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interexaminer and intraexaminer reliability study, J Manipulative Physiol Ther, 26, 493, 10.1016\u002FS0161-4754(03)00106-4\nWong, 2013, Within- and between-day reliability of spinal stiffness measurements obtained using a computer controlled mechanical indenter in individuals with and without low back pain, Man Ther, 18, 395, 10.1016\u002Fj.math.2013.02.003\nLarivière, 2015, Identification of intrinsic and reflexive contributions to low-back stiffness: medium-term reliability and construct validity, J Biomech, 48, 254, 10.1016\u002Fj.jbiomech.2014.11.036\nMokkink, 2010, The COSMIN checklist for assessing the methodological quality of studies on measurement properties of health status measurement instruments: an international Delphi study, Qual Life Res, 19, 539, 10.1007\u002Fs11136-010-9606-8\nTerwee, 2012, Rating the methodological quality in systematic reviews of studies on measurement properties: a scoring system for the COSMIN checklist, Qual Life Res, 21, 651, 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1992, Empty sella resulting from the spontaneous resolution of a pituitary macroadenoma, Arch Intern Med, 152, 1920, 10.1001\u002Farchinte.1992.00400210140024\nKaufman, 1968, The “empty” sella turcica—a manifestation of the intrasellar subarachnoid space, Radiology, 90, 931, 10.1148\u002F90.5.931\nBjerre, 1990, The empty sella. A reappraisal of etiology and pathogenesis, Acta Neurol Scand, 84, 5\nLatchaw, 1996, Radiographic evaluation of the normal sella turcica and pituitary gland, vol 3, 1\nKeats, 1990, Atlas of roentgenographic measurement, 115\nYochum, 1996, Measurements in skeletal radiology, vol 1, 142\n1985, 130\nGuyton, 1991, Textbook of medical physiology, 819\nCatarci, 1994, Empty sella and headache, Headache, 34, 583, 10.1111\u002Fj.1526-4610.1994.hed3410583.x\nTerano, 1996, Characteristics of the pituitary gland in elderly subjects from magnetic resonance images: relationship to pituitary hormone secretion, Clin Endocrinol (Oxf), 45, 273, 10.1046\u002Fj.1365-2265.1996.00555.x\nBrodsky, 1998, Magnetic resonance imaging in pseudotumor cerebri, Ophthalmology, 105, 1686, 10.1016\u002FS0161-6420(98)99039-X\nWakai, 1981, Pituitary apoplexy: its incidence and clinical significance, J Neurosurg, 55, 187, 10.3171\u002Fjns.1981.55.2.0187\nBraatvedt, 1992, The empty sella syndrome: much ado about nothing, Br J Hosp Med, 47, 523\nElster, 1993, Modern imaging of the pituitary, Radiology, 187, 1, 10.1148\u002Fradiology.187.1.8451394\nTien, 1992, MR imaging of the pituitary gland in infants and children: changes in size, shape, and MR signal with growth and development, AJR Am J Roentgenol, 158, 1151, 10.2214\u002Fajr.158.5.1566682\nCaruso, 1998, Pituitary gland. 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kinetics, Gait Posture, 27, 8, 10.1016\u002Fj.gaitpost.2006.11.002\nLundin, 1995, On the assumption of bilateral lower extremity joint moment symmetry during the sit-to-stand task, J Biomech, 28, 109, 10.1016\u002F0021-9290(95)80013-1\nCohen, 1988\nAdams, 2006, 53\nHenry, 2006, Decreased limits of stability in response to postural perturbations in subjects with low back pain, Clin Biomech, 21, 881, 10.1016\u002Fj.clinbiomech.2006.04.016\nMientjes, 1999, Balance in chronic low back pain patients compared to healthy people under various conditions in upright standing, Clin Biomech, 14, 710, 10.1016\u002FS0268-0033(99)00025-X\nLuoto, 1998, One-footed and externally disturbed two-footed postural control in patients with chronic low back pain and healthy control subject, Spine, 23, 2081, 10.1097\u002F00007632-199810010-00008\nMok, 2004, Hip strategy for balance control in quiet standing is reduced in people with low back pain, Spine, 29, E107, 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2005, Muscle