1
|
Lespasio MJ, Piuzzi NS, Husni ME, Muschler
GF, Guarino A and Mont MA: Knee osteoarthritis: A primer. Perm J.
21:16–183. 2017.PubMed/NCBI View Article : Google Scholar
|
2
|
Lenssen TAF, Van Steyn MJA, Crijns YHF,
Waltjé EMH, Roox GM, Geesink RJT, van den Brandt PA and De Bie RA:
Effectiveness of prolonged use of continuous passive motion (CPM),
as an adjunct to physiotherapy, after total knee arthroplasty. BMC
Musculoskelet Disord. 9(60)2008.PubMed/NCBI View Article : Google Scholar
|
3
|
McCaffrey R and Locsin R: The effect of
music on pain and acute confusion in older adults undergoing hip
and knee surgery. Holist Nurs Pract. 20:218–226. 2006.PubMed/NCBI View Article : Google Scholar
|
4
|
Zhang W, Moskowitz RW, Nuki G, Abramson S,
Altman RD, Arden N, Bierma-Zeinstra S, Brandt KD, Croft P, Doherty
M, et al: OARSI recommendations for the management of hip and knee
osteoarthritis, Part II: OARSI evidence-based, expert consensus
guidelines. Osteoarthritis Cartilage. 16:137–162. 2008.PubMed/NCBI View Article : Google Scholar
|
5
|
Medical Advisory Secretariat. Total knee
replacement: An evidence-based analysis. Ont Health Technol Assess
Ser. 5:1–51. 2005.PubMed/NCBI
|
6
|
Máca J, Burša F, Ševčík P, Sklienka P,
Burda M and Holub M: Alarmins and clinical outcomes after major
abdominal surgery-a prospective study. J Invest Surg. 30:152–161.
2017.PubMed/NCBI View Article : Google Scholar
|
7
|
Barbul A, Lazarou SA, Efron DT, Wasserkrug
HL and Efron G: Arginine enhances wound healing and lymphocyte
immune responses in humans. Surgery. 108:331–337. 1990.PubMed/NCBI
|
8
|
Tracey KJ: The inflammatory reflex.
Nature. 420:853–859. 2002.PubMed/NCBI View Article : Google Scholar
|
9
|
Pavlov VA and Tracey KJ: The vagus nerve
and the inflammatory reflex-linking immunity and metabolism. Nat
Rev Endocrinol. 8:743–754. 2012.PubMed/NCBI View Article : Google Scholar
|
10
|
Bonaz B, Sinniger V and Pellissier S:
Anti-inflammatory properties of the vagus nerve: Potential
therapeutic implications of vagus nerve stimulation. J Physiol.
594:5781–5790. 2016.PubMed/NCBI View
Article : Google Scholar
|
11
|
Kim KN, Yao Y and Ju SY: Heart rate
variability and inflammatory bowel disease in humans: A systematic
review and meta-analysis. Medicine (Baltimore).
99(e23430)2020.PubMed/NCBI View Article : Google Scholar
|
12
|
Sorski L and Gidron Y: The vagal nerve,
inflammation, and diabetes-a holy triangle. Cells.
12(1632)2023.PubMed/NCBI View Article : Google Scholar
|
13
|
Pavlov VA, Wang H, Czura CJ, Friedman SG
and Tracey KJ: The cholinergic anti-inflammatory pathway: A missing
link in neuroimmunomodulation. Mol Med. 9:125–134. 2003.PubMed/NCBI
|
14
|
Kuo TBJ, Lai CJ, Huang YT and Yang CCH:
Regression analysis between heart rate variability and
baroreflex-related vagus nerve activity in rats. J Cardiovasc
Electrophysiol. 16:864–869. 2005.PubMed/NCBI View Article : Google Scholar
|
15
|
Tsuji H, Venditti FJ Jr, Manders ES, Evans
JC, Larson MG, Feldman CL and Levy D: Reduced heart rate
variability and mortality risk in an elderly cohort. The Framingham
heart study. Circulation. 90:878–883. 1994.PubMed/NCBI View Article : Google Scholar
|
16
|
Buccelletti E, Gilardi E, Scaini E,
Galiuto L, Persiani R, Biondi A, Basile F and Silveri NG: Heart
rate variability and myocardial infarction: Systematic literature
review and metanalysis. Eur Rev Med Pharmacol Sci. 13:299–307.
