020 ). For details of stimulation parameters and anatomic region of the pinna see Supplementary Table S2
The mean duration of stimulation was 285 h with a range from 20 min to 168 days. 5 trials did not provide information about stimulation duration ( Yeo et al., 2014 ; Burger et al., 2017 ; Borges et al., 2019 ; Sclocco et al., 2019 ; Zhu et al., 2021 ). Short-term stimulations were usually performed with wither an electrical device such as the tVNS or mechanical stimulation such as auricular acupressure or acupuncture. The longest stimulation was performed with the Parasym stimulation device. The included population was scheduled to receive stimulation daily for 1 h over 6 months ( Stavrakis et al., 2020 ).
In terms of selection of the auricular area of stimulation, the acupuncture and acupressure studies applied stimulation to single acupuncture points, such as the auricular points “Shenmen” (MA-TF 1) or “Lung” (MA-IC1). For the most frequently used ear- acupuncture points see Supplementary Figure S1 .
Forty-seven studies used tVNS or CES as the stimulation variant. Interventions such as tVNS or CES apply electrical current to broader areas of the auricle such as the cymba concha or the tragus in tVNS or the earlobes such as in CES. According to Peuker and Filler (2002) , the cymba conchae is innervated by the auricular branch of the nervus vagus (ABNV), the tragus has a mixed innervation of ABNV plus great auricular nerve (GAN, a superficial branch of the cervical plexus) and the earlobe is innervated primarily by the GAN and is therefore frequently used as sham- control. For the most frequently used areas of stimulation in the 78 included trials see Figure 4 .
Innervation of the pinna and area of stimulation in the trials. Red: ABVN-auricle branch of the vagus nerve, blue: GAN-great auricular nerve. Yellow: ATN-auriculo-temporal nerve. Modified from Peuker and Filler (2002) .
Thirty-eight studies assessed heart rate (HR), 19 studies analyzed heart rate variability (HRV), 31 studies analyzed blood pressure (BP) and 7 studies were identified that measured oxygen saturation. In addition, 2 studies on baroreflex and 2 studies skin conductance were evaluated in this review.
Of the 76 studies identified, 26 studies contained continuous data and were eligible for meta-analysis, 50 trials reported non continuous data and were evaluated descriptively (see Table 3 ).
Descriptive analysis of studies with non-continuous data.
Twelve studies could be included for the meta-analysis regarding systolic and diastolic BP (see Figures 5 , 6 ) ( Allison et al., 1995 ; Wang et al., 2004 ; Yeh et al., 2015 ; Klausenitz et al., 2016 ; Kuo et al., 2016 ; Abdi et al., 2017 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Giraudier et al., 2020 ; Ricci et al., 2020 ). Compared to the control methods, AS did not have a significant influence on systolic BP. MD = −1.15, 95% CI (−2.81 to 0.51), p = 0.16.
Systolic blood pressure: auricular stimulation vs control.
Diastolic blood pressure: auricular stimulation vs control.
Seventeen studies ( Taylor and Lee, 1992 ; Wang et al., 2004 ; Barker et al., 2006 ; Lin et al., 2011 ; Busch et al., 2013 ; Yeh et al., 2015 ; Klausenitz et al., 2016 ; Kuo et al., 2016 ; Antonino et al., 2017 ; Chen et al., 2017 ; Sabino-Carvalho et al., 2017 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Villani et al., 2019 ; Gan et al., 2020 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Vosseler et al., 2020 ) had data regarding HR (see Figure 7 ). The results suggest that auricular stimulation significantly reduces heart rate compared with control procedures MD = −1,23, 95% CI (−1.74 to −0.72), p = 0.0005. No drop of HR in any of the trials were regarded as adverse event. The strongest decrease was achieved in the auricular acupressure subgroup. Here Kuo et al. (2016) conducted a trial with 80 postpartum women, with the primary outcome to relieve stress and anxiety. The intervention group received auricular acupressure together with routine care over 4 days compared to a control group that received routine care only. The acupressure was administered by a researcher. HR was measured as secondary outcome parameter and showed to be lower in the intervention group compared to the routine care group by a mean of 9.2 bpm [CI95% 13.27, 5.13]. Barker et al. (2006) conducted a trial in 38 elder patients with fresh hip fracture to reduce pain and anxiety on the way to the hospital. Acupressure was administered by the paramedics before the transfer and compared to sham acupressure. The intervention group had significantly lower pain and anxiety and heart rates arriving at the hospital by a mean of 18 bpm. Interestingly this trial was a double-blind trial since the paramedics did not know if they administered at real or sham points on the auricle.