reflex classification of low-back pain, J Electromyogr Kinesiol, 15, 53, 10.1016\u002Fj.jelekin.2004.07.001\nDavis, 2005, Injury-induced kinematic compensations within the lower back: impact of non-lower back injuries, Ergonomics, 48, 135, 10.1080\u002F00140130512331319391\nBurnett, 2004, Spinal kinematics and trunk muscle activity in cyclists: a comparison between healthy controls and non-specific chronic low back pain subjects—a pilot investigation, Man Ther, 9, 211, 10.1016\u002Fj.math.2004.06.002\nFerguson, 2004, Differences in motor recruitment and resulting kinematics between low back pain patients and asymptomatic participants during lifting exertions, Clin Biomech, 19, 992, 10.1016\u002Fj.clinbiomech.2004.08.007\nMoseley, 2004, Does anticipation of back pain predispose to back trouble?, Brain, 127, 2339, 10.1093\u002Fbrain\u002Fawh248\nLehman, 2004, Biomechanical assessments of lumbar spinal function. How low back pain sufferers differ from normals. Implications for outcome measures research. Part I: kinematic assessments of lumbar function, J Manipulative Physiol Ther, 27, 57, 10.1016\u002Fj.jmpt.2003.11.007\nvan Dieen, 2003, Trunk muscle activation in low-back pain patients, an analysis of the literature, J Electromyogr Kinesiol, 13, 333, 10.1016\u002FS1050-6411(03)00041-5\nHawk, 2002, Issues in planning a placebo-controlled trial of manual methods: results of a pilot study, J Altern Complement Med, 8, 21, 10.1089\u002F107555302753507159\nShambaugh, 1987, Changes in electrical activity in muscles resulting from chiropractic adjustment: a pilot study, J Manipulative Physiol Ther, 10, 300\nSmith, 1999, Muscular strength and chiropractic: theoretical mechanisms and health implications, J Vertebral Sublux Res, 3, 1\nKelly, 2000, Use of a mental rotation reaction time paradigm to measure the effects of upper cervical adjustments on cortical processing: a pilot study, J Manipulative Physiol Ther, 23, 246, 10.1016\u002FS0161-4754(00)90171-4\nPickar, 2002, Neurophysiological effects of spinal manipulation, Spine J, 2, 357, 10.1016\u002FS1529-9430(02)00400-X\nDishman, 2002, Central motor excitability changes after spinal manipulation: a transcranial magnetic stimulation study, J Manipulative Physiol Ther, 25, 1, 10.1067\u002Fmmt.2002.120422\nDishman, 2001, Comparison of effects of spinal manipulation and massage on motoneuron excitability, Electromyogr Clin Neurophysiol, 41, 97\nLehman, 1999, The influence of a chiropractic manipulation on lumbar kinematics and electromyography during simple and complex tasks: a case study, J Manipulative Physiol Ther, 22, 576, 10.1016\u002FS0161-4754(99)70017-5\nLehman, 2001, Spinal manipulation causes variable spine kinematic and trunk muscle electromyographic responses, Clin Biomech, 16, 293, 10.1016\u002FS0268-0033(00)00085-1\nSmith DL. Postural dynamics following chiropractic adjustment: preliminary findings. In: Smart LJ, editor. International Society for Ecological Psychology. Oxford (OH): Miami University; p.3.\nMurphy, 1995, Sacroiliac joint manipulation decreases the H-reflex, Electromyogr Clin Neurophysiol, 35, 87\nCramer, 2002, The effects of side-posture positioning and adjusting on the lumbar z joints: a randomized controlled trial with sixty-four subjects, Spine, 27, 2459, 10.1097\u002F00007632-200211150-00008\nHerzog, 2000, The mechanical, neuromuscular, and physiologic effects produced by spinal manipulation, 191\nFitts, 1954, The information capacity of the human motor system in controlling the amplitude of movement, J Exp Psychol, 47, 381, 10.1037\u002Fh0055392\nMacKenzie, 1992, Fitts' law as a research and design tool in human-computer interaction, Hum-Comput Interact, 7, 91, 10.1207\u002Fs15327051hci0701_3\nShumway-Cook, 2001\nSchmidt, 2005\nSoukoreff, 2004, Towards a standard for pointing