2009.PubMed/NCBI
|
17
|
Zhou X, Ma Z, Zhang L, Zhou S, Wang J,
Wang B and Fu W: Heart rate variability in the prediction of
survival in patients with cancer: A systematic review and
meta-analysis. J Psychosom Res. 89:20–25. 2016.PubMed/NCBI View Article : Google Scholar
|
18
|
Beauchaine TP and Thayer JF: Heart rate
variability as a transdiagnostic biomarker of psychopathology. Int
J Psychophysiol. 98:338–350. 2015.PubMed/NCBI View Article : Google Scholar
|
19
|
Stein PK, Schmieg RE, El-Fouly A,
Domitrovich PP and Buchman TG: Association between heart rate
variability recorded on postoperative day 1 and length of stay in
abdominal aortic surgery patients. Crit Care Med. 29:1738–1743.
2001.PubMed/NCBI View Article : Google Scholar
|
20
|
Powezka K, Adjei T, von Rosenberg W,
Normahani P, Goverdovsky V, Standfield NJ, Mandic DP and Jaffer U:
A pilot study of preoperative heart rate variability predicting
pain during local anesthetic varicose vein surgery. J Vasc Surg
Venous Lymphat Disord. 7:382–386. 2019.PubMed/NCBI View Article : Google Scholar
|
21
|
Grote V, Levnajić Z, Puff H, Ohland T,
Goswami N, Frühwirth M and Moser M: Dynamics of vagal activity due
to surgery and subsequent rehabilitation. Front Neurosci.
13(1116)2019.PubMed/NCBI View Article : Google Scholar
|
22
|
Rautaharju PM, Kooperberg C, Larson JC and
LaCroix A: Electrocardiographic predictors of incident congestive
heart failure and all-cause mortality in postmenopausal women: The
women's health initiative. Circulation. 113:481–489.
2006.PubMed/NCBI View Article : Google Scholar
|
23
|
Dekker JM, Schouten EG, Klootwijk P, Pool
J, Swenne CA and Kromhout D: Heart rate variability from short
electrocardiographic recordings predicts mortality from all causes
in middle-aged and elderly men: The Zutphen study. Am J Epidemiol.
145:899–908. 1997.PubMed/NCBI View Article : Google Scholar
|
24
|
De Couck M, Maréchal R, Moorthamers S, Van
Laethem JL and Gidron Y: Vagal nerve activity predicts overall
survival in metastatic pancreatic cancer, mediated by inflammation.
Cancer Epidemiol. 40:47–51. 2016.PubMed/NCBI View Article : Google Scholar
|
25
|
Kloter E, Barrueto K, Klein SD, Scholkmann
F and Wolf U: Heart rate variability as a prognostic factor for
cancer survival-a systematic review. Front Physiol.
9(623)2018.PubMed/NCBI View Article : Google Scholar
|
26
|
Georgieva-Tsaneva G: Application of
mathematical methods for analysis of digital ECG data. Inf Technol
Control. 14:34–43. 2016.
|
27
|
Vollmer M: A robust, simple and reliable
measure of heart rate variability using relative RR intervals. In
2015 Computing in Cardiology Conference (CinC). IEEE, pp609-612,
2015.
|
28
|
Huikuri HV, Ylitalo A, Pikkujämsä SM,
Ikäheimo MJ, Airaksinen KE, Rantala AO, Lilja M and Kesäniemi YA:
Heart rate variability in systemic hypertension. Am J Cardiol.
77:1073–1077. 1996.PubMed/NCBI View Article : Google Scholar
|
29
|
Singh JP, Larson MG, Tsuji H, Evans JC,
O'Donnell CJ and Levy D: Reduced heart rate variability and
new-onset hypertension: insights into pathogenesis of hypertension:
The Framingham heart study. Hypertension. 32:293–297.
1998.PubMed/NCBI View Article : Google Scholar
|
30
|
Huston JM and Tracey KJ: The pulse of
inflammation: Heart rate variability, the cholinergic
anti-inflammatory pathway and implications for therapy. J Intern
Med. 269:45–53. 2011.PubMed/NCBI View Article : Google Scholar
|
31
|
Sajadieh A, Nielsen OW, Rasmussen V, Hein
HO, Abedini S and Hansen JF: Increased heart rate and reduced
heart-rate variability are associated with subclinical inflammation
in middle-aged and elderly subjects with no apparent heart disease.