Heart rate: auricular stimulation vs control.
The reduction of HR in the electrostimulation group was statistically significant, but not clinically relevant- the strongest reduction was achieved in the experiment by Taylor and Lee (1992) on 90 healthy volunteer students, who received in a 5-armed randomized trial design 30 min of TENS electrostimulation of different intensities (0–5 kHz, 0-10 mA) to both earlobes or no stimulation. This safety trial monitored HR and blood pressure, and anxiety. The strongest reductions of HR were achieved in the 100 Hz group resulting in a mean 89.22 bpm + − SD 6.13 vs. 101.71 bpm + − SD 7.92 in the placebo TENS group.
Although the outlier that was excluded in favor of auricular stimulation in the sensitivity analysis, a significant reduction in heart rate could still be detected: MD (95%CI)-1.09 [−1.61, −0.58], p 0.0001.
Auricular stimulation does not significantly influence HRV compared to control procedures in 3 studies SMD = −0.02, 95% CI (−0.27 to 0.24), p = 0.82 (see Figure 8 ). Examining the high frequency (HF) power within HRV, auricular stimulation could not show any significant influence compared to the control procedures SMD = −0.14, 95% CI (−0.38 to 0.10), p = 0.25 (see Figure 9 ). Three studies had data to calculate low frequency (LF) power. Thereby, the experimental group leads to increased LF power. SMD = 0.30, 95% CI (0.01 to 0.59), p = 0.04 (see Figure 10 ). Regarding the LF/HF Ratio the analysis of 6 studies demonstrated, that auricular stimulation had a significant effect over control procedures with lower ratios in the AS group (MD = −0.14, 95% CI (−0.23 to 0.04), p = 0.007) (see Figure 11 ).
Heart rate variability: auricular stimulation vs control.
Heart rate variability (high frequency): auricular stimulation vs control.
Heart rate variability (low frequency): auricular stimulation vs control.
Low-frequency/high-frequency ratio (LF/HF): auricular stimulation vs control.
In order to measure the effects of the electrical stimulation of the ABVN on the autonomic nervous system, Clancy and her colleagues (2014) ( Clancy et al., 2014 ) conducted an experimental RCT in 48 healthy participants. 34 received 15 min of 30 Hz tVNS with an intensity to the level of sensory threshold on the inner and outer surface of the tragus, compared to a sham group with inactivated electrodes on the tragus. HRV was measured and a significant decrease in LF/HF ratio during active tVNS could be shown in comparison to the sham group that did not show a significant decrease.
Another experimental cross- over RCT on 15 healthy men by Vosseler et al. (2020) , measured the effects every 30 min in 120 min of tVNS with a frequency of 25 Hz and 2.5 mA on the cymba conchae, compared to the earlobe in the sham group. The earlobe is supposed to be free of vagal nerve fibers. Endocrine and metabolic parameters and on peripheral vagal activity during an oral glucose tolerance test were the outcome parameters. Significant reduction in LF/HF ratio were achieved at the end of the stimulation (at 120 min).
Antonino et al. (2017) tested the hypothesis that tVNS acutely improves spontaneous cardiac baroreflex sensitivity (cBRS) and autonomic modulation in a cross over RCT in 13 healthy men. Bilateral tVNS on the tragus over 15 min with 30 Hz between 10 and 50 mA up to the level of sensory threshold was compared to sham tVNS with no current and tVNS on the earlobe. HRV was measured during the stimulation and tVNS significantly reduced LF/HF ratio and returned to baseline values during recovery.
Continuous data of O2 saturation were provided in 3 trials ( WANG et al., 2009 ; Chen et al., 2017 ; Gan et al., 2020 ). In 2 trials ( Chen et al., 2017 ; Gan et al., 2020 ) they were part of secondary parameters to objectify indirectly the intensity of pain (intense crying) in neonates undergoing unpleasant examination procedures. In both trials acupressure led to significantly lower pain perception, though only in the trial by Gan et al. (2020) on 100 neonates undergoing painful eye inspection, AS prevented significantly from intense crying with subsequent O2 reduction. The trial by WANG et al. (2009) was conducted in 45 adults with Obstructive Sleep Apnoe Syndrome (OSAS) and impaired O2 saturation at night-a 3 month lasting acupressure led to relevant improvement of sleeping patterns and a significant improvement of nocturnal O2 levels after the end of treatment (see Figure 12 ).