device evaluation, perspectives on 27 years of Fitts' law research in HCI, Int J Human-Comput Stud, 61, 751, 10.1016\u002Fj.ijhcs.2004.09.001\nSuter, 2000, Conservative lower back treatment reduces inhibition in knee extensor muscles: a randomized controlled trial, J Manipulative Physiol Ther, 23, 76, 10.1016\u002FS0161-4754(00)90071-X\nSuter, 2002, Decrease in elbow flexor inhibition after cervical spine manipulation in patients with chronic neck pain, Clin Biomech, 17, 541, 10.1016\u002FS0268-0033(02)00025-6\nSuter, 1999, Decrease in quadriceps inhibition after sacroiliac joint manipulation in patients with anterior knee pain, J Manipulative Physiol Ther, 22, 149, 10.1016\u002FS0161-4754(99)70128-4\nGatterman, 1995\nLeach, 2004\nPeterson, 2002\nChristensen, 2005\nSoukereff, 1995\nSoukoreff, 1995, Generalized Fitts' Law model builder, 113\nVicente, 2000, The earth is spherical (P \u003C .05): alternative methods of statistical inference, Theor Issues Ergon Sci, 1, 248, 10.1080\u002F14639220110037065\nSchmidt, 2004\nBehm, 2004, Effect of acute static stretching on force, balance, reaction time, and movement time, Med Sci Sports Exerc, 36, 1397, 10.1249\u002F01.MSS.0000135788.23012.5F\nZappia, 1994, Usefulness of movement time in the assessment of Parkinson's disease, J Neurol, 241, 543, 10.1007\u002FBF00873517\nJankovic, 1999, Movement and reaction times and fine coordination tasks following pallidotomy, Mov Disord, 14, 57, 10.1002\u002F1531-8257(199901)14:1\u003C57::AID-MDS1011>3.0.CO;2-X\nHaas, 2004, Dose response for chiropractic care of chronic cervicogenic headache and associated neck pain: a randomized pilot study, J Manipulative Physiol Ther, 27, 547, 10.1016\u002Fj.jmpt.2004.10.007\nHaas, 2004, Dose-response for chiropractic care of chronic low back pain, Spine J, 4, 574, 10.1016\u002Fj.spinee.2004.02.008\nDescarreaux, 2004, Efficacy of preventive spinal manipulation for chronic low-back pain and related disabilities: a preliminary study, J Manipulative Physiol Ther, 27, 509, 10.1016\u002Fj.jmpt.2004.08.003\nSantrock, 2005\nSmart, 2001, Postural dynamics: clinical and empirical implications, J Manipulative Physiol Ther, 24, 340, 10.1067\u002Fmmt.2001.115262\nBonci, 1990, Strength modulation of the biceps brachii muscles immediately following a single manipulation of the C4\u002F5 intervertebral motor unit in healthy subjects: preliminary report, Am J Chiropr Med, 3, 14\nRogers, 1997, The effects of spinal manipulation on cervical kinesthesia in patients with chronic neck pain: a pilot study, J Manipulative Physiol Ther, 20, 80\nEnebo, 2003, The effect of cervical spine manipulation on motor control in healthy individuals: a pilot study, Chiropr J Aust, 33, 93\nWells, 1999, Standard osteopathic treatment acutely improves gait performance in patients with Parkinson's disease, J Am Osteopath Assoc, 99, 92, 10.7556\u002Fjaoa.1999.99.2.92\nNoll, 1999, Adjunctive osteopathic manipulative treatment in the elderly hospitalized with pneumonia: a pilot study, J Am Osteopath Assoc, 99, 143, 10.7556\u002Fjaoa.1999.99.3.143",{"EN":688},"The Effect of Chiropractic Adjustments on Movement Time: A Pilot Study Using Fitts Law",{"VOID":690},"10.1016\u002Fj.jmpt.2006.03.009","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161475406000534",[693,708,723],{"id":694,"sortIndex":97,"researcher":18,"roles":695,"affiliations":696,"properties":705},"e927948e-283c-40dd-bf8d-d7ec9c45de6a",[126],[697],{"id":18,"sortIndex":19,"affiliation":698,"properties":18},{"id":699,"createTime":700,"updateTime":700,"relativeEntities":701,"slug":18,"properties":702,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"707da009-a3b0-425e-b166-362c7f000e92","2024-02-06T17:25:40.107+00:00",[],{"title":703},{"VI":704},"Professor, Department of Psychology, Miami University, Oxford, Ohio",{"title":706},{"VI":707},"Marvin J. 