Eur Heart J. 25:363–370. 2004.PubMed/NCBI View Article : Google Scholar
|
32
|
Benichou T, Pereira B, Mermillod M,
Tauveron I, Pfabigan D, Maqdasy S and Dutheil F: Heart rate
variability in type 2 diabetes mellitus: A systematic review and
meta-analysis. PLoS One. 13(e0195166)2018.PubMed/NCBI View Article : Google Scholar
|
33
|
O'Neal WT, Chen LY, Nazarian S and Soliman
EZ: Reference ranges for short-term heart rate variability measures
in individuals free of cardiovascular disease: The multi-ethnic
study of atherosclerosis (MESA). J Electrocardiol. 49:686–690.
2016.PubMed/NCBI View Article : Google Scholar
|
34
|
Van den Berg ME, Rijnbeek PR, Niemeijer
MN, Hofman A, van Herpen G, Bots ML, Hillege H, Swenne CA,
Eijgelsheim M, Stricker BH and Kors JA: Normal values of corrected
heart-rate variability in 10-sec electrocardiograms for all ages.
Front Physiol. 9(424)2018.PubMed/NCBI View Article : Google Scholar
|
35
|
Barretto JM, Loures FB, Albuquerque RS,
Bezerra FD, Faro RV and Cavanellas NT: Evaluation of serum levels
of C-reactive protein after total knee arthroplasty. Rev Bras
Ortop. 52:176–181. 2017.PubMed/NCBI View Article : Google Scholar
|
36
|
Madsen T, Christensen JH, Toft E and
Schmidt EB: C-reactive protein is associated with heart rate
variability. Ann Noninvasive Electrocardiol. 12:216–222.
2007.PubMed/NCBI View Article : Google Scholar
|
37
|
Aeschbacher S, Schoen T, Dörig L,
Kreuzmann R, Neuhauser C, Schmidt-Trucksäss A, Probst-Hensch NM,
Risch M, Risch L and Conen D: Heart rate, heart rate variability
and inflammatory biomarkers among young and healthy adults. Ann
Med. 49:32–41. 2017.PubMed/NCBI View Article : Google Scholar
|
38
|
Araújo F, Antelmi I, Pereira AC, Latorre
Mdo R, Grupi CJ, Krieger JE and Mansur AJ: Lower heart rate
variability is associated with higher serum high-sensitivity
C-reactive protein concentration in healthy individuals aged 46
years or more. Int J Cardiol. 107:333–337. 2006.PubMed/NCBI View Article : Google Scholar
|
39
|
Lampert R, Bremner JD, Su S, Miller A, Lee
F, Cheema F, Goldberg J and Vaccarino V: Decreased heart rate
variability is associated with higher levels of inflammation in
middle-aged men. Am Heart J. 156:759.e1–e7. 2008.PubMed/NCBI View Article : Google Scholar
|
40
|
Jarczok MN, Koenig J, Mauss D, Fischer JE
and Thayer JF: Lower heart rate variability predicts increased
level of C-reactive protein 4 years later in healthy, nonsmoking
adults. J Intern Med. 276:667–671. 2014.PubMed/NCBI View Article : Google Scholar
|
41
|
Parvizi J, Gehrke T and Chen AF:
Proceedings of the international consensus on periprosthetic joint
infection. Bone Joint J. 95-B:1450–1452. 2013.PubMed/NCBI View Article : Google Scholar
|
42
|
Maniar RN, Navaneedhan G, Ranvir S, Maniar
AR, Dhiman A and Agrawal A: What Is the normal trajectory of
interleukin-6 and C-reactive protein in the hours and days
immediately after TKA? Clin Orthop Relat Res. 477:41–46.
2019.PubMed/NCBI View Article : Google Scholar
|
43
|
Neumaier M, Metak G and Scherer MA:
C-reactive protein as a parameter of surgical trauma: CRP response
after different types of surgery in 349 hip fractures. Acta Orthop.
77:788–790. 2006.PubMed/NCBI View Article : Google Scholar
|
44
|
White J, Kelly M and Dunsmuir R:
C-reactive protein level after total hip and total knee
replacement. J Bone Joint Surg Br. 80:909–911. 1998.PubMed/NCBI View Article : Google Scholar
|
45
|
Liu L, Zhao M, Yu X and Zang W:
Pharmacological modulation of vagal nerve activity in
cardiovascular diseases. Neurosci Bull. 35:156–166. 2019.PubMed/NCBI View Article : Google Scholar
|
46
|
Redekop WK and Mladsi D: The faces of
personalized medicine: A framework for understanding its meaning
and scope. Value Health. 16 (6 Suppl):S4–S9. 2013.PubMed/NCBI View Article : Google Scholar
|
47
|
Poon CCY and Zhang YT: Perspectives on
high technologies for low-cost healthcare. IEEE Eng Med Biol Mag.