Oxygen saturation: auricular stimulation vs control.
AS led to increased baroreflex sensitivity in two studies with tVNS (see Supplementary Figure S2 ); two studies showed no difference between groups in Skin conductance MD = −0.47, 95% CI (−1.00 to 0.05), p = 0.08 (see Supplementary Figure S3 ).
Of the 76 included studies, 27 research groups did not provide funding information. ( Ceccherelli et al., 1981 ; Taylor and Lee, 1992 ; Wang and Kain, 2001 ; Wang et al., 2004 , 2009 ; Usichenko et al., 2005 , 2006 ; Barker et al., 2006 ; Lin et al., 2011 ; Wetzel et al., 2011 ; Lu et al., 2012 ; Arai et al., 2013 ; Busch et al., 2013 ; Hein et al., 2013 ; Capone et al., 2015 , 2017 ; Jacobs et al., 2015 ; Yeh et al., 2015 ; Bauer et al., 2016 ; Burger et al., 2016 , 2018 ; Strong et al., 2016 ; Yu et al., 2017 ; Fischer et al., 2018 ; Dellovo et al., 2019 ; Borges et al., 2020 , 2021 ). Four trials were partly sponsored by companies ( Johnson et al., 1991 ; Allison et al., 1995 ; Hasan et al., 2015 ; Wagenseil et al., 2018 ). The majority of the studies were funded either by public funds ( Napadow et al., 2012 ; Yeo et al., 2014 ; Sellaro et al., 2015 ; Stavrakis et al., 2015 , 2020 ; Steenbergen et al., 2015 ; Luo et al., 2016 ; Abdi et al., 2017 ; Burger et al., 2017 , 2019 ; Sabino-Carvalho et al., 2017 ; Badran et al., 2018 ; Colzato et al., 2018 ; Ventura-Bort et al., 2018 ; Keute et al., 2019 ; Nakahara et al., 2019 ; Sclocco et al., 2019 ; Tobaldini et al., 2019 ; Villani et al., 2019 ; Giraudier et al., 2020 ; Wu et al., 2020 ; Zhu et al., 2021 ) or were investigator initiated ( Karst et al., 2007 ; Usichenko et al., 2007 , 2020 ; la Marca et al., 2010 ; Black et al., 2011 ; Taylor et al., 2013 ; Clancy et al., 2014 ; Laqua et al., 2014 ; Klausenitz et al., 2016 ; Kuo et al., 2016 ; Antonino et al., 2017 ; Chen et al., 2017 ; de Couck et al., 2017 ; Borges et al., 2019 ; Bretherton et al., 2019 ; Gan et al., 2020 ; Gauthey et al., 2020 ; Hendawy and Abuelnaga, 2020 ; Ricci et al., 2020 ; Staley et al., 2020 ; Koenig et al., 2021 ).
Out of the 76 included studies, 37 studies reported adverse events. Overall, no serious side effect occurred in any study. 21 studies reported minor side effects ( Allison et al., 1995 ; Usichenko et al., 2005 , 2006 , 2007 ; la Marca et al., 2010 ; Lu et al., 2012 ; Laqua et al., 2014 ; Hasan et al., 2015 ; Jacobs et al., 2015 ; Stavrakis et al., 2015 ; Bauer et al., 2016 ; Abdi et al., 2017 ; Burger et al., 2018 , 2019 ; Fischer et al., 2018 ; Ventura-Bort et al., 2018 ; Villani et al., 2019 ; Gan et al., 2020 ; Giraudier et al., 2020 ; Ricci et al., 2020 ; Wu et al., 2020 ), the most common side effects are: local pain at ear stimulation side (8 trials), erythema (6 trials), headache (5 trials) and skin irritation (5 trials).
The overall GRADE assessment for the outcomes systolic and diastolic blood pressure, heart rate, heart rate variability was performed using the GRADE tool. Recommendations of AS for reduction of heart rate were low and very low in the other outcomes (see Supplementary table S1 ).