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1992, Age and gender related normal motion of the cervical spine, Spine, 17, S393, 10.1097\u002F00007632-199210001-00009\nNilsson, 1996, The interexaminer reliability of measuring passive cervical range of motion, revisited, J Manipulative Physiol Ther, 19, 302\nNilsson, 1995, Measuring passive cervical motion, J Manipulative Physiol Ther, 18, 293\nWong, 1992, Comparisons between active vs. passive end-range assessments in subjects exhibiting cervical range of motion asymmetries, J Manipulative Physiol Ther, 15, 159\nChristensen, 1998, The reliability of measuring active and passive cervical range of motion, J Manipulative Physiol Ther, 21, 341\nAllund, 1990, Three-dimensional analysis of neck motion, Spine, 15, 87, 10.1097\u002F00007632-199002000-00007\nZachman, 1989, Interexaminer reliability and concurrent validity of two instruments for the measurement of cervical ranges of motion, J Manipulative Physiol Ther, 12, 205\nTucci, 1986, Cervical motion assessment, Arch Phys Med Rehabil, 67, 225\nJordan, 2000, Assessment of published reliability studies for cervical spine range-of-motion measurement tools, J Manipulative Physiol Ther, 23, 180, 10.1016\u002FS0161-4754(00)90248-3\nPetersen, 2000, Reliability of cervical range of motion using the OSI CA 6000 spine motion analyser on asymptomatic and symptomatic subjects, Man Ther, 5, 82, 10.1054\u002Fmath.2000.0232\nFerrario, 2002, Active range of motion of the head and cervical spine, J Orthop Res, 20, 122, 10.1016\u002FS0736-0266(01)00079-1\nYoudas, 1991, Reliability of measurements of cervical spine range of motion - comparison of three methods, Phys Ther, 71, 98, 10.1093\u002Fptj\u002F71.2.98\nYoudas, 1992, Normal range of motion of the cervical spine, Phys Ther, 72, 770, 10.1093\u002Fptj\u002F72.11.770\nCapuano-Pucci, 1991, Intratester and intertester reliability of the Cervical Range of Motion Device, Arch Phys Med Rehabil, 72, 338\nRheault, 1992, Intertester reliability of the cervical range of motion device, J Orthop Sports Phys Ther, 15, 147, 10.2519\u002Fjospt.1992.15.3.147\nTousignant, 2000, Criterion validity of the cervical range of motion (CROM) goniometer for cervical flexion and extension, Spine, 25, 324, 10.1097\u002F00007632-200002010-00011\nRaab, 1979, Magnetic position and orientation tracking system, IEEE Trans Aerosp Electron Syst, 15, 709, 10.1109\u002FTAES.1979.308860\nMcGill, 1997, Methodological considerations for using inductive sensors (3SPACE ISOTRAK) to monitor 3-D orthopaedic joint motion, Clin Biomech (Bristol, Avon), 12, 190, 10.1016\u002FS0268-0033(97)00063-6\nBuchalter, 1986, A non-invasive in-vivo technique for examining posture and functional spinal motion, 727\nOrdway, 1994, The effect of head position on the analysis of cervical motion, 212\nPearson, 1995, Trial into the effects of repeater neck retractions in normal subjects, Spine, 20, 1245, 10.1097\u002F00007632-199506000-00006\nWalmsley, 1996, The effect of initial head position on active cervical axial rotation range of motion in two age populations, Spine, 21, 2435, 10.1097\u002F00007632-199611010-00005\nOrdway, 1997, Cervical sagittal range-of motion analysis using three methods, Spine, 22, 501, 10.1097\u002F00007632-199703010-00007\nJordan, 2000, The reliability of the three-dimensional FASTRAK measurement system in measuring cervical spine and shoulder range of motion in healthy subjects, Rheumatology (Oxford), 39, 382, 10.1093\u002Frheumatology\u002F39.4.382\nDall’Alba, 2001, Cervical range of motion discriminates between asymptomatic persons and those with whiplash, Spine, 26, 2090, 10.1097\u002F00007632-200110010-00009\nSolinger, 2000, Standardized initial head position in cervical range-of-motion assessment, J Manipulative Physiol Ther, 