27:42–47. 2008.PubMed/NCBI View Article : Google Scholar
|
48
|
Umetani K, Singer DH, McCraty R and
Atkinson M: Twenty-four hour time domain heart rate variability and
heart rate: Relations to age and gender over nine decades. J Am
Coll Cardiol. 31:593–601. 1998.PubMed/NCBI View Article : Google Scholar
|
49
|
Liao D, Barnes RW, Chambless LE, Simpson
RJ Jr, Sorlie P and Heiss G: Age, race, and sex differences in
autonomic cardiac function measured by spectral analysis of heart
rate variability-the ARIC study. Atherosclerosis risk in
communities. Am J Cardiol. 76:906–912. 1995.PubMed/NCBI View Article : Google Scholar
|
50
|
Huikuri HV, Kessler KM, Terracall E,
Castellanos A, Linnaluoto MK and Myerburg RJ: Reproducibility and
circadian rhythm of heart rate variability in healthy subjects. Am
J Cardiol. 65:391–393. 1990.PubMed/NCBI View Article : Google Scholar
|
51
|
Massin MM, Maeyns K, Withofs N, Ravet F
and Gérard P: Circadian rhythm of heart rate and heart rate
variability. Arch Dis Child. 83:179–182. 2000.PubMed/NCBI View Article : Google Scholar
|
52
|
Tobaldini E, Nobili L, Strada S, Casali
KR, Braghiroli A and Montano N: Heart rate variability in normal
and pathological sleep. Front Physiol. 4(294)2013.PubMed/NCBI View Article : Google Scholar
|
53
|
McCraty R, Atkinson M, Tiller WA, Rein G
and Watkins AD: The effects of emotions on short-term power
spectrum analysis of heart rate variability. Am J Cardiol.
76:1089–1093. 1995.PubMed/NCBI View Article : Google Scholar
|
54
|
Lane RD, McRae K, Reiman EM, Chen K, Ahern
GL and Thayer JF: Neural correlates of heart rate variability
during emotion. Neuroimage. 44:213–222. 2009.PubMed/NCBI View Article : Google Scholar
|
55
|
Burch JB, Ginsberg JP, McLain AC, Franco
R, Stokes S, Susko K, Hendry W, Crowley E, Christ A, Hanna J, et
al: Symptom management among cancer survivors: Randomized pilot
intervention trial of heart rate variability biofeedback. Appl
Psychophysiol Biofeedback. 45:99–108. 2020.PubMed/NCBI View Article : Google Scholar
|
56
|
Lehrer PM and Gevirtz R: Heart rate
variability biofeedback: How and why does it work? Front Psychol.
5(756)2014.PubMed/NCBI View Article : Google Scholar
|
57
|
Goessl VC, Curtiss JE and Hofmann SG: The
effect of heart rate variability biofeedback training on stress and
anxiety: A meta-analysis. Psychol Med. 47:2578–2586.
2017.PubMed/NCBI View Article : Google Scholar
|
58
|
Lehrer P, Kaur K, Sharma A, Shah K, Huseby
R, Bhavsar J, Sgobba P and Zhang Y: Heart rate variability
biofeedback improves emotional and physical health and performance:
A systematic review and meta-analysis. Appl Psychophysiol
Biofeedback. 45:109–129. 2020.PubMed/NCBI View Article : Google Scholar
|
59
|
Pizzoli SFM, Marzorati C, Gatti D, Monzani
D, Mazzocco K and Pravettoni G: A meta-analysis on heart rate
variability biofeedback and depressive symptoms. Sci Rep.
11(6650)2021.PubMed/NCBI View Article : Google Scholar
|
60
|
Fournié C, Chouchou F, Dalleau G, Caderby
T, Cabrera Q and Verkindt C: Heart rate variability biofeedback in
chronic disease management: A systematic review. Complement Ther
Med. 60(102750)2021.PubMed/NCBI View Article : Google Scholar
|
61
|
Gitler A, Vanacker L, De Couck M, De Leeuw
I and Gidron Y: Neuromodulation applied to diseases: The case of
HRV biofeedback. J Clin Med. 11(5927)2022.PubMed/NCBI View Article : Google Scholar
|