23, 20, 10.1016\u002FS0161-4754(00)90109-X\nLantz, 1999, Clinical validity and stability of active and passive cervical range of motion with regard to total and unilateral uniplanar motion, Spine, 24, 1082, 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1996, Golf's contribution to low back pain, Sports Med Update, 11, 2025\nHosea, 1996, Back pain in golf, Clin Sports Med, 15, 37\nMcCarroll, 1994, Epidemiology of golf injuries, 9\nFleisig, 1994, The biomechanics of golf\nMcCarroll, 1986, Golf: common injuries from a supposedly benign activity, J Musculoskel Med, 5, 9\nMcGill, 1992, The influence of lordosis on axial trunk torque and trunk muscle myoelectric activity, Spine, 17, 1187, 10.1097\u002F00007632-199210000-00010\nWhite, 1990\nFry, 1987, Prevalence of overuse (injury) syndrome in Australian music schools, Br J Ind Med, 44, 35\nManning, 1984, Body movements and events contributing to accidental and nonaccidental back injuries, Spine, 9, 734, 10.1097\u002F00007632-198410000-00014\nMarras, 1993, The role of dynamic three-dimensional trunk motion in occupationally-related low back disorders. The effects of workplace factors, trunk position, and trunk motion characteristics on risk of injury, Spine, 18, 617, 10.1097\u002F00007632-199304000-00015\nKumar, 1995, Human trunk strength profile in lateral flexion and axial rotation, Spine, 20, 169, 10.1097\u002F00007632-199501150-00007\nKirkaldy-Willis, 1992\nHosea, 1994, Biomechanical analysis of the golfer's back\nWatkins, 1996, Dynamic electromyographic analysis of trunk musculature in professional golfers, Am J Sports Med, 4, 535, 10.1177\u002F036354659602400420\nMcLean, 1992, Widen the gap, Golf Magazine, 12, 49\nHindle, 1989, Rotational mobility of the human back in forward flexion, J Biomed Eng, 11, 219, 10.1016\u002F0141-5425(89)90145-3\nAnnear, 1992, Pars interarticularis stress and disc degeneration in cricket's potent strike force: the fast bowler, Aust N Z J Surg, 62, 768, 10.1111\u002Fj.1445-2197.1992.tb06915.x\nEnoka, 1988, Neuromechanical basis of kinesiology. Champaign (IL), Human Kinetics\nChapman, 1983, The use of muscle stretch in inertial loading, 44\nNeighbors, 1996\nAndrews, 1994, The shoulder, 127\nJorgensen, 1970, On the dynamics of the swing of a golf club, Am J Phys, 38, 644, 10.1119\u002F1.1976419\nPink, 1993, Electromyographic analysis of the trunk in golfers, Am J Sports Med, 21, 385, 10.1177\u002F036354659302100310\nPink, 1990, Electromyographic analysis of the shoulder during the golf swing, Am J Sports Med, 18, 137, 10.1177\u002F036354659001800205\nBasmajian, 1985, Muscles alive: their functions revealed by electromyography\nFinucane, 1998, Reproducibility of electromyographic recordings of submaximal concentric and eccentric muscle contractions in humans, Electroencephalogr Clin Neurophysiol, 109, 290, 10.1016\u002FS0924-980X(98)00020-4\nMcGill, 1990, Measured and modelled static and dynamic axial trunk torsion during twisting in males and females, J Biomed Eng, 12, 403, 10.1016\u002F0141-5425(90)90024-H\nMirka, 1991, The quantification of EMG normalization error, Ergonomics, 34, 343, 10.1080\u002F00140139108967318\nLofland, 1995, Assessment of lumbar EMG during static and dynamic activity in pain-free normals: implications for muscle scanning protocols, Biofeedback Self Regul, 20, 3, 10.1007\u002FBF01712763\nJones, 1984\nBrooks, 1986\nHay, 1973\nMcGill, 1991, Electromyographic activity of the abdominal and low back musculature during the generation of isometric and dynamic axial trunk torque: implications for lumbar mechanics, J Orthop Res, 9, 91, 10.1002\u002Fjor.1100090112\nLiebenson, 1996, Integrating rehabilitation into chiropractic practice (blending active and passive care)",{"EN":876},"The short golf backswing: Effects on performance and spinal health implications",{"VOID":878},"10.1067\u002Fmmt.2001.118982","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161475401489020",[881,896,908],{"id":882,"sortIndex":124,"researcher":18,"roles":883,"affiliations":884,"properties":893},"5d63b843-a10f-4239-8b6a-a7a69d490ee1",[126],[885],{"id":18,"sortIndex":19,"affiliation":886,"properties":18},{"id":887,"createTime":888,"updateTime":888,"relativeEntities":889,"slug":18,"properties":890,"entityType":38,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"145e7736-8ae8-4490-9553-24f8bc5d44dc","2024-01-24T12:35:53.171+00:00",[],{"title":891},{"VI":892},"Research Department, New York Chiropractic College, Seneca Falls, NY.",{"title":894},{"VI":895},"David R. 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psychological factors in women with breast cancer: a randomized controlled clinical trial, Auton Neurosci, 140, 88, 10.1016\u002Fj.autneu.2008.03.006\nKrohn, 2010, Depression, mood, stress, and Th1\u002FTh2 immune balance in primary breast cancer patients undergoing classical massage therapy, Support Care Cancer\nArroyo-Morales, 2009, Massage after exercise. Responses of immunologic and endocrine markers: a randomized single-blind placebo-controlled study, J Strength Cond Res, 23, 638, 10.1519\u002FJSC.0b013e318196b6a6\nArroyo-Morales, 2011, Psycho-physiological effects of pre-performance massage before isokinetic exercise, J Strength Cond Res, 25, 481, 10.1519\u002FJSC.0b013e3181e83a47\nBower, 2005, Altered cortisol response to psychologic stress in breast cancer survivors with persistent fatigue, Psychosomatic Med, 67, 277, 10.1097\u002F01.psy.0000155666.55034.c6\nCassileth, 2010, Integrative and behavioral approaches to the treatment of cancer-related neuropathic pain, The Oncologist, 15, S19, 10.1634\u002Ftheoncologist.2009-S504\nHenderson, 2004, Complementary and alternative medicine use by women after completion of allopathic treatment for breast cancer, Altern Ther Health Med, 10, 52\nPiper, 1998, The revised Piper Fatigue Scale: psychometric evaluation in women with breast cancer, Oncol Nurs Forum, 25, 677\nBarnes, 1990\nVanderweeen, 1996, Pressure algometry in manual therapy, Man Ther, 1, 258, 10.1054\u002Fmath.1996.0276\nHidaka, 2004, Changes in masseteric hemodynamics time-related to mental stress, J Dent Res, 83, 185, 10.1177\u002F154405910408300220\nNakamura, 2007, Effect of mental stress on hemoglobin dynamics in trapezius muscles, San ei Shi, 49, 225\nChesterson, 2007, Inter-rater reliability of algometry in measuring pressure pain thresholds in healthy humans, using multiple raters, Clin J Pain, 23, 760, 10.1097\u002FAJP.0b013e318154b6ae\nMoyer, 2009, The attitudes toward massage (ATOM) scale: reliability, validity, and associated findings, J Bodyw Mov Ther, 13, 22, 10.1016\u002Fj.jbmt.2008.01.002\nNater, 2009, Salivary alpha-amylase as a noninvasive biomarker for the sympathetic nervous system: current state of research, Psychoneuroendocrinology, 34, 486, 10.1016\u002Fj.psyneuen.2009.01.014\nPrushansky, 2004, Reproducibility indices applied to cervical pressure pain threshold measurements in healthy subjects, Clin J Pain, 20, 341, 10.1097\u002F00002508-200409000-00009\nBeltzer, 2010, Salivary flow and alpha-amylase: collection techniques, duration and oral fluid type, Physiol Behav, 101, 289, 10.1016\u002Fj.physbeh.2010.05.016\nChicharro, 1998, Saliva composition and exercise, Sports Med, 26, 17, 10.2165\u002F00007256-199826010-00002\nToro-Velasco, 2009, Short-term effects of manual therapy on heart rate variability, mood state, and pressure pain sensitivity in patients with chronic tension-type headache: a pilot study, Manipulative Physiol Ther, 32, 527, 10.1016\u002Fj.jmpt.2009.08.011\nSchleip, 2003, Fascial plasticity: a new neurobiological explanation. 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